首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Shedding light into the relevance of telomeres in human reproduction and male factor infertility
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Shedding light into the relevance of telomeres in human reproduction and male factor infertility

机译:将光线缩小到人类繁殖中端粒的相关性和男性因子不育症

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摘要

Sperm telomere length (STL) is a promising new parameter for sperm quality analysis that may elucidate the molecular mechanisms underlying the idiopathic cases of male factor infertility, which represent almost half of all the male factor infertility cases worldwide. Telomeres consist of nucleoprotein structures present at the ends of eukaryotic chromosomes, whose protective functions maintain the genomic stability. Their role in reproduction includes an active intervention during gametogenesis, fertilization, and preimplantation embryo development. In consonance, studies have shown that compromised telomere homeostasis is associated with male infertility. Since critically short telomeres have their function affected, assessing STL may be a fast and economic method for sperm quality analysis and expectantly contribute to improve the success of fertility treatments. This hypothesis is supported by several reports associating STL with seminal parameters, sperm genome integrity, and clinical outcomes. However, there are other studies in the literature that do not demonstrate these associations. Additionally, it is still not clear whether the lengthening mechanisms of telomeres occurring during early embryo development resume the inherited telomere length. Further research is essential to clarify the suitability of STL as a biomarker for male infertility, before it could be routinely implemented in medically assisted reproduction centers. Understanding the molecular mechanisms underlying STL function and dynamics will provide us new insights into the origins of male infertility and a possible new useful tool as an outcome predictor for assisted reproduction.
机译:精子端粒长度(STL)是精子质量分析的有希望的新参数,可以阐明雄性因素不孕症的分子机制,这代表了全球所有男性因素不孕症病例的几半。端粒由存在于真核染色体的末端存在的核蛋白结构,其保护功能保持基因组稳定性。它们在繁殖中的作用包括在配子发生,施肥和胚胎发育过程中的活跃干预。在同性恋中,研究表明,受损的端粒稳态与男性不孕症有关。由于批判性短端粒体具有它们的功能影响,因此评估STL可能是精子质量分析的快速和经济的方法,并期望有助于提高生育治疗的成功。将STL与精髓基因组完整性和临床结果相关的几份报告支持该假设。然而,文献中还有其他研究不会展示这些关联。此外,尚不清楚在早期胚胎发育期间发生端粒的延长机制是否恢复了遗传的端粒长度。进一步的研究对于阐明STL作为男性不孕症的生物标志物的适用性至关重要,在医学辅助的繁殖中心常规实施之前。了解STL函数和动力学的分子机制将为我们新的见解,以对男性不孕症的起源和可能的新有用工具作为辅助繁殖的结果预测因素。

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