• 网站首页
  • 期刊简介
  • 编委会
  • 投稿须知
  • 绘图要求
  • 期刊订阅
  • 联系我们
  • English

用户登录

  • 作者登录
  • 审稿登录
  • 编辑登录
  • 读者登录

在线期刊

  • 当期目次

  • 过刊浏览

  • Email Alert

  • RSS

  • 文章点击排行

  • 文章下载排行

下载专区

  • 中国科学引文数据库(CSCD)来源期刊列表(2021—2022年度)

  • 2018年中国科技核心期刊目录(自然科学卷)

  • 标点符号用法

  • 《地球环境学报》绘图要求

  • 《地球环境学报》征稿简则

  • 2017年中国科技核心期刊目录(自然科学卷)

  • 2016年中国科技核心期刊目录 (自然科学卷)

  • 国标文献著录格式

友情链接

  • 中国科学院
  • 国家自然科学基金委员会
  • 中华人民共和国科学技术部
  • 中国科学院地球环境研究所
  • 中国科学院地球环境研究所...
引用本文:黄虹,万雪莹,陈廷涛,邹长伟.2020.PM2.5的健康危害、毒理效应与作用机制的研究[J].地球环境学报,11(2):125-142
HUANG Hong, WAN Xueying, CHEN Tingtao, ZOU Changwei.2020.Update on the toxicological effects and mechanism of PM2.5[J].Journal of Earth Environment,11(2):125-142
【打印本页】   【下载PDF全文】   【查看/发表评论】  【下载PDF阅读器】  【关闭】
←前一篇|后一篇→ 过刊浏览    高级检索
本文已被:浏览 4670次   下载 2198次 本文二维码信息
码上扫一扫!
分享到: 微信 更多
字体:加大+|默认|缩小-
PM2.5的健康危害、毒理效应与作用机制的研究
黄虹,万雪莹,陈廷涛,邹长伟
1.南昌大学 资源环境与化工学院,鄱阳湖环境与资源利用教育部重点实验室,南昌 330031 2.南昌大学 转化医学研究院,南昌 330031
摘要:
大气颗粒物对人体健康的影响在世界范围内引起关注,尤其是细粒子(PM2.5,fine particulate matter)因粒径小、成分复杂,对人体健康的影响尤为突出。PM2.5的毒理效应与作用机制是当前研究的热点,分析其研究现状与存在问题能更好地把握其核心领域并开展更进一步的研究。基于文献检索与分析,系统梳理了PM2.5危害导致的疾病类型;介绍了PM2.5毒理研究的主要实验手段;讨论当前认知的PM2.5毒理效应(包括PM2.5不同组分、不同来源、不同季节的影响);汇总PM2.5毒理作用机制研究方法的原理、特点、检测指标与测定方法,解析目前研究认为的五种主要的PM2.5毒理作用机制。在分析已有研究成果的基础之上,就PM2.5毒理实验、方法和研究内容方面存在的不足进行讨论,并提出今后需要重点开展的研究方向,以期为PM2.5健康危害的准确评估和有效防治提供科学依据。
关键词:  PM2.5  健康危害  毒理实验  健康效应  作用机制
DOI:10.7515/JEE191005
CSTR:32259.14.JEE191005
分类号:
基金项目:国家自然科学基金(41765009);南昌大学研究生创新专项资金(CX2018239)
英文基金项目:National Natural Science Foundation of China (41765009); Postgraduate Innovation Special Fund project of Nanchang University (CX2018239)
Update on the toxicological effects and mechanism of PM2.5
HUANG Hong, WAN Xueying, CHEN Tingtao, ZOU Changwei
1. Key Laboratory of Poyang Lake Environment and Resource Utilization, Ministry of Education, School of Resources Environmental and Chemical Engineering, Nanchang University, Nanchang 330031, China 2. Institute of Translational Medicine, Nanchang University, Nanchang, Nanchang 330031, China
Abstract:
Background, aim, and scope The review deals with publications concerning the toxicological effects and mechanism of PM2.5. The impact of atmospheric particulate matter on human health has attracted worldwide attention. In particular, fine particles (PM2.5) have a greater impact on human health due to their small particle size and complex composition. As a consequence, identifying the mechanism of action of PM2.5 has always been a major objective of atmospheric environmental science research. Materials and methods The review describes the types of diseases caused by PM2.5, the experimental methods used in PM2.5 toxicology research, and the toxicological effects of PM2.5 (including the results of in vitro and in vivo experiments on PM2.5 characterised by different components, sources, and seasons), as well as the consensus mechanism of action of PM2.5. This review emphasizes that the mechanisms of action of PM2.5 vary according to component, source, and season. Results Several publications have been identified that PM2.5 can induce a variety of diseases. The mechanisms of action involve oxidative damage, inflammatory damage, DNA damage and mutations, apoptosis, and autophagy. Discussion Research on the underlying mechanism of PM2.5 might help to provide a scientific basis for accurately assessing the health hazards and effective prevention of PM2.5. The components of PM2.5 and the mechanisms of action of PM2.5 can vary, as can the target cells. Conclusions Air pollution is one of the main causes of global morbidity and mortality. The discussion of air pollution control and the pathogenesis of PM2.5 is an extremely important issue. Oxidative stress, inflammatory damage, DNA damage and mutations, apoptosis, and autophagy are the main mechanisms of PM2.5-induced disease. The results of PM2.5 with different components, sources, and seasons from in vitro and animal experiments provide a scientific basis for the accurate assessment and effective prevention of PM2.5 health hazards. Recommendations and perspectives In order to better explore the mechanism of action of PM2.5, toxicity research methods employing in vitro and in vivo experiments should be developed and improved, and the interactions between different PM2.5 components should be addressed. Intervention studies on PM2.5 health hazards and finding effective ways of reducing or preventing the health risks of PM2.5 are critical.
Key words:  PM2.5  health hazards  toxicological experiments  health effects  mechanisms of action
您是本站第  访问者
版权所有:《地球环境学报》编辑部 陕ICP备11001760号-3
主办:中国科学院地球环境研究所 地址:西安市雁塔区雁翔路97号 邮政编码:710061
电话:029-62336252 电子邮箱:jee@ieecas.cn
技术支持:北京勤云科技发展有限公司