Distinct Tumor and Metastatic Collagen Microenvironments: Divergent Targeting Approaches
Distinct Tumor and Metastatic Collagen Microenvironments: Divergent Targeting Approaches
批准号:
10164726
负责人:
Keith Syson Chan
金额:
$38.04万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
未结题
起止时间:
2013-09-30 至 2025-04-30
关键词:
AddressBindingBioinformaticsBiological ProcessBladder NeoplasmC-terminalCell NucleusCellsCessation of lifeChIP-seqCleaved cellClinicalClustered Regularly Interspaced Short Palindromic RepeatsCollagenCollagen ReceptorsCommunicationConceptionsDNA BindingDataDiseaseDisease ManagementDistalEctopic ExpressionExtracellular MatrixFamilyFibroblastsFundingGenesGoalsImageInvestigationKininogenaseKnock-outKnowledgeLigandsLuciferasesLungMalignant Epithelial CellMalignant NeoplasmsMalignant neoplasm of urinary bladderMediatingMetastatic Neoplasm to the LungModalityMutateN-terminalNatureNeoplasm MetastasisNuclearNuclear TranslocationPatternPeptide HydrolasesPharmacologyPhenotypePhosphorylationPhosphorylation SitePilot ProjectsPlayPrimary NeoplasmProcessProgression-Free SurvivalsPropertyProtein FragmentProteinsReceptor ActivationReceptor SignalingRegulationRoleSignal TransductionSiteSmooth Muscle MyocytesSpecific qualifier valueStructureSurvival RateTestingTherapeutic InterventionTumor VolumeTyrosine PhosphorylationTyrosine Phosphorylation Sitebladder Carcinomabladder transitional cell carcinomacancer cellcancer typeclinical translationdesigngamma secretasein vivoinnovationlead candidatemetastatic processmigrationneoplastic cellnotch proteinnovelnovel strategiesoverexpressionprecision medicinereceptorrespiratory smooth musclescaffoldsrc Homology Region 2 Domainsuccesstherapeutic targettumortumor microenvironment
中文摘要
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英文摘要
PROJECT SUMMARY
Metastatic progression of the primary tumor accounts for the majority of cancer deaths. While the initial steps of
the metastatic cascade are rather well defined, identification of targets to block this process remains a major
clinical challenge. Previous studies have elegantly investigated the mechanistic contribution of tumor cell intrinsic
properties that promote metastasis in bladder urothelial carcinomas. However, the functional significance of the
tumor microenvironment and its contribution to this complicated process is not well characterized, and therefore,
warrants investigation. The long-term goal of this renewal application is to continue explore how collagens—a
major extracellular matrix component of the microenvironment—act as a ligand to mediate crosstalk with their
receptor on tumor cells to facilitate the metastatic cascade. We will investigate the downstream regulatory
mechanisms of collagen receptor signaling in both the primary tumor and metastatic sites, and to exploit these
regulatory processes as a revolutionizing approach to target metastases. Such innovative approaches to perturb
collagen-cancer crosstalk—not only at the primary tumor but also at the metastatic niche—will move the field
forward by providing a new conception in metastatic disease management, and likely extend beyond bladder
carcinomas to other cancer types.
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