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A high-throughput screen for mitochondrial function reveals known and novel mitochondrial toxicants in a library of environmental agents.


ABSTRACT: Mitochondrial toxicity is emerging as a major mechanism underlying serious human health consequences. This work performs a high-throughput screen (HTS) of 176 environmental chemicals for mitochondrial toxicity utilizing a previously reported biosensor platform. This established HTS confirmed known mitochondrial toxins and identified novel mitotochondrial uncouplers such as 2, 2'-Methylenebis(4-chlorophenol) and pentachlorophenol. It also identified a mitochondrial 'structure activity relationship' (SAR) in the sense that multiple environmental chlorophenols are mitochondrial inhibitors and uncouplers. This study demonstrates proof-of-concept that a mitochondrial HTS assay detects known and novel environmental mitotoxicants, and could be used to quickly evaluate human health risks from mitotoxicants in the environment.

SUBMITTER: Datta S 

PROVIDER: S-EPMC5108672 | biostudies-literature | 2016 Nov

REPOSITORIES: biostudies-literature

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A high-throughput screen for mitochondrial function reveals known and novel mitochondrial toxicants in a library of environmental agents.

Datta Sandipan S   Sahdeo Sunil S   Gray Jennifer A JA   Morriseau Christophe C   Hammock Bruce D BD   Cortopassi Gino G  

Mitochondrion 20161004


Mitochondrial toxicity is emerging as a major mechanism underlying serious human health consequences. This work performs a high-throughput screen (HTS) of 176 environmental chemicals for mitochondrial toxicity utilizing a previously reported biosensor platform. This established HTS confirmed known mitochondrial toxins and identified novel mitotochondrial uncouplers such as 2, 2'-Methylenebis(4-chlorophenol) and pentachlorophenol. It also identified a mitochondrial 'structure activity relationshi  ...[more]

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