JOURNAL OF BIOLOGY AND GENETIC RESEARCH (JBGR )
E-ISSN 2545-5710
P-ISSN 2695-222X
VOL. 10 NO. 2 2024
DOI: 10.56201/jbgr.v10.no2.2024.pg98.105
Ahmed Adnan Abbas Skrane
Kefir, a traditionally fermented beverage derived from milk, harbors a diverse microbial community that imparts a wide range of health benefits, including potential anti-diabetic properties. In this study, we investigated the potential positive effects of kefir consumption on blood parameters and blood glucose levels in diabetic rabbits. A total of 48 rabbits with an initial weight of 250 grams were divided into four research treatments (Control, DM+kefir: diabetic rabitts + 3.6 ml kefir/ 200 g rabitts, DM+Gliben: diabetic rabitts + 600 ?g Glibenclamide /kg rabitts) and kept under standard conditions for 40 days. Blood parameter measurements were conducted on the 20th and 40th days of the experiment. The results revealed consistent findings for the evaluated indicators across both time points. Significant differences (P<0.05) were observed in the levels of cholesterol, triglycerides, glucose, and LDL between the treated diabetic rabbits and the control group. Furthermore, the diabetic rabbits exhibited significantly lower levels of HDL compared to the control group (P<0.05). Notably, the use of kefir as a treatment led to a significant reduction in these indicators, which were significantly different from the diabetic treatment group (P<0.05). Interestingly, no significant difference was observed between the kefir treatment and the Glibon drug, as indicated by several indicators (P>0.05). These findings highlight the potential beneficial effects of kefir on blood parameters in diabetic rabbits.
Kefir, rabitts, diabetics, Glibenclamide, glucose, lipid
Awwad, S. F., Abdalla, A., Howarth, F. C., Stojanovska, L., Kamal-Eldin, A., & Ayyash, M. M.
(2022). Invited Review: Potential effects of short-and long-term intake of fermented dairy
products on prevention and control of type 2 diabetes mellitus. Journal of dairy science.
Ayepola, O. R. (2014). Effects of kolaviron–a Garcinia kola biflavonoid on biochemical and
histological parameters in streptozotocin-induced diabetes and diabetic complications
(nephrotoxicity and hepatotoxicity) in male Wistar rats. Cape Peninsula University of
Technology.
Bengoa, A. A., Iraporda, C., Garrote, G. L., & Abraham, A. G. (2019). Kefir micro?organisms:
their role in grain assembly and health properties of fermented milk. Journal of applied
microbiology, 126(3), 686-700.
Boyle, P. J. (2007). Diabetes mellitus and macrovascular disease: mechanisms and mediators.
The American journal of medicine, 120(9), S12-S17.
Brasil, G. A., de Almeida Silva-Cutini, M., Moraes, F. d. S. A., Pereira, T. d. M. C., Vasquez, E.
C., Lenz, D., . . . Biancardi, V. C. (2018). The benefits of soluble non-bacterial fraction of
kefir on blood pressure and cardiac hypertrophy in hypertensive rats are mediated by an
increase in baroreflex sensitivity and decrease in angiotensin-converting enzyme activity.
Nutrition, 51, 66-72.
Castelli, W. P., Garrison, R. J., Wilson, P. W., Abbott, R. D., Kalousdian, S., & Kannel, W. B.
(1986). Incidence of coronary heart disease and lipoprotein cholesterol levels: the
Framingham Study. Jama, 256(20), 2835-2838.
Castellone, V., Bancalari, E., Rubert, J., Gatti, M., Neviani, E., & Bottari, B. (2021). Eating
fermented: Health benefits of LAB-fermented foods. Foods, 10(11), 2639.
Ceriello, A. (2006). Oxidative stress and diabetes-associated complications. Endocrine Practice,
12, 60-62.
Duarte, W. F., Dias, D. R., Oliveira, J. M., Teixeira, J. A., e Silva, J. B. d. A., & Schwan, R. F.
(2010). Characterization of different fruit wines made from cacao, cupuassu, gabiroba,
jaboticaba and umbu. LWT-Food Science and Technology, 43(10), 1564-1572.
Eckhard, M., Lengler, A., Liersch, J., Bretzel, R., & Mayser, P. (2007). Fungal foot infections in
patients with diabetes mellitus–results of two independent investigations. Mycoses, 50,
14-19.
Fuquay, J. W., McSweeney, P. L., & Fox, P. F. (2011). Encyclopedia of dairy sciences:
Academic Press.
Gao, J., Gu, F., Ruan, H., Chen, Q., He, J., & He, G. (2013). Induction of apoptosis of gastric
cancer cells SGC7901 in vitro by a cell-free fraction of Tibetan kefir. International Dairy
Journal, 30(1), 14-18.
Gul, O., Mortas, M., Atalar, I., Dervisoglu, M., & Kahyaoglu, T. (2015). Manufacture and
characterization of kefir made from cow and buffalo milk, using kefir grain and starter
culture. Journal of dairy science, 98(3), 1517-1525.
Hadisaputro, S., Djokomoeljanto, R., & Soesatyo, M. (2012). The effects of oral plain kefir
supplementation on proinflammatory cytokine properties of the hyperglycemia Wistar rats
induced by streptozotocin. Acta Med Indones, 44(2), 100-104.