Genetics and Biology of Pancreatic Ductal Adenocarcinoma
Genetics and Biology of Pancreatic Ductal Adenocarcinoma
批准号:
8603762
负责人:
RONALD ANTHONY DEPINHO
金额:
$205.71万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-04-15 至 2015-12-31
关键词:
AddressAdenocarcinoma CellAllelesAnabolismAnimal ModelAreaBioenergeticsBioinformaticsBiologicalBiological MarkersBiological ModelsBiologyCancer EtiologyCell Culture TechniquesCell LineCell TransplantsCessation of lifeChinClinical InvestigatorClinical TrialsCollaborationsCoupledCritical PathwaysCultured CellsDevelopmentDiseaseDrug resistanceEngineeringEventExperimental PathologyExtinction (Psychology)FutureGene DeletionGenesGeneticGenetic EngineeringGenetic ModelsGenetic ScreeningGenetically Engineered MouseGenomeGlutamineGlycolysisGoalsGrantHumanIn VitroInstructionInterventionInvestigationKRAS2 geneKnowledgeLeadLethal GenesMAP Kinase GeneMEKsMaintenanceMalignant neoplasm of lungMalignant neoplasm of pancreasMetabolicMetabolismModelingMolecular ProfilingMonitorMusNormal tissue morphologyOncogenicPIK3CG genePancreasPancreatic Ductal AdenocarcinomaPathway interactionsPharmacologic SubstancePlayPositron-Emission TomographyRNA InterferenceReadingRegulationResistanceRoleSeriesSignal TransductionSuppressor MutationsSystemTechnologyTestingTherapeuticTherapeutic InterventionTherapy Clinical TrialsTissuesTumor BiologyTumor Suppressor ProteinsValidationWorkbiobankdrug developmentfunctional genomicsgain of functionglucose uptakehuman diseasein vivoinhibitor/antagonistinnovationminimally invasivemodel designmolecular imagingmouse modelnovelnovel therapeuticsprogramsrepositoryresistance mechanismresponsesmall moleculetherapeutic targettumortumor growthtumor metabolism
中文摘要
项目总结(参见说明)
:此次更新应用的目标是通过控制胰腺导管腺癌(PDAC)的合作途径深入了解PI3K和RAS-MAPK信号转导途径,以指导具有突出药物开发候选药物的临床试验,并确定这些途径中的新的治疗攻击点。该计划项目由一个由基础和临床研究人员组成的多学科团队组成,他们在肿瘤生物学、小鼠遗传学、癌症代谢、PI3K信号和功能基因组学方面有着良好的合作记录和互补优势。该计划包括3个高度互动的项目(项目1:DePinho。哈恩和阿成。DFCI:项目2:坎特利。BIDMC和Bardeesy。MGH:项目3:杰克和范德海登。综合目标包括确定KRAS*合成致死基因在PDAC发生和维持中的作用、PDAC中PI3K/MEK通路共灭绝的作用及相关的耐药机制、抑制MEK/PI3K对PDAC代谢的影响以及抑制谷氨酰胺代谢对PDAC的影响。项目1将使用全基因组RNAi和生物信息学分析来识别和验证可与Meki或Pi3Ki协同抑制KRAS*PDAC的可药物共灭绝靶点。此外,还将进行体内特定功能的遗传筛选,以确定潜在的获得性耐药或与PI3K/MEK信号协同作用的其他可用药靶点。项目2将解决核心假设,即KRAS*驱动的PDAC以冗余的方式利用PI3K和MAPK途径来驱动肿瘤生长,并且这些途径的关键作用涉及维持肿瘤的新陈代谢。项目2将确定Meki/Piski对PDAC细胞信号、代谢和治疗反应的影响。这些努力将与研究MEK/PI3K信号的代谢生物标记物和确定治疗耐药机制相结合,这将是指导该领域未来治疗试验的关键。项目3将通过开发用于细胞培养和移植模型的条件RNAi系统以及复杂的基因工程小鼠模型来研究一系列潜在的治疗靶点在肿瘤维持中的重要性,该模型旨在允许有条件地删除自体肿瘤中的基因。这些项目将由高度创新的分子成像核心(Weissleder)支持。MGH)。实验病理学(LODA/Chu.DFCl)。Biobank(塞耶)MGH)。和鼠标工程(DePinho/Hmer.DFCI):并得到一个行政核心的协助,以提供科学和财政监督(DePinho,DFCL)。
英文摘要
PROJECT SUMMARY (See Instructions)
: The goal for this renewal application is to gain in-(depth knowledge of PI3K and RAS-MAPK signaling with cooperating pathways governing pancreatic ductal adenocarcinoma (PDAC) to guide clinical trials with prominent drug development candidates and to identify new therapeutic points of attack in these pathways. The program project consists of a multiple-disciplinary team of basic and clinical investigators with a strong track record of working together and with complementary strengths In tumor biology, mouse genetics, cancer metabolism, PI3K signaling and functional genomics. The Program consists of 3 highly Interactive projects (Project 1: DePinho. Hahn and Chin. DFCi: Project 2: Cantley. BIDMC and Bardeesy. MGH: Project 3: Jacks and Van der Heiden. MIT) with the integrating goals of determining the roles of KRAS* synthetic lethal genes in PDAC development and maintenance, the effect of co-extinction of PI3K/MEK pathways In PDAC and associated drug resistance mechanisms, the Impact of MEK/PI3K inhibition on PDAC metabolism, and the effect of inhibiting glutamine metabolism on PDAC. Project 1 will employ whole genome RNAi and bioinformatics analyses to identify and validate druggable coextinction targets that synergize with MEKi or Pi3Ki in suppressing KRAS* PDACs. In addition, context specific gain of function in vivo genetic screens Will be performed to identify additional druggable targets underlying acquired resistance or playing cooperative roles with Pi3K/MEK signaling. Project 2 will address the central hypothesis that KRAS*-driven PDAC utilizes the PI3K and MAPK pathways in a redundant way to drive tumor growth and that a critical role for these pathways involves the maintenance of tumor metabolism. Project 2 will determine the impact of MEKi/PiSKi on PDAC cell signaling, metabolism, and therapeutic response. These efforts will be coupled with an investigation of metabolic biomarkers for MEK/Pi3K signaling and identification of mechanisms of therapeutic resistance which would be critical in guiding future therapeutic trials In this area. Project 3 will investigate the importance of a series of potential therapeutic targets in tumor maintenance by developing both conditional RNAi systems for use in cell culture and transplant models as well as sophisticated genetically-engineered mouse models designed to allow conditional deletion of genes in autochthonous tumors. These Projects Will be enabled by highly innovative cores for Molecular Imaging (Weissleder. MGH). Experimental Pathology (Loda/Chu. DFCl). Biobank (Thayer. MGH). and Mouse Engineering (DePinho/Homer. DFCi): and assisted by an administrative core to provide scientific and fiscal oversight (DePinho, DFCl).
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会议论文
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