Biochemical markers of bone and osteoclastic differons in plasma at subacute dichloroethane intoxication

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Abstract

Aim. To explore the plasma level of soluble receptor activator of nuclear factor kappa-B ligand (RANKL), osteoprotegerin and sclerostin in a model of subacute dichloroethane intoxication in rats.

Methods. Experiments were carried out on 20 adult male rats weighing 180-200 g. The rats of the experimental group were administered dichloroethane at the dose of 0.84 mg/kg, mixed with olive oil by a gastric tube daily for two months, which amounted to 0,1 LD50. Control animals received an adequate amount of olive oil. Levels of soluble RANKL, osteoprotegerin and sclerostin were determined in blood serum by ELISA using commercially available reagent kits (reagents «Free RANKL», «Osteoprotegerin» and «Sclerostin» by «Biomedica Medizinprodukte Gmb and CoKG» company. Statistical data processing was performed using the Statistica 6.0 (Stat Soft) software package.

Results. Exposure to dichloroethane resulted in increased levels of soluble RANKL, reduced levels of osteoprotegerin, reflecting the intense new bone formation and the functional state of osteoclasts. The level of sclerostin, which is the negative regulator for new bone formation, was elevated, indicating osteoblast precursors’ differentiation inhibition and decreased function of osteoblasts.

Conclusion. In subacute dichloroethane intoxication, the serum level of soluble receptor activator of nuclear factor kappa-B ligand (RANKL) increases, osteoprotegerin level reduces, sclerostin level increases.

About the authors

F Kh Kamilov

Bashkir State Medical University, Ufa, Russia

Author for correspondence.
Email: bro-raops@yandex.ru

E R Farshatova

Bashkir State Medical University, Ufa, Russia

Email: bro-raops@yandex.ru

D A Enikeev

Bashkir State Medical University, Ufa, Russia

Email: bro-raops@yandex.ru

G V Ivanova

OOO «Prommedeko» Ufa, Russia

Email: bro-raops@yandex.ru

References

  1. Дыдыкина С.И., Веткова Е.С. Склеростин и его роль в регуляции метаболизма кости // Науч.-практ. ревматол. - 2013. - Т. 51, №3. - С. 296-301.
  2. Захаров Ю.М., Макарова Э.Б. Регуляция остеогенной дифференцировки мезенхимальных стволовых клеток костного мозга // Рос. физиол. ж. им. И.М. Сеченова. - 2013. - Т. 99, №4. - С. 417-432.
  3. Камилов Ф.Х., Ганеев Т.И., Фаршатова Е.Р. и др. Ремоделирование костной ткани при действии хлорированных низкомолекулярных алифатических углеводородов // Мед. вестн. Башкортостана. - 2011. - Т. 6, №2. - С. 305-309.
  4. Карпищенко А.И., Глушков С.И., Смирнов В.В. Глутатион-зависимая антиоксидантная система в некоторых тканях крыс в условиях острого отравления дихлорэтаном // Токсикол. вестн. - 1997. - №3. - С. 17-23.
  5. Кушлинский Н.Е., Тимофеев Ю.А., Герштейн Е.С. Система RANK/RANKL/OPG при метастазах и первичных новообразованиях костей // Молекулярн. мед. - 2013. - №6. - С. 3-10.
  6. Омельяненко Н.П., Слуцкий Л.И. Соединительная ткань (патогистология и биохимия). В 2 т. / Под ред. С.П. Миронова. - М.: Известия, 2010. - T. 2. - 600 с.
  7. Chen G., Deng С., Li Y.P. FGF-p and BMP signaling in osteoblast differentiation and bone formation // Jnt. J. Biol. Sci. - 2012. - Vol. 8, N 2. - P. 272-288.
  8. Isenmann S., Arthur A., Sannetino A.C. et al. TWIST family of basic belix-loop-helix transcription factors mediate human mesenchimal stem cell growth and commitment // Stem. Cells. - 2009. - Vol. 26. - P. 2457-2468. http://dx.doi.org/10.1002/stem.181
  9. Kabayashi Y. Roles of Wnt signaling in bone metabolism // Clin. calcium. - 2012. - Vol. 22, N 11. - P. 1701-1706.
  10. Sigalovski S., Shonert M. RANKL-RANK-OPG system and bone remodeling: a new approach on the treatment of osteoporosis // Clin. Exper. Pathol. - 2011. - Vol. 10, N 2. - P. 146-153.
  11. Van Bezooijen R.L., ten Dijka P., Papapoulos S.E., Lowil C.W. SOST/Sclerostin, in osteocyte - derived negative regulator of bone formation // Cytokine Growth factor Rev. - 2005. - Vol. 16. - P. 319-327. http://dx.doi.org/10.1016/j.cytogfr.2005.02.005

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© 2015 Kamilov F.K., Farshatova E.R., Enikeev D.A., Ivanova G.V.

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