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镉通过减少外泌体-MVBs 的分泌来损害精子发生:一种新途径。

Cadmium-induced impairment of spermatozoa development by reducing exosomal-MVBs secretion: a novel pathway.

机构信息

College of Veterinary Medicine, Yangzhou University, Yangzhou 225009, Jiangsu, P.R. China.

Jiangsu Co-Innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses, Yangzhou 225009, Jiangsu, P.R China.

出版信息

Aging (Albany NY). 2023 Apr 25;15(10):4096-4107. doi: 10.18632/aging.204675.

Abstract

Cadmium is a heavy environmental pollutant that presents a high risk to male-fertility and targets the different cellular and steroidogenic supporting germ cells networks during spermatogenesis. However, the mechanism accounting for its toxicity in multivesicular bodies (MVBs) biogenesis, and exosomal secretion associated with spermatozoa remains obscure. In the current study, the light and electron microscopy revealed that, the Sertoli cells perform a dynamic role with secretion of well-developed early endosomes (Ee) and MVBs pathway associated with spermatozoa during spermatogenesis. In addition, some apical blebs containing nano-scale exosomes located on the cell surface and after fragmentation nano-scale exosomes were directly linked with spermatozoa in the luminal compartment of seminiferous tubules, indicating normal spermatogenesis. Controversially, the cadmium treated group showed limited and deformed spermatozoa with damaging acromion process and mid-peace, and the cytoplasmic vacuolization of spermatids. After cadmium treatment, there is very limited biogenesis of MVBs inside the cytoplasm of Sertoli cells, and no obvious secretions of nano-scale exosomes interacted with spermatozoa. Interestingly, the cadmium treated group demonstrated relatively higher formation of autophagosomes and autolysosome, and the autophagosomes were enveloped by MVBs that later formed the amphisome which degraded by lysosomes, indicating the hypo-spermatogenesis. Moreover, cadmium declined the exosomal protein cluster of differentiation (CD63) and increased the autophagy-related proteins microtubule-associated light chain (LC3), sequestosome 1 (P62) and lysosomal-associated membrane protein 2 (LAMP2) expression level were confirmed by Western blotting. These results provide rich information regarding how cadmium is capable of triggering impaired spermatozoa development during spermatogenesis by reduction of MVBs pathway through high activation of autophagic pathway. This study explores the toxicant effect of cadmium on nano-scale exosomes secretion interacting with spermatozoa.

摘要

镉是一种重环境污染物,对男性生育能力有很高的风险,并且在精子发生过程中靶向不同的细胞和类固醇生成支持细胞网络。然而,其在多囊体(MVBs)生物发生和与精子相关的外泌体分泌中的毒性机制尚不清楚。在本研究中,光镜和电镜显示,在精子发生过程中,支持细胞通过分泌发育良好的早期内体(Ee)和与精子相关的 MVBs 途径发挥动态作用。此外,一些位于细胞表面的顶端泡含有纳米级别的外泌体,在分裂后纳米级别的外泌体直接与生精小管管腔中的精子相连,表明正常的精子发生。相反,镉处理组显示精子数量有限且形态异常,顶体过程和中段受损,精子细胞质有空泡化。镉处理后,支持细胞细胞质内 MVBs 的生物发生非常有限,没有明显的纳米级外泌体分泌与精子相互作用。有趣的是,镉处理组显示相对较高的自噬体和自溶体形成,自噬体被 MVBs 包裹,随后形成双小体,被溶酶体降解,表明精子发生减少。此外,镉降低了外泌体蛋白簇分化(CD63),并增加了自噬相关蛋白微管相关轻链(LC3)、自噬相关蛋白 1(P62)和溶酶体相关膜蛋白 2(LAMP2)的表达水平,这通过 Western blot 得到了证实。这些结果提供了丰富的信息,说明镉如何通过高激活自噬途径减少 MVBs 途径,从而引发精子发生过程中精子发育受损。本研究探讨了镉对与精子相互作用的纳米级外泌体分泌的毒性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82fb/10258001/4143b9fb09d2/aging-15-204675-g001.jpg

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