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Accès ouvert déclaré 2026 article

An n ‐of‐1 gene‐directed drug repurposing trial for an ultrarare genetic condition

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OBJECTIVE: Gain-of-function (GoF) variants in the KCNC1 potassium channel subunit gene (Kv3.1) cause motor/cognitive delays and hypotonia and have been associated with seizures. Fluoxetine has inhibitory effects on Kv3.1. However, open-label nonrandomized administration is insufficient to guide clinical decision-making in ultrarare conditions. This 40-week randomized, double-blind, n-of-1 trial evaluated the safety and effectiveness of fluoxetine for motor development in a 2-year, 10-month-old female child with a GoF KCNC1 variant. METHODS: This study used an ABA phase design (placebo-fluoxetine-placebo), with randomization and blinding of treatment transition moments. The active treatment, fluoxetine powder, was provided at 2.5 mg (low dose) and subsequently 5 mg (target dose) per day. Motor developmental was measured using the parent-reported Early Motor Questionnaire (EMQ), completed weekly. Secondary outcomes included cognitive and adaptive skills and other parent target symptoms (nystagmus, communication, purposeful hand movements). RESULTS: Treatment with fluoxetine was associated with a 6.61-point gain on the EMQ (95% credible interval [CrI] = -.53 to 14.78), beyond the effects of time (.52 points/week, 95% CrI = .28-.91). Treatment was well tolerated; possible withdrawal irritability emerged during the second placebo phase. A higher dose was associated with a larger treatment effect on the EMQ (2.5 mg = 6.81, 95% CrI = -.43 to 14.56; 5 mg = 8.68, 95% CrI = -4.29 to 21.76). Secondary outcomes showed significant improvements in purposeful hand movements (-.65, 95% CrI = -1.27 to -.003, on a 7-point scale), and there were small increases in adaptive behavior and cognitive skills during the trial. Clinical biomarkers suggested a shift toward increased excitation on electroencephalogram and electroretinogram. SIGNIFICANCE: Fluoxetine treatment was possibly associated with increased motor skill development in a young child with KCNC1-related disorder involving a GoF variant. Trials studying developmental endpoints require innovative designs; this study provides a template for treatment assessment in ultrarare genetic neurodevelopmental disorders.

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DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.

Titre Crossref
An <i>n</i> ‐of‐1 gene‐directed drug repurposing trial for an ultrarare genetic condition
Date Crossref
18/04/2026
Éditeur
Wiley
Type
journal-article

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Les sujets associés

Genetic Neurodegenerative DiseasesGenomics and Rare DiseasesMicrotubule and mitosis dynamics

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