Claims
- 1. A 38-decarboxy-38-hydroxymethyl teicoplanin derivative of formula I: ##STR4## wherein: X represents hydroxymethyl;
- R represents hydrogen or --N�(C.sub.9 -C.sub.12)aliphatic acyl !-.beta.-D-2-deoxy-2-aminoglucopyranosyl;
- R.sub.1 represents hydrogen or N-acetyl-.beta.-D-2-deoxy-2-aminoglucopyranosyl;
- R.sub.2 represents hydrogen or .alpha.-D-mannopyranosyl,
- R.sub.3 represents hydrogen or a protecting group of the amino function; or the acid addition salts thereof; with the proviso that R.sub.1 represents hydrogen only when R and R.sub.2 are simultaneously hydrogen.
- 2. A compound of claim 1 wherein X is hydroxy methyl, R is -8-methylnonanoyl-.beta.-D-2-deoxy-2-2-aminoglucopyranosyl, R.sub.1 is --N-Acetyl-.beta.-D-2-deoxy-2-aminoglucopyranosyl, R.sub.2 is .alpha.-D-mannopyranosyl and R.sub.3 is hydrogen.
- 3. A compound of claim 1 wherein X is hydroxymethyl, R is hydrogen, R.sub.1 is --N-Acetyl.beta.-D-2-deoxy-2-aminoglucopyranosyl; R.sub.2 is .alpha.-D-mannopyranosyl and R.sub.3 is hydrogen.
- 4. A compound of claim 1 wherein X is hydroxymethyl R, R.sub.2 and R.sub.3 are hydrogen atoms and R.sub.1 is --N-Acetyl-.beta.-D-2-deoxy-2-aminoglucopyranosyl.
- 5. A compound of claim 1 wherein X is hydroxymethyl and R, R.sub.1, R.sub.2 and R.sub.3 are hydrogen atoms.
- 6. A process for preparing a 38-decarboxy-38-hydroxymethyl derivative according to claim 1 which comprises:
- a) submitting a teicoplanin lower alkyl ester derivative of formula II: ##STR5## wherein: R.sub.4 represents (C.sub.1 -C.sub.4)alkyl;
- R represents hydrogen or --N�(C.sub.9 -C.sub.12)aliphatic acyl!-.beta.-D-2-deoxy-2-aminoglucopyranosyl;
- R.sub.1 represents hydrogen or N-acetyl-.beta.-D-2-deoxy-2-aminoglucopyranosyl;
- R.sub.2 represents hydrogen or .alpha.-D-mannopyranosyl;
- R.sub.3 represents a protecting group of the amino function; and the addition salts thereof; with the proviso that R.sub.1 represents hydrogen only when R and R.sub.2 are simultaneously hydrogen; to a reductive hydrolysis reaction with an alkali metal borohydride, at a temperature between 0.degree. C. and 40.degree. C., in the presence of water or a mixture of water and a water miscible organic co-solvent as solvent;
- b) optionally transforming a 38-decarboxy-38-hydroxymethyl compound of formula I wherein R, R.sub.1 and R.sub.2 represent a sugar moiety as above defined into the corresponding compound wherein R.sub.1 and R.sub.2 are as above and R is hydrogen, by means of controlled acid hydrolysis in strong concentrated aqueous organic acid; or
- c) optionally transforming a 38-decarboxy-38-hydroxymethyl compound of formula I wherein R, R.sub.1 and R.sub.2 represent a sugar moiety as above defined or R represents hydrogen and R.sub.1 and R.sub.2 represent sugar moieties as above defined into the corresponding 38-decarboxy-38-hydroxymethyl compound of formula I wherein R and R.sub.2 represent hydrogen and R.sub.1 represents a sugar moiety as defined, by means of a selective hydrolysis with a strong acid in the presence of a polar aprotic solvent selected from ethers, ketones, and mixtures thereof which are liquid at room temperature; or
- d) optionally transforming a 38-decarboxy-38-hydroxymethyl compound of formula I wherein R, R.sub.1, and R.sub.2 represent sugar moieties as defined above, a 38-decarboxy-38-hydroxymethyl compound of formula I wherein R represents hydrogen and R.sub.1 and R.sub.2 represent the above defined sugar moieties, or a 38-hydroxymethyl compound of formula I wherein R and R.sub.2 represent hydrogen, and R.sub.1 represents a sugar moiety as above defined, into the corresponding compound of formula I wherein R, R.sub.1 and R.sub.2 represent hydrogen atoms by means of a selective hydrolysis in an organic protic solvent selected from aliphatic acids and alpha-halogenated aliphatic acids which at the reaction temperature are liquids, aliphatic and cycloaliphatic alkanols which at the reaction temperature are liquids slightly mixable with water, phenyl-substituted lower alkanols wherein the phenyl moiety may optionally carry (C.sub.1 -C.sub.4)alkyl, (C.sub.1 -C.sub.4)alkoxy or halo moiety which at the reaction temperature are liquids slightly mixable with water, and .beta.-polyhalogenated lower alkanols, which at the reaction temperature are liquids; in the presence of a strong acid, compatible with the solvent, selected from strong mineral acids, strong organic acids and strong acid cation exchange resins in the hydrogen form and at a temperature between 20.degree. C. and 100.degree. C.
- 7. A process as claimed in claim 6, optional step b), wherein the concentrated organic acid is 75 to 95% aqueous trifluoroacetic acid and the reaction temperature is between 10.degree. and 50.degree. C.
- 8. A process as claimed in claim 6, optional step c), wherein the strong acid is a concentrated mineral acid.
- 9. A process as claimed in claim 8 wherein the reaction solvent is dimethoxyethane and the reaction temperature is about room temperature.
- 10. A process as claimed in claim 6, optional step d), wherein the strong acid is a mineral acid, the solvent is a .beta.-polyhalogenated lower alkanol and the hydrolysis is conducted at a temperature 65.degree. C. and 85.degree. C.
- 11. A pharmaceutical composition comprising a compound of claim 1 in admixture with a pharmaceutically acceptable carrier.
- 12. A method for the treatment of bacterial infections comprising administering a compound according to claim 1 to a patient in need thereof.
- 13. A compound of claim 1 wherein the --N�(C.sub.9 -C.sub.12)aliphatic acyl!-.beta.-D-2-deoxy-2-aminoglucopyranosyl radicals of the symbol R is one of the following: (Z)-4-decenoyl, 8-methylnonanoyl, decanoyl, 8-methyldecanoyl, 9-methyldecanoyl, 6-methyloctanoyl, nonanoyl, 10-methylundecanoyl and dodecanoyl.
- 14. A process for preparing a compound as in claim 6 wherein the teicoplanin lower alkyl ester derivative of formula II wherein R, R.sub.1 and R.sub.2 are hydrogen atoms is submitted to a reductive alkylation in the presence of a mixture of water and water miscible organic co-solvent.
- 15. A process for preparing a compound as in claim 14 wherein the teicoplanin lower alkyl ester derivative of formula II wherein R, R.sub.1 and R.sub.2 are hydrogen atoms is submitted to a reductive alkylation in the presence of hydroalcoholic medium wherein the alcohol is a lower alkanol and the ratio of water to alkanol ranges between 90 to 10 and 40 to 60 volume to volume.
- 16. A process according to claim 15 wherein the ratio of water to alkanol ranges between 70 to 30 volume to volume and 50 to 50 volume to volume.
- 17. A process as claimed in claim 6 wherein the alkali metal borohydride is selected from the group consisting of sodium borohydride, potassium borohydride and sodium cyanoborohydride.
Priority Claims (1)
Number |
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90123299 |
Dec 1990 |
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Parent Case Info
This is a continuation of application Ser. No. 08/625,787, filed Mar. 29, 1996, now abandoned, which a continuation of application Ser. No. 08/479,899, filed Jun. 7, 1995, now abandoned, which is a continuation of application Ser. No. 08/356,036, filed Dec. 14, 1994, now abandoned, which is a continuation of application Ser. No. 08/050,466, filed May 13, 1993, now abandoned, which is herein incorporated by reference.
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Continuations (4)
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