Search results for "circulating tumor dna"

showing 10 items of 34 documents

Serial circulating tumor DNA analysis to assess recurrence risk, benefit of adjuvant therapy, growth rate and early relapse detection in stage III co…

2021

3540 Background: Challenges in the postoperative management of stage III colorectal cancer include: 1) selection of high-risk patients for adjuvant chemotherapy (ACT), 2) lack of markers to assess ACT efficacy, 3) assessment of recurrence risk after ACT, and 4) lack of markers to guide treatment decisions for high-risk patients e.g. additional therapy or intensified surveillance. Circulating tumor DNA (ctDNA) is a promising marker with potential to mitigate the challenges. Here we used serial ctDNA measurements to assess the correlation between recurrence and ctDNA detection: postoperative, during and after ACT, and during surveillance; and to assess growth rates of metachronous metastases…

OncologyCancer Researchmedicine.medical_specialtybusiness.industryAdjuvant chemotherapyEarly RelapsePostoperative managementRecurrence riskOncologyCirculating tumor DNAInternal medicineStage III colorectal cancerAdjuvant therapyMedicinebusinessSelection (genetic algorithm)
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Circulating tumor DNA analysis for assessment of recurrence risk, benefit of adjuvant therapy, and early relapse detection after treatment in colorec…

2021

11 Background: Timely detection of recurrence, as well as identification of patients at high risk of recurrence after surgery and after completion of adjuvant therapy, are major challenges in the treatment of colorectal cancer (CRC). Postsurgical circulating tumor DNA (ctDNA) analysis is a promising tool for the identification of patients with minimal residual disease (MRD) and a high risk of recurrence. The objective of this prospective, multicenter study was to determine whether serial postsurgical ctDNA analysis could identify the patients at high risk of recurrence, provide an assessment of adjuvant therapy efficacy and detect relapse earlier than standard-of-care radiological imaging.…

OncologyCancer Researchmedicine.medical_specialtybusiness.industryColorectal cancerEarly Relapsemedicine.diseaseRecurrence risk03 medical and health sciences0302 clinical medicineOncologyCirculating tumor DNA030220 oncology & carcinogenesisInternal medicinemedicineAdjuvant therapybusinessAfter treatment030215 immunologyJournal of Clinical Oncology
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Circulating tumor DNA to detect minimal residual disease, response to adjuvant therapy, and identify patients at high risk of recurrence in patients …

2020

4009 Background: The clinical utility of tracking circulating tumor DNA (ctDNA) as a non-invasive biomarker for detecting minimal residual disease (MRD) and stratifying patients based on their risk of developing relapse has been well established in colorectal cancer (CRC). This study evaluates the detection and longitudinal monitoring of ctDNA in CRC patients pre- and post-operatively, during and after adjuvant chemotherapy (ACT). Methods: The prospective, multicenter cohort study recruited patients (n = 193) diagnosed with resected stage I-III CRC. Plasma samples (n = 1052) were collected at various timepoints with a median follow up of 21.6 months (4.6-38.5 months). Individual tumors and…

OncologyCancer Researchmedicine.medical_specialtybusiness.industryMinimal residual diseaseOncologyCirculating tumor DNAInternal medicineAdjuvant therapyBiomarker (medicine)MedicineIn patientbusinessMinimal Residual Disease ResponseJournal of Clinical Oncology
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Applicability of ctDNA at diagnosis and during the monitoring of EGFR-mutated patients

2019

Oncologybusiness.industryCirculating tumor DNAMutation (genetic algorithm)Cancer researchMedicineHematologybusinessAnnals of Oncology
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Detection of TP53 and PIK3CA Mutations in Circulating Tumor DNA Using Next-Generation Sequencing in the Screening Process for Early Breast Cancer Dia…

2019

Circulating tumor DNA (ctDNA) has emerged as a non-invasive &ldquo

Oncologymedicine.medical_specialtymolecular profilinglcsh:MedicineDNA sequencing03 medical and health sciences0302 clinical medicineBreast cancerbreast cancerInternal medicinemedicineMammographyLiquid biopsycirculating tumor DNA (ctDNA)GeneLymph node030304 developmental biology0303 health sciencesmedicine.diagnostic_testliquid biopsybusiness.industrylcsh:RGeneral MedicineAmpliconmedicine.diseasemedicine.anatomical_structure030220 oncology & carcinogenesisImmunohistochemistrybusinessearly-stage cancer
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Establishing PNB-qPCR for quantifying minimal ctDNA concentrations during tumour resection.

2017

The analysis of blood plasma or serum as a non-invasive alternative to tissue biopsies is a much-pursued goal in cancer research. Various methods and approaches have been presented to determine a patient’s tumour status, chances of survival, and response to therapy from serum or plasma samples. We established PNB-qPCR (Pooled, Nested, WT-Blocking qPCR), a highly specific nested qPCR with various modifications to detect and quantify minute amounts of circulating tumour DNA (ctDNA) from very limited blood plasma samples. PNB-qPCR is a nested qPCR technique combining ARMS primers, blocking primers, LNA probes, and pooling of multiple first round products for sensitive quantification of the sev…

Proto-Oncogene Proteins p21(ras)NeoplasmsDNA Mutational AnalysisMutationBiomarkers TumorHumansDNA NeoplasmReal-Time Polymerase Chain ReactionSensitivity and SpecificityArticleCirculating Tumor DNAScientific reports
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Next-Generation Sequencing in Clinical Practice

2019

Abstract During the past few decades, Sanger sequencing represented the “gold standard” technique. In order to better define the mutational status of several genes at the same time, next-generation sequencing methodologies have been introduced in the molecular laboratory workflow. In the era of personalized medicine, this technological improvement plays a key role in the comprehensive molecular characterization of cancer patients in order to get a “tile” target therapy. For different cancer patients, different target therapies are available and different genes serve as clinical it relevant biomarkers. This chapter reviews the principal features of these novel technologies and their applicat…

Sanger sequencingCirculating tumor dnaLiquid biopsyIon torrentbusiness.industryComputer scienceCancerDNAGold standard (test)Computational biologymedicine.diseaseGene readerTarget therapyDNA sequencingClinical Practicesymbols.namesakeWorkflowIlluminaNext-generation sequencingmedicinesymbolsRNAMutational statusPersonalized medicinebusiness
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The molecular profiling of solid tumors by liquid biopsy: a position paper of the AIOM–SIAPEC-IAP–SIBioC–SIC–SIF Italian Scientific Societies

2021

The term liquid biopsy (LB) refers to the use of various biological fluids as a surrogate for neoplastic tissue to achieve information for diagnostic, prognostic and predictive purposes. In the current clinical practice, LB is used for the identification of driver mutations in circulating tumor DNA derived from both tumor tissue and circulating neoplastic cells. As suggested by a growing body of evidence, however, there are several clinical settings where biological samples other than tissue could be used in the routine practice to identify potentially predictive biomarkers of either response or resistance to targeted treatments. New applications are emerging as useful clinical tools, and o…

Societies ScientificCancer ResearchContext (language use)ReviewNeoplastic CellsBioinformaticsCirculating tumor cellCirculatingBiomarkers TumorMedicineHumansDigital polymerase chain reactionLiquid biopsycfDNAcirculating tumor DNAcfDNA; circulating cell-free DNA; circulating tumor DNA; ctDNA; digital PCR; liquid biopsy; next-generation sequencing; real-time PCRTumorCirculating Neoplastic Cellsliquid biopsybusiness.industrydigital PCRScientificctDNAcirculating cell-free DNANeoplastic Cells CirculatingCirculating Cell-Free DNAcfDNA; circulating cell-free DNA; circulating tumor DNA; ctDNA; digital PCR; liquid biopsy; next-generation sequencing; real-time PCR; Biomarkers Tumor; Humans; Italy; Liquid Biopsy; Neoplastic Cells Circulating; Societies ScientificOncologyItalyCirculating tumor DNAPosition papernext-generation sequencingSocietiesbusinessreal-time PCRBiomarkersHuman
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Detection of

2019

Circulating tumor DNA (ctDNA) has emerged as a non-invasive “liquid biopsy” for early breast cancer diagnosis. We evaluated the suitability of ctDNA analysis in the diagnosis of early breast cancer after mammography findings, comparing PIK3CA and TP53 mutations between tumor biopsies and pre-biopsy circulating DNA. Matched plasma and frozen fresh tissue biopsies from patients with Breast Imaging-Reporting and Data System (BIRADS) 4c/5 mammography findings and subsequent diagnosis of primary breast cancer were analyzed using NGS TruSeq Custom Amplicon Low Input Panel (Illumina) and plasma SafeSEQ (Sysmex Inostics). The same plasma and tumor mutations were observed in eight of 29 patients (27…

breast cancerliquid biopsymolecular profilingcirculating tumor DNA (ctDNA)Articleearly-stage cancerJournal of clinical medicine
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Erratum to: The diagnostic accuracy of circulating tumor DNA for the detection of EGFR-T790M mutation in NSCLC: a systematic review and meta-analysis…

2018

A correction to this article has been published and is linked from the HTML and PDF versions of this paper. The error has been fixed in the paper.

circulating tumor DNA NSCLCSettore MED/06 - Oncologia Medica
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