| Literature DB >> 34627918 |
Wookbong Kwon1, Daehwan Kim1, Hee-Yeon Kim2, Sang Won Jeong3, Se-Guen Lee3, Hyun-Chul Kim3, Young-Jae Lee3, Mi Kyung Kwon3, Jun-Seong Hwang3, Jee Eun Han4, Jin-Kyu Park4, Sung-Jun Lee5, Seong-Kyoon Choi6.
Abstract
The remarkable increase in plastic usage and widespread microplastic (MP) pollution has emerged as a substantial concern today. Many recent studies have revealed MPs as potentially hazardous substances in mammals. Despite several reports on the impact of small MPs in the brain and behaviors in aquatic animals, it is still unclear how small MPs affect the brain and its underlying cellular physiology in terrestrial animals. In this study, we investigated the accumulation of polystyrene MPs (PS-MPs) in mouse brain after oral treatment using three types of fluorescent PS-MPs of different sizes (0.2,2 and 10 μm). We found that PS-MPs were deposited in microglial cells of the brain. Following differential treatment of PS-MPs in human microglial HMC-3 cells, we identified changes in cellular morphology, immune responses, and microglial apoptosis induced by phagocytosis of 0.2 and 2 μm PS-MPs. By analyzing the PS-MP-treated HMC-3 cell transcriptome, we showed that PS-MPs treatment altered the expression of clusters of immune response genes, immunoglobulins, and several related microRNAs. In addition, we confirmed alterations in microglial differentiation marker expression with the activation of NF-κB, pro-inflammatory cytokines and apoptotic markers in PS-MP-treated human microglial cells and in mouse brain. Our findings suggest a potential risk of small PS-MPs in microglial immune activation, which leads to microglial apoptosis in murine and human brains.Entities:
Keywords: Apoptosis; Brain; Immune response; Microglia; Mouse; Polystyrene microplastics
Mesh:
Substances:
Year: 2021 PMID: 34627918 DOI: 10.1016/j.scitotenv.2021.150817
Source DB: PubMed Journal: Sci Total Environ ISSN: 0048-9697 Impact factor: 7.963