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Exposure Effects of Environmentally Relevant Concentrations of the Tricyclic Antidepressant Amitriptyline in Early Life Stage Zebrafish. | LitMetric

AI Article Synopsis

  • - Antidepressants, particularly the tricyclic drug amitriptyline (AMI), are widely prescribed, raising concerns about their effects on non-target aquatic organisms like fish due to potential environmental exposure.
  • - A study using zebrafish revealed that AMI accumulates in their bodies, converts to an active metabolite, and impacts gene expression related to serotonin transport even at low, environmentally relevant concentrations.
  • - While higher concentrations of AMI affected fish behavior (like increased hatch rates and decreased movement), the overall low risk to fish populations may be underestimated due to factors like the ongoing increase in prescription rates and the presence of other drugs acting similarly.

Article Abstract

Antidepressants are one of the most globally prescribed classes of pharmaceuticals, and drug target conservation across phyla means that nontarget organisms may be at risk from the effects of exposure. Here, we address the knowledge gap for the effects of chronic exposure (28 days) to the tricyclic antidepressant amitriptyline (AMI) on fish, including for concentrations with environmental relevance, using zebrafish () as our experimental model. AMI was found to bioconcentrate in zebrafish, was readily transformed to its major active metabolite nortriptyline, and induced a pharmacological effect (downregulation of the gene encoding the serotonin transporter; ) at environmentally relevant concentrations (0.03 μg/L and above). Exposures to AMI at higher concentrations accelerated the hatch rate and reduced locomotor activity, the latter of which was abolished after a 14 day period of depuration. The lack of any response on the features of physiology and behavior we measured at concentrations found in the environment would indicate that AMI poses a relatively low level of risk to fish populations. The pseudopersistence and likely presence of multiple drugs acting via the same mechanism of action, however, together with a global trend for increased prescription rates, mean that this risk may be underestimated using current ecotoxicological assessment paradigms.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11295126PMC
http://dx.doi.org/10.1021/acs.est.3c08126DOI Listing

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