Claims
- 1. A method for assaying endotoxin in a sample specifically using horseshoe crab amebocyte lysate, wherein a polyglycoside composed of a poly-(1.fwdarw.3)-.beta.-D-glucoside structural portion consisting of 2 to 370 (1.fwdarw.3)-.beta.-D-glucoside structural units of the following formula: ##STR16## which are continuously bound to one another is added in an amount sufficient to inhibit 100% of activation of factor G existing in said horseshoe crab amebocyte lysate.
- 2. The method for assaying endotoxin according to claim 1, wherein the polyglycoside is added either (1) at the time of assay, (2) to horseshoe crab amebocyte lysate beforehand, or (3) at the time of extracting and preparing horseshoe crab amebocyte lysate.
- 3. The method for assaying endotoxin according to claim 1, wherein the polyglycoside is obtained by a partial decomposition and/or a separation treatment of a carbohydrate chain.
- 4. The method for assaying endotoxin according to claim 1, wherein the polyglycoside is produced by depolymerizing a carbohydrate chain by a partial decomposition method selected from the group consisting of a hydrolysis with an acid, an alkali or .beta.-glucanase, an acetolysis and a sonication, and/or fractionating a carbohydrate chain by a fractional precipitation method with an organic solvent or a salt, or a fractionation method with a molecular sieve agent or a molecular sieve membrane.
- 5. The method for assaying endotoxin according to claim 1 wherein the polyglycoside has a molecular weight of about 2,080 to about 5,800.
- 6. The method for assaying endotoxin according to claim 1 wherein the polyglycoside has a factor G activation inhibiting titer of at least 10,700,000 units/mg.
- 7. The method for assaying endotoxin according to claim 1, wherein the polyglycoside has a molecular weight of about 2,080 to about 5,800 and has a factor G activation inhibiting titer of at least 10,700,000 units/mg.
- 8. The method for assaying endotoxin according to claim i, wherein the polyglycoside has a molecular weight of about 2,080 and a factor G activation inhibiting titer of about 10,700,000 units/mg.
- 9. The method for assaying endotoxin according to claim 1, wherein the polyglycoside has a molecular eight of about 3,4000 and a factor G activation inhibiting titer of about 13,400,000 units/mg.
- 10. The method for assaying endotoxin according to claim 1, wherein the polyglycoside has a molecular weight of about 4,800 and a factor G activation inhibiting titer of about 20,000,000 units/mg.
- 11. The method for assaying endotoxin according to claim 1, wherein the polyglycoside has a molecular weight of about 5,800 and a factor G activation inhibiting titer of about 31,600,000 units/mg.
- 12. The method for assaying endotoxin according to claim 1, wherein the factor G activation inhibiting titer is measured by adding a factor G activating substance, a proclotting enzyme fraction of horseshoe crab amebocyte lysate, a factor G fraction of horseshoe crab amebocyte lysate, a buffer, magnesium chloride and a chromogenic substrate to a factor G activation inhibitor sample and quantifying an amount of a chromogenic group liberated after a definite time of incubation.
- 13. The method for assaying endotoxin according to claim 1, wherein the polyglycoside is added in an amount of 50 ng to 500 ng per ml of the horseshoe crab amebocyte lysate.
Priority Claims (1)
Number |
Date |
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63-216341 |
Sep 1988 |
JPX |
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Parent Case Info
This is a Rule 60 Continuation Application of Ser. No. 08/246,920, filed May 20, 1994, now U.S. Pat. No. 5,474,984, which is a Rule 62 Continuation Application of Ser. No. 07/822,740, filed Jan. 21, 1992, now abandoned, which is a divisional of application Ser. No. 07/474,057, filed as PCT/JP89/00903, Sep. 1, 1989, now U.S. Pat. No. 5,155,032, issued Oct. 13, 1992.
US Referenced Citations (7)
Foreign Referenced Citations (4)
Number |
Date |
Country |
0333187 |
Sep 1989 |
EPX |
0330991 |
Sep 1989 |
EPX |
58-13517 |
Jan 1983 |
JPX |
59-28474 |
Feb 1984 |
JPX |
Non-Patent Literature Citations (6)
Entry |
Biochemical & Biophysical Research Communications, vol. 101, No. 2, 1981, pp. 434-439, Gelation of Limulus Amoebocyte Lysate by an Antitumor (1.fwdarw.3)-.beta.-D-Glucan. |
Bacterial Endotoxins: Structure, Biomedical Significance, and Detection with Limulus Amebocyte Lysate Test, pp. 53-64; Biomedical Characterization of Limulus Clotting Factors and Inhibitors which interact with Bacterial Endotoxins, 1985, Alan R. Liss, Inc., Morita et al. |
Biological Bulletin, vol. 169, 1985, pp./ 661-674; The Effects of 1,3-Glucans on Blood coagulation and Amebocyte Release in the Horseshoe Crab Limulus Polyphemus. |
Clinica Chemica Acta, vol. 149, No. 1, 1985 (Elsevier Science Publishers B.V.), Obayashi, et al., "A New Chromogenic Endotoxin-Specific Assay using Recombined Limulus Coagulation Enzymes and its Clinical Applications" pp. 55-65. |
FEBS Letters, vol. 129, No. 2, 1981 Jul. (North-Holland Biomedical Press), Morita, et al., "A New (1-3)-.beta.-D-Glucan Mediated Coagulation Pathway found in Limulus Amebocytes", pp. 318-321. |
Journal of Protein Chemistry, vol. 5, No. 4, 1986, Iwanaga, et al. "The Hemolymph Coagulation System in Invertebrate Animals," pp. 255-268. |
Divisions (1)
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Number |
Date |
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Parent |
474057 |
May 1990 |
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Continuations (2)
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Number |
Date |
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Parent |
246920 |
May 1994 |
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Parent |
822740 |
Jan 1992 |
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