Achondroplasia: Current Disease-Modifying Therapies and Genome Editing Strategies

Achondroplasia (ACH) is the most common non-lethal skeletal dysplasia and is caused in the vast majority of cases by a heterozygous gain-of-function variant in fibroblast growth factor receptor 3 (FGFR3, p.Gly380Arg). Hyperactive FGFR3 signaling constrains endochondral bone growth by suppressing growth-plate chondrocyte proliferation and hypertrophic differentiation. In the past decade, management has expanded beyond supportive care, and several mechanism-based interventions have shown disease-modifying effects in clinical studies. These include the activation of the NPR2/CNP axis with vosoritide and navepegritide and the pharmacologic attenuation of FGFR signaling with infigratinib, while extracellular biologics designed to modulate ligand–receptor interactions remain investigational. In parallel, gene-based approaches are increasingly discussed as routes toward the etiology-directed control of the causal driver, ranging from the cartilage-biased tuning of FGFR3 expression to variant-level genome editing concepts. Here, we synthesize the current therapeutic landscape, explicitly distinguish pathway-targeted disease modification from etiology-directed genetic strategies, and highlight the key translational barriers for gene-based approaches, including target-tissue delivery to the growth-plate, dose control and durability across development, redosing and immunogenicity constraints, and long-term safety.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-09-25
DOI
https://doi.org/10.3390/ijms27198571
Primary Topic
Connective tissue disorders research
Type
article
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Achondroplasia: Current Disease-Modifying Therapies and Genome Editing Strategies

Ekaterina V. Kondrateva, Svetlana Smirnikhina
International Journal of Molecular Sciences
Connective tissue disorders research
article

Achondroplasia: Current Disease-Modifying Therapies and Genome Editing Strategies

Ekaterina V. Kondrateva, Svetlana Smirnikhina
article en

Abstract

Achondroplasia (ACH) is the most common non-lethal skeletal dysplasia and is caused in the vast majority of cases by a heterozygous gain-of-function variant in fibroblast growth factor receptor 3 (FGFR3, p.Gly380Arg). Hyperactive FGFR3 signaling constrains endochondral bone growth by suppressing growth-plate chondrocyte proliferation and hypertrophic differentiation. In the past decade, management has expanded beyond supportive care, and several mechanism-based interventions have shown disease-modifying effects in clinical studies. These include the activation of the NPR2/CNP axis with vosoritide and navepegritide and the pharmacologic attenuation of FGFR signaling with infigratinib, while extracellular biologics designed to modulate ligand–receptor interactions remain investigational. In parallel, gene-based approaches are increasingly discussed as routes toward the etiology-directed control of the causal driver, ranging from the cartilage-biased tuning of FGFR3 expression to variant-level genome editing concepts. Here, we synthesize the current therapeutic landscape, explicitly distinguish pathway-targeted disease modification from etiology-directed genetic strategies, and highlight the key translational barriers for gene-based approaches, including target-tissue delivery to the growth-plate, dose control and durability across development, redosing and immunogenicity constraints, and long-term safety.

International Journal of Molecular SciencesVol. 27(19)
Research Centre for Medical Genetics (RU)
Good health and well-being
Openalex Percentile: Top 12%
Connective tissue disorders research
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Achondroplasia: Current Disease-Modifying Therapies and Genome Editing Strategies — Ekaterina V. Kondrateva, Svetlana Smirnikhina · International Journal of Molecular Sciences (2026) | TGRS Research Map | TGRS