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NCT Number: NCT06813469

Multi-Dimensional Genomic Dissection of Ring Chromosome 14 Syndrome

MD-RING will explore the hypothesis that position effects and TAD alterations act as an unprecedented pathomechanism in r(14)S. This will contribute to a better understanding of genotype-to-phenotype correlations, creating an important scientific resource for the study of this and other ring syndromes, with the ultimate objective to offer improved family counseling , patient care and to identify potential new therapeutic options.

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This study is active but is not currently recruiting participants.

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Key information

Age range

28 day and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

IRCCS Azienda Ospedaliero-Universitaria di Bologna

Bologna, 40138, Italy

About this study

Chromosome 14 ring syndrome [r(14)S] is a rare genetic disorder mainly characterized by complex and severe neurodevelopmental disorders, ranging from intellectual disability to aggressive/hyperactive behavior and drug-resistant epilepsy. Indeed, epilepsy is the most important clinical challenge in r(14)S, with enormous difficulty in controlling severe seizures and a strong need for innovative and effective treatments. Precision medicine for r(14)S patients would be greatly facilitated by knowledge of specific genes involved in pathogenesis. However, the pathophysiology of r(14)S is still largely unknown, and the identification of genotype/phenotype correlations is complicated by the co-occurrence of chromosome 14 rearrangements and the unknown degree of r(14) mosaicism in tissues most relevant to the disease. On the one hand, deletions of different sizes, from a few hundred Kbs to several Mbs, are often found in the terminal 14q region. These are an unlikely explanation for the severity and expressiveness of r(14) disease, since it has been observed that carriers of similar linear deletions of chromosome 14q rarely suffer from epilepsy. On the other hand, ring instability may promote increased monosomy of chromosome 14 in epilepsy-related areas of the brain (it is about 20% in peripheral blood).

Another fascinating hypothesis is that the mechanism and expressiveness of r(14) disease are driven primarily by the disruption of chromosome 14 conformation and positioning within the nucleus caused by its circularization, with dramatic effects on physiological interactions between genetic loci and, consequently, on gene regulation . This idea revives an unresolved question in cytogenetic disorders, whether the chromosomal abnormality itself produces a clinical phenotype beyond the pathogenic effects of the altered gene dosage. Rings can form from any chromosome, and most ring syndromes share largely similar clinical phenotypes. Severe epilepsy, for example, has been described in r(7), r(17), r(18), r(20), r(21) and r(22) syndromes in addition to r(14)S . This observation suggests that the presence of a loop within the nucleus may itself disrupt the balance of gene expression.

Who can participate

Healthy volunteers accepted: No

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

Inclusion criteria

  • Ten LCLs of r(14)S patients with 14q deletions of varying position and extent in 70%, and monosomy 14 of varying degree in 60%.
  • Five LCLs of parents without cytogenetic alterations.

Exclusion criteria

  • Ten LCLs of r(14)S patients with 14q deletions of varying position and extent in 70%, and monosomy 14 of varying degree in 60%.
  • Five LCLs of parents without cytogenetic alterations.

Treatment and study plan

LRS analysis

Genetic

Long Read Sequencing (LRS) and High-throughput chromosome conformation capture (Hi-C) analysis to explore and functionally characterize the r(14) event and its impact on the three-dimensional (3D) genomic architecture inside the cells of r(14)S patients

Primary outcomes

  1. LRS analysis of SVs occurring on chromosome 14

    Time frame: 8 months

    • Resolving the sequence breakpoints of structural ring rearrangement in patients with r(14)S.
    • Construct a 3D cell-specific molecular signature of r(14)S patients.
    • Identify regulatory mechanisms that are important in the pathophysiology of r(14)S.

Secondary outcomes

  1. Genotype-phenotype correlations based on the impact of the degree of mosaicism r(14) on the ability to identify Hi-C features.

    Time frame: 8 months

Sponsors and collaborators

Lead sponsor

IRCCS Azienda Ospedaliero-Universitaria di Bologna

Other

Registry information

Important dates

Study start
2023
Primary completion
2025
Study completion
2025
First posted
Feb 7, 2025
Registry last updated
Feb 7, 2025

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

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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.