MiR-30d Participates in Vincristine-Induced Neuropathic Pain by Down-Regulating GAD67.

Neurochem Res

Department of Anesthesiology, Changhai Hospital, Naval Medical University, Changhai Rd.168, Shanghai, 200433, China.

Published: February 2022

AI Article Synopsis

  • Vincristine, a common chemotherapy drug, can cause chemotherapy-induced peripheral neuropathy (CIPN), leading to significant pain and economic burden for patients.
  • The study found that GAD67, an enzyme critical for GABA synthesis (an inhibitory neurotransmitter), is down-regulated in vincristine-induced neuropathy, while its mRNA levels remain unchanged.
  • Researchers identified miR-30d as a microRNA that may be responsible for this down-regulation, and blocking miR-30d improved GAD67 levels and reduced pain symptoms in affected models, providing new insights into the mechanisms behind CIPN and potential pain management strategies.

Article Abstract

Vincristine is a common chemotherapeutic agent in cancer treatment, while it often causes chemotherapy-induced peripheral neuropathy(CIPN), which brings patients a great disease burden and associated economic pressure. The mechanism under CIPN remains mostly unknown. The previous study has shown that cell-type-specific spinal synaptic plasticity in the dorsal horn plays a pivotal role in neuropathic pain. Downregulation of GABA transmission, which mainly acts as an inhibitory pathway, has been reported in the growing number of research. Our present study found that GAD67, responsible for > 90% of basal GABA synthesis, is down-regulated, while its relative mRNA remains unchanged in vincristine-induced neuropathy. Considering microRNAs (miRNAs) as a post-transcription modifier by degrading targeted mRNA or repressing mRNA translation, we performed genome-wide miRNA screening and revealed that miR-30d might contribute to GAD67 down-regulation. Further investigation confirmed that miR-30d could affect the fluorescence activity of GAD67 by binding to the 3 'UTR of the GAD67 gene, and intrathecal injection of miR-30d antagomir increased the expression of GAD67, partially rescued vincristine-induced thermal hyperalgesia and mechanical allodynia. In summary, our study revealed the molecule interactions of GAD67 and miR-30d in CIPN, which has not previously been discussed in the literature. The results give more profound insight into understanding the CIPN mechanism and hopefully helps pain control.

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Source
http://dx.doi.org/10.1007/s11064-021-03462-3DOI Listing

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