In order to accelerate the identification of genes responsibles of PID, and to improve the diagnosis of PID, the research team would like to validate a rapid and targeted method of high-throughput sequencing, on 301 genes, known to be involved in PID.
The Primary Immuno-Deficiencies (PID) are a set of rare diseases (estimated incidence of 1/5000). Today, more than 320 PID are described, and for 301 of them, the genetic cause has been identified, which underlines the huge diversity of all PID. The genetic diagnosis of PID is very important for the comprehension of PID physiopathology, their treatment and the genetic patient information. The characterisation of the clinical and immunological phenotype of patients allowed to identify a known morbid gene in 30% of cases, but for other patients, the genetic cause remains unknown, due to, inter alia, the lack of efficient tools for genetic exploration. In this context, each year, around 600 French and foreign patients are explored at the Necker hospital CEDI (Center for Immuno-Deficiencies Explorations), for whom are identified, in 30% of cases, a known genetic cause. Their treatment and the diagnosis of these patients is slow, partially because these studies are dependants of research fundings. In addition, in the current practice, the investigators sometimes discover incidental findings via the non-targeted high throughput genetic analyzes. The aim of the gene-panel is to improve the diagnosis procedures of these known diseases, by generalizing a rapid and targeted method of sequencing, on 301 genes, known to be involved in PID.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
115
Additional blood sampling for the realization of the test on the gene panel
Necker - Enfants Malades hospital
Paris, France
Comparison of the 2 sequencing methods
Assess the efficacy of the identification of the genetic cause of PID, via the high throughput gene panel sequencing method, compared to the reference Sanger method, on patients with no identified mutation after analyzes done by available technics on hospital laboratories.
Time frame: 2 years
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