Project 3: Inhibiting Oxidative Phosphorylation in Pancreatic Cancer
Project 3: Inhibiting Oxidative Phosphorylation in Pancreatic Cancer
批准号:
10415970
负责人:
Shubham Pant
金额:
$39.17万
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-08-20 至 2024-05-31
关键词:
AddressAftercareAlgorithmsBasic ScienceBiologyBiophysicsBiopsyCancer CenterCancer ScienceCellsCessation of lifeClinicClinicalClinical ResearchClinical TrialsCorrelative StudyCoupledDataDependenceDiagnosisDiseaseEnsureEventExhibitsExtinction (Psychology)FundingGeneticGenomicsGlucoseGlycolysisGrowthHeterogeneityHumanIceImageImpairmentInstitutesKRAS oncogenesisKRAS2 geneKnowledgeLeadLesionLinkMagnetic Resonance ImagingMaintenanceMalignant NeoplasmsMalignant neoplasm of gastrointestinal tractMalignant neoplasm of pancreasMesenchymalMetabolicMetabolic PathwayMetabolismMitochondriaMutationNADH dehydrogenase (ubiquinone)NatureNutrientOncogenesOncogenicOperative Surgical ProceduresOralOxidative PhosphorylationPaclitaxelPancreatic Ductal AdenocarcinomaPancreatic Intraepithelial NeoplasiaPaperPathogenesisPatientsPhasePhase I Clinical TrialsPhase II Clinical TrialsPhase Ib Clinical TrialPopulationPre-Clinical ModelPrior ChemotherapyPropertyPyruvateRecurrenceRefractoryRefractory DiseaseResearchResidual stateRespirationSafetySeminalSignal TransductionSolid NeoplasmStable DiseaseTestingTherapeuticTissuesUniversity of Texas M D Anderson Cancer CenterUnresectableX-Ray Computed Tomographyaddictionadvanced pancreatic cancerbasebiological heterogeneitycancer cellcancer typechemotherapyco-clinical trialgemcitabinein vivoinhibitorinnovationleukemiamelanomametabolic imagingmetabolic profilemolecular imagingneoplastic cellnew therapeutic targetnovel therapeutic interventionnovel therapeuticspancreatic cancer patientspancreatic ductal adenocarcinoma modelpatient derived xenograft modelpatient populationpatient responsepre-clinicalpreclinical studyprogenitorprogramsresponsestandard of caretranscriptomicstreatment responsetumortumor microenvironment
中文摘要
项目3:摘要/摘要
英文摘要
PROJECT 3: Summary/Abstract
Pancreatic ductal adenocarcinoma (PDAC) contributes to 6.9% of all cancer deaths in the US, and >1.5% of
the US population will be diagnosed with PDAC in their lifetime. At present, the front-line therapy for advanced
PDAC is multi-agent chemotherapy, most commonly, FOLFIRINOX or gemcitabine and nab-paclitaxel. Despite
a better understanding of the genomic landscape and the importance of the tumor’s microenvironment, there
has been no meaningful shift in the overall survival for this disease. An emerging concept is that mutations in
KRAS and other canonical oncogenes that drive accelerated growth in PDAC and other tumors also directly
reprogram cellular metabolism by augmenting nutrient acquisition, coupled to an increased flux through down-stream metabolic pathways. Differential dependence on KRAS has also been linked with altered metabolic de-pendencies. The findings above indicate that the heterogeneity of PDAC is not only defined on the genomic
and cellular levels, but also defined by distinctive metabolism programs controlled by oncogenic signaling.
However, to date, the documented dependency of some tumors or tumor cell subpopulations on OXPHOS has
not yet been exploited therapeutically. The University of Texas MD Anderson Cancer Center Institute for Ap-plied Cancer Science (IACS) has developed IACS-010759, a potent inhibitor of complex I of the electron
transport chain. The IACS compound has enabled expanded studies of OXPHOS inhibition in PDAC models
that establish the preclinical rationale for evaluating IACS-010759 in patients in two contexts: (i) patients with
treatment-naïve or refractory tumors that possess intrinsic sensitivity to OXPHOS inhibition, and (ii) in metabol-ically adapted disease following treatment with chemotherapy. The aims of this study are to explore the biology
of response to treatment with IACS-010759 in these contexts, using a combination of ex vivo and in vivo stud-ies, as well as evaluating patient response via clinical correlatives (transcriptomic signatures, hyperpolarized
pyruvate-magnetic resonance imaging, quantitative CT scan) in planned phase 1b and phase 2a clinical stud-ies in patients with treatment-naïve or refractory disease (phase 1b) or patients who have responded to prior
standard-of-care chemotherapy (phase 2a). This research is significant because it will evaluate a completely
novel targeted therapy approach for patients with PDAC in specific disease contexts that include (i) aggressive,
mesenchymal-like tumors (“intrinsic” sensitivity) and metabolically adapted tumors post-treatment with chemo-toxic agents (“adaptive” sensitivity), the current standard of care for this patient population. The research is in-novative because it will evaluate a completely novel targeted therapy approach for patients with PDAC in these
specific disease contexts, and it employs innovative biophysical and metabolic imaging characterizations. It is
anticipated that this research may yield data relevant for other disease indications where metabolic dependen-cies may be similar, and our findings from this research may be a step toward developing IACS-010759 for
clinical studies in other tumors as well.
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Project 3: Inhibiting Oxidative Phosphorylation in Pancreatic Cancer
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批准号:10226090
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项目类别:
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资助金额:$24.84万
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财政年份:2019
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负责人:Shubham Pant
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依托单位:
海外基金