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首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Relevance of the Isoflavone Absorption and Testicular Function: A Systematic Review of Preclinical Evidence
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Relevance of the Isoflavone Absorption and Testicular Function: A Systematic Review of Preclinical Evidence

机译:异黄酮吸收和睾丸功能的相关性:对临床前证据的系统审查

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摘要

Isoflavone is a phytoestrogen found in different types of food that can act as endocrine disrupters leading to testicular dysfunction. Currently, fragmented data on the action of this compound in the testicles make it difficult to assess its effects to define a safe dose. Thus, we systematically reviewed the preclinical evidence of the impact of isoflavone on testicular function. We also determined which form (aglycones or glycosylated) was the most used, which allowed us to understand the main biological processes involved in testicular function after isoflavone exposure. This systematic review was carried out according to the PRISMA guidelines using a structured search on the biomedical databases MEDLINE (PubMed), Scopus, and Web of Science, recovering and analyzing 22 original studies. The bias analysis and the quality of the studies were assessed by the criteria described in the risk of bias tool developed by SYRCLE (Systematic Review Centre for Laboratory Animal Experimentation). The aglycones and glycosylated isoflavones proved to be harmful to the reproductive health, and the glycosylates at doses of 50, 100, 146, 200, 300, 500, and 600?mg/kg, in addition to 190 and 1000?mg/L, appear to be even more harmful. The main testicular pathologies resulting from the use of isoflavones are associated with Leydig cells resulting from changes in molecular functions and cellular components. The most used isoflavone to evaluate testicular changes was the genistein/daidzein conjugate. The consumption of high doses of isoflavones promotes changes in the functioning of Leydig cells, inducing testicular changes and leading to infertility in murine models.
机译:异黄酮是一种在不同类型的食物中发现的植物雌激素,可以充当内分泌破坏剂导致睾丸功能障碍。目前,睾丸中该化合物作用的碎片数据使其难以评估其效果以定义安全剂量。因此,我们系统地审查了异黄酮对睾丸功能的影响的临床前证据。我们还确定哪些形式(苷元或糖基化)是最常用的,这使我们能够了解参与睾丸功能异黄酮曝光后的主要生物学过程。该系统审查根据使用结构化搜索的生物医学数据库和科学版和科学网站,恢复和分析22项原创研究的PRISMA指南进行了该系统审查。通过赛道开发的偏置工具风险的标准评估了研究的偏见分析和研究质量(系统审查中心进行实验室动物实验)。糖苷配基和被证明是有害的生殖健康糖基化的异黄酮,并在500剂量的50,100,146,200,300,糖基化,和600?毫克/千克,除了190和1000?毫克/升,似乎更有害。由异黄酮产生的主要睾丸病理学与由分子官能和细胞组分的变化导致的Leydig细胞相关。最常用的异黄酮评估睾丸变化是Genistein / Daidzinin缀合物。高剂量异黄酮的消耗促进了Leydig细胞功能的变化,诱导睾丸变化并导致小鼠模型中的不孕症。

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