Please use this identifier to cite or link to this item: http://hdl.handle.net/11452/30160
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dc.contributor.authorErgören, Mahmut Çerkez-
dc.contributor.authorÇobanoğulları, Havva-
dc.contributor.authorMocan, Gamze-
dc.date.accessioned2022-12-29T07:53:12Z-
dc.date.available2022-12-29T07:53:12Z-
dc.date.issued2020-09-18-
dc.identifier.citationErgören, M. Ç. vd. (2020). "Functional coding/non-coding variants in EGFR, ROS1 and ALK genes and their role in liquid biopsy as a personalized therapy". Critical Reviews in Oncology Hematology, 156.en_US
dc.identifier.issn1040-8428-
dc.identifier.issn1879-0461-
dc.identifier.urihttps://doi.org/10.1016/j.critrevonc.2020.103113-
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S1040842820302493-
dc.identifier.urihttp://hdl.handle.net/11452/30160-
dc.description.abstractPersonalized medicine holds promise to tailor the treatment options for patients' unique genetic make-up, behavioral and environmental background. Liquid biopsy is non-invasive technique and precise diagnosis and treatment approach. Significantly, NGS technologies have revolutionized the genomic medicine by novel identifying SNPs, indel mutations in both coding and non-coding regions and also a promising technology to accelerate the early detection and finding new biomarkers for diagnosis and treatment. The number of the bioinformatics tools have been rapidly increasing with the aim of learning more about the detected mutations either they have a pathogenic role or not. EGFR, ROS1 and ALK genes are members of the RTK family. Until now, mutations within these genes have been associated with many cancers and involved in resistance formation to TKIs. This review article summarized the findings about the mostly investigated variations in EGFR, ROS1 and ALK genes and their potential role in liquid biopsy approach.en_US
dc.language.isoenen_US
dc.publisherElsevier Scienceen_US
dc.rightsinfo:eu-repo/semantics/closedAccessen_US
dc.subjectEGFRen_US
dc.subjectROS1en_US
dc.subjectALKen_US
dc.subjectTyrosine kinase inhibitorsen_US
dc.subjectLiquid biopsyen_US
dc.subjectPersonalized therapyen_US
dc.subjectCell lung-canceren_US
dc.subjectPrecision medicineen_US
dc.subjectKinase inhibitoren_US
dc.subjectMutationsen_US
dc.subjectAssociationen_US
dc.subjectSensitivityen_US
dc.subjectTissueen_US
dc.subjectOncologyen_US
dc.subjectHematologyen_US
dc.subject.meshAnaplastic lymphoma kinaseen_US
dc.subject.meshCarcinoma, non-small-cell lungen_US
dc.subject.meshErbB receptorsen_US
dc.subject.meshHumansen_US
dc.subject.meshLiquid biopsyen_US
dc.subject.meshLung neoplasmsen_US
dc.subject.meshMutationen_US
dc.subject.meshProtein-tyrosine kinasesen_US
dc.subject.meshProto-oncogene proteinsen_US
dc.titleFunctional coding/non-coding variants in EGFR, ROS1 and ALK genes and their role in liquid biopsy as a personalized therapyen_US
dc.typeArticleen_US
dc.identifier.wos000591335600006tr_TR
dc.identifier.scopus2-s2.0-85092143731tr_TR
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergitr_TR
dc.contributor.departmentBursa Uludağ Üniversitesi/Tıp Fakültesi/Histoloji ve Embriyoloji Anabilim Dalı.tr_TR
dc.contributor.orcid0000-0002-9802-0880tr_TR
dc.identifier.volume156tr_TR
dc.relation.journalCritical Reviews in Oncology Hematologyen_US
dc.contributor.buuauthorTemel, Şehime Gülsün-
dc.contributor.researcheridAAG-8385-2021tr_TR
dc.relation.collaborationYurt dışıtr_TR
dc.identifier.pubmed33038629tr_TR
dc.subject.wosOncologyen_US
dc.subject.wosHematologytr_TR
dc.indexed.wosSCIEen_US
dc.indexed.scopusScopusen_US
dc.indexed.pubmedPubMeden_US
dc.wos.quartileQ1en_US
dc.contributor.scopusid6507885442tr_TR
dc.subject.scopusNon-Small Cell Lung Carcinoma; Anaplastic Lymphoma Kinase; Crizotiniben_US
dc.subject.emtreeAlectiniben_US
dc.subject.emtreeAnaplastic lymphoma kinaseen_US
dc.subject.emtreeCrizotiniben_US
dc.subject.emtreeEpidermal growth factor receptoren_US
dc.subject.emtreeErlotiniben_US
dc.subject.emtreeGefitiniben_US
dc.subject.emtreeMicroRNAen_US
dc.subject.emtreeOsimertiniben_US
dc.subject.emtreeAnaplastic lymphoma kinaseen_US
dc.subject.emtreeEGFR protein, humanen_US
dc.subject.emtreeEpidermal growth factor receptoren_US
dc.subject.emtreeOncoproteinen_US
dc.subject.emtreeProtein tyrosine kinaseen_US
dc.subject.emtreeROS1 protein, humanen_US
dc.subject.emtreeALK geneen_US
dc.subject.emtreeAmplification refractory mutation system polymerase chain reactionen_US
dc.subject.emtreeBioinformaticsen_US
dc.subject.emtreeBreast canceren_US
dc.subject.emtreeChromosomal instabilityen_US
dc.subject.emtreeColorectal canceren_US
dc.subject.emtreeCopy number variationen_US
dc.subject.emtreeEGFR geneen_US
dc.subject.emtreeFilter adapted fluorescent in situ hybridizationen_US
dc.subject.emtreeFluorescence in situ hybridizationen_US
dc.subject.emtreeGeneen_US
dc.subject.emtreeGene amplificationen_US
dc.subject.emtreeGene frequencyen_US
dc.subject.emtreeGene overexpressionen_US
dc.subject.emtreeGene rearrangementen_US
dc.subject.emtreeGene translocationen_US
dc.subject.emtreeGenetic variabilityen_US
dc.subject.emtreeGlioblastomaen_US
dc.subject.emtreeHead and neck canceren_US
dc.subject.emtreeHigh throughput sequencingen_US
dc.subject.emtreeHumanen_US
dc.subject.emtreeImmunohistochemistryen_US
dc.subject.emtreeIndel mutationen_US
dc.subject.emtreeLiquid biopsyen_US
dc.subject.emtreeLung canceren_US
dc.subject.emtreeNon small cell lung canceren_US
dc.subject.emtreeOvary canceren_US
dc.subject.emtreePersonalized medicineen_US
dc.subject.emtreePoint mutationen_US
dc.subject.emtreeReal time polymerase chain reactionen_US
dc.subject.emtreeReverse transcription polymerase chain reactionen_US
dc.subject.emtreeReviewen_US
dc.subject.emtreeROS1 geneen_US
dc.subject.emtreeSingle nucleotide polymorphismen_US
dc.subject.emtreeTherapy resistanceen_US
dc.subject.emtreeTreatment responseen_US
dc.subject.emtreeVariant allele frequencyen_US
dc.subject.emtreeGeneticsen_US
dc.subject.emtreeLiquid biopsyen_US
dc.subject.emtreeLung tumoren_US
dc.subject.emtreeMutationen_US
dc.subject.emtreeNon small cell lung canceren_US
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