Targeting hyaluronan synthesis and signaling with BET inhibitors in pancreatic cancer
Targeting hyaluronan synthesis and signaling with BET inhibitors in pancreatic cancer
批准号:
9392328
负责人:
Krishan Kumar
金额:
$20.62万
依托单位国家:
美国
项目类别:
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-09-25 至 2019-08-31
关键词:
AcetylationAdenocarcinoma CellApplications GrantsAttenuatedBiologicalBromodomainCancer EtiologyCell ProliferationCell Surface ReceptorsCell physiologyCessation of lifeChromatinClinical TrialsCollagenCollagen Type VIDataDevelopmentEnzymesEquilibriumExtracellular MatrixFibrillar CollagenFibronectinsFibrosisGoalsGrowthHMMR geneHealthHistone AcetylationHistonesHumanHyaluronanHyaluronidaseImpairmentIn VitroLamininLeadMalignant NeoplasmsMalignant neoplasm of pancreasMediatingMinorityMissionMolecularMolecular WeightNatureOncogenicPancreasPancreatic Ductal AdenocarcinomaPerfusionPharmaceutical PreparationsPhysiologicalProductionProtein FamilyProtein InhibitionProteinsPublic HealthReactionReaderRegulationResearchResearch SupportResistanceRoleSPAM1 geneSignal TransductionSignaling MoleculeStromal CellsSurvival RateTertiary Protein StructureTherapeuticTumorigenicityUnited States National Institutes of HealthWorkangiogenesisbasecancer cellcancer typecell motilitychemotherapyclinically relevantclinically significantdesignevidence baseexpectationhuman diseasehyaluronan synthase 1improvedin vivoinhibitor/antagonistinnovationinterstitialmRNA Expressionmembermigrationmouse modelneoplastic cellnovelnovel therapeutic interventionnovel therapeuticsoutcome forecastoverexpressionpressurereceptorstellate celltumortumor growthtumor progressiontumorigenic
中文摘要
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英文摘要
Pancreatic ductal adenocarcinoma (PDAC) is characterized by dense stromal reaction, which can
promote tumor progression and contribute to chemo-resistance. The dense stroma can serve as
a barrier to drug perfusion into the tumor by creating high intra-tumoral interstitial pressure. The
dense stromal matrix in PDAC is caused by overproduction of extracellular matrix (ECM), mainly
composed of collagens and hyaluronan. Hyaluronan is synthesized by HA synthase enzymes
(HASs) and degraded by hyaluronidases (HYALs). Our previous work and other studies have
shown that BRD4 protein, which is the most important member of bromodomain and extraterminal
domain (BET) family proteins, is overexpressed in PDAC. BET proteins are “readers” of
acetylated chromatin marks. Treatment with BET inhibitors also decreases tumor growth in PDAC
mouse models. In this grant application, we propose our novel hypotheses that (1) BET protein
inhibition decreases HA accumulation in PDAC tumors by decreasing the HA production. We
further hypothesize that (2) BET inhibition will block receptor for HA-mediated motility (RHAMM)-
driven oncogenic HA signaling. These hypotheses are based on strong preliminary data. We
propose two specific aims. Aim 1: Investigate the role of BET proteins regulating HA levels in
PDAC tumors and molecular mechanisms through which. Aim 2: Determine the ability of BET
inhibitors to block HA signaling. This proposal includes innovative concept of HA regulation in
PDAC, and has high biological and clinical relevance and significance, with potential for
developing new therapeutic strategies for PDAC.
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