Aksu Emrah Hicazi, Kandemir Fatih Mehmet, Küçükler Sefa
Veterinary Medicine Faculty, Department of Reproduction and Artificial Insemination, Atatürk University, Erzurum, Turkey.
Veterinary Medicine Faculty, Department of Biochemistry, Atatürk University, Erzurum, Turkey.
Andrologia. 2021 Mar;53(2):e13900. doi: 10.1111/and.13900. Epub 2020 Dec 1.
This study has been conducted to investigate the effect of hesperidin on colistin-induced reproductive damage in male rats. Twenty-four adult male Sprague Dawley rats were used as animal material. They were divided into four groups: control group, received physiological saline for 7 days by oral gavage; hesperidin group, received 300 mg/kg day hesperidin for 7 days; colistin group, received 73 mg/kg (total dose) colistin during 7 days; and colistin + hesperidin group, received 300 mg/kg day hesperidin following the colistin treatment. At the end of the study, routine spermatological parameters and biochemical evaluations were assayed. Also, apoptosis and autophagy biomarkers in testes were evaluated. Colistin increased oxidative stress, apoptosis and autophagy expression levels in testis. Hesperidin supplementation significantly decreased the oxidative stress levels in the testes of the colistin + hesperidin group when compared to the colistin group. The highest apoptosis and autophagy expression levels were detected in the colistin group. These values were statistically lower in the colistin + hesperidin group when compared to the colistin group. Colistin treatment decreased the percentage of sperm motility and increased sperm abnormality. Hesperidin supplementation mitigated significantly mentioned side effects compared to the colistin group. In conclusion, hesperidin supplementation can be a good strategy to mitigate colistin-induced testicular toxicity.
本研究旨在探讨橙皮苷对雄性大鼠黏菌素诱导的生殖损伤的影响。选用24只成年雄性Sprague Dawley大鼠作为实验动物。将它们分为四组:对照组,经口灌胃给予生理盐水7天;橙皮苷组,给予300 mg/kg·天的橙皮苷,持续7天;黏菌素组,在7天内给予73 mg/kg(总剂量)的黏菌素;黏菌素+橙皮苷组,在黏菌素治疗后给予300 mg/kg·天的橙皮苷。在研究结束时,检测常规精子学参数和生化指标。此外,还评估了睾丸中的凋亡和自噬生物标志物。黏菌素增加了睾丸中的氧化应激、凋亡和自噬表达水平。与黏菌素组相比,补充橙皮苷显著降低了黏菌素+橙皮苷组大鼠睾丸中的氧化应激水平。黏菌素组检测到最高的凋亡和自噬表达水平。与黏菌素组相比,黏菌素+橙皮苷组的这些值在统计学上较低。黏菌素治疗降低了精子活力百分比并增加了精子异常率。与黏菌素组相比,补充橙皮苷显著减轻了上述副作用。总之,补充橙皮苷可能是减轻黏菌素诱导的睾丸毒性的良好策略。