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首页> 外文期刊>International Journal of Andrology >Advanced glycation end products accumulate in the reproductive tract of men with diabetes.
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Advanced glycation end products accumulate in the reproductive tract of men with diabetes.

机译:晚期糖基化终产物积累在糖尿病男性的生殖道中。

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摘要

Light microscopic studies comparing sperm parameters show little association between diabetes and male fertility. However, with the introduction of new analytical techniques, evidence is now emerging of previously undetectable effects of diabetes on sperm function. Specifically, a recent study has found a significantly higher sperm nuclear DNA fragmentation in diabetic men. As advanced glycation end products (AGEs) are important instigators of oxidative stress and cell dysfunction in numerous diabetic complications, we hypothesized that these compounds could also be present in the male reproductive tract. The presence and localization of the most prominent AGE, carboxymethyl-lysine (CML), in the human testis, epididymis and sperm was determined by immunohistochemistry. Parallel ELISA and Western blot analyses were performed to ascertain the amount of CML in seminal plasma and sperm from 13 diabetic and nine non-diabetic subjects. CML immunoreactivity was found throughout the seminiferous epithelium, the nuclei of spermatogonia and spermatocytes, in the basal and principle cells cytoplasm and nuclei of the caput epididymis and on most sperm tails, mid pieces and all cytoplasmic droplets. The acrosomal cap, especially the equatorial band, was prominently stained in diabetic samples only. The amount of CML was significantly higher (p = 0.004) in sperm from non-diabetic men. Considering the known detrimental actions of AGEs in other organs, the presence, location and quantity of CML, particularly the increased expression found in diabetic men, suggest that these compounds may play a hitherto unrecognized role in male infertility.
机译:光学显微镜研究比较了精子参数,显示糖尿病与男性生育能力之间几乎没有关联。但是,随着新分析技术的引入,现在出现了以前无法检测到的糖尿病对精子功能影响的证据。具体而言,最近的一项研究发现,糖尿病男性的精子核DNA断裂明显更高。由于高级糖基化终产物(AGEs)是许多糖尿病并发症中氧化应激和细胞功能障碍的重要诱因,因此我们假设这些化合物也可能存在于男性生殖道中。通过免疫组织化学确定人睾丸,附睾和精子中最突出的AGE,羧甲基赖氨酸(CML)的存在和定位。进行平行ELISA和Western印迹分析以确定来自13位糖尿病患者和9位非糖尿病患者的精浆和精液中CML的量。 CML免疫反应性遍布整个生精上皮,精原细胞和精母细胞核,附睾的基础和主要细胞细胞质和细胞核以及大多数精子的尾巴,中段和所有细胞质液滴。顶体帽,尤其是赤道带仅在糖尿病样品中显着染色。非糖尿病男性精子中的CML含量显着更高(p = 0.004)。考虑到AGEs在其他器官中的已知有害作用,CML的存在,位置和数量,特别是在糖尿病男性中发现的表达增加,表明这些化合物可能在男性不育症中发挥了迄今尚未被认识的作用。

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