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FSP1-CoQ10 Redox Augmentation Therapy for Neurodegeneration

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idea1642 wordssynced 2026-04-02

Overview

This therapeutic concept exploits the GPX4-independent [ferroptosis](/entities/ferroptosis) suppression pathway mediated by FSP1 (Ferroptosis Suppressor Protein 1, formerly AIFM2) and Coenzyme Q10 (CoQ10). By enhancing the FSP1-CoQ10 redox system, this approach aims to prevent iron-dependent lipid peroxidation in [neurons](/entities/neurons) — a key pathological process in Alzheimer's disease, Parkinson's disease, and amyotrophic lateral sclerosis. [@doll2019]

Mechanistic Rationale

Ferroptosis in Neurodegeneration

Ferroptosis is an iron-dependent, non-apoptotic cell death mechanism characterized by: [@bersuker2019]

  • Accumulation of lipid peroxides
  • Depletion of glutathione
  • Inhibition of GPX4 (glutathione peroxidase 4)
  • Iron-mediated Fenton reactions

Evidence for ferroptosis involvement in neurodegenerative diseases: [@weiland2022]
  • Alzheimer's disease: Elevated iron in amyloid plaques; lipid peroxidation markers (4-HNE, MDA) in brain tissue; GPX4 downregulation in AD brains.
  • Parkinson's disease: Iron accumulation in substantia nigra; neuromelanin-bound iron release during degeneration; ferroptosis-like morphology in PD models.
  • ALS: Lipid peroxidation in motor neurons; reduced GPX4 in SOD1 models; ferroptosis inhibitors rescue motor neuron death.
  • The FSP1-CoQ10 Pathway

    FSP1 suppresses ferroptosis through a GPX4-independent mechanism: [@maher2021]

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