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  1. Outputs

Quality assessment of a clinical next-generation sequencing melanoma panel within the Italian Melanoma Intergroup (IMI)

Academic Article
Publication Date:
2020
Short description:
Quality assessment of a clinical next-generation sequencing melanoma panel within the Italian Melanoma Intergroup (IMI) / Vanni, I., Casula, M., Pastorino, L., Manca, A., Dalmasso, B., Andreotti, V., Pisano, M., Colombino, M., Covre, A., Di Giacomo, A.M., Maio, M., De Logu, F., Massi, D., Portelli, F., Anichini, A., Mortarini, R., Bruno, W., Cabiddu, F., Spagnolo, F., Palomba, G., et al.. - In: DIAGNOSTIC PATHOLOGY. - ISSN 1746-1596. - 15:1(2020), p. 143. [10.1186/s13000-020-01052-5]
abstract:
Background: Identification of somatic mutations in key oncogenes in melanoma is important to lead the effective and efficient use of personalized anticancer treatment. Conventional methods focus on few genes per run and, therefore, are unable to screen for multiple genes simultaneously. The use of Next-Generation Sequencing (NGS) technologies enables sequencing of multiple cancer-driving genes in a single assay, with reduced costs and DNA quantity needed and increased mutation detection sensitivity. Methods: We designed a customized IMI somatic gene panel for targeted sequencing of actionable melanoma mutations; this panel was tested on three different NGS platforms using 11 metastatic melanoma tissue samples in blinded manner between two EMQN quality certificated laboratory. Results: The detection limit of our assay was set-up to a Variant Allele Frequency (VAF) of 10% with a coverage of at least 200x. All somatic variants detected by all NGS platforms with a VAF ≥ 10%, were also validated by an independent method. The IMI panel achieved a very good concordance among the three NGS platforms. Conclusion: This study demonstrated that, using the main sequencing platforms currently available in the diagnostic setting, the IMI panel can be adopted among different centers providing comparable results.
Iris type:
1.1 Articolo in rivista
Keywords:
BRAF; Gene panel testing; Melanoma; Next generation sequencing (NGS); Quality controls; Somatic mutations; Target therapy; DNA Mutational Analysis; Female; High-Throughput Nucleotide Sequencing; Humans; Italy; Male; Melanoma; Sequence Analysis, DNA; Skin Neoplasms; Quality Assurance, Health Care
List of contributors:
Vanni, I.; Casula, M.; Pastorino, L.; Manca, A.; Dalmasso, B.; Andreotti, V.; Pisano, M.; Colombino, M.; Covre, A.; Di Giacomo, A. M.; Maio, M.; De Logu, F.; Massi, D.; Portelli, F.; Anichini, A.; Mortarini, R.; Bruno, W.; Cabiddu, F.; Spagnolo, F.; Palomba, G.; Sini, M. C.; Fedeli, M. A.; Lissia, A.; Pfeffer, U.; Tanda, E. T.; Rozzo, C.; Paliogiannis, P.; Cossu, A.; Ghiorzo, P.; Palmieri, G.; Caraco, C.; Grimaldi, A. M.; Ferraresi, V.; Mandala, M.; Patuzzo, R.; Quaglino, P.; Queirolo, P.; Stanganelli, I.
Authors of the University:
COSSU Antonio Giuseppe Maria
PALIOGIANNIS Panagiotis
PALMIERI Giuseppe
Handle:
https://iris.uniss.it/handle/11388/253822
Full Text:
https://iris.uniss.it//retrieve/handle/11388/253822/364953/Diagnostic%20Pathology.pdf
Published in:
DIAGNOSTIC PATHOLOGY
Journal
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