Search results for "circulating tumor cells"

showing 9 items of 9 documents

A headlight on liquid biopsies: a challenging tool for breast cancer management

2016

Breast cancer is the most frequent carcinoma and second most common cause of cancer-related mortality in postmenopausal women. The acquisition of somatic mutations represents the main mechanism through which cancer cells overcome physiological cellular signaling pathways (e.g., PI3K/Akt/mTOR, PTEN, TP53). To date, diagnosis and metastasis monitoring is mainly carried out through tissue biopsy and/or re-biopsy, a very invasive procedure limited only to certain locations and not always feasible in clinical practice. In order to improve disease monitoring over time and to avoid painful procedure such as tissue biopsy, liquid biopsy may represent a new precious tool. Indeed, it represents a bas…

0301 basic medicineCA15-3OncologyCancer Researchmedicine.medical_specialtyPathologyBiopsyBreast NeoplasmsMetastasis03 medical and health sciencesBreast cancer0302 clinical medicineBreast cancerCirculating tumor cellInternal medicineBiopsyBiomarkers TumormedicineCarcinomaHumansPTENNeoplasm MetastasisLiquid biopsyBreast cancer; Circulating tumor cells; Circulating tumor DNA; CTCs; ctDNA; Liquid biopsy; Cancer ResearchCirculating tumor DNALiquid biopsybiologymedicine.diagnostic_testbusiness.industryCirculating tumor cellctDNADNA NeoplasmGeneral MedicineNeoplastic Cells Circulatingmedicine.diseaseCTC030104 developmental biology030220 oncology & carcinogenesisbiology.proteinFemalebusinessTumor Biology
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Preclinical and Clinical Evaluation of Magnetic-Activated Cell Separation Technology for CTC Isolation in Breast Cancer

2020

Circulating tumor cell (CTC) count is an independent prognostic factor in early breast cancer. CTCs can be found in the blood of 20% of patients prior to neoadjuvant therapy. We aimed to assess the suitability of magnetic-activated cell separation (MACS) technology for isolation and cytological characterization of CTCs. In the preclinical part of the study, cell lines were spiked into buffy coat samples derived from healthy donors, and isolated using MACS. Breast cancer cells with preserved cell morphology were successfully isolated. In the clinical part, blood for CTC isolation was drawn from 44 patients with early and locally advanced breast cancer prior to neoadjuvant chemotherapy. Stand…

0301 basic medicineCancer ResearchPathologymedicine.medical_specialtymedicine.medical_treatmentPapanicolaou stainBuffy coatcirculating tumor cellsCell morphologylcsh:RC254-28203 medical and health sciences0302 clinical medicineBreast cancerCirculating tumor cellbreast cancermorphologymedicineLiquid biopsyNeoadjuvant therapyOriginal Researchliquid biopsybusiness.industrylcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensmedicine.disease030104 developmental biologyOncologyCytopathology030220 oncology & carcinogenesisbusinessmagnetic-activated cell separationFrontiers in Oncology
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Functional characterization of circulating tumor cells (CTCs) from metastatic ER+/HER2− breast cancer reveals dependence on HER2 and FOXM1 for endocr…

2021

Simple Summary Acquired endocrine resistance and late recurrence in patients with ER+/HER2− breast cancer are complex and not fully understood. Here, we evaluated mechanisms of acquired resistance in circulating tumor cells (CTCs) from an ER+/HER2− breast cancer patient who initially responded but later progressed under endocrine treatment. We found a switch from ERα-dependent to HER2-dependent and ERα-independent expression of FOXM1, which may enable disseminated ER+/HER2− cells to re-initiate tumor cell growth and metastasis formation in the presence of endocrine treatment. We found that NFkB signaling sustains HER2 and FOXM1 expression in CTCs in the presence of ERα inhibitors suggesting…

0301 basic medicineDrugLife sciences; biologyCancer Researchmedia_common.quotation_subjectTumor cellslcsh:RC254-282Article03 medical and health sciencesTherapeutic approach0302 clinical medicineCirculating tumor cellBreast cancerHER2-dependent FOXM1 expressionddc:570ER+/HER2− circulating tumor cellsMedicineEndocrine systemskin and connective tissue diseasesmedia_commonER+/HER2��� circulating tumor cellsbusiness.industryendocrine therapy resistancelcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensmedicine.disease030104 developmental biologyOncologyApoptosis030220 oncology & carcinogenesisFOXM1Cancer researchbusiness
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Detection of MET Alterations Using Cell Free DNA and Circulating Tumor Cells from Cancer Patients

2020

MET alterations may provide a potential biomarker to evaluate patients who will benefit from treatment with MET inhibitors. Therefore, the purpose of the present study is to investigate the utility of a liquid biopsy-based strategy to assess MET alterations in cancer patients. We analyzed MET amplification in circulating free DNA (cfDNA) from 174 patients with cancer and 49 healthy controls and demonstrated the accuracy of the analysis to detect its alteration in patients. Importantly, a significant correlation between cfDNA concentration and MET copy number (CN) in cancer patients (r = 0.57, p &lt

0301 basic medicineOncologyMale<i>MET</i> copy numbermedicine.medical_treatmentproteínas protooncogénicas c-metdosificación génicahumanosresistencia a medicamentosDrug ResistanceGene Dosagecirculating free DNA (cfDNA)<i>MET</i> amplificationTargeted therapyTargeted therapy0302 clinical medicineCirculating tumor cellestudios prospectivosNeoplasmsantineoplásicosProspective Studieslcsh:QH301-705.5Circulating tumor cells (CTCs)neoplasiasGeneral MedicineProto-Oncogene Proteins c-mettargeted therapyNeoplastic Cells CirculatingErbB ReceptorsCell-free fetal DNA030220 oncology & carcinogenesisinhibidores de proteína cinasasBiomarker (medicine)FemaleMET protein expressionCell-Free Nucleic AcidsMET amplificationmedicine.medical_specialtycirculating tumor cells (CTCs)estudios de casos y controlesMet amplificationCirculating free DNA (cfDNA)Antineoplastic AgentsArticle03 medical and health sciencesInternal medicinemedicineBiomarkers TumorHumansLiquid biopsyProtein Kinase InhibitorsRetrospective Studiesbusiness.industryHead and neck cancerestudios retrospectivosLiquid BiopsyCancermedicine.disease030104 developmental biologylcsh:Biology (General)Drug Resistance NeoplasmCase-Control StudiesMET copy numberbusinessCells
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Liquid biopsy as surrogate for tissue for molecular profiling in pancreatic cancer: A meta-analysis towards precision medicine

2019

Liquid biopsy (LB) is a non-invasive approach representing a promising tool for new precision medicine strategies for cancer treatment. However, a comprehensive analysis of its reliability for pancreatic cancer (PC) is lacking. To this aim, we performed the first meta-analysis on this topic. We calculated the pooled sensitivity, specificity, positive (LR+) and negative (LR-) likelihood ratio, and diagnostic odds ratio (DOR). A summary receiver operating characteristic curve (SROC) and area under curve (AUC) were used to evaluate the overall accuracy. We finally assessed the concordance rate of all mutations detected by multi-genes panels. Fourteen eligible studies involving 369 patients wer…

0301 basic medicineOncologymedicine.medical_specialtyCancer ResearchConcordanceprecision medicinepancreatic cancerReviewlcsh:RC254-282Circulating tumor cells (CTC)03 medical and health sciences0302 clinical medicineInternal medicinePancreatic cancermedicineLiquid biopsycfDNALiquid biopsyReceiver operating characteristicliquid biopsybusiness.industryCfDNAPrecision medicinePancreatic cancerPrecision medicinemedicine.diseaselcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogens3. Good healthCancer treatment030104 developmental biologyOncologycirculating tumor cells (CTC)030220 oncology & carcinogenesisMeta-analysisDiagnostic odds ratiobusinesscfDNA; circulating tumor cells (CTC); liquid biopsy; pancreatic cancer; precision medicine
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Tumor Heterogeneity, Single-Cell Sequencing, and Drug Resistance

2016

Tumor heterogeneity has been compared with Darwinian evolution and survival of the fittest. The evolutionary ecosystem of tumors consisting of heterogeneous tumor cell populations represents a considerable challenge to tumor therapy, since all genetically and phenotypically different subpopulations have to be efficiently killed by therapy. Otherwise, even small surviving subpopulations may cause repopulation and refractory tumors. Single-cell sequencing allows for a better understanding of the genomic principles of tumor heterogeneity and represents the basis for more successful tumor treatments. The isolation and sequencing of single tumor cells still represents a considerable technical ch…

0301 basic medicineprecision medicinelcsh:Medicinelcsh:RS1-441Pharmaceutical ScienceReviewsingle-cell sequencingcirculating tumor cellsBiologylaser-capture microdissectionmulti-region sequencingcancer treatmentDNA sequencinglcsh:Pharmacy and materia medicaxenograft tumor models03 medical and health sciencesCirculating tumor cellDrug DiscoveryIllumina dye sequencingMicrodissectionLaser capture microdissectionnext generation sequencingWhole Genome AmplificationGeneticswhole genome amplificationflow cytometrytumor ecosystemslcsh:RRNA sequencing030104 developmental biologySingle cell sequencingintratumoral heterogeneityindividualized therapyMolecular MedicinePyrosequencingmicromanipulationPharmaceuticals
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Liquid biopsies in lung cancer: The new ambrosia of researchers

2014

Abstract: In the last decades the approach to cancer patient management has been deeply revolutionized. We are moving from a "one-fits-all" strategy to the "personalized medicine" based on the molecular characterization of the tumor. In this new era it is becoming more and more clear that the monitoring of the disease is fundamental for the success of the treatment, thus there is the need of new biomarker discovery. More precisely in the last years the scientific community has started to use the term "liquid biopsy". A liquid biopsy is a liquid biomarker that can be easily isolated from many body fluids (blood, saliva, urine, ascites, pleural effusion, etc.) and, as well as a tissue biopsy,…

OncologyCancer Researchmedicine.medical_specialtyLung NeoplasmsPleural effusionSettore MED/06 - Oncologia MedicaBiopsyexosomescirculating tumor cellsCirculating tumor cellSettore BIO/13 - Biologia ApplicataInternal medicineSettore BIO/10 - BiochimicaGeneticsmedicineBiomarkers TumorexosomeAnimalsHumanscancerBiomarker discoveryLiquid biopsyLung cancerBiologyliquid biopsybusiness.industryPhysicsCancerDNA Neoplasmmedicine.diseaseNeoplastic Cells CirculatingChemistryOncologyImmunologyBiomarker (medicine)Human medicinePersonalized medicineliquid biopsy; cancer; exosomes; circulating tumor cellsbusiness
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Technical Aspects for the Evaluation of Circulating Tumor Cells (CTCs)

2017

Liquid biopsy is considered a valid strategy to improve patients’ selection and treatment monitoring in clinical practice. Indeed Circulating Tumor Cells (CTCs) represent an important component of liquid biopsy and their clinical evaluation is becoming fundamental for a better patients’ stratification. Several techniques have been developed for CTCs isolation and enrichment and in this chapter we provide an updated overview of the main strategies that can be used.

OncologyClinical Practicemedicine.medical_specialtyCirculating tumor cellbusiness.industryInternal medicineMedicineLiquid biopsybusinessClinical evaluationCirculating Tumor CellsTreatment monitoring
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Circulating Tumor Cells (CTCs): A Unique Model of Cancer Metastases and Non-invasive Biomarkers of Therapeutic Response

2021

Late-stage cancer metastasis remains incurable in the clinic and is the major cause death in patients. Circulating tumor cells (CTCs) are thought to be metastatic precursors shed from the primary tumor or metastatic deposits and circulate in the blood. The molecular network regulating CTC survival, extravasation, and colonization in distant metastatic sites is poorly defined, largely due to challenges in isolating rare CTCs. Recent advances in CTC isolation and ex vivo culture techniques facilitates single-cell omics and the development of related animal models to study CTC-mediated metastatic progression. With these powerful tools, CTCs can potentially be used as non-invasive biomarkers pr…

liquid biopsybusiness.industryMini Reviewnon-invasive biomarkertherapeutic responseCancercirculating tumor cellsQH426-470Omicsmedicine.diseasemicrofluidic engineeringPrimary tumorExtravasationCirculating tumor cellcancer metastasisGeneticsCancer researchMolecular MedicineMedicineLiquid biopsyStage (cooking)businessGenetics (clinical)Ex vivoFrontiers in Genetics
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