Xylazine as an emerging new psychoactive substance; focuses on both 5‐HT 7 and κ‐opioid receptors' molecular interactions and isosteric replacement
Xylazine, traditionally used as a veterinary sedative, has recently emerged as a new psychoactive substance, being typically ingested in combination with fentanyl derivatives and hence raising significant public health concerns. Despite its increasing prevalence, little is known about its molecular interactions with human neuroreceptors, specifically the serotonin 7 (5‐HT7R) and kappa‐opioid (KOR) receptors, which play critical roles in mood regulation, consciousness and nociception. Hence, the binding affinity and molecular interactions of xylazine with both 5‐HT7R and KOR through docking simulations and molecular dynamics calculations were investigated. These computational approaches revealed critical insights into receptor binding motifs and highlighted structural modifications that could enhance receptor affinity. The isosteric replacements within the xylazine structure to improve its binding efficacy were assessed, demonstrating that minimal structural modifications can potentiate its interaction with 5‐HT7R and KOR. These findings may well advance our understanding of xylazine's mechanism of action, possibly contributing to identifying suitable treatment/management approaches in treating xylazine‐related overdoses.
Item Type | Article |
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Additional information | © 2025 The Author(s). Archiv der Pharmazie published by Wiley‐VCH GmbH on behalf of Deutsche Pharmazeutische Gesellschaft. This is an open access article distributed under the Creative Commons Attribution License (CC BY), https://creativecommons.org/licenses/by/4.0/ |
Keywords | in silico studies, fentanyl, drug misuse, drug overdose, computational approaches, metabolism, humans, structure-activity relationship, molecular dynamics simulation, pharmacology, pharmacology, metabolism, molecular docking simulation, molecular structure, pharmaceutical science, drug discovery |
Date Deposited | 15 May 2025 15:53 |
Last Modified | 31 May 2025 00:48 |