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Contribution of New Generation Oxford Nanopore-type High-throughput Sequencing in the Diagnostic Strategy of Neurogenetic Diseases.

Contribution of New Generation Oxford Nanopore-type High-throughput Sequencing in the Diagnostic Strategy of Neurogenetic Diseases.

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04621422
Acronym
NEURONGS3
Enrollment
60
Registered
2020-11-09
Start date
2020-12-31
Completion date
2023-01-31
Last updated
2020-11-09

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Neuro-Degenerative Disease

Brief summary

Since 2012, NGS sequencing of long fragments or long reads has developed in various fields of research and today presents itself as a very promising alternative solution in the analysis of repeat amplifications. The Oxford Nanopore NGS automaton offers the prospect of bringing together 1st and 2nd line analyzes of all loci potentially indicated in neurogenetics at the same time. The project aims to compare the use of this new technology with methods currently used in reference laboratories. The main objective is to evaluate the ability of next-generation high-throughput Oxford Nanopore-type sequencing (NEURONGS3) to diagnose 9 neurogenetic diseases compared to reference protocols via PCR (+/- Southern blot). The secondary objective is to evaluate the repeatability of the NGS (intra-sample reproducibility) analysis in the diagnosis of 8 neurogenetic diseases.

Detailed description

Since 2012, NGS sequencing of long fragments or long reads has developed in various fields of research and today presents itself as a very promising alternative solution in the analysis of repeat amplifications. The Oxford Nanopore NGS automaton offers the prospect of bringing together 1st and 2nd line analyzes of all loci potentially indicated in neurogenetics at the same time. The project aims to compare the use of this new technology with methods currently used in reference laboratories. Multicenter cross-sectional early phase diagnostic study on already existing biological collections. Analyzes with the new technique (NGS) will be carried out blinded to the results obtained with the current reference algorithm based on the sequential performance of PCRs The main objective is to evaluate the ability of next-generation high-throughput Oxford Nanopore-type sequencing (NEURONGS3) to diagnose 9 neurogenetic diseases compared to reference protocols via PCR (+/- Southern blot). The secondary objective is to evaluate the repeatability of the NGS (intra-sample reproducibility) analysis in the diagnosis of 8 neurogenetic diseases.

Interventions

BIOLOGICALSubject carrying an amplification of nucleotide repeats in one of the following 9 genes FMR1, DMPK, ZNF9, SCA2, JPH3, HD, FXN, C9ORF72, RFC1

Biological/Vaccine: DNA Samples collection as part of usual care

Sponsors

University Hospital, Bordeaux
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
RETROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
0 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* minors, adults and protected adults. * Subject carrying an amplification of nucleotide repeats in one of the following 9 genes FMR1, DMPK, ZNF9, SCA2, JPH3, HD, FXN, C9ORF72, RFC1 * DNA available in sufficient quantity (5 to 10 µg)

Exclusion criteria

* DNA degraded or of medium size \<30kb, * Patient objection to research - This patient objection must be reached to the center's investigator within 1 maximum period of 1 month after sending the information note.

Design outcomes

Primary

MeasureTime frameDescription
Proportion of patients tested positive by Next Generation Sequencing among all the patients tested positive by the current algorithm based on PCRsthrough study completion, an average of 2 yearsFor each of the 9 considered diseases, the proportion will be established as well as its 95% confidence interval.

Secondary

MeasureTime frameDescription
Difference between the number of repetition amplifications found by the Next Generation Sequencing method and the number of repetition amplifications found by the PCR diagnosis methodthrough study completion, an average of 2 yearsFor each of the 9 considered diseases, the number of repetition amplifications found by the Next Generation Sequencing method will be compared to the number of repetition amplifications found by the PCR diagnosis method using the Bland et Altman graphs. The average and standard deviation of the difference will be calculated.

Contacts

Primary ContactCyril Goizet
cyril.goizet@chu-bordeaux.fr05 56 79 59 52
Backup ContactMarie-Pierre Baudier
marie-pierre.baudier@chu-bordeaux.fr05 57 82 05 92

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026