SynthesisEuropean journal of pharmacology2026
Inhibition of the serotonin transporter and risk of heart valve disease: A systematic review and meta-analysis.
Synthesis in European journal of pharmacology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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10 authors.
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Abstract
backgroundThe serotonin transporter (SERT) plays an essential role in regulating a wide range of physiological and psychological processes, including neurotransmitter homeostasis, circadian rhythm, sleep regulation, platelet function, immune modulation, mood and emotions. Although SERT was initially studied in the context of neurological and psychiatric disorders, growing evidence highlights how its off-target exogenous inhibition, and the resulting dysregulation of serotonin signaling, can promote valvular interstitial cell proliferation, extracellular matrix remodeling, and fibrosis, thereby contributing to the pathophysiology of heart valve disease (HVD). Despite the increasing interest in the role of SERT in valve biology, mechanistic studies remain limited, and a deeper understanding of the implications of commonly used SERT-targeting drugs in the progression of HVD is still needed.
methodsIn this review, we examine the impact of drug-induced SERT inhibition on HVD, integrating findings from cellular studies, animal models, and clinical data to better understand the risks associated with chronic use of SERT inhibitors. To strengthen the clinical relevance of our review, we also performed a meta-analysis of published clinical studies on SERT-modulating drugs, which revealed a significant association between the use of these medications and increased HVD risk (OR = 2.76).
conclusionsOur analysis supports the implementation of clinical screening for high-risk patients, such as those with diabetes, hypertension, or pre-existing valvular abnormalities, prior to serotonergic drug recommendations. Ultimately, a deeper understanding of the role of serotonin and SERT in valvular pathophysiology may guide safer prescribing practices and facilitate the development of novel therapeutics for managing or preventing the progression of HVD.
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