Zhang Bo, Xing Yuechen, Guo Youtong, Jin Shuo, Shao Xinran, Fan Jiaqi, Zhang Chunyi, Wang Yue
Department of Occupational Health, School of Public Health, Harbin Medical University, Harbin City, Heilongjiang Province 150086, China.
ACS Omega. 2024 Nov 11;9(47):46891-46903. doi: 10.1021/acsomega.4c05889. eCollection 2024 Nov 26.
In the field of contemporary medicine, with the rapid application of nanomaterials, evaluating their biocompatibility and potential toxicity has become increasingly important. This study characterized black phosphorus nanosheets (BPNSs) and employed both in vivo and in vitro models to assess the impact of BPNSs exposure on oxidative stress and pyroptosis in hepatocytes. We investigated the hepatotoxicity of this emerging nanomaterial and the protective role of melatonin against BPNSs induced hepatocyte pyroptosis. The results showed that BPNSs exposure reduced hepatocyte viability, induced morphological changes, and elevated the expression of pyroptosis-related proteins, suggesting that BPNSs promote hepatocyte pyroptosis through the ROS-NLRP3-GSDMD pathway, thereby exacerbating the inflammatory response. Melatonin, a bioactive substance with anti-inflammatory and antioxidant properties, was found in our study to significantly mitigate these adverse effects. It emphasized the role of melatonin in regulating ROS production and related pathways, effectively protecting hepatocytes from BPNSs induced damage. This study elucidates the mechanistic link between BPNSs exposure and hepatocyte pyroptosis, emphasizing the efficacy of melatonin as a protective agent. It offers new insights for preventing BPNSs induced liver injury and provides a foundation for safer nanomaterial application strategies.
在当代医学领域,随着纳米材料的迅速应用,评估其生物相容性和潜在毒性变得越来越重要。本研究对黑磷纳米片(BPNSs)进行了表征,并采用体内和体外模型来评估BPNSs暴露对肝细胞氧化应激和细胞焦亡的影响。我们研究了这种新兴纳米材料的肝毒性以及褪黑素对BPNSs诱导的肝细胞焦亡的保护作用。结果表明,BPNSs暴露降低了肝细胞活力,诱导了形态学变化,并提高了细胞焦亡相关蛋白的表达,这表明BPNSs通过ROS-NLRP3-GSDMD途径促进肝细胞焦亡,从而加剧炎症反应。褪黑素是一种具有抗炎和抗氧化特性的生物活性物质,我们的研究发现它能显著减轻这些不良反应。它强调了褪黑素在调节ROS产生和相关途径中的作用,有效保护肝细胞免受BPNSs诱导的损伤。本研究阐明了BPNSs暴露与肝细胞焦亡之间的机制联系,强调了褪黑素作为一种保护剂的功效。它为预防BPNSs诱导的肝损伤提供了新的见解,并为更安全的纳米材料应用策略提供了基础。