微(纳)塑料诱导的程序性细胞死亡与疾病风险的研究进展

Research Progress on Micro(nano)plastic-Induced Programmed Cell Death Associated with Disease Risks.

作者信息

Liu Huanpeng, Li Huiqi, Chen Ting, Yu Fan, Lin Qizhuan, Zhao Haiyang, Jin Libo, Peng Renyi

机构信息

Institute of Life Sciences & Biomedicine Collaborative Innovation Center of Zhejiang Province, College of Life and Environmental Science, Wenzhou University, Wenzhou 325035, China.

出版信息

Toxics. 2024 Jul 5;12(7):493. doi: 10.3390/toxics12070493.

Abstract

Due to their robust migration capabilities, slow degradation, and propensity for adsorbing environmental pollutants, micro(nano)plastics (MNPs) are pervasive across diverse ecosystems. They infiltrate various organisms within different food chains through multiple pathways including inhalation and dermal contact, and pose a significant environmental challenge in the 21st century. Research indicates that MNPs pose health threats to a broad range of organisms, including humans. Currently, extensive detection data and studies using experimental animals and in vitro cell culture indicate that MNPs can trigger various forms of programmed cell death (PCD) and can induce various diseases. This review provides a comprehensive and systematic analysis of different MNP-induced PCD processes, including pyroptosis, ferroptosis, autophagy, necroptosis, and apoptosis, based on recent research findings and focuses on elucidating the links between PCD and diseases. Additionally, targeted therapeutic interventions for these diseases are described. This review provides original insights into the opportunities and challenges posed by current research findings. This review evaluates ways to mitigate various diseases resulting from cell death patterns. Moreover, this paper enhances the understanding of the biohazards associated with MNPs by providing a systematic reference for subsequent toxicological research and health risk mitigation efforts.

摘要

由于其强大的迁移能力、缓慢的降解速度以及吸附环境污染物的倾向,微(纳)塑料(MNPs)在各种生态系统中广泛存在。它们通过包括吸入和皮肤接触在内的多种途径渗透到不同食物链中的各种生物体内,在21世纪构成了重大的环境挑战。研究表明,MNPs对包括人类在内的广泛生物构成健康威胁。目前,大量的检测数据以及使用实验动物和体外细胞培养的研究表明,MNPs可引发各种形式的程序性细胞死亡(PCD)并可诱发各种疾病。本综述基于最近的研究结果,对不同的MNPs诱导的PCD过程进行了全面系统的分析,包括焦亡、铁死亡、自噬、坏死性凋亡和凋亡,并着重阐明PCD与疾病之间的联系。此外,还描述了针对这些疾病的靶向治疗干预措施。本综述对当前研究结果带来的机遇和挑战提供了独到的见解。本综述评估了减轻因细胞死亡模式导致的各种疾病的方法。此外,本文通过为后续毒理学研究和健康风险缓解工作提供系统参考,增进了对与MNPs相关的生物危害的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc45/11281249/6e65025a2a71/toxics-12-00493-g001.jpg

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