Institute of Comparative Medicine, College of Veterinary Medicine, Yangzhou University, Yangzhou 225009, China.
Jiangsu Co-innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses, Yangzhou University, Yangzhou 225009, China.
Cells. 2022 Jun 7;11(12):1863. doi: 10.3390/cells11121863.
Accumulation of silica nanoparticles (SNPs) in the testes leads to male reproductive toxicity. However, little is known about the effect and mechanistic insights of SNP-induced autophagy on apoptosis in Leydig cells. In this study, we aimed to verify the role of SNP-induced autophagy in apoptosis and explore the possible underlying mechanism in mouse primary Leydig cells (PLCs). H&E staining showed that SNPs changed the histological structures of the testes, including a reduction in the Leydig cell populations in vivo. CCK-8 assay showed that SNPs decreased cell viability, and flow cytometry showed that SNPs increased cell apoptosis, both in a dose-dependent manner in vitro. Additionally, Western blotting further found that SNPs activated autophagy by an increase in BECLIN-1, ATG16L, and LC3-II levels and promoted the intrinsic pathway of apoptosis by an increase in the BAX/BCL-2 ratio, cleaved the caspase 8 and caspase 3 levels. Furthermore, autophagy decreased SNP-induced apoptosis via regulation of the caspase 8 level combined with rapamycin, 3-methyladenine, and chloroquine. BECLIN-1 depletion increased the caspase 8 level, leading to an increase in SNP-induced cell apoptosis. Collectively, this evidence demonstrates that SNPs activated BECLIN-1-mediated autophagy, which prevented SNP-induced testicular toxicity via the inhibition of caspase 8-mediated cell apoptosis in Leydig cells.
硅纳米颗粒 (SNPs) 在睾丸中的积累会导致男性生殖毒性。然而,对于 SNP 诱导的自噬对睾丸间质细胞凋亡的影响及其机制知之甚少。在这项研究中,我们旨在验证 SNP 诱导的自噬在凋亡中的作用,并探讨在小鼠原代睾丸间质细胞 (PLCs) 中可能的潜在机制。H&E 染色显示 SNPs 改变了睾丸的组织学结构,包括体内睾丸间质细胞数量减少。CCK-8 测定表明 SNPs 降低了细胞活力,流式细胞术表明 SNPs 增加了细胞凋亡,两者均呈剂量依赖性。此外,Western blot 进一步发现 SNPs 通过增加 BECLIN-1、ATG16L 和 LC3-II 水平激活自噬,并通过增加 BAX/BCL-2 比值、切割 caspase 8 和 caspase 3 水平来促进凋亡的内在途径。此外,自噬通过调节 caspase 8 水平联合雷帕霉素、3-甲基腺嘌呤和氯喹来减少 SNP 诱导的细胞凋亡。BECLIN-1 耗竭增加了 caspase 8 水平,导致 SNP 诱导的细胞凋亡增加。总之,这些证据表明 SNPs 激活了 BECLIN-1 介导的自噬,通过抑制 caspase 8 介导的睾丸间质细胞凋亡来防止 SNP 诱导的睾丸毒性。