A novel antagonist of TRPM2 and TRPV4 channels: Carvacrol

Mustafa Nazıroğlu1,2

  • 1Drug Discovery Unit, BSN Health, Analyses, Innovation, Consultancy, Organization, Agriculture and Trade Ltd, Isparta, TR-32260, Turkey. mustafanaziroglu@sdu.edu.tr.

Metabolic Brain Disease
|January 6, 2022
PubMed

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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