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Ultrasensitive Detection of Tumor Specific DNA Methylation Changes for the Early Detection of Lung Cancer

Ultrasensitive Detection of Tumor Specific DNA Methylation Changes for the Early Detection of Lung Cancer
超灵敏检测肿瘤特异性 DNA 甲基化变化以早期发现肺癌
批准号:
10463037
负责人:
JAMES G. HERMAN
金额:
$23.37万
依托单位国家:
美国
项目类别:
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-09-15 至 2023-03-31
关键词:
AddressApoptoticBenignBiologicalBiological AssayBiological MarkersBiomedical EngineeringBloodBlood specimenBody FluidsCancer DetectionCancer EtiologyCessation of lifeClinicalCommunitiesComplementDNADNA MarkersDNA MethylationDNA SequenceDataDetectionDiagnosisDiagnosticEarly Detection Research NetworkEarly DiagnosisEligibility DeterminationEnrollmentEpigenetic ProcessEvaluationEventFrequenciesGenesGeneticGenomicsHigh PrevalenceInfrastructureLesionLungLung NeoplasmsLung noduleMalignant NeoplasmsMalignant neoplasm of lungMeasuresMethodsMethylationMicrofluidicsMolecularMolecular AnalysisMonitorNecrosisNucleic AcidsParticipantPatientsPerformancePlasmaPopulationPredictive ValuePreparationProcessProspective cohortProteomicsRadiology SpecialtyRegistriesReportingReproducibilityResolutionSamplingScreening for cancerSensitivity and SpecificitySilicon DioxideSpecificitySpecimenSputumTechniquesTestingThe Cancer Genome AtlasTimeUnited StatesUnited States Centers for Medicare and Medicaid ServicesX-Ray Computed Tomographyanticancer researchbasebiomarker developmentbisulfitecancer biomarkerscancer epidemiologycancer genomecell free DNAcirculating DNAclinical implementationclinically relevantcohortcomputed tomography screeningdetection assaydetection methoddetection platformdigitalformer smokergenome-wide analysishigh risk populationimprovedlaboratory developmentlow dose computed tomographylung cancer screeningmeltingmortalitynanomembraneneoplastic cellnoninvasive diagnosisnovelpersonalized medicinepopulation basedprospectiverecruitsample collectionscreeningscreening guidelinestumortumor DNAtumorigenesis

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TITLE  Ultrasensitive Detection of Tumor Specific DNA Methylation Changes for the Early Detection of Lung Cancer  ABSTRACT  This proposal seeks to improve upon the management of lung cancer through detection of tumor specific abnormal DNA methylation. Despite highly publicized advances in genomics and proteomics, the promise of non-invasive diagnostics and personalized medicine remains largely unrealized. Recently, comprehensive determination of genetic and epigenetic aberrations has become a major activity in cancer research since it is well understood that these aberrations provide clues to the process of tumorigenesis. The applicants have developed extremely sensitive assays for the detection of hypermethylated DNA sequences. They have also optimized the isolation and processing of circulating cell free DNA from tumors for these sensitive methods. The comprehensive genome wide analysis of molecular changes in cancer completed by The Cancer Genome Atlas (TCGA) has been used to identify many highly frequent cancer specific methylation events in lung cancer that will be combined with an integrated approach to sample processing and preparation and novel sensitive detection strategies to provide utrasensitive detection of tumor specific changes in DNA methylation in blood and sputum samples. With a large population based screening cohort, the Pittsburgh Lung Screening Study, they will develop and characterize the performance of sensitive methods for detecting cancer specific changes in DNA methylation. This molecular detection will compliment CT screening to address the important issue of early detection of lung cancer.
期刊论文(3)
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会议论文
High-throughput sample processing for methylation analysis in an automated, enclosed environment.
在自动化、封闭的环境中进行甲基化分析的高通量样品处理。
DOI: 10.1016/j.slast.2021.12.002
发表时间: 2022
期刊: SLAS technology
影响因子: 2.7
作者: [Stark,Alejandro, Pisanic2nd,ThomasR, Herman,JamesG, Wang,Tza-Huei]
通讯作者: Wang,Tza-Huei
Administrative Core
Optimizing Ultrasensitive DNA methylation detection for lung cancer and other malignancies
Core - Biomarker Reference Laboratory (BRL)
Core - Biomarker Development Laboratory (BDL)
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