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◆ Environmental pollution (Barking, Essex : 1987)2026-09-11

The in vivo ECODSed assay: an optimised method for measuring cytochrome P450 activity in sediment-dwelling organisms.

Elettra D'Amico, Martina Santobuono, Kevin Noort, Wing Sze Chan, Ghaliya Al Noaimi, Henriette Selck

原始摘要(英文原文)· Original abstract
Cytochrome P450 (CYP450) enzymes are central to xenobiotic biotransformation, yet traditional in vivo water-based ethoxycoumarin-O-deethylase (ECOD) assays are not an efficient method for deposit-feeding species. We developed and validated ECODSed, a sediment-integrated in vivo assay, by incorporating sediment through both pre-exposure and assay phases. ECODSed reflects environmentally relevant exposure pathways for species exposed to sediment-associated contaminants during ingestion. We evaluated three assay formats representing different pre-exposure scenarios prior to assessing ECOD in vivo, namely ECODSed14 (14-day pre-exposure), ECODSed7 (7-day pre-exposure), and Quick ECODSed (no pre-exposure). We found that CYP inducers, such as polychlorinated biphenyls (PCBs) and the polycyclic aromatic hydrocarbon fluoranthene (FLUO), had the strongest induction of ECOD activity after 14 days in ECODSed14 (∼55%, PCB), and after 7 days in ECODSed7 (∼129%; FLUO). In both ECODSed7 and ECODSed14, the antidepressant sertraline (SER; CYP inhibitor) produced persistently lower activity (∼30% on average) than controls. In the Quick assay, sertraline significantly inhibited activity (∼50%), while fluoranthene showed no deviation from controls. Overall, the hierarchy of ECOD activity followed: fluoranthene > PCBs > control > sertraline. Our results demonstrate that ECODSed reliably captures chemical-specific metabolic dynamics across multiple exposure durations in vivo. Together, the three ECODSed assays establish a tiered framework that allows users to match assay duration and complexity. The Quick assay offers rapid screening of chemical modulators, species responses, substrate suitability; ECODSed7 captures early phase induction dynamics; ECODSed14 reveals sustained metabolic responses under long term exposure. ECODSed advances CYP450 mediated activity assessment in sediment dwelling organisms, enabling rapid evaluations and deeper mechanistic insight into contaminant effects.
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The in vivo ECODSed assay: an optimised method for measuring cytochrome P450 activity in sediment-dwelling organisms. — 科研速览 Science Skim