微/纳米塑料对哺乳动物消化道和呼吸道影响研究进展

邢博宇, 盛帅, 付亚琪, 周芷彤, 迟浩, 张雯. 微/纳米塑料对哺乳动物消化道和呼吸道影响研究进展[J]. 生态毒理学报, 2023, 18(5): 31-35. doi: 10.7524/AJE.1673-5897.20230520001
引用本文: 邢博宇, 盛帅, 付亚琪, 周芷彤, 迟浩, 张雯. 微/纳米塑料对哺乳动物消化道和呼吸道影响研究进展[J]. 生态毒理学报, 2023, 18(5): 31-35. doi: 10.7524/AJE.1673-5897.20230520001
Xing Boyu, Sheng Shuai, Fu Yaqi, Zhou Zhitong, Chi Hao, Zhang Wen. Progress on Effects of Micro/Nanoplastics on Digestive Tract and Respiratory Tract of Mammals[J]. Asian journal of ecotoxicology, 2023, 18(5): 31-35. doi: 10.7524/AJE.1673-5897.20230520001
Citation: Xing Boyu, Sheng Shuai, Fu Yaqi, Zhou Zhitong, Chi Hao, Zhang Wen. Progress on Effects of Micro/Nanoplastics on Digestive Tract and Respiratory Tract of Mammals[J]. Asian journal of ecotoxicology, 2023, 18(5): 31-35. doi: 10.7524/AJE.1673-5897.20230520001

微/纳米塑料对哺乳动物消化道和呼吸道影响研究进展

    作者简介: 邢博宇(2003-),男,本科生,研究方向为生态毒理学,E-mail:1206353715@qq.com
    通讯作者: 张雯,E-mail:zhangwen@nefu.edu.cn
  • 基金项目:

    东北林业大学院级大学生创新训练项目(202210225639);中国博士后面上基金资助项目(2015M581415);黑龙江省博士后资助项目(LBH-Z15005)

  • 中图分类号: X171.5

Progress on Effects of Micro/Nanoplastics on Digestive Tract and Respiratory Tract of Mammals

    Corresponding author: Zhang Wen, zhangwen@nefu.edu.cn
  • Fund Project:
  • 摘要: 塑料产品因其出色的功能在我们的日常生活中被广泛使用,但与此同时也产生了大量的塑料垃圾,这些塑料垃圾经多种途径分解成的微/纳米塑料广泛存在于环境中。微/纳米塑料通过食物、水和空气直接接触哺乳动物的消化道和呼吸道,引起哺乳动物消化道炎症反应、氧化应激、菌群失调和呼吸道细胞毒性,增加患慢性阻塞性肺病的风险以及与其吸附的其他有毒污染物联合作用对呼吸道产生的复合毒性等,危害人和动物健康。本文综述了微/纳米塑料对哺乳动物消化道和呼吸道的影响及其作用机制。
  • 加载中
  • Hirt N, Body-Malapel M. Immunotoxicity and intestinal effects of nano- and microplastics: A review of the literature [J]. Particle and Fibre Toxicology, 2020, 17(1): 57
    李博昊, 赵永豪, 孙洪杰, 等. 常见微塑料对水中镉离子和铅离子的吸附: 吸附能力和吸附机制[J]. 生态毒理学报, 2023, 18(2): 356-365

    Li B H, Zhao Y H, Sun H J, et al. Adsorption of typical microplastics towards Cd2+ and Pb2+ in water: Adsorption capacity and mechanism [J]. Asian Journal of Ecotoxicology, 2023, 18(2): 356-365 (in Chinese)

    Vighi M, Bayo J, Fernández-Piñas F, et al. Micro and nano-plastics in the environment: Research priorities for the near future [J]. Reviews of Environmental Contamination and Toxicology, 2021, 257: 163-218
    Forte M, Iachetta G, Tussellino M, et al. Polystyrene nanoparticles internalization in human gastric adenocarcinoma cells [J]. Toxicology in Vitro: An International Journal Published in Association with BIBRA, 2016, 31: 126-136
    Banerjee A, Shelver W L. Micro- and nanoplastic induced cellular toxicity in mammals: A review [J]. Science of the Total Environment, 2021, 755: 142518
    Prüst M, Meijer J, Westerink R H S. The plastic brain: Neurotoxicity of micro- and nanoplastics [J]. Particle and Fibre Toxicology, 2020, 17(1): 24
    Salimi A, Alavehzadeh A, Ramezani M, et al. Differences in sensitivity of human lymphocytes and fish lymphocytes to polyvinyl chloride microplastic toxicity [J]. Toxicology and Industrial Health, 2022, 38(2): 100-111
    Li W X, Chen X F, Li M Q, et al. Microplastics as an aquatic pollutant affect gut microbiota within aquatic animals [J]. Journal of Hazardous Materials, 2022, 423(Pt B): 127094
    Liang B X, Zhong Y Z, Huang Y J, et al. Underestimated health risks: Polystyrene micro- and nanoplastics jointly induce intestinal barrier dysfunction by ROS-mediated epithelial cell apoptosis [J]. Particle and Fibre Toxicology, 2021, 18(1): 20
    Qiao R X, Deng Y F, Zhang S H, et al. Accumulation of different shapes of microplastics initiates intestinal injury and gut microbiota dysbiosis in the gut of zebrafish [J]. Chemosphere, 2019, 236: 124334
    Jin Y X, Lu L, Tu W Q, et al. Impacts of polystyrene microplastic on the gut barrier, microbiota and metabolism of mice [J]. The Science of the Total Environment, 2019, 649: 308-317
    Jin H B, Ma T, Sha X X, et al. Polystyrene microplastics induced male reproductive toxicity in mice [J]. Journal of Hazardous Materials, 2021, 401: 123430
    Yong C Q Y, Valiyaveettil S, Tang B L. Toxicity of microplastics and nanoplastics in mammalian systems [J]. International Journal of Environmental Research and Public Health, 2020, 17(5): 1509
    Li B Q, Ding Y F, Cheng X, et al. Polyethylene microplastics affect the distribution of gut microbiota and inflammation development in mice [J]. Chemosphere, 2020, 244: 125492
    Deng Y F, Yan Z H, Shen R Q, et al. Microplastics release phthalate esters and cause aggravated adverse effects in the mouse gut [J]. Environment International, 2020, 143: 105916
    Jiang L, Schnabl B. Gut microbiota in liver disease: What do we know and what do we not know? [J]. Physiology, 2020, 35(4): 261-274
    Mattioda V, Benedetti V, Tessarolo C, et al. Pro-inflammatory and cytotoxic effects of polystyrene microplastics on human and murine intestinal cell lines [J]. Biomolecules, 2023, 13(1): 140
    Dong C D, Chen C W, Chen Y C, et al. Polystyrene microplastic particles: in vitro pulmonary toxicity assessment [J]. Journal of Hazardous Materials, 2020, 385: 121575
    Wang C Y, Zhang Y, Deng M, et al. Bioaccumulation in the gut and liver causes gut barrier dysfunction and hepatic metabolism disorder in mice after exposure to low doses of OBS [J]. Environment International, 2019, 129: 279-290
    Lu L, Luo T, Zhao Y, et al. Interaction between microplastics and microorganism as well as gut microbiota: A consideration on environmental animal and human health [J]. The Science of the Total Environment, 2019, 667: 94-100
    Zhu X, Huang W, Fang M Z, et al. Airborne microplastic concentrations in five megacities of northern and southeast China [J]. Environmental Science & Technology, 2021, 55(19): 12871-12881
    Lim S L, Ng C T, Zou L, et al. Targeted metabolomics reveals differential biological effects of nanoplastics andnanoZnO in human lung cells [J]. Nanotoxicology, 2019, 13(8): 1117-1132
    Xu M K, Halimu G, Zhang Q R, et al. Internalization and toxicity: A preliminary study of effects of nanoplastic particles on human lung epithelial cell [J]. Science of the Total Environment, 2019, 694: 133794
    Fournier S B, D’Errico J N, Adler D S, et al. Nanopolystyrene translocation and fetal deposition after acute lung exposure during late-stage pregnancy [J]. Particle and Fibre Toxicology, 2020, 17(1): 55
    Li L Z, Xu Y, Li S X, et al. Molecular modeling of nanoplastic transformations in alveolar fluid and impacts on the lung surfactant film [J]. Journal of Hazardous Materials, 2022, 427: 127872
    景美琪, 李绰然, 王隆清, 等. 微塑料的毒理学研究进展——微塑料对微生物、藻类、鱼类和哺乳动物类的毒理学效应[J]. 生态毒理学报, 2022, 17(4): 265-280

    Jing M Q, Li C R, Wang L Q, et al. Toxicological research progress of microplastics: Toxicological effects of microplastics on microorganism, algae, fish and mammal [J]. Asian Journal of Ecotoxicology, 2022, 17(4): 265-280 (in Chinese)

  • 加载中
计量
  • 文章访问数:  1461
  • HTML全文浏览数:  1461
  • PDF下载数:  144
  • 施引文献:  0
出版历程
  • 收稿日期:  2023-05-20
邢博宇, 盛帅, 付亚琪, 周芷彤, 迟浩, 张雯. 微/纳米塑料对哺乳动物消化道和呼吸道影响研究进展[J]. 生态毒理学报, 2023, 18(5): 31-35. doi: 10.7524/AJE.1673-5897.20230520001
引用本文: 邢博宇, 盛帅, 付亚琪, 周芷彤, 迟浩, 张雯. 微/纳米塑料对哺乳动物消化道和呼吸道影响研究进展[J]. 生态毒理学报, 2023, 18(5): 31-35. doi: 10.7524/AJE.1673-5897.20230520001
Xing Boyu, Sheng Shuai, Fu Yaqi, Zhou Zhitong, Chi Hao, Zhang Wen. Progress on Effects of Micro/Nanoplastics on Digestive Tract and Respiratory Tract of Mammals[J]. Asian journal of ecotoxicology, 2023, 18(5): 31-35. doi: 10.7524/AJE.1673-5897.20230520001
Citation: Xing Boyu, Sheng Shuai, Fu Yaqi, Zhou Zhitong, Chi Hao, Zhang Wen. Progress on Effects of Micro/Nanoplastics on Digestive Tract and Respiratory Tract of Mammals[J]. Asian journal of ecotoxicology, 2023, 18(5): 31-35. doi: 10.7524/AJE.1673-5897.20230520001

微/纳米塑料对哺乳动物消化道和呼吸道影响研究进展

    通讯作者: 张雯,E-mail:zhangwen@nefu.edu.cn
    作者简介: 邢博宇(2003-),男,本科生,研究方向为生态毒理学,E-mail:1206353715@qq.com
  • 东北林业大学野生动物与自然保护地学院,哈尔滨 150040
基金项目:

东北林业大学院级大学生创新训练项目(202210225639);中国博士后面上基金资助项目(2015M581415);黑龙江省博士后资助项目(LBH-Z15005)

摘要: 塑料产品因其出色的功能在我们的日常生活中被广泛使用,但与此同时也产生了大量的塑料垃圾,这些塑料垃圾经多种途径分解成的微/纳米塑料广泛存在于环境中。微/纳米塑料通过食物、水和空气直接接触哺乳动物的消化道和呼吸道,引起哺乳动物消化道炎症反应、氧化应激、菌群失调和呼吸道细胞毒性,增加患慢性阻塞性肺病的风险以及与其吸附的其他有毒污染物联合作用对呼吸道产生的复合毒性等,危害人和动物健康。本文综述了微/纳米塑料对哺乳动物消化道和呼吸道的影响及其作用机制。

English Abstract

参考文献 (26)

返回顶部

目录

/

返回文章
返回