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Updated: Oct 7, 2025

Yeast Luminometric and Xenopus Oocyte Electrophysiological Examinations of the Molecular Mechanosensitivity of TRPV4
Published on: December 31, 2013
A novel antagonist of TRPM2 and TRPV4 channels: Carvacrol
1Drug Discovery Unit, BSN Health, Analyses, Innovation, Consultancy, Organization, Agriculture and Trade Ltd, Isparta, TR-32260, Turkey. mustafanaziroglu@sdu.edu.tr.
Abstract:
The overload cytosolic free Ca2+ (cCa2+) influx-mediated excessive generation of oxidative stress in the pathophysiological conditions induces neuronal and cellular injury via the activation of cation channels. TRPM2 and TRPV4 channels are activated by oxidative stress, and their specific antagonists have not been discovered yet. The antioxidant and anti-Covid-19 properties of carvacrol (CARV) were recently reported. Hence, I suspected possible antagonist properties of CARV against oxidative stress (OS)/ADP-ribose (ADPR)-induced TRPM2 and GSK1016790A (GSK)-mediated TRPV4 activations in neuronal and kidney cells. I investigated the antagonist role of CARV on the activations of TRPM2 and TRPV4 in SH-SY5Y neuronal, BV-2 microglial, and HEK293 cells. The OS/ADPR and GSK in the cells caused to increase of TRPM2/TRPV4 current densities and overload cytosolic free Ca2+ (cCa2+) influx with an increase of mitochondrial membrane potential, cytosolic (cROS), and mitochondrial (mROS) ROS. The changes were not observed in the absence of TRPM2 and TRPV4 or the presence of Ca2+ free extracellular buffer and PARP-1 inhibitors (PJ34 and DPQ). When OS-induced TRPM2 and GSK-induced TRPV4 activations were inhibited by the treatment of CARV, the increase of cROS, mROS, lipid peroxidation, apoptosis, cell death, cCa2+ concentration, caspase -3, and caspase -9 levels were restored via upregulation of glutathione and glutathione peroxidase. In conclusion, the treatment of CARV modulated the TRPM2 and TRPV4-mediated overload Ca2+ influx and may provide an avenue for protecting TRPM2 and TRPV4-mediated neurodegenerative diseases associated with the increase of mROS and cCa2+. The possible TRPM2 and TRPV4 blocker action of carvacrol (CARV) via the modulation oxidative stress and apoptosis in the SH-SY5Y neuronal cells. TRPM2 is activated by DNA damage-induced (via PARP-1 activation) ADP-ribose (ADPR) and reactive oxygen species (ROS) (H2O2), although it is inhibited by nonspecific inhibitors (ACA and 2-APB). TRPV4 is activated by the treatments of GSK1016790A (GSK), although it is inhibited by a nonspecific inhibitor (ruthenium red, RuRe). The treatment of GSK induces excessive generation of ROS. The accumulation of free cytosolic Ca2+ (cCa2+) via the activations of TRPM2 and TRPV4 in the mitochondria causes the increase of mitochondrial membrane depolarization (ΔΨm). In turn, the increase of ΔΨm causes the excessive generation of ROS. The TRPM2 and TRPV4-induced the excessive generations of ROS result in the increase of apoptosis and cell death via the activations of caspase -3 (Casp-3) and caspase -9 (Casp-9) in the neuronal cells, although their oxidant actions decrease the glutathione (GSH) and glutathione peroxidase (GSHPx) levels. The oxidant and apoptotic adverse actions of TRPM2 and TRPV4 are modulated by the treatment of CARV.
Insights
Carvacrol (CARV) may block TRPM2 and TRPV4 channels, reducing oxidative stress and apoptosis in neuronal cells. This research explores CARV
Area of Science:
- Neuroscience
- Cell Biology
- Pharmacology
Background:
- Oxidative stress induces cellular injury via cation channel activation.
- TRPM2 and TRPV4 channels are implicated in oxidative stress-induced damage.
- Specific antagonists for TRPM2 and TRPV4 are currently lacking.
Purpose of the Study:
- To investigate the potential antagonist properties of carvacrol (CARV) against TRPM2 and TRPV4 channel activation.
- To explore CARV's effects on oxidative stress, calcium influx, and apoptosis in neuronal and kidney cells.
Main Methods:
- Utilized SH-SY5Y neuronal, BV-2 microglial, and HEK293 cells.
- Induced TRPM2 activation with oxidative stress/ADP-ribose (ADPR) and TRPV4 activation with GSK1016790A (GSK).
- Assessed CARV's impact on ion channel activity, reactive oxygen species (ROS) levels, mitochondrial potential, apoptosis markers, and antioxidant enzymes.
Main Results:
- OS/ADPR and GSK treatments increased TRPM2/TRPV4 currents, cytosolic Ca2+ (cCa2+) influx, and ROS generation.
- CARV treatment inhibited these increases, restoring antioxidant levels (glutathione, glutathione peroxidase) and reducing apoptosis and cell death.
- CARV's effects were dependent on TRPM2/TRPV4 expression and extracellular Ca2+.
Conclusions:
- Carvacrol (CARV) demonstrates antagonist activity against TRPM2 and TRPV4 channels.
- CARV modulates oxidative stress and apoptosis, offering potential therapeutic benefits for neurodegenerative diseases linked to TRPM2/TRPV4 dysfunction.
- CARV may represent a novel therapeutic agent for conditions involving excessive Ca2+ influx and oxidative damage.
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