污染物
环境污染
生化工程
毒性
环境毒理学
环境科学
人类健康
环境监测
计算机科学
芯片上器官
风险分析(工程)
污染
生物
生态学
环境保护
业务
环境卫生
化学
工程类
纳米技术
医学
有机化学
材料科学
微流控
作者
Sheng Yang,Zaozao Chen,Cheng Yan-ping,Tong Liu,Lihong Yin,Yuepu Pu,Geyu Liang
标识
DOI:10.1016/j.envpol.2020.115861
摘要
Environmental pollution is a widespread problem, which has seriously threatened human health and led to an increase of human diseases. Therefore, it is critical to evaluate environmental pollutants quickly and efficiently. Because of obvious inter-species differences between animals and humans, and lack of physiologically-relevant microenvironment, animal models and in vitro two-dimensional (2D) models can not accurately describe toxicological effects and predicting actual in vivo responses. To make up the limitations of conventional environmental toxicology screening, organ-on-a-chip (OOC) systems are increasingly developing. OOC systems can provide a well-organized architecture with comparable to the complex microenvironment in vivo and generate realistic responses to environmental pollutants. The feasibility, adjustability and reliability of OCC systems make it possible to offer new opportunities for environmental pollutants screening, which can study their metabolism, collective response, and fate in vivo. Further progress can address the challenges to make OCC systems better investigate and evaluate environmental pollutants with high predictive power.
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