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Gastroprotective effect of zosterin, a pectin from seagrass ZOSTERA MARINA L.

  • Khasina, Eleonora I. (Laboratory of Pharmacology, Institute of Marine Biology, Far East Branch of the Russian Academy of Sciences) ;
  • Tiupeleev, Piotr A. (Laboratory of Pharmacology, Institute of Marine Biology, Far East Branch of the Russian Academy of Sciences) ;
  • Sgrebneva, Marina N. (Laboratory of Pharmacology, Institute of Marine Biology, Far East Branch of the Russian Academy of Sciences)
  • 발행 : 2004.12.30

초록

Zosterin is a pectin from a seagrasses of the family Zosteraceae. Zosterin was given to rats intragastrically once 1h before the emotional stress or injection of indomethacin, or administration of 2, 4-D solution daily for seven days at dose of 100 mg/kg. The data obtained demonstrate that zosterin enhances resistance of the stomach tissue to various ulcerogenic factors (emotional stress, indomethacin, pesticide 2, 4-D). It was shown to possess a gastroprotective effect, which is accompanied by diminution of the number and sizes of destructive regions in the gastric mucosa during the ulcer affection, as well as reduction of ATP and glycogen deficit, decrease of lactate excess, and normalization of the energy balance in the gastric mucosa. According to its antiulcer effect, zosterin may be recommended for application in prevention and treatment of stomach diseases together with the basic therapy.

키워드

참고문헌

  1. Cummings JH, Bingham SA, Heaton KW, Eastwood MA. (1992) Fecal weight, colon cancer risk, and dietary intake of nonstarch polysaccharides (dietary fiber). Gastroenterology 103, 1783-1789. https://doi.org/10.1016/0016-5085(92)91435-7
  2. De Moore P, Stoeno O, Raskin M, Hehorix A. (1960) Fluorimetric determination of the plasma 11-hydroxycorticosteroids in man. Acta endocrinol. 33, 297-307.
  3. Dixon MF. (1994) Pathophysiology of Helicobacter pylori infection. Scand. J. Gastroenterol. 201, 7-10.
  4. Figler M, Szabo I, Mozsik G. (1999) Effects of pectin-induced passive linkage of gastric H+ on the gastric acid secretion on the development of ethanol- and salicylate-induced gastric mucosal lesions in rats. J. Physiol. Paris 93, 495-499. https://doi.org/10.1016/S0928-4257(99)00111-4
  5. Fukunaga T, Sasaki M, Araki Y, Okamoto T, Yasuoka T, Tsujikawa T, Fujiyama Y, Ba mba T. (2003) Effects of the soluble fibre pectin on intestinal cell proliferation, fecal short chain fatty acid production and microbial population. Digestion 67, 42-49. https://doi.org/10.1159/000069705
  6. Galati EM, Pergolizzi S, Miceli N, Monforte MT, Tripodo MM. (2002) Study on the increment of the production of gastric mucus in rats treated with Opuntia ficus indica (L.) Mill, cladodes. J. Ethnopharmacol. 83, 229-233. https://doi.org/10.1016/S0378-8741(02)00243-X
  7. Hohorst HJ. (1970) L-Lactat. Bestimmung mit Lactate-Dehydrogenase und NAD. In: Methoden der enzymatischen Analyse, edited by Bergmeyer HU, p. 1425-1429, Akademie-Verlag, Berlin [In German].
  8. Jorens PG, Heytens L, De Paep RJ, Bossaert L, Selala MI, Schepens PJ. (1995) A 2, 4-dichloro-phenoxyacetic acid induced fatality. Eur. J. Emerg. Med. 2,52-55. https://doi.org/10.1097/00063110-199503000-00011
  9. Khasina EI, Kolenchenko EA, Sgrebneva MN, Kovalev W, Khotimchenko YS. (2003) Antioxidant activities of a low-etherified pectin from the seagrass Zostera marina. Russian J. Marine Biol. 29, 259-261. https://doi.org/10.1023/A:1025493128327
  10. Khasina EI, Trebukhov EE, Zolotukhina ON. (2001) Optimization of physical working capacity of the zosterin. Dalnevost. med. zhurn. No 2, 45-47 [In Russian].
  11. Khasina EI, Tiupeleev PA. (1999) Effectiveness of the zosterin at alimentary hyperlipidemies. Russian J. Marine Biol. 25, 199-200.
  12. Lamprecht W, Trautschold I. (1970) Adenosin-5-triphosphat. Bestimmung mit Hexokinase und Glucose-6-phosphat Dehydroginase. In: Methoden der enzymatischen Analyse, edited by Bergmeyer HU., p. 2024-2033, Akademie- Verlag, Berlin [In German].
  13. Loyenko YN, Artyukov AA, Kozlovskaya EP, Miroshnitchenko VA, Elyakov GB. (1997) Zosterin P. Dalnauka, Vladivostok [In Russian].
  14. Mengey R, Masters L. (1974) Mechanism of stress ulcer. 4. Influence of fasting on the tolerance of gastric mucosal energy metabolism to ischemia and the incidence of stress ulceration. Gasroenterology 66, 1177-1186.
  15. Miroshnitchenko VA, Yansons TY, Polushin OG, Matienko LM, Lavskaya VP. (1998) The differentiated approach to a choice of tactics of treatment of gastroduodenal pathologies with application of biologically active substances hydrobionts from sea. In: New Medical Technologies Using Biologically Active Additives (Protoc. International Conference), edited by Ivanov EM, p. 146-150, IMCRT SBRAMS, Vladivostok [In Russian].
  16. Nie Y, Li Y, Wu H, Sha W, Du H, Dai S, Wang H, Li Q. (1999) Colloidal bismuth pectin: an alternative to bismuth subcitrate for the treatment of Helicobacter pylori--positive duodenal ulcer. Helicobacter. 4, 128-134. https://doi.org/10.1046/j.1523-5378.1999.98281.x
  17. Oku T. (1995) Reversible Cecal and Colonic Enlargement Induced by Dietary Fiber in Rats. Nutr. Res. 15,1355-1366. https://doi.org/10.1016/0271-5317(95)02010-S
  18. Ovodov YS. (1998) Polysaccharides of flower plants: structure and physiological activity. Bioorg. Khim. 24,483-501 [In Russian].
  19. Ovodov YS, Ovodova RG, Shibaeva VI, Mikheyskaya LV. (1975) Further structural studies of zosterine. Carbohyd. Res. 42, 197-199. https://doi.org/10.1016/S0008-6215(00)84117-8
  20. Pauls F, Wick AM, Mac Kay EM. (1947) An assay method for anti-ulcer substances. Gastroenterology 8, 774-782.
  21. Popov AM, Lyamkin GP, Artyukov AA, Loyenko YN, Elyakov GB. (1990) Studies of pharrnakokinetics of zosterine, a pectin from a seagrass Zostera asiatica. Dokl. ANSSSR 315,232-235 [In Russian].
  22. Roth SH. (1996) NSAID gastropathy. A new understanding. Arch. Intern. Med. 156, 1623-1628. https://doi.org/10.1001/archinte.156.15.1623
  23. Seifter S, Dayton S, Novic B, Muntwyler E. (1950) The estimation of glycogen with the anthrone reagent. Arch. Biochem. 25, 191-200.
  24. Sgrebneva MN, Anisimov AP, Khasina EI. (2002) Influence of pectin from the seagrass Zostera marina on the content of DNA and RNA in rat hepatocytes contaminated by lead. Russian J. Marine Biol. 28, 352-354. https://doi.org/10.1023/A:1020919804439
  25. Spirt MJ. (2004) Stress-related mucosal disease: risk factors and prophylactic therapy. Clin. Ther. 26, 197-213. https://doi.org/10.1016/S0149-2918(04)90019-7
  26. Sun XB, Matsumoto T, Yamada H. (1991) Effects of a polysaccharide fraction from the roots of Bupleurum falcatum L. on experimental gastric ulcer models in rats and mice. J. Pharm. Pharmacol. 43, 699-704. https://doi.org/10.1111/j.2042-7158.1991.tb03461.x
  27. Sun XB, Matsumoto T, Yamada H. (1992) Antiulcer activity and mode of action of the polysaccharide fraction from the leaves of Panax ginseng. Planta Med. 58, 432-435. https://doi.org/10.1055/s-2006-961507
  28. Ta CA, Zee JA, Desrosiers T, Marin J, Levallois P, Ayotte P, Poirier G. Binding capacity of various fibre to pesticide residues under simulated gastrointestinal conditions. (1999) Food Chem. Toxicol. 37, 1147-1151. https://doi.org/10.1016/S0278-6915(99)00110-6
  29. Thakur BR, Singh RK, Handa AK (1997) Chemistry and uses of pectin--a review. Crit. Rev. Food Sci. Nutr. 37, 47-73. https://doi.org/10.1080/10408399709527767
  30. Venner M, Lauffs S, Deegen E. (1999) Treatment of gastric lesions in horses with pectin-lecithin complex. Equine Vet. J. 29, 91-96.

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