Pharmacological Interventions to Ameliorate Neuropathological Symptoms in a Mouse Model of Lafora Disease

Arnaud Berthier1, Miguel Payá2, Ana M García-Cabrero3

  • 1Instituto de Biomedicina de Valencia (CSIC), Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER), Jaime Roig 11, 46010, Valencia, Spain.

Molecular Neurobiology
|January 29, 2015
PubMed

Insights

Lafora disease treatments are lacking. This study shows 4-phenylbutyric acid and metformin reduce Lafora bodies and neurodegeneration in mouse models, offering potential new therapies for this fatal neurodegenerative disorder.

Area of Science:

  • Neuroscience
  • Genetics
  • Biochemistry

Background:

  • Lafora disease (LD) is a rare, fatal neurodegenerative disorder characterized by seizures and the accumulation of Lafora bodies (LBs).
  • Current treatments for LD are palliative, with no curative options available.
  • LD pathogenesis involves polyglucosan accumulation, neurodegeneration, and dysregulated protein clearance and ER stress.

Purpose of the Study:

  • To investigate the efficacy of pharmacological interventions in ameliorating LD phenotypes in a mouse model.
  • To assess the impact of chemical chaperones (trehalose, 4-phenylbutyric acid) and metformin on LB accumulation and neurodegeneration.

Main Methods:

  • Utilized an Epm2b-/- mouse model of Lafora disease.
  • Administered 4-phenylbutyric acid, trehalose, and metformin to assess their effects on disease pathology.
  • Evaluated Lafora body and polyubiquitin aggregate load, neurodegeneration markers (neuronal loss, gliosis), and performance in neuropsychological tests.

Main Results:

  • Treatment with 4-phenylbutyric acid and metformin significantly reduced Lafora body and polyubiquitin aggregate accumulation in the brain.
  • Both compounds diminished neurodegeneration, evidenced by decreased neuronal loss and reactive gliosis.
  • Neuropsychological test performance was improved in treated Epm2b-/- mice.

Conclusions:

  • 4-Phenylbutyric acid and metformin show therapeutic potential for Lafora disease by reducing key pathological hallmarks.
  • These compounds, with established safety profiles and clinical use, could offer a straightforward translation to clinical practice for LD.
  • Targeting protein clearance and ER stress pathways presents a promising therapeutic strategy for Lafora disease.

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