NCT07755098

Brief Summary

Neurodevelopmental disorders (NDDs), including intellectual disability (ID), represent the most common indication for genetic testing. Affecting up to 3% of the general population, NDDs are characterized by significant clinical and genetic heterogeneity. Although short-read genome sequencing (srGS) has driven major advances through the France Genomic Medicine 2025 Plan (PFMG2025), a substantial proportion of patients still lack a molecular diagnosis. These results are partly explained by the limitations of short-read genome sequencing (srGS). Although effective in many cases, this technology performs poorly in detecting complex structural rearrangements, anomalies within repetitive or GC-rich regions, epigenetic variations, and certain intronic variants. Furthermore, srGS does not allow for the direct assessment of the functional impact of genetic variations on splicing or gene expression. Following a negative srGS result, periodic reanalysis of sequencing data via the PFMG2025 laboratories (AURAGEN and SeqOIA) is the only diagnostic option currently available in routine practice. However, these reanalyses are constrained by financial and staffing limitations as well as strict eligibility criteria, making it difficult for many patients-particularly those with stable neurodevelopmental disorders (NDDs)-to obtain a diagnosis. Moreover, they often consist merely of a data review without bioinformatic updates, and the turnaround times-frequently exceeding one year-contribute to the diagnostic odyssey. Utilizing updated pipelines tailored to the specific characteristics of NDDs for the re-examination of srGS data could serve as an initial source of new diagnoses. Complementary technologies-such as messenger RNA sequencing (mRNA-seq), optical genome mapping (OGM), and long-read genome sequencing (lrGS)-are available and offer solutions to overcome the limitations of short-read genome sequencing (srGS). In particular, they enable the identification of complex structural variants and the assessment of the functional impact of point variants. Despite their potential, their routine use remains limited due to cost and technical complexity. Our study proposes a combined strategy to address the limitations of current approaches and improve the diagnosis of neurodevelopmental disorders (NDDs) that remain unresolved after short-read genome sequencing (srGS). It begins with a re-analysis of sequencing data using customized bioinformatics pipelines tailored to the patients' specific clinical profiles. In cases of inconclusive results, innovative multi-omics analyses (mRNA-seq, OGM, and long-read genome sequencing/lrGS) will be employed to investigate complex genetic variants. As multi-omics approaches are not currently integrated into the PFMG2025 framework, the project's findings will be crucial in demonstrating their added value for NDD diagnosis and could pave the way for their inclusion in a future PFMG. By anticipating these developments, NextOmix will help define the diagnostic strategies of the future, aligned with technological advancements and patient needs.

Trial Health

63
Monitor

Trial Health Score

Automated assessment based on enrollment pace, timeline, and geographic reach

Enrollment
132

participants targeted

Target at P50-P75 for not_applicable

Timeline
30mo left

Started Sep 2026

Typical duration for not_applicable

Geographic Reach
1 country

1 active site

Status
not yet recruiting

Health score is calculated from publicly available data and should be used for screening purposes only.

Trial Relationships

Click on a node to explore related trials.

Study Timeline

Key milestones and dates

First Submitted

Initial submission to the registry

August 5, 2026

Completed
5 days until next milestone

First Posted

Study publicly available on registry

August 10, 2026

Completed
22 days until next milestone

Study Start

First participant enrolled

September 1, 2026

Expected
2.5 years until next milestone

Primary Completion

Last participant's last visit for primary outcome

March 1, 2029

Same day until next milestone

Study Completion

Last participant's last visit for all outcomes

March 1, 2029

Last Updated

August 10, 2026

Status Verified

August 1, 2026

Enrollment Period

2.5 years

First QC Date

August 5, 2026

Last Update Submit

August 5, 2026

Conditions

Outcome Measures

Primary Outcomes (1)

  • Identification of a causative diagnosis (class 4 or 5 variant according to American College of Medical Genetics criteria) explaining the phenotype and validated during a multidisciplinary team meeting.

    Identification of a causative diagnosis (class 4 or 5 variant according to American College of Medical Genetics criteria) explaining the phenotype and validated during a multidisciplinary team meeting.

    Between 4 and 12 months

Study Arms (3)

Patient with severe to profound intellectual disability

OTHER
Diagnostic Test: Re-analysis of available srGS dataDiagnostic Test: Re-analysis of available srGS data, followed by complementary analyses (lrGS sequencing, mRNA, and GMOs)Diagnostic Test: srGS sequencingDiagnostic Test: Short-read sequencing (srGS) followed by long-read sequencing (lrGS,), mRNA-sequencing and GMO testing

Patient with a syndromic neurodevelopmental disorder with intellectual disability

OTHER
Diagnostic Test: Re-analysis of available srGS dataDiagnostic Test: Re-analysis of available srGS data, followed by complementary analyses (lrGS sequencing, mRNA, and GMOs)Diagnostic Test: srGS sequencingDiagnostic Test: Short-read sequencing (srGS) followed by long-read sequencing (lrGS,), mRNA-sequencing and GMO testing

Patient with a syndromic neurodevelopmental disorder without intellectual disability

OTHER
Diagnostic Test: Re-analysis of available srGS dataDiagnostic Test: Re-analysis of available srGS data, followed by complementary analyses (lrGS sequencing, mRNA, and GMOs)Diagnostic Test: srGS sequencingDiagnostic Test: Short-read sequencing (srGS) followed by long-read sequencing (lrGS,), mRNA-sequencing and GMO testing

Interventions

Re-analysis of available srGS data without further analysis, as the results were positive for the causal diagnosis.

Patient with a syndromic neurodevelopmental disorder with intellectual disabilityPatient with a syndromic neurodevelopmental disorder without intellectual disabilityPatient with severe to profound intellectual disability

Re-analysis of available srGS data followed by additional analyses (lrGS sequencing, mRNA-seq, and GMO testing), as the srGS data are negative for the causal diagnosis.

Patient with a syndromic neurodevelopmental disorder with intellectual disabilityPatient with a syndromic neurodevelopmental disorder without intellectual disabilityPatient with severe to profound intellectual disability

New srGS sequencing followed by additional analyses (lrGS sequencing, mRNA-seq, and GMO testing) because the srGS data are negative for the causal diagnosis.

Patient with a syndromic neurodevelopmental disorder with intellectual disabilityPatient with a syndromic neurodevelopmental disorder without intellectual disabilityPatient with severe to profound intellectual disability
srGS sequencingDIAGNOSTIC_TEST

New srGS sequencing without additional analyses, as it is positive for the causal diagnosis.

Patient with a syndromic neurodevelopmental disorder with intellectual disabilityPatient with a syndromic neurodevelopmental disorder without intellectual disabilityPatient with severe to profound intellectual disability

Eligibility Criteria

Sexall
Healthy VolunteersNo
Age GroupsChild (0-17), Adult (18-64), Older Adult (65+)

You may qualify if:

  • Index case (minor or adult) with severe to profound intellectual disability or syndromic neurodevelopmental disorder without an identified molecular diagnosis. - Index case with a negative srGS result.
  • Sample collection possible from the index case (blood and skin biopsy) and their biological parent(s) (blood) if material is not otherwise available.
  • Signed consent from the adult index case, or from the legal representatives or guardian (as applicable) of a minor index case, and from their parent(s).

You may not qualify if:

  • \- Index case or parent(s) not affiliated with or not covered by a social security scheme.
  • Diagnostic hypothesis considered highly probable, for which an available targeted molecular test costs less than the proposed strategy.
  • Suspicion of an acquired cause for the symptoms.
  • Minor parent(s).
  • Parent subject to a legal protection measure, or incapacitated or otherwise unable to provide informed consent.
  • Pregnant, birthing, or breastfeeding woman.
  • Participant (index case or parent) who has previously undergone allogeneic hematopoietic stem cell transplantation, rendering blood sample analysis uninformative.

Contact the study team to confirm eligibility.

Sponsors & Collaborators

Study Sites (1)

Chu Dijon Bourgogne

Dijon, 21000, France

Location

MeSH Terms

Conditions

Intellectual DisabilityNeurodevelopmental DisordersDisease

Condition Hierarchy (Ancestors)

Neurobehavioral ManifestationsNeurologic ManifestationsNervous System DiseasesSigns and SymptomsPathological Conditions, Signs and SymptomsMental DisordersPathologic Processes

Central Study Contacts

Study Design

Study Type
interventional
Phase
not applicable
Allocation
NA
Masking
SINGLE
Who Masked
OUTCOMES ASSESSOR
Purpose
DIAGNOSTIC
Intervention Model
SINGLE GROUP
Sponsor Type
OTHER
Responsible Party
SPONSOR

Study Record Dates

First Submitted

August 5, 2026

First Posted

August 10, 2026

Study Start (Estimated)

September 1, 2026

Primary Completion (Estimated)

March 1, 2029

Study Completion (Estimated)

March 1, 2029

Last Updated

August 10, 2026

Record last verified: 2026-08

Locations