Nasrolahi Ozra, Khaneshi Fereshteh, Rahmani Fatemeh, Razi Mazdak
Department of Biology, Faculty of Sciences, Urmia University, Urmia, Iran.
Department of Comparative Histology and Embryology, Faculty of Veterinary Medicine, Urmia University, Urmia, Iran.
Iran J Reprod Med. 2013 Dec;11(12):1013-20.
The global prevalence of diabetes mellitus is on rise. Diabetes-induced oxidative stress has been known to affect liver, pancreas, kidney and reproductive organs pathologically. Honey is a natural product of bee with antioxidant properties.
Current study aimed to analyze the protective effects of Metformin (MF) alone and MF+ natural honey co-administration on diabetes-induced histological derangements in testis of rats.
Thirty six, mature male Wistar rats were randomly divided into six groups including; control, honey-dosed non-diabetic, diabetes-induced (65 mg/kg, single dose), honey-administrated diabetic (1.0 g/kg/day), Metformin-received diabetic (100 mg/kg/day), Metformin and honey-co-treated diabetic which were followed 40 days. The animals were anesthetized by diethyl ether and the blood samples were collected. The serum levels of testosterone, Insulin, LH and FSH analyzed using antibody enzyme immunoassay method. The testicular tissues were dissected out and underwent to histological analyses.
The biochemical analyses revealed that the diabetes resulted in significantly reduced testosterone (p<0.01), LH and FSH (P<0.01, 0.001) levels in serum. Light microscopic analyses showed remarkable (p<0.01) reduction in seminiferous tubules diameter (STD), spermiogenesis index (SPI) and thickness of the epithelium in the diabetic group versus control and co-treated groups. Simultaneous administration of the honey with MF could fairly up-regulate testosterone, LH and FSH levels. The animals in metformin and honey-treated group exhibited with improved tubules atrophy, elevated spermiogenesis index and germinal epithelium thickness.
Our data indicated that co-administration of Metformin and honey could inhibit the diabetes-induced damages in testicular tissue. Moreover, the simultaneous administration of metformin and honey up-regulated the diabetes-reduced insulin, LH, FSH and testosterone levels. This article extracted from M.Sc. thesis. (Ozra Nasrolahi).
全球糖尿病患病率呈上升趋势。已知糖尿病诱导的氧化应激会对肝脏、胰腺、肾脏和生殖器官产生病理影响。蜂蜜是蜜蜂的天然产物,具有抗氧化特性。
本研究旨在分析二甲双胍(MF)单独使用以及MF与天然蜂蜜联合使用对糖尿病诱导的大鼠睾丸组织学紊乱的保护作用。
将36只成熟雄性Wistar大鼠随机分为六组,包括:对照组、给予蜂蜜的非糖尿病组、糖尿病诱导组(65mg/kg,单次剂量)、给予蜂蜜的糖尿病组(1.0g/kg/天)、接受二甲双胍的糖尿病组(100mg/kg/天)、二甲双胍和蜂蜜联合治疗的糖尿病组,实验持续40天。用乙醚麻醉动物并采集血样。采用抗体酶免疫分析法分析血清中睾酮、胰岛素、促黄体生成素(LH)和促卵泡生成素(FSH)的水平。取出睾丸组织进行组织学分析。
生化分析显示,糖尿病导致血清中睾酮(p<0.01)、LH和FSH(P<0.01,0.001)水平显著降低。光镜分析显示,与对照组和联合治疗组相比,糖尿病组的生精小管直径(STD)、精子发生指数(SPI)和上皮厚度显著(p<0.01)降低。蜂蜜与MF同时给药可适度上调睾酮、LH和FSH水平。二甲双胍和蜂蜜治疗组的动物表现出肾小管萎缩改善、精子发生指数升高和生精上皮厚度增加。
我们的数据表明,二甲双胍和蜂蜜联合使用可抑制糖尿病对睾丸组织的损伤。此外,二甲双胍和蜂蜜同时给药可上调糖尿病降低的胰岛素、LH、FSH和睾酮水平。本文摘自硕士学位论文。(奥兹拉·纳斯拉希)