(PQB5) Reconstruction of Evolutionary Networks using Cross-Sectional Genomic Data
(PQB5) Reconstruction of Evolutionary Networks using Cross-Sectional Genomic Data
批准号:
9274933
负责人:
ANNA LASORELLA
金额:
$51.77万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-05-01 至 2019-04-30
关键词:
AddressBiologicalBiological MarkersBrainChronic Lymphocytic LeukemiaCollectionComplexComputer SimulationCross-Sectional StudiesDNA Sequence AlterationDataData SetDeltastabEventEvolutionExperimental GeneticsGenesGeneticGenomicsGlioblastomaGliomaHeterogeneityHigh-Throughput Nucleotide SequencingInternationalLesionLinkLongitudinal cohortMalignant NeoplasmsMesenchymalMethodsModelingMusMutationNatureNeoplasm MetastasisPatientsPatternPhaseProcessPsyche structureRecording of previous eventsRegimenResistanceRouteSamplingSolid NeoplasmSubfamily lentivirinaeThe Cancer Genome AtlasTherapeuticTimeTumor stageUrsidae FamilyValidationWorkbasecancer genomecohortexome sequencinggenome-widegenomic datahigh throughput analysislongitudinal analysislongitudinal datasetmannovelpersonalized approachpersonalized medicinepressurepublic health relevancereconstructionterationtumortumor initiationtumor progressiontumorigenesisuncontrolled cell growth
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Cancer is a dynamic process that proceeds through the accumulation of genomic alterations. Large sequencing projects have illuminated the complex static landscapes of alterations across a large number of tumors. However, these studies have failed to address the dynamic nature of cancers. Understanding how tumors are shaped by selective pressures bears implications in therapies and prognoses. To address this issue we propose PITCH (Parsimony Inference of Tumor Clone Heterogeneity), a computational model that aims to uncover the evolutionary history of tumors using high throughput genomic data from cross-sectional studies. PITCH identifies traces of older clones and reconstructs possible histories of lesions. By combining the data from different patients, PITCH is able to capture statistically robust historical relationships between driver alterations in tumors and to represent these relationships as an evolutionary network. We will calibrate the approach in a longitudinal cohort of nearly 1,500 Chronic Lymphocytic Leukemia patients spanning a period of 12 years, along with 20 Glioblastoma Multiforme samples. We aim to extend and thus experimentally validate the approach using the large collection of Glioblastoma Multiforme and Low Grade Glioma in The Cancer Genome Atlas. We will be able to provide a robust computational approach that can be easily extended to any other tumor type where large cross-sectional data is available. Discovery of alterations associated to different phases, stages or therapeutic strategies could provide invaluable biomarkers for personalized approaches based on genomic data.
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会议论文
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海外基金