Department of Toxicology and Sanitary Chemistry, School of Public Health, Capital Medical University, Beijing, 100069, PR China; Beijing Key Laboratory of Environmental Toxicology, Capital Medical University, Beijing, 100069, PR China.
Core Facilities for Electrophysiology, Core Facility Center, Capital Medical University, Beijing, 100069, PR China.
J Hazard Mater. 2020 Jun 5;391:122206. doi: 10.1016/j.jhazmat.2020.122206. Epub 2020 Jan 31.
Increasing environmental exposure to silica nanoparticles (SiNPs) and limited cardiotoxicity studies posed a challenge for the safety evaluation and management of these materials. This study aimed to explore the adverse effects and underlying mechanisms of subacute exposure to SiNPs on cardiac function in rats. Results from echocardiographic, ultrastructural and histopathological analysis found that SiNPs induced cardiac contractile dysfunction, accompanied by incomplete myocardial structures, disordered sarcomere segments, interstitial edema and myocyte apoptosis in heart. Levels of myocardial enzymes and inflammatory factors were markedly increased in both serum and heart tissue, accompanied by elevated levels of oxidative damage occurred in the hearts of SiNPs-treated rats. SiNPs significantly upregulated the expressions of inflammation and contraction-related proteins, including JNK, p-JNK, c-Jun, TF and PAR1. Lentivirus transfection of JNK shRNA showed the low-expression of JNK-facilitated F-actin and inhibited TF in the SiNPs-treated cardiomyocytes. Moreover, SiNPs activated the mRNA and protein levels of JNK/TF/PAR1 pathway, and these effects were significantly dampened after JNK knock down. Our results demonstrate that SiNPs trigger myocardial contractile dysfunction via JNK/TF/PAR1 signaling pathway.
环境中硅纳米粒子(SiNPs)暴露的增加和有限的心脏毒性研究对这些材料的安全性评估和管理提出了挑战。本研究旨在探讨亚急性 SiNPs 暴露对大鼠心脏功能的不良影响及其潜在机制。超声心动图、超微结构和组织病理学分析结果发现,SiNPs 诱导心脏收缩功能障碍,伴有心肌结构不完整、肌节片段紊乱、间质水肿和心肌细胞凋亡。血清和心脏组织中心肌酶和炎症因子水平明显升高,同时 SiNPs 处理大鼠的心脏发生氧化损伤。SiNPs 显著上调了炎症和收缩相关蛋白的表达,包括 JNK、p-JNK、c-Jun、TF 和 PAR1。JNK shRNA 的慢病毒转染显示,JNK 促进 F-肌动蛋白的低表达并抑制 SiNPs 处理的心肌细胞中的 TF。此外,SiNPs 激活了 JNK/TF/PAR1 通路的 mRNA 和蛋白水平,而 JNK 敲低后这些效应明显减弱。我们的结果表明,SiNPs 通过 JNK/TF/PAR1 信号通路触发心肌收缩功能障碍。