Zhou Guiqing, Liu Jianhui, Li Xiangyang, Sang Yujian, Zhang Yue, Gao Leqiang, Wang Ji, Yu Yang, Ge Wei, Sun Zhiwei, Zhou Xianqing
Department of Toxicology and Hygienic Chemistry, School of Public Health, Capital Medical University, Beijing, 100069, China; Beijing Key Laboratory of Environmental Toxicology, Capital Medical University, Beijing, 100069, China.
Centre of Reproduction, Development and Aging (CRDA), Faculty of Health Sciences, University of Macau, Taipa, Macau, 999078, China.
Environ Pollut. 2021 May 15;277:116771. doi: 10.1016/j.envpol.2021.116771. Epub 2021 Feb 25.
Silica nanoparticles (SiNPs) could cause reproductive toxicity. The role of miRNAs in reproductive toxicity induced by SiNPs is still ambiguous. The present study was designed to investigate the role of miRNA-450 b-3p. In vivo, 40 male mice were randomly divided into control, and 20 mg/kg SiNPs groups. The mice were administrated by tracheal perfusion for 35 days. In vitro, spermatocyte cells (GC-2spd cells) were divided into 6 groups: 0 μg/mL SiNPs groups, 5 μg/mL SiNPs groups, 5 μg/mL SiNPs + miRNA-450 b-3p mimic transfection group, 5 μg/mL SiNPs + miRNA-450 b-3p mimic negative control group, 5 μg/mL SiNPs + miRNA-450 b-3p inhibitor transfection group, and 5 μg/mL SiNPs + miRNA-450 b-3p inhibitor negative control group. The results showed that SiNPs induced the apoptosis of spermatogenic cells, decreased the quantity and quality of the sperm, reduced the expressions of miR-450 b-3p, and increased the protein expressions of the MTCH2, BID, BAX, Cytochrome C, Caspase-9, and Caspase-3 in the testis. In vitro, the mimic of miRNA-450 b-3p reversed the decrease of viability and the increase of apoptosis rate and significantly antagonized the expression enhancements of the MTCH2, BID, BAX, Cytochrome C, Caspase-9, Caspase-3 induced by SiNPs, while inhibitor of miRNA-450 b-3p further promoted the effects induced by SiNPs. The result suggested that SiNPs could inhibit the miR-450 b-3p expression resulting in activation of the mitochondrial apoptosis signaling pathways by regulating the MTCH2 in the spermatocyte cells and, thus, induce the reproductive toxicity.
二氧化硅纳米颗粒(SiNPs)可导致生殖毒性。miRNA在SiNPs诱导的生殖毒性中的作用仍不明确。本研究旨在探讨miRNA - 450 b - 3p的作用。体内实验中,40只雄性小鼠随机分为对照组和20 mg/kg SiNPs组。通过气管灌注给药35天。体外实验中,精母细胞(GC - 2spd细胞)分为6组:0 μg/mL SiNPs组、5 μg/mL SiNPs组、5 μg/mL SiNPs + miRNA - 450 b - 3p模拟物转染组、5 μg/mL SiNPs + miRNA - 450 b - 3p模拟物阴性对照组、5 μg/mL SiNPs + miRNA - 450 b - 3p抑制剂转染组和5 μg/mL SiNPs + miRNA - 450 b - 3p抑制剂阴性对照组。结果显示,SiNPs诱导生精细胞凋亡,降低精子数量和质量,降低miR - 450 b - 3p表达,并增加睾丸中MTCH2、BID、BAX、细胞色素C、半胱天冬酶 - 9和半胱天冬酶 - 3的蛋白表达。体外实验中,miRNA - 450 b - 3p模拟物逆转了活力的降低和凋亡率的增加,并显著拮抗了SiNPs诱导的MTCH2、BID、BAX、细胞色素C、半胱天冬酶 - 9、半胱天冬酶 - 3的表达增强,而miRNA - 450 b - 3p抑制剂进一步促进了SiNPs诱导的效应。结果表明,SiNPs可抑制miR - 450 b - 3p表达,通过调节精母细胞中的MTCH2激活线粒体凋亡信号通路,从而诱导生殖毒性