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The photoswitchable cannabinoid azo-HU308 enables optical control of Ca2+ dynamics in INS-1 β-cells via off-target effects on TRPC channels.

Created on 12 Sep 2026

Authors

Alexander E G Viray, James A Frank

Published in

FEBS open bio. Volume 16. Issue 3. Pages 520-531. Epub Nov 02, 2025.

Abstract

Intracellular Ca2+ regulates insulin secretion from pancreatic β-cells and is influenced by cannabinoid signaling. However, the hydrophobicity and complex pharmacology of cannabinoid ligands prevent precision receptor targeting, limiting our understanding of their roles in modulating insulin release. Here, we use fluorescent Ca2+ imaging to examine how the light-activatable CB2 receptor agonist azo-HU308 modulates Ca2+ dynamics in INS-1 β-cells. UV-A photoactivation of azo-HU308 triggered robust, repeatable Ca2+ transients, and pharmacological profiling revealed this effect was independent of CB2 receptor activation but was instead mediated by extracellular Ca2+ influx through TRPC channels. These findings position azo-HU308 as a novel optical tool for controlling β-cell Ca2+ levels and highlight a non-GPCR pathway by which synthetic cannabinoids can modulate Ca2+ dynamics in excitable cells.

PMID:
41178137
Bibliographic data and abstract were imported from PubMed on 12 Sep 2026.

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