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Mechanistic maps of adaptive responses to therapeutic stress to optimize combination therapies.

Mechanistic maps of adaptive responses to therapeutic stress to optimize combination therapies.
对治疗应激的适应性反应的机制图,以优化联合疗法。
批准号:
10608997
负责人:
Anil Korkut
金额:
$51.67万
依托单位国家:
美国
项目类别:
财政年份:
2021
资助国家:
美国
项目状态:
未结题
起止时间:
2021-04-01 至 2026-03-31
关键词:
AlgorithmsAnatomyAutomobile DrivingBioinformaticsBreastCancer BiologyCell LineCellsClinical ResearchClinical TrialsCollaborationsCombination immunotherapyCombined Modality TherapyComputational BiologyComputer ModelsDNA DamageDataData SetData SourcesDiseaseDrug CombinationsDrug resistanceEcosystemFundingFunding MechanismsFutureGenerationsHeterogeneityImage AnalysisImmune checkpoint inhibitorImmunofluorescence ImmunologicImmunologyImmunomodulatorsIn VitroIsogenic transplantationLibrariesMEKsMalignant NeoplasmsMalignant neoplasm of ovaryMapsModelingMolecularMonitorMusNetwork-basedOncogenicOutcomeOvarianPIK3CG genePathologyPathway interactionsPatient-Focused OutcomesPatientsPeriodicityPharmaceutical PreparationsPre-Clinical ModelPrediction of Response to TherapyProcessProductivityProteinsProteomicsRecording of previous eventsResistanceSamplingSerousSignal TransductionStressSystems BiologyTechnologyTestingTherapeuticTissuesTransplantationUniversity of Texas M D Anderson Cancer CenterValidationXenograft procedurebiological adaptation to stresscancer clinical trialclinical trial implementationclinically relevantcombinatorialcomputerized toolsdata acquisitiondata-driven modeldesigndrug relapseimmune checkpointimmunoregulationimprovedin vivoin vivo Modelinnovationinsightmalignant breast neoplasmmathematical modelmultiplexed imagingneoplastic cellnew therapeutic targetnovelnovel drug combinationnovel therapeuticspre-clinical assessmentpredicting responsepredictive modelingprogrammed cell death ligand 1programsresistance mechanismresponsespatiotemporaltargeted treatmenttherapeutic targettherapy resistanttooltranscriptomicstranslational cancer researchtreatment responsetriple-negative invasive breast carcinomatumortumor heterogeneitytumor microenvironmenttumor-immune system interactionsvirtual

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Summary. In triple-negative breast cancer and high-grade serous ovarian cancer, the emergence of resistance to therapy is virtually inevitable and contributes to dismal long-term patient outcomes. The team will test the hypothesis that tumor ecosystems rapidly adapt to stress engendered by therapies, leading to the rapid emergence of resistance. As a corollary, blocking adaptive responses in tumor cells and the immune microenvironment will interdict the emergence of resistance. The objective is to monitor mechanisms underlying adaptive responses across temporal and spatial scales with single-cell precision, predict responses to untested combinatorial perturbations, and validate predicted drug combinations, fueling future clinical trials. An interactive team with diverse and complementary expertise and long collaboration history has been assembled: cancer and systems biology and therapeutics (Mills, contact PI, OHSU), computational biology/image analysis (Korkut, PI, MDACC; Goecks, OHSU), bioinformatics and systems biology (Liang, PI, MDACC), single-cell transcriptomics and proteomics (Mohammed, OHSU), molecular and anatomic pathology (Corless, OHSU; Sahin, MDACC), and ovarian and breast cancer translational research (Westin, MDACC; Mitri, OHSU). We will pursue two specific aims. Aim 1. Develop novel algorithms to create mechanistic maps of adaptive responses to therapeutic stress. The team will innovate algorithms to build data-driven and predictive models encompassing tumor cell signaling, microenvironment, and immune modulation. An extensive pre-existing longitudinal proteomics dataset of cell lines, xenografts, novel murine transplantable syngeneic models, PDXs, and patient samples will serve as the experimental data and constraints driving model construction. The modeling approaches will identify cellular vulnerabilities arising from adaptive responses to therapeutic stress and predict responses to untested combinatorial perturbations. The team will also determine whether therapeutic targeting “steers” proteomically heterogeneous tumors to a more therapeutically tractable homogenous state. For this purpose, we will use state- of-the-art multiplexed imaging-based proteomics technologies to formulate and implement data-driven models at spatial and single-cell precision. The single-cell, data-driven modeling will demonstrate how targeted therapies alter the tumor and immune microenvironment, leading to therapeutic vulnerabilities that new targeted therapy or immunotherapy combinations could exploit. Aim 2. Validate rational drug combinations targeting adaptive responses to therapy in relevant settings. The team will use cell lines, xenografts, PDXs, and novel murine transplantable syngeneic models to validate the therapeutic tractability of the rational drug combinations predicted by the data-driven models under Aim 1. Importantly, the experimental assessment will inform and improve the computational models through iterative data acquisition and subsequent remodeling. Novel therapy combinations will be assessed through clinical trials supported by other funds. The emerging principles and tools are highly applicable to other cancer lineages and could provide broad benefits.
期刊论文(4)
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科研奖励(0)
会议论文
DOI: 10.1038/s41419-023-06042-1
发表时间: 2023-08-18
期刊: CELL DEATH & DISEASE
影响因子: 9
作者: [Park, Soon Young, Jeong, Kang Jin, Poire, Alfonso, Zhang, Dong, Tsang, Yiu Huen, Blucher, Aurora S., Mills, Gordon B.]
通讯作者: Mills, Gordon B.
DOI: 10.1158/2159-8290.cd-21-0832
发表时间: 2022-06-02
期刊: Cancer discovery
影响因子: 28.2
作者: []
通讯作者:
DOI: 10.1158/0008-5472.can-22-3537
发表时间: 2023-02
期刊: Cancer research
影响因子: 11.2
作者: [Yikai Luo;Han Liang]
通讯作者: Yikai Luo;Han Liang
Dual blockade of BRD4 and ATR/WEE1 pathways exploits ARID1A loss in clear cell ovarian cancer.
BRD4 和 ATR/WEE1 通路的双重阻断利用了透明细胞卵巢癌中 ARID1A 的缺失。
DOI: 10.21203/rs.3.rs-3314138/v1
发表时间: 2023
期刊: Research square
影响因子: --
作者: [Kinose,Yasuto, Xu,Haineng, Kim,Hyoung, Kumar,Sushil, Shan,Xiaoyin, George,Erin, Wang,Xiaolei, Medvedev,Sergey, Ferman,Benjamin, Gitto,SarahB, Whicker,Margaret, D'Andrea,Kurt, Wubbenhorst,Bradley, Hallberg,Dorothy, O'Connor,Mark, Schwartz,]
通讯作者: Schwartz,
Mechanistic maps of adaptive responses to therapeutic stress to optimize combination therapies.
Mechanistic maps of adaptive responses to therapeutic stress to optimize combination therapies.
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