Stomatological Hospital, Southern Medical University, Guangzhou 510280, China.
Stomatological Hospital, Southern Medical University, Guangzhou 510280, China.
Toxicology. 2024 May;504:153803. doi: 10.1016/j.tox.2024.153803. Epub 2024 Apr 12.
Nanomaterials are widely utilized in several domains, such as everyday life, societal manufacturing, and biomedical applications, which expand the potential for nanomaterials to penetrate biological barriers and interact with cells. Multiple studies have concentrated on the particular or improper utilization of nanomaterials, resulting in cellular death. The primary mode of cell death caused by nanotoxicity is programmable cell death, which includes apoptosis, ferroptosis, necroptosis, and pyroptosis. Based on our prior publications and latest research, mitochondria have a vital function in facilitating programmed cell death caused by nanomaterials, as well as initiating or transmitting death signal pathways associated with it. Therefore, this review takes mitochondria as the focal point to investigate the internal molecular mechanism of nanomaterial-induced programmed cell death, with the aim of identifying potential targets for prevention and treatment in related studies.
纳米材料广泛应用于日常生活、社会制造和生物医学等领域,这增加了纳米材料穿透生物屏障并与细胞相互作用的潜力。多项研究集中在纳米材料的特殊或不当使用上,导致细胞死亡。纳米毒性引起的主要细胞死亡方式是程序性细胞死亡,包括细胞凋亡、铁死亡、坏死性凋亡和细胞焦亡。基于我们之前的出版物和最新研究,线粒体在促进纳米材料引起的程序性细胞死亡以及启动或传递与之相关的死亡信号通路方面发挥着重要作用。因此,本综述以线粒体为重点,研究纳米材料诱导程序性细胞死亡的内在分子机制,以期为相关研究中预防和治疗的潜在靶点提供参考。