The active second-generation proteasome inhibitor oprozomib reverts the oxaliplatin-induced neuropathy symptoms

Francesca Felicia Caputi1, Lorenzo Di Cesare Mannelli2, Laura Rullo1

  • 1Dept. of Pharmacy and Biotechnology, Alma Mater Studiorum - University of Bologna, Via Irnerio 48, 40126 Bologna, Italy.

Biochemical Pharmacology
|October 3, 2020
PubMed

Insights

Oxaliplatin-induced neuropathy involves proteasome system alterations. Inhibiting the proteasome with oprozomib reversed pain symptoms and normalized gene expression in a rat model, suggesting a new therapeutic approach.

Area of Science:

  • Neuroscience
  • Pharmacology
  • Oncology

Background:

  • Oxaliplatin-induced neuropathy (OXAIN) is a significant side effect of oxaliplatin, a chemotherapy drug for colorectal cancer.
  • The exact molecular mechanisms of OXAIN are not fully understood, but neuroplasticity and oxidative stress are implicated.
  • The ubiquitin-proteasome system (UPS) plays a role in protein remodeling, oxidative stress response, and neuropathic pain.

Purpose of the Study:

  • To investigate if oxaliplatin causes alterations in the UPS-mediated degradation pathway.
  • To identify potential new pharmacological targets for treating OXAIN.

Main Methods:

  • A rat model of oxaliplatin-induced neuropathy was established.
  • Proteasome activity (chymotrypsin-like β5) was measured in the thalamus and somatosensory cortex.
  • Gene expression of proteasome subunits (β5 and LMP7) was analyzed in the somatosensory cortex.
  • The effect of oprozomib, a β5 proteasome inhibitor, on spinal prodynorphin gene expression and pain behaviors was evaluated.

Main Results:

  • Oxaliplatin treatment significantly increased chymotrypsin-like activity of the 26S proteasome in the thalamus and somatosensory cortex.
  • Selective upregulation of β5 and LMP7 gene expression was observed in the somatosensory cortex of oxaliplatin-treated rats.
  • Oprozomib normalized spinal prodynorphin gene expression and reversed mechanical allodynia and thermal hyperalgesia in the rat model.

Conclusions:

  • The ubiquitin-proteasome system plays a critical role in oxaliplatin-induced neuropathy.
  • The proteasome is a potential pharmacological target for counteracting OXAIN.
  • Oprozomib shows promise as a therapeutic agent for chemotherapy-induced neuropathy.

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