Miliacin triterphenoid as a means of improving effective impact on bacterial intestinal infection
- Authors: Frolov B..1, Smolyagin A..1, Chainikova I..1,2, Filippova Y..1, Panfilova Т..1, Zheleznova A..1, Ermolina E..1, Sarychevа Y..1
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Affiliations:
- Orenburg State Medical University
- Institute of Cellular and Intracellular Symbiosis
- Issue: Vol 21, No 3 (2018)
- Pages: 466-470
- Section: ORIGINAL ARTICLES
- Submitted: 22.10.2020
- Published: 15.07.2018
- URL: https://rusimmun.ru/jour/article/view/913
- DOI: https://doi.org/10.31857/S102872210002429-6
- ID: 913
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Abstract
Triterpenoid of vegetable origin miliacin has a protective eff ect in experimental salmonella infection, manifested by a decrease in: animal death, organ contamination, bone marrow hypoplasia, thymus, endotoxinemia, nitric oxide production by macrophages, accumulation of oxidative stress products. The immunomodulatory eff ect of miliacin is combined with a modifying effect on the biological properties of salmonella.
About the authors
B. . Frolov
Orenburg State Medical University
Author for correspondence.
Email: noemail@neicon.ru
Russian Federation
A. . Smolyagin
Orenburg State Medical University
Email: noemail@neicon.ru
Russian Federation
I. . Chainikova
Orenburg State Medical University; Institute of Cellular and Intracellular Symbiosis
Email: noemail@neicon.ru
Russian Federation
Y. . Filippova
Orenburg State Medical University
Email: noemail@neicon.ru
Russian Federation
Т. . Panfilova
Orenburg State Medical University
Email: noemail@neicon.ru
Russian Federation
A. . Zheleznova
Orenburg State Medical University
Email: noemail@neicon.ru
Russian Federation
E. . Ermolina
Orenburg State Medical University
Email: noemail@neicon.ru
Russian Federation
Y. . Sarychevа
Orenburg State Medical University
Email: noemail@neicon.ru
Russian Federation
References
- Рожнова С. Ш., Гусева А. Н., Христюхина О. А., Виткова О. Н., Крутова Н. Е. Роль современных методов типирования в изучении генетического разнообразия и чувствительности к антибиотикам штаммов сальмонелл, выделенных из разных источников. Эпидемиология и инфекционные болезни. Актуальные вопросы 2017, 3, 15–24. [Rozhnova S. Sh., Guseva A. N., Khristiukhina O. A., Vitkova O. N., Krutova N. E. The role of modern typing methods in the study of genetic diversity and susceptibility to antibiotics of Salmonella strains isolated from diff erent sources. Epidemiology and infectious diseases. Current issues 2017, 3, 15–24].
- Jackson B. R., Griffi n P. M., D. Cole, Walsh K. A., Chai S. J. Outbreak – associated Salmonells Enterica Serotypes and Food Commodities United States, 1990– 2008. Ermeg. Infect. Dis. 2013, 19 (8), 1239–1244.
- Железнова А. Д. Экспериментальное обоснование применения милиацина для коррекции иммуносупрессии, индуцированной метотрексатом: автореф. дис. … канд. мед. наук. Пермь, 2010. 22с. [Zheleznova A. D. Experimental substantiation of the use of mieliacin for the correction of methotrexateinduced immunosuppression: author’s abstract. dis. … cand. med. sciences. Perm, 2010. 22 p.].
- Кириллова А. В. Иммунотропная активность милиацина: автореф. дис. … канд. мед. Наук. Пермь, 2004. 25 с. [Kirillova A. V. Immunotropic activity of mieliacin: author’s abstract. dis. … cand. med. science. Perm, 2004. 25 p.].
- Панфилова Т. В. Протективная активность милиацина при стрессиндуцированной иммуносупрессии: автореф. дис. … канд. мед. наук Пермь, 2007. 23 с. [Panfi lova Т. V. The protective activity of mieliacin in stress-induced immunosuppression: author’s abstract. dis. … cand. med. sciences of Perm, 2007. 23 c.].
- Олифсон Л. Е., Осадчая Н. Д., Нузов Б. Г., Галкович К. Г., Павлова М. М. Химическая природа и биологическая активность милиацина. Вопросы питания 1991, 2, 57–59. [Oliphson L. E., Osadchaya N. D., Nuzov B. G., Galkovich K. G., Pavlova M. M. Chemical nature and biological activity of mieliacin. Questions of Nutrition 1991, 2, 57–59].
- O’Toole G. A., Kolter R. Initiation of biofi lm formation in Pseudomonas fl uorescens WCS365 proceeds via multiple, convergent signalling pathways: a genetic analysis. Mol. Microbiol. 1998, 28 (3), 449–461.
- Mittrucker H. W., Kohler A. A., Kaufmann S. H. Characterization of the murine T-lymphocyte response to Salmonella enteric serovar Typhimurium infection. Infect. Immun. 2002, 70, 199–203.
- Cohen S. B. Crawley J. B., Kahan M. C. Interleukin-10 rescues T cells from apoptotic cell death: association with an upregulation of Bcl-2. Immunology 1997, 92 (1), 1–5.
- Peck A., Mellins E. D., [et al.]..Plasticity of T-cell phenotype and function: the T helper type 17 example. Immunology 2010,129 (2), 147–153.
- Манухина Е. Б., Дауни Х. Ф., Маллет Р. Т., Малышев И. Ю. Защитные и повреждающие эффекты периодической гипоксии: роль оксида азота. Вестник российской АМН 2007, 2, 25–33. [Manukhina E. B., Downey H. F., Mallet R. T., Malyshev I. Yu. Protective and damaging eff ects of periodic hypoxia: the role of nitric oxide. Bulletin of the Russian Academy of Medical Sciences 2007, 2, 25–33].
- Mosser D. M., Edwards J. P. Exploring the full of macrophage activation. Nature reviews Immunology 2008, 8(12), 958–969.
- Kalinin V. I., Silchenko A. S., Avilov S., Stonik V. A., Smimov A. V. Sea cucumbers triterpene glycosides, the recent progress in structural elucidation and chemotaxonomy Phytochemistry Reviews 2005, 4, 221–236.