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Advances in mechanisms and signaling pathways of carbon nanotube toxicity

机译:碳纳米管毒性机理和信号传导途径的研究进展

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摘要

Carbon nanotubes (CNT) have been developed into new materials with a variety of industrial and commercial applications. In contrast, the physicochemical properties of CNT at the nanoscale render them the potency to generate toxic effects. Indeed, the potential health impacts of CNT have drawn a great deal of attention in recent years, owing to their identified toxicological and pathological consequences including cytotoxicity, inflammation, fibrosis, genotoxicity, tumorigenesis, and immunotoxicity. Understanding the mechanisms by which CNT induce toxicity and pathology is thus urgently needed for accurate risk assessment of CNT exposure in humans, and for safe and responsible development and commercialization of nanotechnology. Here, we summarize and discuss recent advances in this area with a focus on the molecular interactions between CNT and mammalian systems, and the signaling pathways important for the development of CNT toxicity such as the NF-κB, NLRP3 inflammasome, TGF-β1, MAPK, and p53 signaling cascades. With the current mechanistic evidence summarized in this review, we expect to provide new insights into CNT toxicology at the molecular level and offer new clues to the prevention of health effects resulting from CNT exposure. Moreover, we disclose questions and issues that remain in this rapidly advancing field of nanotoxicology, which would facilitate ascertaining future research directions.
机译:碳纳米管(CNT)已被开发为具有多种工业和商业应用的新材料。相反,碳纳米管的物理化学性质使其具有产生毒性作用的能力。确实,由于碳纳米管已确定的毒理学和病理学后果,包括细胞毒性,炎症,纤维化,遗传毒性,肿瘤发生和免疫毒性,近年来,碳纳米管对健康的潜在影响已引起了广泛关注。因此,迫切需要了解CNT诱导毒性和病理的机制,以准确评估人体中CNT暴露的风险,并安全,负责地开发纳米技术并将其商业化。在这里,我们总结并讨论了该领域的最新进展,重点是CNT与哺乳动物系统之间的分子相互作用,以及对CNT毒性发展至关重要的信号传导途径,例如NF-κB,NLRP3炎性小体,TGF-β1,MAPK和p53信号级联。借助本综述中总结的当前机制证据,我们希望在分子水平上提供有关CNT毒理学的新见识,并为预防由于CNT暴露对健康的影响提供新的线索。此外,我们公开了纳米毒理学这个快速发展领域中仍然存在的问题,这将有助于确定未来的研究方向。

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