Preview

Nephrology (Saint-Petersburg)

Advanced search

THE INFLUENCE OF FITOCOMPLEXES OF THE CELL CULTURE OF RUBIA CORDIFOLIA ON THE DEVELOPMENT OF EXPERIMENTAL NEPHROLITHIASIS IN RATS

https://doi.org/10.24884/1561-6274-2009-13-2-81-85

Abstract

THE AIM of the investigation was to study the influence of the long term introduction of fitocomplexes of th cell culture of Rubia cordifolia on the renal function of rats in the conditions of experimental oxalate nephrolithiasis. MATERIALS AND METHODS. For the modeling of the kidney stone disease the male rats Wistar during the three weeks received as drink water 1% solution of ethilenglicol. The prophylactic effect of fitocomplexes of Rubia Cordifoliawere evaluated in conditions of simultaneous injection of the cell culture in the dose of 75 mg/kg in suspension based on starch mucus. In the urine test, collected during 24 hours, the concentration of oxalate-, phosphate-ions and calcium ions, and also the activity of lactetdehydrogenase enzime, gamma-glutaminiltransferase and N-acetyl-β-D-glucoseaminidase were evaluated. RESULTS. Under the influence of ethyleneglycol the oxalate nephrolithiasis developed in rats, with was accompanied by the increase of the oxalate excretion and the development of the fermenturia. In the conditions of prophylactic use of the fitocomplexes of the cell cultures of the Rubia Cardifoliawas noted the decrease in oxalate excretion in 2,6 times in comparison with the rats with experimental nephrolithiasis. During the use of this fito-medicine the stabilization of the activity of marker enzimes, especially lactatdehydrogenase and gamma glutamiltransferase was registered. CONCLUSION. The good influence of the prophylactic use of fitocomplexes of th cell culture of Rubia Cordifoliaon the flow of the experimental kidney stone disease was realized in lower development of oxaluria and stabilization of the activity of the urine marker ferments.

About the Authors

O. V. Azarova
Алтайский государственный медицинский университет, г. Барнаул
Russian Federation


V. M. Bruhanov
Алтайский государственный медицинский университет, г. Барнаул
Russian Federation


Ya. F. Zverev
Алтайский государственный медицинский университет, г. Барнаул
Russian Federation


V. V. Lampatov
Алтайский государственный медицинский университет, г. Барнаул
Russian Federation


A. Yu. Zharikov
Алтайский государственный медицинский университет, г. Барнаул
Russian Federation


V. P. Bulgacov
Биоло­го-почвенный институт Дальневосточного отделения Российской Академии наук, г. Владивосток
Russian Federation


S. A. Fedoreev
Тихоокеанский институт биоорганической химии Дальневосточного отделения Российской академии наук, г. Владивосток
Russian Federation


References

1. Демин НВ. Мочекаменная болезнь: основные принципы лечения. Рус Мед Журн 2008; 16 (5): 353-358

2. Пытель ЮА, Амосов АВ. Растительный препарат канефрон в урологической практике. Леч Врач 1999; (6): 38-39

3. Вышковский ГЛ (ред.). Регистр лекарственных средств России: Энциклопедия лекарств 2008, 16 изд. РЛС, М., 2008; 1456

4. Брюханов ВМ, Азарова ОВ, Федореев СА и др. О фармакологической активности антрахинонов клеточной культуры марены сердцелистной. В: Разработка, исследование и маркетинг новой фармацевтической продукции: Сборник научных трудов. Пятигорск, 2008; 386-387

5. Мищенко НП, Федореев СА, Брюханов ВМ и др. Химический состав и фармакологическая активность антрахинонов из клеточной культуры Rubia cordifolia. ХимФарм Журн 2007; 41 (11): 38-41

6. Mischenko NP, Fedoreyev SA, Glazunov VP et al. Antraquinone production by callus of Rubia cordifolia. Fitoterapia 1999; (70): 552-557

7. Maruhn D. Rapid colorimetric assay of в-galactosidase and N-acetyl-в-D-glucosaminidase in human urine. Clin Chim Acta 1976; (73): 453-461

8. Green ML, Natch M, Freel RW. Ethylenе glycol induces hyperoxaluria without metabolic acidosis in rats. Am J Physiol Renal 2005; (289): F536-F543

9. de Water R, Boeve ER, van Miert PP et al. Experimental nephrolithiasis in rats: the effect of ethylene glycol and vitamin D3 on the induction of renal calcium oxalate crystals. Scanning Microsc 1996; 10 (2): 591-601

10. Thamilselvan S, Hackett RL, Khan SR. Cells of proximal and distal tubular origin respond differently to challenges of oxalate and calcium oxalate crystals. J Am Soc Nephrol 1999; 10 [Suppl 14]: S452-S456

11. Veena CK, Josephine A, Preetha SP et al. Renal рeroxidative changes mediated by oxalate: the protective role of fucaidan. Life Sci 2006; 79 (19): 1789-1795

12. Бабаева НИ, Липицкая ИЯ, Творогова МГ, Титов ВН. Диагностическое значение исследования активности N-ацетил-β-Д-глюкозаминидазы в моче (обзор литературы). Лаб Дело 1991; (1): 9-16


Review

For citations:


Azarova O.V., Bruhanov V.M., Zverev Ya.F., Lampatov V.V., Zharikov A.Yu., Bulgacov V.P., Fedoreev S.A. THE INFLUENCE OF FITOCOMPLEXES OF THE CELL CULTURE OF RUBIA CORDIFOLIA ON THE DEVELOPMENT OF EXPERIMENTAL NEPHROLITHIASIS IN RATS. Nephrology (Saint-Petersburg). 2009;13(2):81-85. (In Russ.) https://doi.org/10.24884/1561-6274-2009-13-2-81-85

Views: 331


ISSN 1561-6274 (Print)
ISSN 2541-9439 (Online)