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dc.creatorConde, E. (Esther)-
dc.creatorHernández, S. (Susana)-
dc.creatorMartínez-Turrillas, R. (Rebeca)-
dc.creatorAngulo, B. (Bárbara)-
dc.creatorCastro, J. (Javier) de-
dc.creatorCollazo-Lorduy, A. (Ana)-
dc.creatorJiménez, B. (Beatriz)-
dc.creatorMuriel, A. (Alfonso)-
dc.creatorMate, J.L. (Jose Luis)-
dc.creatorMoran, T. (Teresa)-
dc.creatorAranda, I. (Ignacio)-
dc.creatorMassuti, B. (Bartomeu)-
dc.creatorRojo-Todo, F. (Federico)-
dc.creatorDomine, M. (Manuel)-
dc.creatorSansano, I. (Irene)-
dc.creatorGarcía, F. (Felip)-
dc.creatorFelip, E. (Enriqueta)-
dc.creatorMancheño, N. (Nuria)-
dc.creatorJuan, O. (Oscar)-
dc.creatorSanz, J. (Julián)-
dc.creatorGonzalez-Larriba, J.L. (José Luis)-
dc.creatorAtienza-Cuevas, L. (Lidia)-
dc.creatorArriola-Arellano, E. (Esperanza)-
dc.creatorAbdulkader, I. (Ihab)-
dc.creatorGarcía-González, J (Jorge)-
dc.creatorCamacho, C. (Carmen)-
dc.creatorRodríguez-Abreu, D. (Delvys)-
dc.creatorTeixidó, C. (Cristina)-
dc.creatorReguart, N. (Noemi)-
dc.creatorGonzález-Piñeiro, A. (Ana)-
dc.creatorLázaro-Quintela, M. (Martín)-
dc.creatorLozano, M.D. (María Dolores)-
dc.creatorGurpide, A. (Alfonso)-
dc.creatorGomez-Roman, J. (Javier)-
dc.creatorLópez-Brea, M. (Marta)-
dc.creatorPijuan, L. (Lara)-
dc.creatorSalido, M. (Marta)-
dc.creatorArriola, E. (Edurne)-
dc.creatorCompany, A. (Amparo)-
dc.creatorInsa, A. (Amelia)-
dc.creatorEsteban-Rodríguez, I. (Isabel)-
dc.creatorSaiz, M. (Mónica)-
dc.creatorAzcona, E. (Eider)-
dc.creatorÁlvarez, R. (Ramiro)-
dc.creatorArtal, Á. (Ángel)-
dc.creatorPlaza, M.L. (María Luz)-
dc.creatorAguiar, D. (David)-
dc.creatorEnguita, A.B. (Ana Belén)-
dc.creatorBenito, A. (Amparo)-
dc.creatorPaz-Ares, L. (Luis)-
dc.creatorGarrido, P. (Pilar)-
dc.creatorLópez-Ríos, F. (Fernando)-
dc.date.accessioned2021-09-20T07:53:34Z-
dc.date.available2021-09-20T07:53:34Z-
dc.date.issued2019-
dc.identifier.citationConde, E. (Esther); Hernández-Araico, S. (Susana); Martínez-Turrillas, R. (Rebeca); et al. "Assessment of a New ROS1 Immunohistochemistry Clone (SP384) for the Identification of ROS1 Rearrangements in Patients with Non–Small Cell Lung Carcinoma: the ROSING Study". Journal of Thoracic Oncology. 14 (12), 2019, 2120 - 2132es_ES
dc.identifier.issn1556-0864-
dc.identifier.otherPMID: 31349061-
dc.identifier.urihttps://hdl.handle.net/10171/62012-
dc.description.abstractIntroduction: The ROS1 gene rearrangement has become an important biomarker in NSCLC. The College of American Pathologists/International Association for the Study of Lung Cancer/Association for Molecular Pathology testing guidelines support the use of ROS1 immunohistochemistry (IHC) as a screening test, followed by confirmation with fluorescence in situ hybridization (FISH) or a molecular test in all positive results. We have evaluated a novel anti-ROS1 IHC antibody (SP384) in a large multicenter series to obtain real-world data. Methods: A total of 43 ROS1 FISH-positive and 193 ROS1 FISH-negative NSCLC samples were studied. All specimens were screened by using two antibodies (clone D4D6 from Cell Signaling Technology and clone SP384 from Ventana Medical Systems), and the different interpretation criteria were compared with break-apart FISH (Vysis). FISH-positive samples were also analyzed with next-generation sequencing (Oncomine Dx Target Test Panel, Thermo Fisher Scientific). Results: An H-score of 150 or higher or the presence of at least 70% of tumor cells with an intensity of staining of 2+ or higher by the SP384 clone was the optimal cutoff value (both with 93% sensitivity and 100% specificity). The D4D6 clone showed similar results, with an H-score of at least 100 (91% sensitivity and 100% specificity). ROS1 expression in normal lung was more frequent with use of the SP384 clone (p < 0.0001). The ezrin gene (EZR)-ROS1 variant was associated with membranous staining and an isolated green signal FISH pattern (p = 0.001 and p = 0.017, respectively). Conclusions: The new SP384 ROS1 IHC clone showed excellent sensitivity without compromising specificity, so it is another excellent analytical option for the proposed testing algorithm.es_ES
dc.description.sponsorshipFunding for this study was provided by Instituto de Salud Carlos III (ISCIII) (Fondos FEDER and Plan Estatal de IþDþI 2013-2016 [PI14-01176 and PI17-01001], 2018-2021 [PI18/00382], and PT17/0015/0006]) and the iLUNG Program (B2017/BMD-3884) from the Comunidad de Madrid. Ventana Medical Systems provided the clone SP384 free of charge. Thermo Fisher Scientific provided the Oncomine Dx Target Test panel free of charge. Dr. F. Lopez-Rios thanks T. Crean for his constant support.es_ES
dc.language.isoenges_ES
dc.publisherElsevier BVes_ES
dc.rightsinfo:eu-repo/semantics/openAccesses_ES
dc.subjectMaterias Investigacion::Ciencias de la Salud::Patologíaes_ES
dc.subjectROS1es_ES
dc.subjectImmunohistochemistryes_ES
dc.subjectFISHes_ES
dc.subjectNextgeneration sequencinges_ES
dc.subjectLung carcinomaes_ES
dc.titleAssessment of a New ROS1 Immunohistochemistry Clone (SP384) for the Identification of ROS1 Rearrangements in Patients with Non–Small Cell Lung Carcinoma: the ROSING Studyes_ES
dc.typeinfo:eu-repo/semantics/articlees_ES
dc.description.noteThis is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-ncnd/4.0/).es_ES
dc.identifier.doi10.1016/j.jtho.2019.07.005-
dadun.citation.endingPage2132es_ES
dadun.citation.number12es_ES
dadun.citation.publicationNameJournal of Thoracic Oncologyes_ES
dadun.citation.startingPage2120es_ES
dadun.citation.volume14es_ES

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