Bile lipids in rats under chronic social stress

Keywords: liver, bile cholesterol, bile phospholipids, bile fat acids, bile triglycerides, Korvitin, social defeat

Abstract

Our experiments studied changes in lipid compound of bile of non-purebred male rats under the condition of social stress while the preparation “Korvitin” was used against the stress. Using the method of thin-layer chromatography, we determined the concentrations of phospholipids, cholesterol and its esters, free fatty acids and triglycerides in the animals’ bile, which was obtained through vivesection a day and a month after the rats were first subjected to chronic social stress (model of social defeat), and also in the bile of the animals which were treated intragastrically with “Korvitin” against the stress (1 mg/kg, 7 days). In the bile of the male rats which experienced chronic social stress the concentration of free cholesterol decreased and the content of its esters increased both immediately after the initiation of stress and after a month of exposure to stress. The concentration of free fatty acids in the bile decreased after modeling chronic social stress, but increased in liver secretion, taken a month after the animals had first experienced stress. In the bile of male rats immediately after the procedure of exposing the animals to stress, the content of phospholipids decreased. Using “Korvitin” during the modeling of social stress caused decrease in the content of phospholipids in the rats’ bile and caused significant increase in the concentration of free fatty acids, triglycerides and cholesterol esters in the liver secretion. The study found significant changes in the concentration of lipids in the bile and in their distribution in the organism of male rats under the conditions of experimentally induced chronic stress. The effect of stress on the bile of rats requires further study for determining its pathogenic role. 

References

Boyer, J. L. (2013). Bile formation and secretion. Comprehensive Physiology, 3(3), 1035–1078.

Chuang, J. C., Cui, H., Mason, B. L., Mahgoub, M. L., Bookout, A. L., Yu, H. G., Perello, M., Elmquist, J. K., Repa, J. J., Zigman, J. M., & Lutter, M. (2010). Chronic social defeat stress disrupts regulation of lipid synthesis. Journal of Lipid Research, 51(6), 1344–1353.

Dlyaboha, Y. Z. (2012). Korektsiya zhyrnokyslotnoho skladu eteryfikovanoho kholesterolu v orhanizmi ta rist shchuriv za eksperymental’noyi hiperkholes terynemiyi [Correction of fatty acid composition of esterified cholesterol in the body and growth of rats in experimental hypercholesterolemia]. Visnyk of Dnipropetrovsk University. Biology, Medicine, 3(1), 29–37 (in Ukranian).

Eckstein, J., Berndt, N., & Holzhütter, H.-G. (2015). Computer simulations suggest a key role of membranous nanodomains in biliary lipid secretion. PLOS Computational Biology, 11(2), e1004033.

Faylon, M. P., Baumgard, L. H., Rhoads, R. P., & Spurlock, D. M. (2015). Effects of acute heat stress on lipid metabolism of bovine primary adipocytes. Journal of Dairy Science, 98(12), 8732–8740.

Filimonova, N. B., & Fil’, I. O. (2005). Statystychnyy analiz danykh vidpovidno do zasad naukovo obgruntovanoyi medytsyny. Porivnyannya hrup za kil’kis nymy pokaznykamy [Statistical analysis of data according to the principles of science-based medicine. Comparison of groups in quantitative terms]. Medytsyna Zaliznychnoho Transportu Ukrayiny, 4, 86–93 (in Ukranian).

Filimonova, N. B., Fil’, I. O., & Mykhaylova, T. S. (2004). Statystychnyy analiz danykh vidpovidno do zasad naukovo obgruntovanoyi medytsyny. Pervyn nyy analiz kil’kisnykh danykh, podannya rezul’tativ eksperymentu [Statisti cal analysis of data according to the principles of science-based medicine. Initial analysis of quantitative data, presentation of experimental results]. Medytsyna Zaliznychnoho Transportu Ukrayiny, 4, 30–38 (in Ukranian).

Ganitkevich, J. V., & Karbach, J. I. (1985). Issledovanie zhelchi. Biohimicheskie i biofizicheskie metody [Investigation of bile. Biochemical and biophysical methods]. Higher School, Kyiv (in Russian).

Gautam, A., D’Arpa, P., Donohue, D. E., Muhie, S., Chakraborty, N., Luke, B. T., Grapov, D., Carroll, E. E., Meyerhoff, J. L., Hammamieh, R., & Jett, M. (2015). Acute and chronic plasma metabolomic and liver transcriptomic stress effects in a mouse model with features of post-traumatic stress disorder. Public Library of Science, 10(1), e0117092.

Han, J., & Kaufman, R. J. (2016). The role of ER stress in lipid metabolism and lipotoxicity. Journal of Lipid Research, 57(8), 1329–1338.

Horid’ko, T. M., Kosiakova, H. V., Berdyshev, A. G., Meged, O. F., Gudz, E. A., Onopchenko, O. V., Asmolkova, V. S., Lozova, V. M., Tukalenko, E. V., Bondarenko, O. V., Tubalzeva, I. I., Kovalenko, О. А., Makarchuk, M. Y., & Hula, N. M. (2017). Antistress effects of N-stearoylethanolamine in rats with chronic social stress. Ukrainian Biochemical Journal, 89(4), 68–76.

Hşmioğullari, A. A., Bozdayi, A. M., & Rahman, K. (2007). Biliary lipid secre tion. Turkish Journal of Gastroenterology, 18(2), 65–70.

Kudryavtseva, N. N. (1991). A sensory contact model for the study of aggressive and submissive behavior in male mice. Aggressive Behavior, 17(5), 285–291.

Liashevych, A. M., Reshetnik, Y. M., Syechyna, I. M., Vesel’s’kyy, S. P., & Harnyk, K. V. (2016). Vplyv korvitynu na biotransformatsiyu zhovchnykh kyslot u pechintsi shchuriv z eksperymental’noyu hiperkholesterynemiyeyu [Effect of corvitin on biotransformation of bile acids in the liver of rats with experimental hypercholesterolemia]. Phytotherapy, 4, 12–16 (in Ukranian).

Linton, K. J. (2015). Lipid flopping in the liver. Biochemical Society Transactions, 43(5), 1003–1010.

Liu, Y. Z., Chen, J.-K., Zhang, Y., Wang, X., Qu, S., & Jiang, C.-L. (2014). Chronic stress induces steatohepatitis while decreases visceral fat mass in mice. BioMed Central Gastroenterology, 14, 106.

Nicolaou, M., Andress, E. J., Zolnerciks, J. K., Dixon, P. H., Williamson, C., & Linton, K. J. (2012). Canalicular ABC transporters and liver disease. Journal of Pathology, 226(2), 300–315.

Scott, K. A., Melhorn, S. J., & Sakai, R. R. (2012). Effects of chronic social stress on obesity. Current Obesity Reports, 1(1), 16–25.

Tyazhka, O. V., Smishchuk, V. V., & Bryuzhina, T. S. (2015). Znachennya bio khimichnoho doslidzhennya zhovchi yak indykatora porushen’ metabolizmu zhyrnykh kyslot, fosfolipidiv ta kholesterynu v ditey z kholelitiazom [The value of biochemical research bile as an indicator of metabolic disorders of fatty acids, phospholipids and cholesterol in children with cholelithiasis]. Perynatolohiya i Pediatriya, 61, 63–67 (in Ukranian).

Vesel’s’kyy, S. P., Lyashchenko, P. S., Kostenko, S. I., Horenko, Z. A., & Kurov s’ka, L. F. (2001). Sposib pidhotovky prob bioridyn dlya vyznachennya vmi stu rechovyn lipidnoyi pryrody [Method of preparation of samples of bioridi nes to determine the content of substances of lipid nature]. Pat. 99031324 (in Ukranian).

Vovkun, T. V., Yanchuk, P. I., Shtanova, L. Y., Vesel’s’kyy, S. P., & Shalamay, A. S. (2016). Zovnishn’osekretorna funktsiya pechinky shchuriv pry diyi korvitynu [Exocrine function of the liver in rats with exposure to corvitin]. Fiziologichnyi Zhurnal, 62(3), 30–38 (in Ukranian).

Wang, D. Q., Cohen, D. E., & Carey, M. C. (2009). Biliary lipids and cholesterol gallstone disease. Journal of Lipid Research, 50, S406–411.

Wirtz, P. H., Ehlert, U., Bärtschi, C., Redwine, L. S., & Känel, R. (2009). Changes in plasma lipids with psychosocial stress are related to hypertension status and the norepinephrine stress response. Metabolism: Clinical and Experi mental, 58(1), 30–37.

Zahayko, A. L., Voronina, L. M., Kaliman, P. A., & Strel’chenko, K. V. (2008). Vplyv khronichnoho sotsial’noho stresu na metabolizm lipidiv u zolotystykh syriys’kykh khom’yachkiv [Influence of chronic social stress on lipid meta bolism in golden hamsters Syria]. Ukrainian Biochemical Journal, 80(4), 120–128 (in Ukranian).

Published
2017-08-13
How to Cite
Liashevych, A. M., Tubaltseva, I. I., Reshetnik, Y. M., Bondarenko, O. V., Veselsky, S. P., & Makarchuk, M. Y. (2017). Bile lipids in rats under chronic social stress. Regulatory Mechanisms in Biosystems, 8(3), 356-362. https://doi.org/10.15421/021755