Identification and characterization of saikosaponins as antagonists of transient receptor potential A1 channel

Phytother Res. 2020 Apr;34(4):788-795. doi: 10.1002/ptr.6559. Epub 2019 Nov 28.

Abstract

Neuropathic pain is associated with an increased sensitivity to painful stimuli or abnormal sensitivity to otherwise innocuous stimuli. However, in addition to adverse effects, currently available drugs have shown limited response in patients with neuropathic pain, which provides a rationale to explore new drug classes acting on novel targets and with better efficacy and safety profiles. Here, we found that saikosaponins potently inhibit agonist-induced activation of the transient receptor potential A1 (TRPA1) channel, which has been reported to mediate neuropathic pain by sensing a variety of chemical irritants. Molecular docking and site-directed mutagenesis analyses suggested that saikosaponins bind to the hydrophobic pocket in TRPA1 near the Asn855 residue, which, when mutated to Ser, was previously associated with enhanced pain perception in humans. In support of these findings, saikosaponin D significantly attenuated agonist-induced nociceptive responses and vincristine-induced mechanical hypersensitivity in mice. These results indicate that saikosaponins are TRPA1 antagonists and provide a basis for further elaboration of saikosaponin derivatives for the development of new therapeutics for neuropathic pain.

Keywords: TRPA1; allyl isothiocyanate; neuropathic pain; saikosaponin.

MeSH terms

  • Animals
  • Drug Evaluation, Preclinical
  • HEK293 Cells
  • Humans
  • Hyperalgesia / diagnosis
  • Hyperalgesia / drug therapy
  • Hyperalgesia / metabolism
  • Male
  • Mice
  • Mice, Inbred ICR
  • Molecular Docking Simulation
  • Neuralgia / diagnosis
  • Neuralgia / drug therapy
  • Oleanolic Acid / analogs & derivatives*
  • Oleanolic Acid / chemistry
  • Oleanolic Acid / isolation & purification
  • Oleanolic Acid / metabolism
  • Oleanolic Acid / pharmacology
  • Pain Measurement
  • Saponins / chemistry
  • Saponins / isolation & purification
  • Saponins / metabolism
  • Saponins / pharmacology*
  • TRPA1 Cation Channel / antagonists & inhibitors*
  • TRPA1 Cation Channel / chemistry
  • TRPA1 Cation Channel / metabolism

Substances

  • Saponins
  • TRPA1 Cation Channel
  • Oleanolic Acid
  • saikosaponin D