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Induction of toxicity in human colon cells and organoids by size- and composition-dependent road dust.


ABSTRACT: Environmental pollution, including the annual resurgence of particulate matter derived from road dust, is a serious issue worldwide. Typically, the size of road dust is less than 10 μm; thus, road dust can penetrate into human organs, including the brain, through inhalation and intake by mouth. Therefore, the toxicity of road dust has been intensively studied in vitro and in vivo. However, in vitro systems, including 2D cell cultures, cannot mimic complex human organs, and there are several discrepancies between in vivo and human systems. Here, we used human colon cells and organoids to evaluate the cytotoxicity of particulate matter derived from road dust. The toxicity of road dust collected in industrialized and high traffic areas and NIST urban particulate matter reference samples were evaluated in 2D and 3D human colon cells as well as colon organoids and their characteristics were carefully examined. Data suggest that the size and elemental compositions of road dust can correlate with colon organoid toxicity, and thus, a more careful assessment of the size and elemental compositions of road dust should be conducted to predict its effect on human health.

SUBMITTER: Park SB 

PROVIDER: S-EPMC9845984 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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Induction of toxicity in human colon cells and organoids by size- and composition-dependent road dust.

Park Sung Bum SB   Kim Eun-Ah EA   Kim Ki Young KY   Koh Byumseok B  

RSC advances 20230118 5


Environmental pollution, including the annual resurgence of particulate matter derived from road dust, is a serious issue worldwide. Typically, the size of road dust is less than 10 μm; thus, road dust can penetrate into human organs, including the brain, through inhalation and intake by mouth. Therefore, the toxicity of road dust has been intensively studied <i>in vitro</i> and <i>in vivo</i>. However, <i>in vitro</i> systems, including 2D cell cultures, cannot mimic complex human organs, and t  ...[more]

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