It has been documented that exogenously administered irisin (10 fibronectin-type III domain-containing 5 [FNDC5]), which is a new polypeptide hormone, induces the browning of subcutaneous fat and thermogenesis. In this study, effects of physical activity and exogenous administration of irisin were investigated on parameters related with reproduction and metabolism in the high-fat diet-induced obesity model of the female C57BL/6J mice. Sixty mice were gathered at age approximately 5 to 6weeks and were divided into 3 groups. Control group remained sedentary. Irisin group remained also sedentary but intravenously received 10 FNDC5-expressing adenovirus after 20 weeks. Exercise group performed treadmill after 6 weeks. All mice were sacrificed 22 to 23 weeks after the start of the study. There was a significantly greater Δ weight in the controls compared with the irisin and exercise groups ( P < .05). Glucose and insulin levels were significantly higher in the controls ( P < .05). The serum irisin level was significantly higher in the exercise group ( P < .05). Serum luteinizing hormone levels were significantly increased in the irisin group ( P < .05). Serum anti-Müllerian hormone levels were significantly higher in irisin and exercise groups ( P < .05). There were significant negative correlations between serum irisin levels and Δ weight and homeostatic model assessment of insulin resistance ( r = -0.327, r = -0.297, respectively; P < .05 for both). The numbers of primordial follicles per ovary were similar ( P > .05), whereas primary and secondary follicles per ovary were higher in the irisin and exercise groups compared with controls ( P < .05). Pharmacologic introduction of irisin may improve metabolic factors such as insulin sensitivity and obesity by promoting weight loss and consequently improving the reproductive potential.
Donkey milk and donkey milk kefir exhibit antiproliferative, antimutagenic and antibacterial effects. We investigated the effects of donkey milk and donkey milk kefir on oxidative stress, apoptosis and proliferation in Ehrlich ascites carcinoma (EAC) in mice. Thirty-four adult male Swiss albino mice were divided into four groups as follows: group 1, administered 0.5 ml water; group 2, administered 0.5 ml water + EAC cells; group 3, administered 0.5 ml donkey milk + EAC cells; group 4, administered 0.5 ml donkey milk kefir + EAC cells. We introduced 2.5 x 10 EAC cells into each animal by subcutaneous injection. Tap water, donkey milk and donkey milk kefir were administered by gavage for 10 days. Animals were sacrificed on day 11. After measuring the short and long diameters of the tumors, tissues were processed for histology. To determine oxidative stress, cell death and proliferation iNOS and eNOS, active caspase-3 and proliferating cell nuclear antigen were assessed using immunohistochemistry. A TUNEL assay also was used to detect apoptosis. Tumor volume decreased in the donkey milk kefir group compared to the control and donkey milk groups. Tumor volume increased in the donkey milk group compared to the control group. Proliferating cell nuclear antigen levels were higher in the donkey milk kefir group compared to the control and donkey milk groups. The number of apoptotic cells was less in the donkey milk group, compared to the control, whereas it was highest in the donkey milk kefir group. Donkey milk administration increased eNOS levels and decreased iNOS levels, compared to the control group. In the donkey milk kefir group, iNOS levels were significantly lower than those of the control and donkey milk groups, while eNOS levels were similar to the control group. Donkey milk kefir induced apoptosis, suppressed proliferation and decreased co-expression of iNOS and eNOS. Donkey milk promoted development of the tumors. Therefore, donkey milk kefir appears to be more beneficial for treating breast cancer than donkey milk.
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