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Updated: Jul 18, 2026

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Published on: September 2, 2020
[Vanilloid receptors: structure, regulatory functions, pharmacology, therapeutic potential]
Abstract:
Transient receptor potential vanilloid (TRPV1), representing ion channel family, is activated in human and animal organism by capsaicin and some other factors such as heat, acidosis, and ion dysbalance. TRPV1 is a component of the endogenous system regulating various functions and participating in some pathologic processes. The structure, regulatory functions, mechanisms of activation, and chemistry of vanilloid receptors are reviewed and the mechanisms of their agonists and antagonists (including endogenous ligands) are considered. The results of experiments and clinical tests showing the therapeutic potential of vanilloids are considered.
Insights
Transient receptor potential vanilloid (TRPV1) channels, activated by heat and capsaicin, play roles in bodily functions and disease. This review covers TRPV1 structure, regulation, and therapeutic potential.
Area of Science:
- Molecular Biology
- Neuroscience
- Physiology
Context:
- Transient receptor potential vanilloid (TRPV1) channels are key ion channels involved in sensory perception and physiological regulation.
- TRPV1 activation by stimuli like heat, acidosis, and capsaicin influences various biological processes.
- Dysregulation of TRPV1 is implicated in several pathological conditions.
Purpose:
- To provide a comprehensive review of the structure, function, and activation mechanisms of TRPV1.
- To explore the chemistry of vanilloid receptors and their endogenous ligands.
- To discuss the therapeutic potential of TRPV1 agonists and antagonists based on experimental and clinical data.
Summary:
- This review details the structure, regulatory functions, and activation mechanisms of Transient Receptor Potential Vanilloid (TRPV1) channels.
- It examines the roles of vanilloid receptor agonists and antagonists, including endogenous ligands.
- The therapeutic implications of targeting TRPV1 in various conditions are considered, supported by experimental and clinical findings.
Impact:
- Understanding TRPV1 mechanisms offers insights into pain, inflammation, and other physiological processes.
- This knowledge can guide the development of novel therapeutic strategies targeting TRPV1.
- The review highlights the translational potential of vanilloid receptor research in clinical applications.
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