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Improved molecular diagnosis of patients with neonatal diabetes using a combined next-generation sequencing and MS-MLPA approach

Autores: Alkorta Aranburu, Gorka; Sukhanova, M.; Carmody, D.; Hoffman, T.; Wysinger, L.; Keller-Ramey, J.; Li, Z.; Johnson, A. K.; Kobiernicki, F.; Botes, S.; Fitzpatrick, C.; Das, S.; del Gaudio, S.
Título de la revista: JOURNAL OF PEDIATRIC ENDOCRINOLOGY AND METABOLISM
ISSN: 0334-018X
Volumen: 29
Número: 5
Páginas: 523 - 531
Fecha de publicación: 2016
Resumen:
Background: We evaluated a methylation-specific multiplex-ligation-dependent probe amplification (MS-MLPA) assay for the molecular diagnosis of transient neonatal diabetes mellitus (TNDM) caused by 6q24 abnormalities and assessed the clinical utility of using this assay in combination with next generation sequencing (NGS) analysis for diagnosing patients with neonatal diabetes (NDM). Methods: We performed MS-MLPA in 18 control samples and 42 retrospective NDM cases with normal bi-parental inheritance of chromosome 6. Next, we evaluated 22 prospective patients by combining NGS analysis of 11 NDM genes and the MS-MLPA assay. Results: 6q24 aberrations were identified in all controls and in 19% of patients with normal bi-parental inheritance of chromosome 6. The MS-MLPA/NGS combined approach identified a genetic cause in similar to 64% of patients with NDM of unknown etiology. Conclusions: MS-MLPA is a reliable method to identify all known 6q24 abnormalities and comprehensive testing of all causes reveals a causal mutation in similar to 64% of patients.
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