Gene therapy in children with AIPL1-associated severe retinal dystrophy: an open-label, first-in-human interventional

Michel Michaelides1, Yannik Laich2, Sui Chien Wong3

  • 1NIHR Moorfields Biomedical Research Centre, London, UK; UCL Institute of Ophthalmology, University College London, London, UK.

Lancet (London, England)
|February 22, 2025
PubMed

Insights

Gene therapy for AIPL1-related retinal dystrophy significantly improved vision and preserved retinal structure in young children. Early intervention with subretinal AIPL1 gene supplementation showed promising safety and efficacy outcomes.

Area of Science:

  • Ophthalmology and genetics
  • Gene therapy for inherited retinal diseases
  • Molecular and cellular biology of photoreceptor function

Background:

  • AIPL1 gene mutations cause severe, early-onset retinal dystrophy leading to rapid vision loss.
  • Current treatments are limited, necessitating exploration of novel therapeutic strategies.
  • Gene supplementation therapy offers a potential approach to restore AIPL1 function.

Purpose of the Study:

  • To evaluate the safety and efficacy of early gene supplementation therapy in children with AIPL1-related retinal dystrophy.
  • To assess the impact of subretinal delivery of rAAV8.hRKp.AIPL1 on visual function and retinal structure.

Main Methods:

  • A non-randomized, single-arm clinical study involving four children with AIPL1 mutations.
  • Subretinal injection of a recombinant adeno-associated viral vector (rAAV8.hRKp.AIPL1) into one eye.
  • Outcome measures included visual acuity, functional vision, visual evoked potentials, retinal structure (OCT, fundus imaging), and safety assessments.

Main Results:

  • Significant improvement in visual acuity in treated eyes (mean 0.9 logMAR) compared to pre-intervention levels (2.7 logMAR).
  • Untreated eyes showed unmeasurable visual acuity at follow-up, highlighting the treatment effect.
  • Enhanced visual cortex activity and better preservation of outer retinal structure and thickness in treated eyes; one case of cystoid macular edema noted.

Conclusions:

  • Subretinal administration of rAAV8.hRKp.AIPL1 gene therapy demonstrated substantial benefits in young children with AIPL1-related retinal dystrophy.
  • The therapy improved visual acuity and functional vision, offering protection against retinal degeneration.
  • Early intervention with this gene therapy appears safe and effective, with no serious adverse effects reported beyond transient inflammation.
Abstract