J Cyst Fibros. 2026 Sep 11:S1569-1993(26)03738-0. doi: 10.1016/j.jcf.2026.09.004. Online ahead of print.
ABSTRACT
BACKGROUND: Nonsense variants in CFTR account for ∼10% of cystic fibrosis (CF) variants and cannot be treated with available CFTR modulators. Translational readthrough agents such as ELX-02 offer a potential therapeutic strategy for CFTR nonsense variants, but clinical trials, conducted primarily in individuals carrying the G542X variant, have demonstrated limited efficacy. Our study aimed to evaluate ELX-02-mediated CFTR rescue across a broad range of nonsense variants using patient-derived intestinal organoids (PDIOs) to define variant-specific determinants of readthrough efficacy and assess its potential across a genetically diverse CF population.
METHOD: The ex vivo response to ELX-02 was assessed in 206 PDIOs carrying heterogeneous nonsense variants. CFTR function was quantified using the forskolin-induced swelling (FIS) assay after 48-hour exposure to ELX-02. Responses were analysed by genotype and stop codon identity, with secondary validation performed in a selected subset of PDIOs (n = 60).
RESULTS: ELX-02-mediated CFTR rescue varied markedly, ranging from responses approaching those observed with approved CFTR modulators (LUM/IVA) to responses at or below detection limit. Overall, maximal responses were modest and at the lower end of the functional range for CFTR modulators. Rescue was dose-dependent and higher in PDIOs carrying two nonsense variants when compared with PDIOs carrying a single nonsense variant combined with a residual or minimal function variant. Nonsense variants in nucleotide-binding domain 1, including G542X, S466X, G550X and R553X, showed relatively higher responsiveness.
CONCLUSION: ELX-02 induces limited and highly heterogeneous CFTR rescue across nonsense variants. PDIO-based functional screening provides a framework to guide patient selection and stratification for future readthrough therapy trials.
PMID:42728176 | DOI:10.1016/j.jcf.2026.09.004