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糖尿病诱导的高血糖对精子发生过程中表观遗传修饰、DNA包装和甲基化的影响:一篇叙述性综述。

Effects of diabetes-induced hyperglycemia on epigenetic modifications and DNA packaging and methylation during spermatogenesis; A narrative review.

作者信息

Minas Aram, Camargo Mariana, Alves Marco G, Bertolla Ricardo Pimenta

机构信息

Department of Surgery, Division of Urology, Human Reproduction Section, São Paulo Federal University, São Paulo, Brazil.

Department of Anatomy and UMIB - Unit for Multidisciplinary Research in Biomedicine, ICBAS - School of Medicine and Biomedical Sciences, University of Porto, Porto, Portugal.

出版信息

Iran J Basic Med Sci. 2024;27(1):3-11. doi: 10.22038/IJBMS.2023.69604.15173.

Abstract

The impact of diabetes on various organs failure including testis has been highlighted during the last decades. If on one hand diabetes-induced hyperglycemia has a key role in induced damages; on the other hand, glucose deprivation plays a key role in inducing male infertility. Indeed, glucose metabolism during spermatogenesis has been highlighted due to post-meiotic germ cells drastic dependence on glucose-derived metabolites, especially lactate. In fact, hyperglycemia-induced spermatogenesis arrest has been demonstrated in various studies. Moreover, various sperm maturation processes related to sperm function such as motility are directly depending on glucose metabolism in Sertoli cells. It has been demonstrated that diabetes-induced hyperglycemia adversely impacts sperm morphology, motility and DNA integrity, leading to infertility. However, fertility quality is another important factor to be considered. Diabetes-induced hyperglycemia is not only impacting sperm functions, but also affecting sperm epigenome. DNA packing process and epigenetics modifications occur during spermatogenesis process, determining next generation genetic quality transmitted through sperm. Critical damages may occur due to under- or downregulation of key proteins during spermatogenesis. Consequently, unpacked DNA is more exposed to oxidative stress, leading to intensive DNA damages. Moreover, epigenetic dysregulation occurred during spermatogenesis may impact embryo quality and be transmitted to next generations, increasing offspring genetic issues. Herein we discuss the mechanisms by which diabetes-induced hyperglycemia can affect epigenetic modifications and DNA packaging and methylation during spermatogenesis thus promoting long-lasting effects to the next generation.

摘要

在过去几十年中,糖尿病对包括睾丸在内的各种器官衰竭的影响已受到关注。一方面,糖尿病诱导的高血糖在诱导损伤中起关键作用;另一方面,葡萄糖剥夺在诱导男性不育中起关键作用。事实上,由于减数分裂后生殖细胞对葡萄糖衍生代谢物,尤其是乳酸的极度依赖,精子发生过程中的葡萄糖代谢已受到关注。实际上,各种研究已证实高血糖诱导的精子发生停滞。此外,各种与精子功能相关的精子成熟过程,如运动能力,直接依赖于支持细胞中的葡萄糖代谢。已证明糖尿病诱导的高血糖对精子形态、运动能力和DNA完整性产生不利影响,导致不育。然而,生育质量是另一个需要考虑的重要因素。糖尿病诱导的高血糖不仅影响精子功能,还影响精子表观基因组。DNA包装过程和表观遗传修饰在精子发生过程中发生,决定了通过精子传递的下一代遗传质量。由于精子发生过程中关键蛋白质的下调或表达不足,可能会发生严重损伤。因此,未包装的DNA更容易受到氧化应激的影响,导致大量DNA损伤。此外,精子发生过程中发生的表观遗传失调可能影响胚胎质量并传递给下一代,增加后代的遗传问题。在此,我们讨论糖尿病诱导的高血糖在精子发生过程中影响表观遗传修饰、DNA包装和甲基化的机制,从而对下一代产生长期影响。

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