The rapid evolution and widespread use of next generation sequencing (NGS) in clinical laboratories has allowed an incredible progress in the genetic diagnostics of several inherited disorders. However, the new technologies have brought new challenges. In this review we consider the important issue of NGS data analysis, as well as the interpretation of unknown genetic variants and the management of the incidental findings. Moreover, we focus the attention on the new professional figure of bioinformatics and the new role of medical geneticists in clinical management of patients. Furthermore, we consider some of the main clinical applications of NGS, taking into consideration that there will be a growing progress in this field in the forthcoming future.

Next-generation sequencing approach for the diagnosis of human diseases: open challenges and new opportunities / Di Resta, Chiara; Galbiati, Silvia; Carrera, Paola; Ferrari, Maurizio. - In: EJIFCC. - ISSN 1650-3414. - 29:1(2018), p. 4-14.

Next-generation sequencing approach for the diagnosis of human diseases: open challenges and new opportunities

Di Resta, Chiara
Primo
;
Ferrari, Maurizio
2018-01-01

Abstract

The rapid evolution and widespread use of next generation sequencing (NGS) in clinical laboratories has allowed an incredible progress in the genetic diagnostics of several inherited disorders. However, the new technologies have brought new challenges. In this review we consider the important issue of NGS data analysis, as well as the interpretation of unknown genetic variants and the management of the incidental findings. Moreover, we focus the attention on the new professional figure of bioinformatics and the new role of medical geneticists in clinical management of patients. Furthermore, we consider some of the main clinical applications of NGS, taking into consideration that there will be a growing progress in this field in the forthcoming future.
2018
causative mutations; coverage; diagnostics; genetic medicine; genetics; incidental findings; inherited disorders; next generation sequencing; sequence depth; variants interpretation
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11768/85229
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