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C9orf72 RNA-Targeting Dipeptide Repeat Reduction

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idea2354 wordssynced 2026-04-02

Overview

This therapeutic concept uses antisense oligonucleotides (ASOs) or RNA interference (RNAi) to selectively reduce expression of mutant C9orf72 alleles, thereby decreasing production of toxic dipeptide repeat (DPR) proteins that drive neurodegeneration in ALS and frontotemporal dementia.[@zhang2015] C9orf72 repeat expansion is the most common genetic cause of familial ALS (~40%) and FTD (~25%), making this a high-impact target.[@renton2011]

Rationale

  • C9orf72 hexanucleotide repeat expansion: Most common genetic cause of ALS/FTD; 100s-1000s of repeats produce toxic DPRs (poly-GA, poly-GP, poly-GR)[@mori2013]
  • Gain-of-toxic-function: DPRs cause nucleolar stress, RNA splicing defects, mitochondrial dysfunction, and nucleocytoplasmic transport impairment[@gendron2013]
  • Allele-specific targeting possible: ASOs can target the expanded allele while sparing wild-type C9orf72 expression, which is essential for normal lysosomal function[@liu2021]
  • Clinical momentum: Multiple ASO programs in clinical trials (Wave Biosciences, Ionis/Biogen, Roche)[@tran2024]

Evidence Base

Preclinical Evidence


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