Claims
- 1. A chromogenic enzyme substrate compound of the formula: ##STR23## wherein Y represents an enzymatically-cleavable group and R and R', which can be the same or different, are alkyl or aryl, or together form a cyclohexadienone or hydroxycyclohexyl residue.
- 2. The compound of claim 1 wherein said enzymatically-cleavable group is a radical of a compound Y--OH comprising an enzyme-specific moiety selected from the group consisting of sugars and derivatives thereof, aliphatic and aromatic carboxylic acids, and inorganic acids.
- 3. The compound of claim 2 wherein said enzyme-specific moiety is a sugar or derivative thereof selected from the group consisting of .alpha.-D-galactose, .beta.-D-galactose, .alpha.-D-glucose, .beta.-D-glucose, .alpha.-D-mannose, N-acetylglucosamine and N-acetylneuraminic acid.
- 4. The compound of claim 2 wherein said enzyme-specific moiety is an oligosaccharide chain of from between about 2 to 20 monosaccharide units.
- 5. The compound of claim 2 wherein said enzyme-specific moiety is an oligosaccharide selected from the group consisting of maltopentose, maltohexose and maltoheptose.
- 6. The compound of claim 2 wherein said enzyme-specific moiety is .beta.-D-galactose.
- 7. The compound of claim 2 wherein said enzyme-specific moiety is .beta.-D-glucose.
- 8. The compound of claim 2 wherein said enzyme-specific moiety is .alpha.-D-glucose.
- 9. The compound of claim 2 wherein said enzyme-specific moiety is maltoheptose.
- 10. The compound of claim 2 wherein said enzyme-specific moiety is an aliphatic or aromatic carboxylic acid.
- 11. The compound of claim 2 wherein said enzyme-specific moiety is a carboxylic acid comprising an N-protected amino acid or peptide of from between about 2 to 5 amino acid units.
- 12. The compound of claim 11 wherein said enzyme-specific moiety is N-tosyl-L-alanine.
- 13. The compound of claim 2 wherein said enzyme-specific moiety is phosphoric acid or sulfuric acid.
- 14. The compound of claim 13 wherein said enzyme-specific moiety is phosphoric acid.
- 15. The compound of claim 1 wherein R and R', which can be the same or different, are alkyl or phenyl or together form a cyclohexa-2,5-diene-4-one residue or a 4-hydroxycyclohexyl residue.
- 16. The compound of claim 1 wherein R and R', which can be the same or different, are alkyl or phenyl.
- 17. The compound of claim 1 wherein R and R', which can be the same or different, are lower alkyl comprising 6 or less carbons or phenyl.
- 18. A chromogenic enzyme substrate compound of the formula: ##STR24## wherein Y is a radical of a compound Y--OH comprising an enzyme-specific moiety selected from the group consisting of sugars and derivatives thereof, aliphatic and aromatic carboxylic acids, and phosphoric acid.
- 19. The compound of claim 18 wherein said enzyme-specific moiety is a sugar or derivative thereof selected from the group consisting of .alpha.-D-galactose, .beta.-D-galactose, .alpha.-glucose, .beta.-glucose, .alpha.-mannose, N-acetylglucosamine and N-acetylneuraminic acid.
- 20. The compound of claim 18 wherein said enzyme-specific moiety is an oligosaccharide chain of from between about 2 to 20 monosaccharide units.
- 21. The compound of claim 18 wherein said enzyme-specific moiety is .beta.-D-galactose.
- 22. The compound of claim 18 wherein said enzyme specific moiety is .beta.-D-glucose.
- 23. The compound of claim 18 wherein said enzyme-specific moiety is .alpha.-D-glucose.
- 24. The compound of claim 18 wherein said enzyme-specific moiety is maltoheptose.
- 25. The compound of claim 18 wherein said enzyme-specific moiety is a carboxylic acid comprising an N-protected amino acid or peptide of from between about 2 to 5 amino acid units.
- 26. The compound of claim 25 wherein said enzyme-specific moiety is N-tosyl-L-alanine.
- 27. The compound of claim 18 wherein said enzyme-specific moiety is phosphoric acid.
- 28. A method for preparing chromogenic acridinone enzyme substrate compounds of the formula: ##STR25## wherein Y is a radical of a compound Y--OH comprising an enzyme-specific sugar moiety, the method comprising the steps of:
- (a) reacting an acridinone chromogen of the formula: ##STR26## with a 1-halogeno-derivative of said enzyme-specific sugar moiety substituted, independently, at the hydroxy-positions thereof with protecting groups to result in a per-O-substituted derivative of said chromogenic acridinone enzyme substrate compound; and
- (b) reacting said per-O-substituted derivative with a hydrolyzing reagent to remove said protecting groups to obtain said chromogenic acridinone enzyme substrate compound.
- 29. The method of claim 28 wherein said 1-halogeno-derivative of said enzyme specific moiety is a 1-bromo-derivative and said protecting groups are acetate protecting groups.
- 30. The method of claim 29 wherein said enzyme-specific moiety is .beta.-D-galactose.
- 31. The method of claim 29 wherein said enzyme-specific moiety is .beta.-D-glucose.
- 32. A method for determining a particular enzyme in a liquid test sample comprising the steps of:
- (a) contacting the test sample with a chromogenic acridinone enzyme substrate compound of the formula: ##STR27## wherein R and R', which can be the same or different, are alkyl or aryl or together form a cyclohexadieneone or hydroxycyclohexyl residue, and Y is an enzymatically-cleavable group which is (i) capable of being cleaved from the acridinone indicator group by said enzyme or (ii) capable of being modified by said enzyme to be determined to produce a secondary substrate compound in which the enzymatically-cleavable group is cleavable from the acridinone indicator group by a secondary enzyme, in which case the secondary substrate compound is contacted with said secondary enzyme; and
- (b) measuring and correlating the resulting color generated by the cleaved acridinone indicator group to the amount of said enzyme present in said liquid test sample.
- 33. The method of claim 32 wherein said enzymatically-cleavable group is a radical of a compound Y--OH comprising an enzyme-specific moiety selected from the group consisting of sugars and derivatives thereof, aliphatic and aromatic carboxylic acids, phosphoric acid, and sulfuric acid.
- 34. The method of claim 33 wherein R and R', which can be the same or different, are alkyl or phenyl or together form a cyclohexa-2,5-diene-4-one residue or a 4-hydroxycyclohexyl residue.
- 35. The method of claim 33 wherein R and R', which can be the same or different, are alkyl or phenyl.
- 36. The method of claim 33 wherein R and R', which can be the same or different, are lower alkyl comprising 6 or less carbons or phenyl.
- 37. The method of claim 33 wherein R and R' are both methyl.
- 38. The method of claim 37 wherein said enzyme is a glycosidase and Y is a radical of a sugar or derivative thereof selected from the group consisting of .alpha.-D-galactose, .beta.-D-galactose, .alpha.-D-glucose, .beta.-D-glucose, .alpha.-D-mannose, N-acetylglucosamine and N-acetylneuraminic acid.
- 39. The method of claim 37 wherein said enzyme is .alpha.-amylase and Y is a radical of an oligosaccharide chain of from between 2 to 20 monosaccharide units which is capable of being modified by .alpha.-amylase to produce a secondary glycoside substrate compound in which the resulting glycoside group is cleavable from the acridinone indicator group by a secondary glycosidase enzyme, and wherein the secondary glycoside substrate compound is contacted with said secondary glycosidase enzyme.
- 40. The method of claim 39 wherein said oligosaccharide chain is maltoheptose.
- 41. The method of claim 39 wherein said resulting glycoside group is a glucoside and said secondary glycosidase enzyme is a glucosidase.
- 42. The method of claim 37 weerein said enzyme is .beta.-D-galactosidase and Y is a .beta.-D-galactose radical.
- 43. The method of claim 37 wherein said enzyme is .beta.-D-glucosidase and Y is a .beta.-D-glucose radical.
- 44. The method of claim 37 wherein said enzyme is a non-specific esterase and Y is a radical of an aliphatic or aromatic carboxylic acid.
- 45. The method of claim 37 weerein said enzyme is a proteolytic enzyme present in leukocytes and Y is a radical of a carboxylic acid comprising an N-protected amino acid or peptide of from between about 2 to 5 amino acid units.
- 46. The method of claim 44 wherein Y is an N-tosyl-L-alanine radical.
- 47. The method of claim 37 wherein said enzyme is alkaline phosphatase and Y is a phosphoric acid radical.
- 48. The method of claim 37 wherein said enzyme is sulfatase and Y is a sulfuric acid radical.
- 49. A test device for the determination of a particular enzyme in a liquid test sample, the test device comprising a carrier matrix incorporated with a chromogenic acridinone enzyme substrate compound of the formula: ##STR28## wherein R and R', which can be the same or different are alkyl or aryl or together form a cyclohexadieneone or hydroxycyclohexyl residue, and Y is an enzymatically-cleavable group which is (i) capable of being cleaved from the acridinone indicator group by said enzyme or (ii) capable of being modified by said enzyme to be determined to produce a secondary substrate compound in which the enzymatically-cleavable group is cleavable from the acridinone indicator group by a secondary enzyme, in which case said carrier matrix is also incorporated with said secondary enzyme.
- 50. The test device of claim 49 wherein said enzymatically-cleavable group is a radical of a compound Y--OH comprising an enzyme-specific moiety selected from the group consisting of sugars and derivatives thereof, aliphatic and aromatic carboxylic acids, phosphoric acid, and sulfuric acid.
- 51. The test device of claim 50 wherein R and R', which can be the same or different, are alkyl or phenyl or together form a cyclohexa-2,5-diene-4-one residue or a 4-hydroxycycloheyyl residue.
- 52. The test device of claim 50 wherein R and R', which can be the same or different, are alkyl or phenyl.
- 53. The test device of claim 50 wherein R and R', which can be the same or different, are lower alkyl comprising 6 or less carbon atoms or phenyl.
- 54. The test device of claim 50 wherein R and R' are both methyl.
- 55. The test device of claim 54 wherein said enzyme is a glycosidase and Y is a radical of a sugar or derivative thereof selected from the group consisting of .alpha.-D-galactose, .beta.-D-galactose, .alpha.-D-glucose, .beta.-D-glucose, .alpha.-mannose, N-acetylglucosamine and N-acetylneuraminic acid.
- 56. The test device of claim 54 wherein said enzyme is .alpha.-amylase and Y is a radical of an oligosaccharide chain of from between 2 to 20 monosaccharide units which is capable of being modified by .alpha.-amylase to produce a secondary glycoside substrate compound in which the resulting glycoside group is cleavable from the acridinone indicator group by a secondary glycosidase enzyme, said carrier matrix also being incorporated with said secondary glycosidase enzyme.
- 57. The test device of claim 56 wherein said oligosaccharide chain is maltoheptose.
- 58. The test device of claim 56 wherein said resulting glycoside group is a glucoside and said secondary glycosidase enzyme is a glucosidase.
- 59. The test device of claim 54 wherein said enzyme is .beta.-D-galactosidase and Y is a .beta.-D-galactose radical.
- 60. The test device of claim 54 wherein said enzyme is .beta.-D-glucosidase and Y is a .beta.-D-glucose radical.
- 61. The test device of claim 54 wherein said enzyme is a non-specific esterase and Y is a radical of an aliphatic or aromatic carboxylic acid.
- 62. The test device of claim 54 wherein said enzyme is a proteolytic enzyme present in leukocytes and Y is a radical of a carboxylic acid comprising an N-protected amino acid or peptide of between about 2 to 5 amino acid units.
- 63. The test device of claim 62 wherein Y is an N-tosyl-L alanine radical.
- 64. The test device of claim 54 wherein said enzyme is alkaline phosphatase and Y is a phosphoric acid radical.
- 65. The test device of claim 54 wherein said enzyme is sulfatase and Y is a sulfuric acid residue.
- 66. An acridinone chromogen of the tautomeric formula: ##STR29## wherein R and R', which can be the same or different, are alkyl or aryl, and X is halo.
- 67. The chromogen of claim 66 wherein R and R', which can be the same or different, are lower alkyl comprising 6 or less or phenyl and X is bromo or chloro.
- 68. The chromogen of claim 67 wherein R and R' are methyl and X is chloro.
Parent Case Info
This is a continuation-in-part of copending application U.S. Ser. No. 939,855, filed Dec. 9, 1986, now abandoned.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4279992 |
Boguslaski et al. |
Jul 1981 |
|
4649108 |
Blair |
May 1987 |
|
4657855 |
Corey et al. |
Apr 1987 |
|
Foreign Referenced Citations (1)
Number |
Date |
Country |
0180961 |
May 1986 |
EPX |
Non-Patent Literature Citations (3)
Entry |
BMBiochemia, vol. 2, No. 6, (1985), p. 8, "New Chromogenic and Fluorogenic Substrates for .beta.-Galactosidase". |
Hill et al., J. Chem. Soc., (1970), pp. 2462-2466. |
Tietz (ed), Fundamentals of Clinical Chemistry, 1976, p. 411. |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
939855 |
Dec 1986 |
|