Novel dipeptidyl peptidase IV inhibitors used for functionally influencing different cells and treating immunological, infammatory, neuronal, and other diseases

Information

  • Patent Application
  • 20070037785
  • Publication Number
    20070037785
  • Date Filed
    October 15, 2004
    19 years ago
  • Date Published
    February 15, 2007
    17 years ago
Abstract
The present invention relates to substances capable of specifically inhibiting Gly-Pro-p-nitroanilide cleaving peptidases, for a use in the medical field. Furthermore, the invention relates to the use of at least one of such substances or of at least one pharmaceutical or cosmetic composition containing at least one such substance for a prophylaxis or a therapy of diseases, particularly for a prophylaxis and a therapy of diseases accompanied by an excessive immune response (autoimmune diseases, allergies, transplant rejections), of other chronic-inflammatory diseases, of neuronal diseases and cerebral damage, of skin diseases (inter alia acne, psoriasis), of tumor diseases and of specific virus infections (inter alia SARS).
Description

Dipeptidyl peptidase IV (DPIV; CD26; EC 3.4.14.5) is an ubiquitously present serine protease specifically catalyzing the hydrolysis of peptides after proline or alanine in the second position of the N-terminal end. The gene family of DPIV having enzymatic activity also includes, inter alia, DP 8, DP 9 and FAP/seprase (T. Chen et al.: Adv. Exp. Med. Biol. 524, 79, 2003). A substrate specificity similar to DPIV is shown by Attractin (mahagony protein) (J. S. Duke-Cohan et al.: J. Immunol. 156, 1714, 1996). Said enzyme is also inhibited by inhibitors effectively inhibiting DPIV.


For dipeptidyl peptidase IV, attractin and FAP, important biological functions were demonstrated in different cell systems. This is true for the immune system (U. Lendeckel et al.: Intern. J. Mol. Med. 4, 17, 1999; T. Käthne et al.: Intern. J. Mol. Med. 4, 3, 1999; I. De Meester et al: Advanc. Exp. Med. Biol. 524, 3, 2002; published International Patent Application WO 01/89569 D1; published International Patent Application No. WO 02/053170 A3; International Patent Application No. PCT/EP 03/07199), the neuronal system (published International Patent Application No. WO 02/053169 A2 and German Patent Application No. 103 37 074.9), the Fibroblasts (German Patent Application No. 103 30 842.3), the Keratinozytes (published International Patent Application No. WO 02/053170 A3), die sebaceous gland cells/Sebocytes (International Patent Application No. PCT/EP 03/02356), for several tumors.


The capability, of DPIV, of specifically inactivating the incretory hormones GIP and GLP has resulted into the development of a new therapeutic concept for treating glucose metabolism disturbances (D. M. Evans: Drugs 5, 577, 2002).


For dipeptidyl peptidase IV and for other peptidases, distinguishable inhibitors are known (Reviews are found in: “D. M. Evans: Drugs 5, 577, 2002”). The isolated inhibition of the dipeptidyl peptidase IV and of analogous peptidases, but particularly the combined inhibition of dipeptidyl peptidase IV and of alanyl aminopeptidases (EC 3.4.11.2 and EC 3.4.11.14) results into a strong inhibition of the DNA synthesis and, thereby, of the cell proliferation in immune cells as well as into a change of the cytokine production, particularly into an induction of the immunoregulatory effective TGF-β1 (published International Patent Application No. WO 01/89569 D1; published International Patent Application No. WO 02/053170 A3). For regulatory T-cells, alanyl aminopeptidase inhibitors effect a strong induction of TGF-β1 (International Patent Application No. PCT/EP 03/07199). In the neuronal system, a reduction or deceleration, respectively, of acute and chronic cerebral deterioration processes by an inhibition of dipeptidyl peptidase IV or of analogous enzymes, but particularly by a combined inhibition of DP IV or of analogous enzymes and of alanyl aminopeptidases or of analogous enzymes was demonstrated (published International Patent Application WO 02/053 169 A3 and German laid-open Patent Application No. 103 37 074.9). It could be shown, too, for Fibroblasts (German laid-open Patent Application No. 103 37 074.9), Keratinocytes (published International Patent Application No. WO 02/053 170 A3) and Sebatocytes (International Patent Application No. PCT/EP 03/02356) that an inhibition of dipeptidyl peptidase IV, but particularly a combined inhibition of the two enzymes dipeptidyl peptidase IV and of alanyl aminopeptidase effects an inhibition of the growth and a change of the cytokine production.


Thus, there results the surprising fact that the dipeptidyl peptidase IV as well as analogously working enzymes perform fundamental central biological functions in several organs and cell systems, and that an inhibition of this peptidase, but particularly a combined inhibition of this enzyme together with an inhibition of the alanyl aminopeptidases, represents an effective therapeutic principle for the treatment of different diseases which are chronic in most of the cases.


By using accepted animal models, the Inventors could demonstrate that, particularly, the combined administration of inhibitors of both peptidases effects, in fact, also in vivo an inhibition of the growth of different cell systems and a suppression of an excessive immune response, of chronic-inflammatory events as well as of cerebral damage (published International Patent Application WO 01/89569 D1).


The results achieved up to now were, predominantly, obtained by using known inhibitors of dipeptidyl peptidase IV, which are described in the literature and are, in part, commercially available, alone or in combination with inhibitors of the alanyl aminopeptidase, which are known and, in part, commercially available, too.


It was an object of the present invention to find further effective inhibitors of dipeptidyl peptidase IV and of analogous enzymes. In particular, lower molecular and easily accessible compounds were to be found which allow an effective inhibition of dipeptidyl peptidase IV and of analogous enzymes.


Surprisingly, in the course of a high-throughput screening of substance data bases, there were now found novel, predominantly non-peptidic low-molecular inhibitors for the dipeptidyl peptidase IV and for analogous enzymes.


The invention relates to novel substances specifically inhibiting peptidases cleaving Gly-Pro-p-nitroanilide.


Moreover, the invention relates to novel substances which, as such or as starting materials for further substances and in combination with inhibitors of the alanyl aminopeptidases or of analogous enzymes, may be used for a prophylaxis and therapy of diseases connected to an excessive immune response (autoimmune diseases, allergies and rejections of transplants, sepsis), of other chronic-inflammatory diseases, of neuronal diseases and cerebral damage, diseases of the skin (inter alia acne, psoriasis) and of tumor diseases.


Specifically, the present invention relates to substances of the general formulae D1 to D14 according to claims 1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25 and 27 as well as tautomers and stereoisomers of said compounds of the general formulae D1 to D14, as well as pharmaceutically acceptable salts, salt derivatives, tautomers and stereoisomers thereof, for a use in the medical field.


In a specific embodiment, the present invention relates to specific compounds having the specific formulae D1.001 to D14.007 which are covered by the above general formulae D1 to D14, which compounds, as examples and without restricting them to those, are listed in claims 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26 and 28 in the form of tables, as well as tautomers and stereoisomers of said compounds of the general formulae D1.001 to D14.007, and pharmaceutically acceptable salts, salt derivatives, tautomers and stereoisomers thereof, for a use in the medical field.


Moreover, the invention relates to pharmaceutical compositions comprising at least one compound having one of the general formulae D1 to D14, optionally in combination with per se known and usual carriers and adjuvants.


Moreover, the invention relates to cosmetic compositions comprising at least one compound having one of the general formulae D1 to D14, optionally in combination with per se known and usual carriers and adjuvants.


Furthermore, the invention relates to the use of at least one compound of one of the general formulae D1 to D14 or of at least one of the above-mentioned pharmaceutical or cosmetic compositions for inhibiting the activity of dipeptidyl peptidase IV or of analogous enzymes, in a manner alone or in combination with inhibitors of alanyl aminopeptidases or of analogous enzymes.


Furthermore, the invention relates to the use of at least one compound of one of the general formulae D1 to D14 or of at least one of the above-mentioned pharmaceutical or cosmetic compositions for topically influencing the activity of dipeptidyl peptidase IV or of analogous enzymes, in a manner alone or in combination with inhibitors of alanyl aminopeptidases or of analogous enzymes.


Moreover, the invention relates to the use of at least one compound of one of the general formulae D1 to D14 or of at least one of the above-mentioned pharmaceutical or optionally also cosmetic compositions for a prophylaxis and therapy of a number of diseases which, as a matter of an exemplary description, are claimed in claims 33 to 45. In particular embodiments, without that this should be interpreted as restricting the invention, compounds of the general formulae D1 to D14 in accordance with the invention, particularly any of the particularly preferred compounds D1.001 to D14.007 summarized in Tables 1 to 14, may be used as such, or may be used as starting compounds for further compounds or may be used in combination with inhibitors of alanyl aminopeptidases and with inhibitors of analogous enzymes for a therapy of diseases accompanied by an excessive immune response (autoimmune diseases, allergies and transplant rejections), of other chronic-inflammatory diseases, of neuronal diseases and of cerebral damage, diseases of the skin (inter alia acne and psoriasis), tumor diseases and specific virus infections (inter alia SARS).


Furthermore, the invention relates to the use of at least one compound of one of the general formulae D1 to D14 or of at least one of the above-mentioned pharmaceutical or cosmetic compositions for manufacturing a medicament for inhibiting he activity of dipeptidyl peptidase IV or of analogous enzymes, alone or in combination with inhibitors of alanyl aminopeptidases or of analogous enzymes.


Furthermore, the invention relates to the use of at least one compound of one of the general formulae D1 to D14 or of at least one of the above-mentioned pharmaceutical or cosmetic compositions for manufacturing a medicament for topically influencing the activity of dipeptidyl peptidase IV or of analogous enzymes, alone or in combination with inhibitors of alanyl aminopeptidases or of analogous enzymes.


Furthermore, the invention relates to the use of at least one compound of one of the general formulae D1 to D14 or of at least one of the above-mentioned pharmaceutical or optionally also cosmetic compositions for manufacturing a medicament for a prophylactic and therapeutic treatment of a number of diseases claimed, in an exemplifying way, in claims 48 to 60. In particular embodiments, without restricting the invention, the compounds of the general formulae D1 to D14, especially the particularly preferred single compounds D1.001 to D14.007 shown in Tables 1 to 14, may be used, as such or as starting substances for further substances and in combination with inhibitors of alanyl aminopeptidases or of analogous enzymes, for manufacturing a medicament for a therapy of diseases associated with an excessive immune response (autoimmune diseases, allergies or transplant rejections), of other chronic-inflammatory diseases, of neuronal diseases and cerebral damage, of skin diseases (inter alia acne and psoriasis), of tumor diseases and of specific virus infections (inter alia SARS).


Moreover, the invention relates to a process for inhibiting the activity of dipeptidyl peptidase IV and of analogous enzymes, alone or in combination with inhibitors of alanyl aminopeptidases and of analogous enzymes, by an administration of at least one compound of the general formulae D1 to D14 or of at least one of the above pharmaceutical or cosmetic compositions in an amount required for an inhibition of the enzymatic activity.


Moreover, the invention relates to a process for topically influencing the activity of dipeptidyl peptidase IV and of analogous enzymes, alone or in combination with inhibitors of alanyl aminopeptidases and of analogous enzymes, by an administration of at least one compound of the general formulae D1 to D14 or of at least one of the above pharmaceutical or cosmetic compositions in an amount required for influencing the enzymatic activity.


Moreover, the invention relates to a process for a prophylaxis and/or therapy of one of the diseases or conditions claimed in the claims 63 to 76 by inhibiting the activity of dipeptidyl peptidase IV and of analogous enzymes, alone or in combination with inhibitors of alanyl aminopeptidases or of analogous enzymes, by an administration of at least one compound of the general formulae D1 to D14 or of at least one of the above pharmaceutical or cosmetic compositions in an amount required for a prophylactic or therapeutic treatment.


The term “analogous enzymes” as used in the present specification and in the claims relates to enzymes having an enzymatic activity analogous to the one shown by the dipeptidyl peptidase IV. This is applicable, for example, for DP8, DP9, for FAP/seprase or for attractin (DP IV). The above term is also explained, in this sense, in the above-referenced textbook “A. J. Barrett et al.; Handbook of Proteolytic Enzymes, Academic Press, 1998”.


In the general formulae D1 to D14, as can be seen from claims 1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25 and 27 in a general form, the residues Rn, i.e. the residues R1, R2, R3, R4, R5, R6, R7, R8, R9 and R10, independent of each other represent a residue selected from the group consisting of hydrogen, unsubstituted or substituted, straight chain or branched C1- to C12 alkyl, C2- to C12 alkenyl and C2- to C12 alkynyl, hydroxy, thiol, C1- to C12 alkoxy, C1- to C12 alkylthio, unsubstituted or substituted, uncondensed or condensed, aryl and cycloalkyl optionally containing one or several hetero atoms from the group of N, O, P and S, unsubstituted or substituted amino, unsubstituted or substituted carbonyl, unsubstituted or substituted thiocarbonyl and unsubstituted or substituted imino.


In detail, the residues Rn, in embodiments of the invention where they represent unsubstituted straight chain or branched alkyl groups having 1 to 12 carbon atoms, represent in preferred embodiments methyl, ethyl, n-propyl, i-propyl, n-butyl, i-butyl, sec-butyl, tert-butyl, n-pentyl, i-pentyl, sec-pentyl, tert-pentyl, n-hexyl, i-hexyl, 3-methylpentyl, 2-ethylbutyl, 2,2-dimethylbutyl as well as all straight chain and branched isomers for the residues heptyl, octyl, nonyl, decyl, undecyl and dodecyl.


In accordance with the invention, particularly preferred from the above-mentioned group are alkyl groups having 1 to 6 carbon atoms; among those, the residues methyl, ethyl, n-propyl, i-propyl, n-butyl, i-butyl, sec-butyl and tert-butyl are even more preferred.


In other embodiments according to the invention, the residues Rn, in cases where they represent unsubstituted straight chain or branched alkenyl groups having 2 to 12 carbon atoms, represent in preferred embodiments vinyl, allyl, 1-butenyl, 2-butenyl and all straight chain and branched residues for the radicals pentenyl, hexenyl, heptenyl, octenyl, nonenyl, decenyl, undecenyl and dodecenyl, also with respect to the position of the C═C double bond. In further embodiments of the invention, the residues Rn may also represent straight chain or branched alkenyl groups having several double bonds. Preferred residues of this group are the butadienyl group and the isoprenyl group. Among the above-mentioned groups, particularly preferred in accordance with the invention are the alkenyl groups having 2 to 6 carbon atoms; of those, the vinyl, allyl, 1-butenyl and 2-butenyl groups are even more preferred.


In other embodiments according to the invention, the residues Rn, in cases where they represent unsubstituted straight chain or branched alkynyl groups having 2 to 12 carbon atoms, represent in preferred embodiments ethynyl, propynyl, 1-butynyl, 2-butynyl and all straight chain and branched residues for the radicals pentynyl, hexynyl, heptynyl, octynyl, nonynyl, decynyl, undecynyl and dodecynyl, also with respect to the position of the C≡C triple bond. Among the above-mentioned groups, particularly preferred in accordance with the invention are the alkynyl groups having 2 to 6 carbon atoms; of those, the groups ethynyl, propynyl, 1-butynyl and 2-butynyl are even more preferred.


In accordance with the invention, straight chain and branched alkyl, alkenyl and alkynyl residues may be substituted in a further embodiment of the invention. The substituent(s) may be positioned at any desired position of the backbone made of carbon atoms and may be selected from the group consisting of halogen atoms as fluorine, chlorine, bromine and iodine, alkyl groups having 1 to 6 carbon atoms, alkoxy groups having 1 to 6 carbon atoms in the alkyl residue and amino groups which may be unsubstituted or substituted with one or two alkyl residues independently of each other and having 1 to 6 carbon atoms.


In further embodiments of the invention, the residues Rn in the general formulae D1 to D14 represent C1- to C12 alkoxy residues or C1- to C12 alkylthio residues. Also for the C1- to C12 alkyl residues of these alkoxy and alkylthio groups, the above definitions of the straight chain and branched alkyl residues are applicable. Particularly preferred are straight chain C1- to C6 alkoxy groups and straight chain C1- to C6 alkylthio groups, and particularly preferred are the residues methoxy, ethoxy, n-propoxy, methylthio, ethylthio and n-propylthio.


In further embodiments of the invention, the residues Rn in the general formulae D1 to D14 may also represent unsubstituted or substituted cycloalkyl residues. In accordance with the invention, the cycloalkyl residues may preferably contain three to eight atoms in the ring and may consist exclusively of carbon atoms or may contain one or several hetero atom(s). Among the purely carbocyclic rings, the residues cyclopentyl, cyclopentenyl, cyclopentadienyl, cyclohexyl, cyclohexenyl, cyclohexadienyl, cycloheptyl, cycloheptenyl, cycloheptadienyl and cycloheptatrienyl are particularly preferred. Examples for hetero atom-containing cycloalkyl residues are, in further embodiments of the invention, the residues tetrahydrofuranyl, pyrrolidinyl, imidazolinidyl, piperidinyl, piperazinyl and morpholinyl. Substituents to these carbocyclic and heterocyclic cycloalkyl residues may be selected from the above group of substituents of linear alkyl groups.


In further embodiments of the invention, the residues Rn in the compounds of the general formulae D1 to D14 may represent uncondensed or condensed aryl residues optionally containing one or several hetero atoms from the group of N, O, P and S. The aryl residues may have one ring or may have several rings and, if having several rings, two rings are preferred. Moreover, one ring may preferably have five, six or seven ring members. In systems consisting of several rings condensed to each other, benzo-condensed rings are particularly preferred, i. e. ring systems wherein at least one of the rings is an aromatic six-membered ring. Particularly preferred are aryl residues purely consisting of carbon atoms, selected from phenyl, cyclopentadienyl, cycloheptatrienyl and naphthyl. Particularly preferred aryl residues containing hetero atoms are, for example, selected from the group consisting of indolyl, cumaronyl, thionaphthenyl, quinolinyl (benzopyridyl), quinazolinyl (benzopyrimidinyl) and quinoxylinyl (benzopyrazinyl).


In another embodiment of the invention, cyclic residues either consisting of one ring or consisting of several rings, either containing carbon atoms exclusively or also containing hetero atoms, either aromatic systems or non-aromatic systems, may be substituted. The substituents may be bound to any position of the ring system, either to a carbon atom or to a hetero atom. They may be selected from the group consisting of halogen atoms as, for example, fluorine, chlorine, bromine and iodine, alkyl groups having 1 to 6 carbon atoms, alkoxy groups having 1 to 6 carbon atoms in the alkyl group, and unsubstituted amino groups or amino groups substituted with one or two alkyl groups having—independent of each other—1 to 6 alkyl groups.


Moreover, in accordance with the invention, the residues Rn (=R1 to R10) may also represent unsubstituted amino residues (—NH2) or unsubstituted imino residues (—NH—) or substituted amino residues (—NHR1 or —NR1Rm) or substituted imino residues (—NRm-). Herein, the residues R1 and Rm may have the meanings defined above in detail for the residues Rn, and they may be identical or different.


In accordance with the invention, the residues Rn (=R1 to R10) may also represent unsubstituted carbonyl residues (H—(C═O)—) or unsubstituted thiocarbonyl residues (H—(C═S)—) or for substituted carbonyl residues (Rm—(C═O)—) or substituted thiocarbonyl residues (Rm—(C═S)—). In these residues, the substituents Rm of substituted carbonyl residues or substituted thiocarbonyl residues have the meanings defined above for the possible substituents of the residues Rn.


In accordance with the invention, the above-mentioned residues Rn (=R1, R2, R3, R4, R5, R6, R7, R8, R9 and/or R10) may be bound to the respective basic structures of the general formulae D1 to D14 via one of their carbon atoms. In an alternative embodiment, it is also possible that the residues Rn are bound to the respective basic structures of the general formulae D1 to D14 via the hetero atom or via one of their hetero atoms.


In several of the general formulae D1 to D14 (for example in the general formulae D1(b), D2, D7(a) to (c), D8, D9(a) to (c), D12, D13 and D14), Y, Y1 and Y2 represent residues bound to the basic structure of the respective formula via a C═Y double bond (or a C═Y1 double bond and/or a C═Y2 double bond). In the formulae where they appear, the groups Y represent—independent of each other—one of the residues O, S or NRn, for example NR3, NR4 or NR5, bound to a carbon atom via a double bond. In the latter residues, the radicals Rn (for example R3, R4, R5) may have the meanings mentioned above, including the meaning “hydrogen”. Particularly preferably, Y represents O bound to a carbon atom via a double bond.


In several of the general formulae D1 to D14 (for example in the formulae D3, D5, D6), X, X1, X2 and Z represent residues bound to two different carbon atoms via a C—X single bond each (or via a C—X1 single bond or via a C—X2 single bond) or via a C—Z single bond each. In the general formulae where they appear, the residues X and Z represent—independent of each other—the residues >NH, >NRn (for example >NR5 or >NR10), —O—, —S— —CH2—, —CHRn— or —CRn2—, bound to two different carbon atoms by a single bond each, wherein the residues Rn have the meaning given above, or they represent the residues >N—, >CH— or >CRn- (for example >CR8- or >CR9-) bound to three different carbon atoms via a single bond each, wherein Rn (for example R8, R9) have the meanings given above.


In the compounds of the general formula D4, R11 and R12 represent heterocyclic systems having three to eight ring members which are bound to each other directly via hetero atoms, via carbon atoms or via hetero atoms and carbon atoms. The partial rings designated as R1 and R2 may be substituted or unsubstituted, condensed or non-condensed and may contain zero to three double bonds and may contain further hetero atoms and hetero atom-containing groups.


In the compounds of the general formula D9, Z represents P or S.


In the compounds having the general formulae D8, D12, D13, X and Z independent of each other represent residues from the group consisting of hydroxy, thiol, C1- to C12 alkoxy, C1- to C12 alkylthio, unsubstituted or substituted, uncondensed or condensed aryl or cycloalkyl optionally containing one or several hetero atoms from the group of N, O, P and S, and amino (NH2, NHR1, NR1R2), wherein all above-mentioned meanings of X and Z correspond to the meanings for alkoxy, alkylthio, aryl, cycloalkyl and amino which were defined above in detail for the residues Rn of the general formulae D1 to D14.


The compounds of the general formulae D1 to D14 (in general) as defined in claims 1, 3, 5, 7, 9, 11, 13, 15, 17, 19, 21, 23, 25 and 27 and the compounds D1.001 to D14.007 in Tables 1 to 14 in the claims 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26 and 28 (specifically) may be prepared in accordance with processes known from the literature or are commercially available.


The compounds corresponding to the general formulae D1 to D14 (in general) and the specific compounds D1.001 to D14.007 indicated in Tables 1 to 14 (in preferred embodiments of the invention) are claimed for a use in the medical field. The term “for a use in the medical field” is understood here, and in the claims as well, in its broadest sense and relates to all conceivable fields of application, where the compounds of the general formulae D1 to D14 defined by the present invention, and the compounds D1.001 to D14.007 as mentioned in Tables 1 to 14, in preferred embodiments, may exert an effect in connection to medically relevant conditions of the body of a mammal, in particular of the body of a human.


In connection to such medically relevant conditions, the compounds of the general formulae D1 to D14 (in general) and the preferred compounds D1.001 to D14.007 according to Tables 1 to 14 are used either in the form of a single compound or are used in the form of more than one compound, or several compounds, of the general formulae D1 to D14 (in particular of the compounds D1.001 to D14.007 according to Tables 1 to 14). Also covered by the scope of the present invention is a use of one or more than one compound of the general formulae D1 to D14, preferably of one or more than one compound selected from the group consisting of the compounds D1.001 to D14.007 according to Tables 1 to 14, in combination with other effective agents, for example one or more than one compound having an effect in the inhibition of dipeptidyl peptidase IV or of analogous enzymes (i. e. of enzymes having an equal substrate specificity) and/or having an effect in the inhibition of alanyl aminopeptidases (APN) or of analogous enzymes (i. e. of enzymes having an equal substrate specificity). Examples of such compounds having an effect as enzyme inhibitor(s) are mentioned in parallel patent applications filed by the Applicants of the present application on the same filing date as the present application as well as in the Applicants' patent applications referred to in the introduction to the present description, the whole disclosed content of which applications is incorporated into the present specification by this reference.


Specific examples of inhibitors effective as inhibitors of dipeptidyl peptidase IV or of analogous enzymes, which are known from the prior art and may optionally be used together with the compounds of the present invention particularly with one or several of the compounds D1.001 to D14.007 according to Tables 1 to 14, include, for example: Xaa-Pro dipeptides, corresponding derivatives, preferably dipeptide phosphonic acid diaryl esters, dipeptide boronic acids (e. g. Pro-bobo-Pro) and their salts, Xaa-Xaa-(Trp)-Pro-(Xaa)n peptides (n=0 to 10), corresponding derivatives and their salts, and amino acid (Xaa) amides, corresponding derivatives and their salts, wherein Xaa is an α-amino acid/imino acid or an α-amino acid derivative/imino acid derivative, preferably Nε-4-nitrobenzyl-oxycarbonyl-L-lysine, L-proline, L-tryptophane, L-isoleucine, L-valine, and cyclic amines as, for example pyrrolidine, piperidine, thiazolidine and their derivatives act as the amide structure. Such compounds and their preparation were described in an earlier patent (K. Neubert et al.; DD 29 60 75 A5). Furthermore, tryptophane-1,2,3,4-tetrahydroisoquinoline-3-carboxylic acid derivatives (TSL) and (2S,2S′,2S″)-2-[2′-[2″-amino-3″-(indol-3′″-yl)-1″-oxoprolyl]-1′,2′,3′,4′-tetrahydro-6′8′-dihydroxy-7-methoxyisoquinol-3-yl-carbonyl-amino]-4-hydrome-thyl-5-hydropentanoic acid (TMC-2A) may advantageously be used as the effectors for the DP IV together with the compounds of the general formulae D1 to D14. One example of an inhibitor of DP IV preferably useable together with the compounds of the general formulae D1 to D14 is Lys[Z(NO2)] thiazolidide, wherein Lys represents an L-lysine residue and Z(NO2) represents 4-nitrobenzyl-oxycarbonyl (see also DD 29 60 75 A5).


Specific examples of inhibitors effective as inhibitors of alalyl aminopeptidase, which are known from the prior art and may optionally be used together with the compounds of the present invention particularly with one or several of the compounds D1.001 to D14.007 according to Tables 1 to 14, include, for example: actinonine, leuhistine, phebestine, amastatine, bestatine, probestine, β-amino thiols, α-amino phosphinic acids, α-amino phosphinic acid derivatives, preferably D-Phe-ψ-[PO(OH)—CH2]-Phe-Phe. Known alanyl aminopeptidase inhibitors particularly preferred and useable together with the compounds of the present invention are bestatine (Ubenimex), actinonine, probestine, phebestine, RB3014 or leuhistine.


Another embodiment of the present invention relates to pharmaceutical compositions, which comprise at least one, optionally two or even more, compound(s) of the general formulae D1 to D14, particularly preferably selected from the compounds D1.001 to D14.007 according to Tables 1 to 14. Such pharmaceutical compositions comprise one or several of said compounds in such amounts required for exerting a pharmaceutical effect. Such amounts may in detail be determined by a skilled person by a few routine tests and without adding an inventive activity. In general, these amounts are in ranges of from 0.01 to 1000 mg of each of the compounds of the general formulae D1 to D14, particularly preferred of the compounds D1.001 to D14.007 according to Tables 1 to 14, per administration unit, even more preferred in ranges of from 0.1 to 100 mg of each of said compounds per administration unit. Moreover, amounts adjusted to the respective single mammalian organism or human organism may easily be determined by a skilled person, and it may also be provided that a sufficient concentration of the compound(s) to be used may be achieved by an administration of divided or of several administration units.


Another embodiment of the present invention relates to cosmetic compositions, which comprise at least one, optionally two or even more, compound(s) of the general formulae D1 to D14, particularly preferably selected from the compounds D1.001 to D14.007 according to Tables 1 to 14. Such cosmetic compositions comprise one or several of said compounds in such amounts required for exerting a desired effect, for example a cosmetic effect. Such amounts may in detail be determined by a skilled person by a few routine tests and without adding an inventive activity. In general, these amounts are in ranges of from 0.01 to 1000 mg of each of the compounds of the general formulae D1 to D14, particularly preferred of the compounds D1.001 to D14.007 according to Tables 1 to 14, per administration unit, even more preferred in ranges of from 0.1 to 100 mg of each of said compounds per administration unit. Moreover, amounts adjusted to the respective single mammalian organism or human organism may easily be determined by a skilled person, and it may also be provided that a sufficient concentration of the compound(s) to be used may be achieved by an administration of divided or of several administration units.


The one compound or the several compounds according to the present invention or pharmaceutical or cosmetic compositions containing it/them is/are administered simultaneously with known carrier substances and/or auxiliary substances (adjuvants). Such carrier and auxiliary substances are known to a skilled person as such and also with respect to their function and way of application and need no detailed explanation here.


The invention also comprises pharmaceutical compositions which comprise: one or several of the inhibitors of the DP IV or of the inhibitors of enzymes having a DP IV-analogous enzymatic activity and/or of the inhibitors of the APN or of the inhibitors of enzymes having an APN-analogous enzymatic activity in accordance with the prior art, together with one or with several compound(s) of the general formulae D1 to D14, particularly preferably together with one or several compound(s) which are selected from the compounds D1.001 to D14.007 of the Tables 1 to 14, in a spaced apart formulation in combination with known carrier substances, auxiliary substances and/or additives for a simulta-neous or, with respect to the time, immediately successive administration with the aim of a joint effect.


The administration of the compounds of the general formulae D1 to D14 in general and, preferably, of the compounds D1.001 to D14.007 according to Tables 1 to 14 or the administration of pharmaceutical or cosmetic compositions comprising one or several of the above compounds together with usual carrier substances, auxiliary substances and/or additives, is effected, on the one hand, as a topical application in the form of, for example, creams, ointments, pastes, gels, solutions, sprays, liposomes and nanosomes, lotion, “pegylated” formul-ations, degradable (i. e. decomposable under physiological conditions) depot matrices, hydrocolloid dressings, plasters, micro-sponges, prepolymers and similar novel carrier substrates, jet injections and other dermatological bases/vehicles including instillative application, and on the other hand, as a systemic application for an oral, transdermal, intravenous, subcutaneous, intracutaneous, intramuscular or intrathecal application in suitable recipes or in suitable galenic forms.


In accordance with the invention, the compounds of the general formulae D1 to D14 in general, and preferably the compounds D1.001 to D14.007 according to Tables 1 to 14, alone or in combination, or pharmaceutical or cosmetic compositions comprising one or several of said compounds are used for an inhibition of the activity of the dipeptidyl peptidase IV or of analogous enzymes, alone or in combination with other inhibitors of the alanyl aminopeptidases or of analogous enzymes.


In another embodiment, the compounds of the general formulae D1 to D14 in general, and preferably the compounds D1.001 to D14.007 according to Tables 1 to 14, alone or in combination, or pharmaceutical or cosmetic compositions comprising one or several of said compounds are used for topically influencing the activity of the dipeptidyl peptidase IV or of analogous enzymes, alone or in combination with other inhibitors of the alanyl aminopeptidases or of analogous enzymes.


In preferred embodiments of the invention, the compounds of the general formulae D1 to D14 in general, and preferably the compounds D1.001 to D14.007 according to Tables 1 to 14, alone or in combination, or pharmaceutical or cosmetic compositions comprising one or several of said compounds are used for a prophylaxis and a therapy of diseases as, for example: multiple sclerosis, Morbus Crohn, Colitis ulcerosa and of other autoimmune diseases as well as of inflammatory diseases, of Asthma bronchiale and of other allergic diseases, of skin and mucosa diseases, for example psoriasis, acne, and of dermatologic diseases being accompanied by a hyperproliferation and by changed differentiation states of fibroblasts, of benign fibrosing and sclerosing skin diseases and of malign fibroblastar hyperproliferation states, of acute neuronal diseases as, for example, ischemia-caused cerebral damage after an ischemic or hemorrhagic stroke, craniocerebral trauma, heart arrest, myocardial infarct or as a consequence of heart surgery, of chronic neuronal diseases, for example Morbus Alzheimer, Pick's disease, of the progressive supranuclear palsy, of a corticobasal degeneration, of a frontotemporal dementia, of Morbus Parkinson, particularly of Morbus Parkinson coupled to the chromosome 17, of Morbus Huntington, of disease states caused by prions, and od amyotrophic lateral sclerosis, of artherosclerosis, of arterial inflammations, of a stent restenosis, of chronic obstructive pulmonal diseases (Chronisch Obstruktive Lungenerkrankungen; COPD), of tumors, of metastases, of prostata tumors, of the Heavy Acute Respiratory Syndrome (SARS) and of sepsis and sepsis-like conditions.


In a further preferred embodiment of the invention, the compounds of the general formulae D1 to D14 in general, and preferably the compounds D1.001 to D14.007 according to Tables 1 to 14, alone or in combination, or pharmaceutical or cosmetic compositions comprising one or several of said compounds are used for a prophylaxis and a therapy of a rejection of transplanted tissues and cells. As an example of such an application, there may be mentioned the use of one or of several of the above-mentioned compounds or of a pharmaceutical composition containing one or several of the said compounds in connection with allogenic kidney transplants or stem cell trans-plants.


In a further preferred embodiment of the invention, the compounds of the general formulae D1 to D14 in general, and preferably the compounds D1.001 to D14.007 according to Tables 1 to 14, alone or in combination, or pharmaceutical or cosmetic compositions comprising one or several of said compounds are used for a prophylaxis and a therapy of rejection and inflammation reactions at, or by, medical devices implanted into an organism (“medical devices”). These may comprise, for example, stents, articulation implants (knee joint implants, hip joint implants), bone implants, heart pacemakers, or other implants. In a further preferred embodiment of the invention, the compounds of the general formulae D1 to D14 in general, and preferably the compounds D1.001 to D14.007 according to Tables 1 to 14, alone or in combination, or pharmaceutical or cosmetic compositions comprising one or several of said compounds are used in such a way that the compound(s) or composition(s) is/are applied onto the article or articles in the form of a coating or layer, or at least one of the compounds or compositions is admixed, as a substance, to the material of the article or articles. Also in this case, it is possible—of course—that at least one of the compounds or compositions is administered locally or systemically, optionally successively or parallel in time.


In a similar way as described above, and for similar purposes or for the prophylaxis and therapy of the above diseases and conditions mentioned as examples, however without any restriction, the compounds of the general formulae D1 to D14 in general, and preferably the compounds D1.001 to D14.007 according to Tables 1 to 14, alone or in combination, or the above- mentioned pharmaceutical or cosmetic compositions comprising one or several of said above-mentioned compounds may be used for the preparation of a medicament for a prophylaxis and a therapy of the above-mentioned diseases or conditions. These medicaments may comprise said compounds in the amounts specified above, optionally together with known carrier substances, auxiliary substances and/or additives. Finally, the invention also relates to a process for inhibiting the activity of dipeptidyl peptidase IV and of analogous enzymes, alone or in combination with inhibitors of the alanyl aminopeptidases or of analogous enzymes by an administration of at least one compound or pharmaceutical or cosmetic composition according to the above detailed description in an amount required for an inhibition of the enzyme activity. The amounts of one of the compounds of the general formulae D1 to D14 in general and of the compounds D1.001 to D14.013 according to Tables 1 to 14 are—as indicated above—in the range of from 0.01 to 1000 mg of one compound per administration unit, preferably in the range of from 0.1 to 100 mg of one compound per administration unit.


The invention also relates to a process for topically influencing the activity of dipeptidyl peptidase IV and of analogous enzymes, alone or in combination with inhibitors of the alanyl aminopeptidases or of analogous enzymes by an administration of at least one compound or pharmaceutical or cosmetic composition according to the above detailed description in an amount required for topically influencing the enzyme activity. Also in these cases, the amounts of said compound(s) are in the above-indicated range.


Furthermore, the invention also relates to a process for the prophylaxis and therapy of a plurality of diseases, for example diseases accompanied by an excessive immune response (autoimmune diseases, allergies, transplant rejections), of other chronically inflammatory diseases, of neuronal diseases and cerebral damage, of skin diseases (inter alia acne and psoriasis), of tumor diseases and of specific virus diseases (inter alia SARS), and particularly of the diseases mentioned above in detail, by an administration of at least one compound or of a pharmaceutical or cosmetic composition in accordance with the above detailed description in an amount required for the prophylaxis and therapy of the respective disease. Also in these cases, the amounts of the above compound(s) are in the above-mentioned range of from 0.01 to 1000 mg of one compound per administration unit, preferably in the range of from 0.1 to 100 mg of one compound per administration unit.


In the following, the invention is in more detail explained by specific preferred exemplary embodiments. Those exemplary embodiments, however, do not serve a limitation of the invention, but only an exemplifying explanation.







EXAMPLES
Example 1
Inhibition Characteristics of the Novel Inhibitors of the Dipeptidyl Peptidase IV

In the following Tables (Tables 1 to 14), novel inhibitors are summarized, for which the inventors could show that these substances are capable of inhibiting dipeptidyl peptidase IV and enzymes having an analog effect in their enzymatic activity. The inhibition characteristics measured are referred to as IC-50 values or ID50 values (the latter marked with “*”) for said enzyme. The enzymatic activity was determined by means of the fluorogenic substrate (Ala-Pro)2-rhodamine 110.

TABLE 1CompoundID.StructureIC50DPIV [μM]D1.001embedded image1.2*D1.002embedded image1.4*D1.003embedded image34.14D1.004embedded image36.51











TABLE 2








Compound




ID.
Structure
IC50DPIV [μM]






















D2.001


embedded image


14.0





D2.003


embedded image


32.8





D2.004


embedded image


33.4





D2.005


embedded image


54.5





D2.006


embedded image


132.7*





D2.007


embedded image


148.4*





D2.008


embedded image


275.4*


















TABLE 3








Compound




ID.
Structure
IC50DPIV [μM]






















D3.001


embedded image


0.4*





D3.002


embedded image


0.8*





D3.003


embedded image


15.6





D3.004


embedded image


7.5





D3.005


embedded image


6.0





D3.006


embedded image


7.2*





D3.007


embedded image


7.4





D3.008


embedded image


34.1





D3.009


embedded image


14.1





D3.010


embedded image


8.1





D3.011


embedded image


10.1





D3.012


embedded image


10.1





D3.013


embedded image


10.8





D3.014


embedded image


12.1





D3.015


embedded image


12.2





D3.016


embedded image


12.4





D3.017


embedded image


14.0





D3.018


embedded image


14.4





D3.019


embedded image


14.5





D3.020


embedded image


15.2





D3.021


embedded image


15.2





D3.022


embedded image


16.2





D3.023


embedded image


18.2





D3.024


embedded image


18.9





D3.025


embedded image


23.8





D3.026


embedded image


20.2





D3.027


embedded image


15.2





D3.029


embedded image


22.9





D3.030


embedded image


30.0





D3.031


embedded image


25.4





D3.032


embedded image


27.2





D3.033


embedded image


27.5





D3.034


embedded image


14.1





D3.035


embedded image


52.3





D3.037


embedded image


30.8





D3.038


embedded image


30.9





D3.039


embedded image


31.4





D3.040


embedded image


18.9





D3.042


embedded image


33.0





D3.043


embedded image


33.4





D3.044


embedded image


33.5





D3.045


embedded image


4.2*





D3.046


embedded image


34.2





D3.047


embedded image


37.4





D3.048


embedded image


38.2





D3.049


embedded image


39.5





D3.050


embedded image


39.8





D3.051


embedded image


40.2





D3.052


embedded image


40.5





D3.054


embedded image


41.2





D3.055


embedded image


42.4





D3.056


embedded image


42.7





D3.057


embedded image


43.1





D3.058


embedded image


44.0





D3.059


embedded image


45.6





D3.060


embedded image


45.9





D3.061


embedded image


46.0





D3.062


embedded image


46.4





D3.063


embedded image


46.7





D3.064


embedded image


48.3





D3.066


embedded image


52.3





D3.067


embedded image


52.4





D3.069


embedded image


54.1





D3.070


embedded image


27.5





D3.072


embedded image


54.5





D3.073


embedded image


55.4





D3.074


embedded image


55.4





D3.077


embedded image


59.1





D3.078


embedded image


59.2





D3.079


embedded image


59.4





D3.080


embedded image


59.8





D3.081


embedded image


60.0





D3.082


embedded image


62.1





D3.083


embedded image


62.4





D3.084


embedded image


63.5*





D3.086


embedded image


69.8*





D3.087


embedded image


74.7*





D3.088


embedded image


80.6





D3.089


embedded image


83.3*





D3.091


embedded image


27.8





D3.092


embedded image


100.6





D3.093


embedded image


111.8*





D3.094


embedded image


115.7





D3.095


embedded image


42.4





D3.096


embedded image


138.3





D3.097


embedded image


165.3*





D3.098


embedded image


165.9*





D3.099


embedded image


168.9*





D3.100


embedded image


56.3





D3.101


embedded image


208.3*





D3.102


embedded image


208.9*





D3.103


embedded image


224.1*





D3.104


embedded image


28.8





D3.105


embedded image


251.7*





D3.106


embedded image


255.3*





D3.107


embedded image


267.9*





D3.108


embedded image


269.0*





D3.109


embedded image


271.8*





D3.110


embedded image


279.4*





D3.111


embedded image


283.9*





D3.112


embedded image


343.7*





D3.113


embedded image


316.8*





D3.114


embedded image


332.3*





D3.116


embedded image


362.6*





D3.117


embedded image


401.9*





D3.118


embedded image


416.9*





D3.119


embedded image


527.4*





D3.120


embedded image


655.7*


















TABLE 4








Compound




ID.
Structure
IC50DPIV [μM]






















D4.001


embedded image


0.4*





D4.002


embedded image


0.8*





D4.003


embedded image


1.2*





D4.004


embedded image


3.1*





D4.005


embedded image


3.8*





D4.006


embedded image


4.2*





D4.007


embedded image


6.9





D4.008


embedded image


7.2*





D4.009


embedded image


7.4





D4.010


embedded image


7.5





D4.011


embedded image


8.5





D4.012


embedded image


9.9





D4.013


embedded image


10.1





D4.014


embedded image


10.1





D4.015


embedded image


12.2





D4.016


embedded image


12.3





D4.017


embedded image


13.5





D4.018


embedded image


14.4





D4.019


embedded image


15.2





D4.020


embedded image


15.2





D4.021


embedded image


15.4





D4.022


embedded image


16.4





D4.023


embedded image


18.2





D4.024


embedded image


19.2





D4.025


embedded image


20.0





D4.026


embedded image


20.3





D4.027


embedded image


20.4





D4.028


embedded image


20.6





D4.030


embedded image


21.0





D4.031


embedded image


22.9





D4.032


embedded image


23.6





D4.034


embedded image


24.3





D4.035


embedded image


24.5





D4.036


embedded image


25.4





D4.037


embedded image


27.7





D4.038


embedded image


27.8





D4.039


embedded image


28.8





D4.040


embedded image


29.8





D4.041


embedded image


30.7





D4.042


embedded image


30.8





D4.044


embedded image


34.1





D4.045


embedded image


34.2





D4.046


embedded image


34.8





D4.047


embedded image


35.3





D4.048


embedded image


36.8





D4.049


embedded image


37.4





D4.050


embedded image


39.8





D4.051


embedded image


41.2





D4.052


embedded image


42.4





D4.053


embedded image


43.1





D4.054


embedded image


44.6





D4.055


embedded image


45.6





D4.056


embedded image


46.4





D4.057


embedded image


48.2





D4.058


embedded image


48.3





D4.059


embedded image


49.0





D4.060


embedded image


49.4





D4.061


embedded image


52.5





D4.062


embedded image


52.6





D4.063


embedded image


54.1





D4.064


embedded image


54.9





D4.065


embedded image


55.0





D4.066


embedded image


55.3





D4.067


embedded image


55.4





D4.068


embedded image


56.2





D4.069


embedded image


56.7





D4.070


embedded image


57.0





D4.071


embedded image


60.7





D4.072


embedded image


65.0





D4.073


embedded image


65.6





D4.074


embedded image


65.9





D4.075


embedded image


66.6





D4.076


embedded image


69.8*





D4.077


embedded image


70.1





D4.078


embedded image


70.4





D4.079


embedded image


71.3*





D4.080


embedded image


73.8





D4.081


embedded image


76.3





D4.082


embedded image


80.6





D4.083


embedded image


82.2





D4.084


embedded image


84.9





D4.085


embedded image


92.5





D4.086


embedded image


94.5





D4.087


embedded image


95.8





D4.088


embedded image


96.2*





D4.089


embedded image


98.4*





D4.090


embedded image


110.0





D4.091


embedded image


111.8*





D4.092


embedded image


115.7





D4.093


embedded image


138.3





D4.095


embedded image


162.8*





D4.096


embedded image


171.7*





D4.098


embedded image


198.3*





D4.099


embedded image


208.9*





D4.100


embedded image


216.4*





D4.101


embedded image


231.4*





D4.102


embedded image


232.7*





D4.103


embedded image


243.2*





D4.104


embedded image


255.3*





D4.105


embedded image


255.3*





D4.106


embedded image


267.9*





D4.107


embedded image


271.4*





D4.110


embedded image


332.3*





D4.111


embedded image


343.7*





D4.112


embedded image


361.0*





D4.113


embedded image


362.6*





D4.114


embedded image


394.3*





D4.115


embedded image


401.9*





D4.116


embedded image


417.9*





D4.117


embedded image


527.4*





D4.118


embedded image


456.1*


















TABLE 5








Compound ID.
Structure
IC50DPIV [μM]






















D5.001


embedded image


0.4*





D5.002


embedded image


0.8*





D5.003


embedded image


3.1*





D5.004


embedded image


3.8*





D5.005


embedded image


6.0





D5.006


embedded image


8.5





D5.007


embedded image


12.1





D5.008


embedded image


10.1





D5.009


embedded image


10.7*





D5.010


embedded image


12.2





D5.011


embedded image


13.5





D5.013


embedded image


15.4





D5.014


embedded image


20.0





D5.015


embedded image


21.0





D5.016


embedded image


22.9





D5.017


embedded image


23.6





D5.018


embedded image


24.5





D5.019


embedded image


28.8





D5.020


embedded image


19.2





D5.021


embedded image


29.2





D5.022


embedded image


30.7





D5.023


embedded image


30.8





D5.024


embedded image


31.4





D5.025


embedded image


33.4





D5.026


embedded image


34.1





D5.027


embedded image


35.3





D5.028


embedded image


36.8





D5.029


embedded image


37.4





D5.030


embedded image


41.2





D5.031


embedded image


45.6





D5.032


embedded image


46.4





D5.033


embedded image


46.5





D5.034


embedded image


48.3





D5.035


embedded image


52.6





D5.036


embedded image


54.0





D5.037


embedded image


54.8





D5.038


embedded image


55.0





D5.039


embedded image


59.4





D5.040


embedded image


57.0





D5.041


embedded image


61.9





D5.042


embedded image


66.6





D5.043


embedded image


69.8*





D5.044


embedded image


70.4





D5.045


embedded image


71.3*





D5.046


embedded image


94.5





D5.047


embedded image


96.6*





D5.048


embedded image


115.7





D5.050


embedded image


216.4*





D5.051


embedded image


232.7*





D5.052


embedded image


279.4*





D5.053


embedded image


361.1*


















TABLE 6








Compound

IC50DPIV


ID.
Structure
[μM]






















D6.001


embedded image


0.4*





D6.002


embedded image


0.8*





D6.003


embedded image


2.5*





D6.004


embedded image


6.5





D6.006


embedded image


7.5





D6.007


embedded image


7.5





D6.008


embedded image


7.5





D6.009


embedded image


8.1





D6.010


embedded image


9.2





D6.011


embedded image


9.9





D6.012


embedded image


10.1





D6.013


embedded image


10.1





D6.014


embedded image


12.3





D6.015


embedded image


13.6





D6.016


embedded image


14.0





D6.017


embedded image


14.4





D6.018


embedded image


15.2





D6.019


embedded image


15.2





D6.020


embedded image


15.6





D6.021


embedded image


16.1





D6.022


embedded image


16.2





D6.023


embedded image


16.4





D6.024


embedded image


16.7





D6.025


embedded image


17.5





D6.026


embedded image


17.9





D6.027


embedded image


18.5





D6.028


embedded image


19.2





D6.029


embedded image


19.7





D6.030


embedded image


20.0





D6.031


embedded image


20.2





D6.032


embedded image


20.3





D6.033


embedded image


20.4





D6.034


embedded image


20.6





D6.035


embedded image


20.8





D6.036


embedded image


20.9





D6.037


embedded image


18.9





D6.038


embedded image


23.6





D6.039


embedded image


24.1





D6.040


embedded image


24.3





D6.041


embedded image


25.4





D6.042


embedded image


27.5





D6.043


embedded image


27.8





D6.044


embedded image


28.8





D6.045


embedded image


29.8





D6.046


embedded image


30.8





D6.047


embedded image


30.9





D6.048


embedded image


31.3





D6.049


embedded image


32.4





D6.050


embedded image


32.8





D6.051


embedded image


33.0





D6.052


embedded image


332.3*





D6.053


embedded image


34.1





D6.054


embedded image


34.2





D6.055


embedded image


34.8





D6.056


embedded image


37.4





D6.057


embedded image


38.1





D6.058


embedded image


39.5





D6.059


embedded image


39.8





D6.060


embedded image


41.2





D6.061


embedded image


42.4





D6.062


embedded image


43.8





D6.063


embedded image


44.0





D6.064


embedded image


44.3





D6.065


embedded image


44.6





D6.066


embedded image


46.0





D6.067


embedded image


46.5





D6.068


embedded image


48.2





D6.069


embedded image


48.3





D6.070


embedded image


49.0





D6.071


embedded image


51.7





D6.072


embedded image


52.4





D6.073


embedded image


52.5





D6.074


embedded image


52.9





D6.075


embedded image


54.1





D6.076


embedded image


54.5





D6.077


embedded image


55.0





D6.078


embedded image


55.2





D6.079


embedded image


55.3





D6.080


embedded image


55.7





D6.081


embedded image


56.3





D6.082


embedded image


56.7





D6.083


embedded image


59.8





D6.084


embedded image


57.4





D6.085


embedded image


61.4





D6.086


embedded image


62.4





D6.087


embedded image


65.9





D6.088


embedded image


69.8*





D6.089


embedded image


73.8





D6.090


embedded image


74.7*





D6.091


embedded image


47.7





D6.092


embedded image


76.3





D6.094


embedded image


80.6





D6.095


embedded image


82.2





D6.096


embedded image


83.3*





D6.097


embedded image


84.9





D6.098


embedded image


87.9





D6.099


embedded image


92.2*





D6.100


embedded image


92.5





D6.101


embedded image


95.8





D6.102


embedded image


98.4*





D6.103


embedded image


100.6





D6.105


embedded image


110.0





D6.106


embedded image


111.8*





D6.107


embedded image


113.8*





D6.108


embedded image


115.0





D6.110


embedded image


115.7





D6.111


embedded image


138.3





D6.112


embedded image


148.4*





D6.113


embedded image


162.8*





D6.114


embedded image


168.9*





D6.115


embedded image


198.3*





D6.116


embedded image


208.9*





D6.117


embedded image


215.2*





D6.118


embedded image


224.1*





D6.119


embedded image


237.0*





D6.120


embedded image


243.2*





D6.121


embedded image


251.7*





D6.122


embedded image


251.7*





D6.123


embedded image


255.3*





D6.124


embedded image


269.0*





D6.125


embedded image


271.4*





D6.126


embedded image


283.7*





D6.127


embedded image


314.0*





D6.129


embedded image


339.7*





D6.130


embedded image


362.6*





D6.131


embedded image


394.3*





D6.132


embedded image


416.9*





D6.133


embedded image


417.9*





D6.134


embedded image


456.1*





D6.135


embedded image


498.0*


















TABLE 7








Com-




pound

IC50DPIV


ID.
Structure
[μM]












D7.001


embedded image


165.3*





D7.003


embedded image


267.9*


















TABLE 8








Com-




pound

IC50DPIV


ID.
Structure
[□M]






















D8.001


embedded image


0.4*





D8.002


embedded image


0.8*





D8.003


embedded image


7.5





D8.004


embedded image


7.5





D8.005


embedded image


12.2





D8.006


embedded image


15.2





D8.007


embedded image


16.2





D8.008


embedded image


17.9





D8.009


embedded image


18.2





D8.010


embedded image


19.2





D8.011


embedded image


18.9





D8.012


embedded image


23.8





D8.013


embedded image


27.8





D8.014


embedded image


30.8





D8.015


embedded image


32.4





D8.016


embedded image


33.4





D8.017


embedded image


33.3





D8.018


embedded image


38.2





D8.019


embedded image


40.2





D8.020


embedded image


41.2





D8.021


embedded image


43.1





D8.022


embedded image


44.0





D8.023


embedded image


44.3





D8.024


embedded image


46.0





D8.025


embedded image


46.3





D8.026


embedded image


48.3





D8.027


embedded image


55.2





D8.028


embedded image


69.8*





D8.029


embedded image


70.4





D8.030


embedded image


83.3*





D8.031


embedded image


118.9*





D8.032


embedded image


132.7*





D8.033


embedded image


168.9*





D8.034


embedded image


269.0*





D8.035


embedded image


283.6*





D8.037


embedded image


332.3*





D8.038


embedded image


609.2*


















TABLE 9








Com-




pound

IC50DPIV


ID.
Structure
[μM]






















D9.001


embedded image


2.9*





D9.002


embedded image


14.5





D9.003


embedded image


21.0





D9.004


embedded image


31.3





D9.005


embedded image


33.4





D9.006


embedded image


34.2





D9.007


embedded image


40.5





D9.008


embedded image


46.3





D9.010


embedded image


88.8





D9.011


embedded image


251.7*





D9.012


embedded image


416.9*





D9.013


embedded image


431.9*





D9.014


embedded image


456.1*





D9.015


embedded image


465.4*


















TABLE 10








Com-




pound

IC50DPIV


ID.
Structure
[μM]






















D10.001


embedded image


1.0*





D10.002


embedded image


2.0*





D10.003


embedded image


2.9*





D10.004


embedded image


6.5





D10.005


embedded image


6.6





D10.007


embedded image


7.2*





D10.008


embedded image


7.6





D10.009


embedded image


8.1





D10.010


embedded image


9.1





D10.011


embedded image


9.9





D10.012


embedded image


10.0





D10.013


embedded image


10.2





D10.014


embedded image


11.4





D10.015


embedded image


12.2





D10.016


embedded image


12.3





D10.017


embedded image


12.3





D10.018


embedded image


12.4





D10.019


embedded image


12.7





D10.020


embedded image


12.8





D10.021


embedded image


13.2





D10.022


embedded image


13.2





D10.023


embedded image


13.6





D10.025


embedded image


16.2





D10.026


embedded image


16.4





D10.027


embedded image


16.7





D10.028


embedded image


16.7





D10.029


embedded image


17.5





D10.030


embedded image


17.8





D10.031


embedded image


17.8





D10.032


embedded image


18.2





D10.033


embedded image


18.9





D10.034


embedded image


19.1





D10.035


embedded image


20.0





D10.036


embedded image


20.3





D10.037


embedded image


20.4





D10.038


embedded image


20.5





D10.039


embedded image


20.8





D10.040


embedded image


20.9





D10.041


embedded image


21.8





D10.042


embedded image


24.1





D10.043


embedded image


24.2





D10.044


embedded image


24.4





D10.045


embedded image


28.8





D10.046


embedded image


29.2





D10.047


embedded image


29.8





D10.049


embedded image


31.9





D10.050


embedded image


32.1





D10.051


embedded image


33.9





D10.052


embedded image


32.9





D10.053


embedded image


32.9





D10.054


embedded image


33.3





D10.055


embedded image


33.4





D10.056


embedded image


33.5





D10.057


embedded image


32.4





D10.058


embedded image


34.2





D10.060


embedded image


36.3





D10.061


embedded image


39.2





D10.062


embedded image


39.7





D10.063


embedded image


40.4





D10.065


embedded image


41.0





D10.066


embedded image


42.0





D10.067


embedded image


45.0





D10.068


embedded image


45.6





D10.069


embedded image


45.7





D10.070


embedded image


46.2





D10.071


embedded image


46.5





D10.072


embedded image


46.7





D10.073


embedded image


52.3





D10.074


embedded image


52.9





D10.075


embedded image


54.0





D10.076


embedded image


55.0





D10.077


embedded image


55.2





D10.078


embedded image


55.3





D10.079


embedded image


55.4





D10.081


embedded image


55.7





D10.082


embedded image


55.9





D10.083


embedded image


56.3





D10.084


embedded image


57.0





D10.085


embedded image


57.7





D10.086


embedded image


57.8





D10.087


embedded image


58.7





D10.088


embedded image


58.8





D10.089


embedded image


60.0





D10.090


embedded image


62.1





D10.091


embedded image


62.2





D10.092


embedded image


63.5*





D10.093


embedded image


63.5





D10.094


embedded image


65.5*





D10.095


embedded image


69.6





D10.097


embedded image


74.7*





D10.098


embedded image


81.4





D10.099


embedded image


84.9





D10.100


embedded image


91.0*





D10.101


embedded image


91.3





D10.102


embedded image


91.9*





D10.103


embedded image


93.3





D10.105


embedded image


99.4





D10.106


embedded image


101.4*





D10.107


embedded image


102.6*





D10.108


embedded image


110.0





D10.109


embedded image


113.1





D10.110


embedded image


113.8*





D10.111


embedded image


115.9*





D10.113


embedded image


126.8*





D10.116


embedded image


165.3*





D10.117


embedded image


165.9*





D10.118


embedded image


165.9*





D10.119


embedded image


177.0*





D10.120


embedded image


197.2*





D10.121


embedded image


203.8*





D10.122


embedded image


208.3*





D10.123


embedded image


217.7*





D10.124


embedded image


224.8*





D10.125


embedded image


232.7*





D10.126


embedded image


233.6*





D10.128


embedded image


241.4*





D10.129


embedded image


243.2*





D10.130


embedded image


255.3*





D10.131


embedded image


257.4*





D10.132


embedded image


271.4*





D10.133


embedded image


271.8*





D10.134


embedded image


275.1*





D10.135


embedded image


314.0*





D10.136


embedded image


339.7*





D10.137


embedded image


401.9*





D10.138


embedded image


417.9*





D10.139


embedded image


431.9*





D10.140


embedded image


457.7*





D10.141


embedded image


498.0*





D10.142


embedded image


609.2*





D10.143


embedded image


655.7*





D10.144


embedded image


775.2*


















TABLE 11








Compound ID.
Structure
IC50DPIV [μM]






















D11.001


embedded image


2.5*





D11.002


embedded image


9.2





D11.003


embedded image


14.0





D11.004


embedded image


14.1





D11.006


embedded image


15.2





D11.007


embedded image


18.9





D11.008


embedded image


30.0





D11.009


embedded image


32.8





D11.010


embedded image


43.8





D11.011


embedded image


44.3


















TABLE 12








Compound ID.
Structure
IC50DPIV [μM]






















D12.001


embedded image


6.5





D12.002


embedded image


16.2





D12.003


embedded image


16.4





D12.004


embedded image


18.5





D12.006


embedded image


20.4





D12.009


embedded image


24.1





D12.010


embedded image


24.2





D12.012


embedded image


30.8





D12.013


embedded image


33.4





D12.014


embedded image


33.9





D12.016


embedded image


38.2





D12.017


embedded image


34.2





D12.019


embedded image


39.2





D12.024


embedded image


46.2





D12.025


embedded image


46.5





D12.027


embedded image


49.0





D12.029


embedded image


59.4





D12.031


embedded image


54.5





D12.032


embedded image


60.0





D12.033


embedded image


60.7





D12.034


embedded image


65.3





D12.038


embedded image


47.7





D12.040


embedded image


83.3*





D12.042


embedded image


91.3





D12.043


embedded image


92.2*





D12.045


embedded image


113.8*





D12.047


embedded image


198.3*





D12.050


embedded image


655.7*


















TABLE 13








Compound ID.
Structure
IC50DPIV [μM]






















D13.001


embedded image


10.1





D13.002


embedded image


23.3





D13.003


embedded image


38.0





D13.004


embedded image


69.8*





D13.005


embedded image


72.2





D13.006


embedded image


83.3*





D13.007


embedded image


343.7*


















TABLE 14










Compound ID.
Structure
IC50DPIV [μM]














D14.001


embedded image


1.2*





D14.002


embedded image


2.5*





D14.003


embedded image


5.7





D14.004


embedded image


26.2





D14.005


embedded image


26.7





D14.006


embedded image


33.9





D14.007


embedded image


456.1*









Example 2
Therapeutic Effect of the Combined Inhibition of the Dipeptidyl Peptidase IV and of Enzymes Having an Analogous Effect as well as of the Alanyl Aminopeptidases and of Enzymes Having an Analogous Effect on the Experimental Autoimmune Encephalomyelitis (EAE) of Mice (Animal Model of Multiple Sclrosis)

The disease EAE was induced by a daily injection of PLP139-151 (myelin antigen proteolipide protein peptide 139-151) to SJL/J mice (n=10). After the outbreak of the disease, there was, on the 11th day after the immunization, a therapeutic intervention by an intraperitoneal injection of 1 mg of each of the peptidase inhibitors on the first day and further injections of 0.5 mg of each of the inhibitors on each second day. The disease scores [vD1] are defined by differently distinct degrees of paralysis. Healthy animals have the disease score 0. Actinonine was used as the alanyl aminopeptidase inhibitor, Lys[Z(NO2)] pyrrolidide was used as the dipeptidyl peptidase IV inhibitor. The treatment was effected for the time of 46 days after the immunization. The results are shown in FIG. 1. The course of the curves demonstrate unequivocally a particularly strong and long-lasting [vD2] therapeutic effect after a combined inhibition of both peptidases.


Example 3
Therapeutic Effect of the Combined Inhibition of the Dipeptidyl Peptidase IV and of Enzymes Having an Analogous Effect as well as of the Alanyl Aminopeptidases and of Enzymes Having an Analogous Effect on the Dextran Sulfate-induced Colitis of Mice (Animal Model of Chronical Inflammatory Intestinal Diseases)

An inflammation relating predominantly to the colon (equivalent to the disease of human Colitis ulcerosa) was induced by an administration of 3% sodium dextran sulfate dissolved in the drinking water of female Balb/c mice having an age of 8 weeks. After three days, all animals showed clear symptoms typical for the disease. The peptidase inhibitors (or phosphate-buffered saline as a placebo) were administered intraperitoneally from day 5 on three successive days. The degree of the disease is determined in accordance with a acknowledged evaluation system (score). The following parameters are considered when determining the score: Consistency of the excrements (solid=0 points (pts.); pasty=2 pts.; liquid/like diarrhea=4 pts.); detection of blood in the excrements (no blood=0 pts.; occult blood=2 pts.; evident=4 pts.); loss of weight (0-5%=0 pts.; 5 to 10%=1 pts.; 10-15%=2 pts.; 15-20%=3 pts.; >20%=4 pts.). Healthy animals have a score value of 0 pts. the maximum value are 12 pts. From 10 pts. on, the disease is lethal. In the course of the disease, the score value increases due to the change of the excrement parameters. Later-on (starting from day 5), the loss of weight increases the score. FIG. 2 shows the disease intensity for untreated and treated animals on the day 7 after three days of therapy.


The application of 10 pg of the respective single prior art inhibitors (n=14 per group; see explanation) achieved a slight, but insignificant reduction of the heaviness of the disease (−16.5% by a treatment with actinonine;—12.3% by a treatment with Lys[Z(NO2)] pyrrolidide). An i.p. application of a combination of the two peptidase inhibitors resulted into a statistically significant (p=0.00189) improvement of the disease by 40%.


Example 4
Therapeutic Effect of the Combined Inhibition of Dipeptidyl Peptidase IV and of Enzymes Having an Analogous Effect as well as of the Alanyl Aminopeptidase and of Enzymes Having an Analogous Effect on the Ovalbumine-induced Asthma Bronchiale of Mice (Animal Model of Human Asthma Bronchiale). FIG. 3 Shows the Influence of the Combined Peptidase Inhibition on the Reduction of the Average Expiratory Flux (EF 50) as a Measure of the Pulmonal Function (FIG. 3A) as well as on the Eosinophilia as a Characteristic Feature of the Astma Bronchiale Pulmonal Inflammation (FIG. 3B).

Female Balb/c Mice were sensitized for the antigen ovalbumine capable of inducing asthma bronchiale by an intreperitoneal administration of 10 pg ovalbumine on the days 0, 14 and 21. On day 27/28, the animals received a boostering dose of ovalbumine by inhalation [vD3]. After an intreperitoneal administration of the peptidase inhibitors on the days 28-35, there was effected an intranasal ovalbumine challenge on day 35, as well as a check of the allergic premature reaction via the pulmonal function. There were measured: the average expiratory flux (EF50), the tidal volume, the respiration rate and the minute volume as well as the number of eosinophilic granulocytes in the bronchoalveolar lavage. 8 to 10 animals were used per experimental group. By way of example, in FIG. 3A, there is summarized the effect of the peptidase inhibitors on the reduction of the EF50 value. The alanyl aminopeptidase inhibitor actinonine (group B; 0.1 mg), and the dipeptidyl peptidase IV inhibitor Lys[Z(NO2)] pyrrolidide as well (group C; 0.1 mg), showed a therapeutic effect. Significant therapeutic effects, however, were obtained only when using combinations of both inhibitors (group D; 0.1 mg of each of the inhibitors). Group E represents animals which were not sensitized by OVA, but which were subjected—beyond that—all procedures to which the animal groups A to D were subjected. Hence, this group is a group of healthy, non-allergic animals allowing to calculate stress-induced effects on the pulmonal function.

Claims
  • 1.-76. (canceled)
  • 77. A pharmaceutical or cosmetic composition comprising at least one of a pharmaceutically or cosmetically acceptable carrier and a pharmaceutically or cosmetically acceptable adjuvant and at least one active ingredient selected from compounds of formulae D1 to D14, including tautomers, stereoisomers thereof, pharmaceutically acceptable salts, salt derivatives, tautomers and stereoisomers thereof:
  • 78. The composition of claim 77, wherein the composition comprises at least one active ingredient selected from compounds of the following formulae, including tautomers, stereoisomers thereof, pharmaceutically acceptable salts, salt derivatives, tautomers and stereoisomers thereof:
  • 79. A method of inhibiting an activity of at least one enzyme selected from dipeptidyl peptidase IV and analogous enzymes in a subject in need thereof, wherein the method comprises administering to the subject at least one of a composition of claim 77 and an active ingredient thereof, alone or in combination with one or more inhibitors of alanyl aminopeptidase or analogous enzymes.
  • 80. A method of inhibiting an activity of at least one enzyme selected from dipeptidyl peptidase IV and analogous enzymes in a subject in need thereof, wherein the method comprises administering to the subject at least one of a composition of claim 78 and an active ingredient thereof, alone or in combination with one or more inhibitors of alanyl aminopeptidase or analogous enzymes.
  • 81. A method of topically influencing an activity of at least one enzyme selected from dipeptidyl peptidase IV and analogous enzymes in a subject in need thereof, wherein the method comprises topically administering to the subject at least one of a composition of claim 77 and an active ingredient thereof, alone or in combination with one or more inhibitors of alanyl aminopeptidase or analogous enzymes.
  • 82. A method of topically influencing an activity of at least one enzyme selected from dipeptidyl peptidase IV and analogous enzymes in a subject in need thereof, wherein the method comprises topically administering to the subject at least one of a composition of claim 78 and an active ingredient thereof, alone or in combination with one or more inhibitors of alanyl aminopeptidase or analogous enzymes.
  • 83. A method of preventing or treating at least one condition selected from multiple sclerosis, Morbus Crohn, Colitis ulcerosa and other autoimmune diseases; inflammatory diseases; allergic asthma bronchiale and other allergic diseases; rejection of transplanted tissues and cells; skin and mucosa diseases such as psoriasis and acne; dermatological diseases associated with a hyperproliferation and changed differentiation states of fibroblasts, preferably of benign fibrosing and sclerosing skin diseases and malign fibroblastar hyperproliferation states; acute neuronal diseases, in particular ischemia-caused cerebral damage after an ischemic or hemorrhagic stroke, cranio-cerebral trauma, cardiac arrest, myocardial infarction or as a consequence of heart surgery; chronic neuronal diseases, in particular Morbus Alzheimer, Pick's disease, Progressive Supranuclear Palsy, corticobasal degeneration, frontotemporal dementia, Morbus Parkinson, in particular Morbus Parkinson coupled to chromosome 17, Morbus Huntington, prion-caused diseases and amyotrophic lateral sclerosis; chronic obstructive pulmonal disease (COPD); prostata carcinoma and other tumors as well as metastases; Heavy Acute Respiratory Syndrome (SARS); and sepsis and sepsis-like conditions in a subject in need thereof, wherein the method comprises administering to the subject at least one of a composition of claim 77 and an active ingredient thereof in an amount sufficient for preventing or treating the at least one condition.
  • 84. A method of preventing or treating at least one condition selected from multiple sclerosis, Morbus Crohn, Colitis ulcerosa and other autoimmune diseases; inflammatory diseases; allergic asthma bronchiale and other allergic diseases; rejection of transplanted tissues and cells; skin and mucosa diseases such as psoriasis and acne; dermatological diseases associated with a hyperproliferation and changed differentiation states of fibroblasts, preferably of benign fibrosing and sclerosing skin diseases and malign fibroblastar hyperproliferation states; acute neuronal diseases, in particular ischemia-caused cerebral damage after an ischemic or hemorrhagic stroke, cranio-cerebral trauma, cardiac arrest, myocardial infarction or as a consequence of heart surgery; chronic neuronal diseases, in particular Morbus Alzheimer, Pick's disease, Progressive Supranuclear Palsy, corticobasal degeneration, frontotemporal dementia, Morbus Parkinson, in particular Morbus Parkinson coupled to chromosome 17, Morbus Huntington, prion-caused diseases and amyotrophic lateral sclerosis; chronic obstructive pulmonal disease (COPD); prostata carcinoma and other tumors as well as metastases; Heavy Acute Respiratory Syndrome (SARS); and sepsis and sepsis-like conditions in a subject in need thereof, wherein the method comprises administering to the subject at least one of a composition of claim 78 and an active ingredient thereof in an amount sufficient for preventing or treating the at least one condition.
  • 85. A method of preventing or treating at least one condition selected from atherosclerosis, arterial inflammation, vasculitides, reperfusion syndrome and stent restenosis, for example after a percutaneous transluminal angioplasty, in a subject in need thereof, wherein the method comprises administering to the subject at least one of a composition of claim 77 and an active ingredient thereof in an amount sufficient for preventing or treating the at least one condition.
  • 86. The method of claim 85, wherein the method comprises administering the at least one of a composition and an active ingredient thereof by using a stent which is coated with the at least one of a composition and an active ingredient thereof.
  • 87. A stent which is coated with at least one of a composition of claim 77 and an active ingredient thereof.
  • 88. A method of preventing or treating at least one condition selected from atherosclerosis, arterial inflammation, vasculitides, reperfusion syndrome and stent restenosis, for example after a percutaneous transluminal angioplasty, in a subject in need thereof, wherein the method comprises administering to the subject at least one of a composition of claim 78 and an active ingredient thereof in an amount sufficient for preventing or treating the at least one condition.
  • 89. The method of claim 88, wherein the method comprises administering the at least one of a composition and an active ingredient thereof by using a stent which is coated with the at least one of a composition and an active ingredient thereof.
  • 90. A stent which is coated with at least one of a composition of claim 78 and an active ingredient thereof.
  • 91. A method of preventing or treating an inflammation reaction at, or caused by, a medical device implanted into an organism, wherein the method comprises administering to the organism at least one of a composition of claim 77 and an active ingredient thereof in an amount sufficient for preventing or treating the inflammation reaction.
  • 92. The method of claim 91, wherein the method comprises administering the at least one of a composition and an active ingredient thereof at least one of as a coating or layer on the medical device and incorporated in the medical device.
Priority Claims (1)
Number Date Country Kind
103 48 022.6 Oct 2003 DE national
PCT Information
Filing Document Filing Date Country Kind 371c Date
PCT/EP04/11645 10/15/2004 WO 9/15/2006