Spironolactone Targets Retinoid X Receptor γ to Promote Myelin Sheath Regeneration

Qing-Qing Sun1, Ruo-Song Ai1, Na-Nan Chai1

  • 1Key Laboratory of Medicinal Resources and Natural Pharmaceutical Chemistry (Shaanxi Normal University), The Ministry of Education; College of Life Sciences, Shaanxi Normal University, Xi'an, China; and.

Abstract

Insights

Spironolactone, an FDA-approved drug, promotes myelin repair by activating Retinoid X receptor γ (RXRγ) in oligodendrocyte precursor cells. This finding suggests spironolactone

Area of Science:

  • Neuroscience
  • Molecular Biology
  • Pharmacology

Background:

  • Demyelinating diseases involve myelin sheath loss and impaired regeneration.
  • Retinoid X receptor γ (RXRγ) is vital for oligodendrocyte biology and myelin formation.
  • Targeting RXRγ for demyelinating diseases presents clinical challenges.

Purpose of the Study:

  • Identify FDA-approved drugs targeting RXRγ for demyelinating disorders.
  • Investigate spironolactone's (SPIR) effects on oligodendrocyte precursor cells (OPCs) and myelin.
  • Confirm RXRγ dependency of SPIR's therapeutic potential.

Main Methods:

  • Molecular docking predicted SPIR's binding to RXRγ.
  • In vitro OPC culture and mouse models assessed SPIR's impact on differentiation and myelination.
  • CRISPR-LSL-Cas9 models confirmed RXRγ-dependent effects.

Main Results:

  • SPIR acts as an RXRγ agonist in OPCs, promoting differentiation and myelin generation.
  • SPIR's pro-differentiation and myelinating effects are RXRγ-dependent.
  • SPIR enhances myelin production by activating RXRγ.

Conclusions:

  • SPIR promotes OPC differentiation in animal models.
  • SPIR shows potential for treating demyelinating diseases.
  • SPIR's clinical applications may be expanded for neurological disorders.

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