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Real-time detection of BRAF V600E mutation from archival hairy cell leukemia FFPE tissue by nanopore sequencing.
Vacca, Davide; Cancila, Valeria; Gulino, Alessandro; Lo Bosco, Giosuè; Belmonte, Beatrice; Di Napoli, Arianna; Florena, Ada Maria; Tripodo, Claudio; Arancio, Walter.
Afiliação
  • Vacca D; Tumor Immunology Unit, Dipartimento per la Promozione della Salute e Materno Infantile "G. D'Alessandro", University of Palermo, Via del Vespro 129, 90127, Palermo, Italy.
  • Cancila V; Tumor Immunology Unit, Dipartimento per la Promozione della Salute e Materno Infantile "G. D'Alessandro", University of Palermo, Via del Vespro 129, 90127, Palermo, Italy.
  • Gulino A; Tumor Immunology Unit, Dipartimento per la Promozione della Salute e Materno Infantile "G. D'Alessandro", University of Palermo, Via del Vespro 129, 90127, Palermo, Italy.
  • Lo Bosco G; Dipartimento di Matematica ed Informatica, University of Palermo, Via Archirafi, 34, 90123, Palermo, Italy.
  • Belmonte B; Tumor Immunology Unit, Dipartimento per la Promozione della Salute e Materno Infantile "G. D'Alessandro", University of Palermo, Via del Vespro 129, 90127, Palermo, Italy.
  • Di Napoli A; Dipartimento di Medicina Clinica e Molecolare, University "Sapienza" of Rome, Viale Regina Elena 324, 00161, Rome, Italy.
  • Florena AM; Servizio di Anatomia Patologica, Dipartimento per la Promozione della Salute e Materno Infantile "G. D'Alessandro", University of Palermo, Via del Vespro 129, 90127, Palermo, Italy.
  • Tripodo C; Tumor Immunology Unit, Dipartimento per la Promozione della Salute e Materno Infantile "G. D'Alessandro", University of Palermo, Via del Vespro 129, 90127, Palermo, Italy.
  • Arancio W; Tumor Immunology Unit, Dipartimento per la Promozione della Salute e Materno Infantile "G. D'Alessandro", University of Palermo, Via del Vespro 129, 90127, Palermo, Italy. walter.arancio@unipa.it.
Mol Biol Rep ; 45(1): 1-7, 2018 Feb.
Article em En | MEDLINE | ID: mdl-29238890
ABSTRACT
The MinION is a miniaturized high-throughput next generation sequencing platform of novel conception. The use of nucleic acids derived from formalin-fixed paraffin-embedded samples is highly desirable, but their adoption for molecular assays is hurdled by the high degree of fragmentation and by the chemical-induced mutations stemming from the fixation protocols. In order to investigate the suitability of MinION sequencing on formalin-fixed paraffin-embedded samples, the presence and frequency of BRAF c.1799T > A mutation was investigated in two archival tissue specimens of Hairy cell leukemia and Hairy cell leukemia Variant. Despite the poor quality of the starting DNA, BRAF mutation was successfully detected in the Hairy cell leukemia sample with around 50% of the reads obtained within 2 h of the sequencing start. Notably, the mutational burden of the Hairy cell leukemia sample as derived from nanopore sequencing proved to be comparable to a sensitive method for the detection of point mutations, namely the Digital PCR, using a validated assay. Nanopore sequencing can be adopted for targeted sequencing of genetic lesions on critical DNA samples such as those extracted from archival routine formalin-fixed paraffin-embedded samples. This result let speculating about the possibility that the nanopore sequencing could be trustably adopted for the real-time targeted sequencing of genetic lesions. Our report opens the window for the adoption of nanopore sequencing in molecular pathology for research and diagnostics.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: DNA de Neoplasias / Leucemia de Células Pilosas / Proteínas Proto-Oncogênicas B-raf Tipo de estudo: Diagnostic_studies / Guideline Limite: Humans Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: DNA de Neoplasias / Leucemia de Células Pilosas / Proteínas Proto-Oncogênicas B-raf Tipo de estudo: Diagnostic_studies / Guideline Limite: Humans Idioma: En Ano de publicação: 2018 Tipo de documento: Article