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Completed

NCT Number: NCT05793515

Mechanisms of Inherited Retinal Dystrophies Using Whole Genome Sequencing and in Vitro and in Vivo Models

Inherited retinal dystrophies (IRDs), a large group of heterogeneous and rare disorders, may result in irreversible bilateral visual loss and blindness. Characterizing the genetic bases of IRDs will help to understand the pathogenesis underlying the development of retinal damage. Despite the advances in molecular identification of genes causing disease, unsolved IRDs constitute about 40% of all cases.

Goal of this study is to solve missing heritability in IRD using whole genome sequencing (WGS) to identify the genetic causes in clinically well-characterized patients without a molecular diagnosis.

The identification of novel genes that have a role in the development or maintenance of retinal function will lead to the development of new therapeutic approaches and will favour a more prompt diagnosis and improvement of patient management.

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Key information

Age range

5 year–80 year

Sex eligibility

All sexes

Study type

Observational

Primary location

Istituto Superiore di Sanità-Dpt. Oncology and Molecular Medicine

Rome, Italy, 00161

About this study

IRDs are rare neurodegenerative and genetically heterogeneous conditions with a wide spectrum of presentations, even among affected members of the same family. These disorders exhibit a large range of phenotypes with significant overlap, that can be broadly divided into three main groups: those principally affecting the periphery such as retinitis pigmentosa (RP) and choroideremia; those primarily involving the macula, known as 'macular' or 'central' dystrophies; and those affecting both the centre and periphery as seen in cone-rod or rod-cone dystrophies. Collectively, IRDs have an incidence of 1:2000, impacting approx. 2 million people worldwide and patients are progressively visually impaired. Affected individuals can be followed-up by visual acuity measurements, visual field evaluations, electroretinography recordings (ERG), structural imaging with autofluorescence, spectral-domain optical coherence tomography (OCT), and OCT angiography. Although an accurate clinical diagnosis can be reached by these innovative and non-invasive tools, genetic testing is necessary to confirm a specific phenotype, and segregation analysis can address the inheritance pattern. Gene discovery approaches clarified that mutations of about 280 different genes involved in eyes development, photoreceptor survival, phototransduction mechanisms, retinoid cycle, retinal enzymatic function, or cell structure are responsible for these degenerative diseases (RetNet. Available at: https://sph.uth.edu/retnet/) and the inheritance pattern can be autosomal dominant, recessive, or X-linked.

To improve the success rate of genetic/genomic diagnosis, new sequencing technologies have been explored, starting from targeted sequencing focused on multigene panels to whole exome sequencing (WES) and sequencing of the entire genome (WGS). Because of the genetic heterogeneity of IRDs, the congruence of clinical and molecular diagnosis is a necessary goal to characterize exactly the phenotype and to increase the chance of therapeutically beneficial strategies.

A major challenge consists in identifying novel genes encoding for the diseases. This extreme genetic heterogeneity accounts for about 30% of the detection failure of molecular diagnosis. With the possibility of investigating WES or WGS, broader windows are opened for gene discovery.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Patients with retinal and optic nerve dystrophy of suspected hereditary nature.
  • Probands with clinical follow-up of at least 12 months.
  • Patients with an inconclusive molecular diagnosis by means of molecular-genetic tests for the genes known to date for the diagnosed pathology.

Exclusion criteria

  • Patients with a clinical diagnosis of no proven genetic origin.
  • Patients whose parents' or second degree relatives' samples are not available.
  • Patients who refuse to be informed of the genetic results obtained, including incidental clinically relevant, validated and actionable for the patient himself and/or his family.

Treatment and study plan

Whole genome sequencing

Diagnostic Test

Whole genome sequencing will be performed in patients whose test was negative for the targeted resequencing and/or clinical exome sequencing.

Primary outcomes

  1. Understanding genetic missing pathogenetic variants in IRD

    Time frame: two years

    Identification of genetic variants causative of the clinical phenotype

Secondary outcomes

  1. Gene discovery in IRD

    Time frame: two years

    Identification of novel disease genes responsible for IRD.

Other outcomes

  1. Assessment of the pathogenicity of the newly identified variant(s) by functional studies.

    Time frame: three years

    Functional characterization of new variants by in vivo and in vitro models

Sponsors and collaborators

Lead sponsor

Istituto Superiore di Sanità

Other

Collaborators

  • Fondazione G.B. Bietti, IRCCS
  • Ospedale Pediatrico Bambin Gesù

Registry information

Official study title

"Understanding Genetic Missing Variability and Pathogenetic Mechanisms of Inherited Retinal Dystrophies Using Whole Genome Sequencing and in Vitro and in Vivo Models"

Important dates

Study start
2022
Primary completion
2024
Study completion
2024
First posted
Mar 31, 2023
Registry last updated
Apr 18, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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