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Determining the role and function of a high plasticity cell state in lung adenocarcinoma

Determining the role and function of a high plasticity cell state in lung adenocarcinoma
确定高可塑性细胞状态在肺腺癌中的作用和功能
批准号:
10684835
负责人:
Jason Earl Chan
金额:
$24.95万
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-08-22 至 2027-07-31
关键词:
3-DimensionalAblationAdenocarcinoma CellAdvanced Malignant NeoplasmAdvisory CommitteesAmericanAntineoplastic AgentsAreaAwardBioinformaticsBiologyCRISPR/Cas technologyCancer BiologyCancer EtiologyCellsChemoresistanceClinicalComplementary DNADataDevelopmentDevelopment PlansEducational workshopEnvironmentEvolutionFoundationsFundingGeneticGenetic TranscriptionGenetically Engineered MouseGenomicsGoalsHistologyHumanInstitutionLaboratoriesLung AdenocarcinomaLung NeoplasmsMaintenanceMalignant NeoplasmsMalignant neoplasm of lungMeasuresMedical OncologistMedical OncologyMedicineMemorial Sloan-Kettering Cancer CenterMentorsMethodsModelingMolecularMolecular BiologyMolecular Biology TechniquesPathway interactionsPatientsPhenotypePhysiciansPlayProteinsReporterReproducibilityResearchResearch PersonnelResearch Project SummariesResistanceRoleScientistSourceStressSystemSystems BiologyTestingTherapeuticTimeTrainingTranslatingTumor BurdenTumor stageUnited StatesWorkXenograft Modelallotransplantcancer cellcancer geneticscarcinogenesiscareercareer developmentchemotherapyclinical trainingexperienceexperimental studyexpression vectorhuman diseaseimprovedin vivoin vivo Modelinhibitorinsightinstructormortalitymouse modelnovelnovel strategiesnovel therapeuticsoverexpressionpatient derived xenograft modelpharmacologicprogramsresponsesarcomasingle cell mRNA sequencingsmall hairpin RNAsynergismtenure tracktherapy resistanttranscription factortranscriptometransdifferentiationtranslational cancer researchtumortumor heterogeneitytumor progression

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中文摘要
翻译
项目总结 研究:肺癌仍是美国最致命的癌症之一,部分原因是肿瘤 导致肿瘤内异质性并导致治疗抵抗的可塑性。为了了解如何 可塑性影响肿瘤,我们描述了基因工程小鼠肺肿瘤的单细胞转录本 在不同的阶段。我们观察到一组可复制的转录状态,其多样性随着时间的推移而增加。 有趣的是,我们识别并转录定义了在每个肿瘤中出现的一种高可塑性细胞状态。我们 描述了这种细胞状态,并确定了表型转换的强大潜力,增加了 肿瘤球体培养中类球体的形成,增加的增殖能力和肿瘤形成能力 同种异体移植模型,以及体内化疗应激后这种塑料细胞状态的丰富。我们 在原发人类肺腺癌肿瘤和患者来源的肿瘤中发现了类似的塑料细胞状态 异种移植模型,我们发现细胞状态与患者的存活率较差有关。因此,我们的工作 提示高可塑性细胞状态推动了肺部肿瘤的进展和对治疗的抵抗 腺癌。为了更好地理解高塑性细胞状态的功能作用,我建议) 探讨高可塑性细胞状态在肺腺癌进展和治疗中的作用 抗性和ii)定义了控制高可塑性细胞状态的转录驱动因素。这项工作将提供 高可塑性细胞状态的功能和分子定义,将为肺的治疗提供新的方法 腺癌。 候选人和环境:詹森·E·陈博士是纪念医院医学部的讲师 斯隆凯特琳癌症中心(MSKCC)。他的目标是成为一名独立的终身教职医生兼科学家 研究肿瘤的可塑性和肿瘤的演变。他制定了一个5年的职业生涯计划,该计划建立在他的 生物信息学和系统生物学、遗传学、小鼠模型、分子生物学和临床背景 内科肿瘤学培训。这个项目将为陈博士提供使用最先进技术的理想培训 基因组学和分子生物学技术、小鼠模型和患者来源的异种移植 在癌变过程中的高可塑性细胞状态。陈冯富珍博士将由Tuoma Tammela博士共同指导 以及MSKCC癌症生物学和遗传学项目的Scott Lowe博士。候选人的职业生涯 发展计划包括课程作业、研讨会、跨学科咨询委员会的指导 由杰出的基础科学家和医学肿瘤学家组成,并在支持 MSKCC的学术机构环境,一个卓越的转化型癌症研究中心。 该项目的成功完成将带来治疗病人的新方法,并将提供 基金会为陈博士成为一名独立研究员,拥有自己的R01资助的实验室。
英文摘要
PROJECT SUMMARY RESEARCH: Lung cancer remains one of the deadliest cancers in the United States, in part due to tumor plasticity that drives intratumoral heterogeneity and leads to therapy resistance. In order to understand how plasticity impacts tumors, we profiled single cell transcriptomes from genetically engineered mouse lung tumors at various stages. We observed a set of reproducible transcriptional states whose diversity increased over time. Interestingly, we identified and transcriptionally defined a high plasticity cell state that arose in every tumor. We profiled this cell state and identified a robust potential for phenotypic switching, an increased potential for spheroid formation in tumor sphere cultures, an increased proliferative potential and tumor forming ability in allotransplant models, and an enrichment of this plastic cell state after chemotherapeutic stress in vivo. We identified a similar plastic cell state in both primary human lung adenocarcinoma tumors and patient-derived xenograft models, and we found the cell state to be associated with worse survival for patients. Thus, our work suggests that the high plasticity cell state drives tumor progression and resistance to therapy in lung adenocarcinoma. To better understand the functional role of the high plasticity cell state, I propose to i) interrogate the function of the high plasticity cell state in lung adenocarcinoma progression and treatment resistance and ii) define the transcriptional drivers controlling the high plasticity cell state. This work will provide a functional and molecular definition of the high plasticity cell state, which will provide new therapies for lung adenocarcinoma. CANDIDATE & ENVIRONMENT: Dr. Jason E. Chan is an Instructor in the Department of Medicine at Memorial Sloan Kettering Cancer Center (MSKCC). His goal is to become an independent tenure-track physician-scientist investigating tumor plasticity and tumor evolution. He has delineated a 5-year career plan that builds upon his background in bioinformatics and systems biology, genetics, mouse models, molecular biology, and clinical training in medical oncology. This project will provide the ideal training for Dr. Chan to use state of the art genomics and molecular biology techniques, mouse models, and patient-derived xenografts to dissect the role of the high plasticity cell state during carcinogenesis. Dr. Chan will be co-mentored by Dr. Tuomas Tammela and Dr. Scott Lowe of the Cancer Biology and Genetics Program at MSKCC. The candidate’s career development plan includes coursework, workshops, mentoring from an interdisciplinary advisory committee comprising of distinguished basic scientists and medical oncologists, and research experience in the supportive academic institutional environment of MSKCC, a center of excellence in translational cancer research. Successful completion of the project will lead to new approaches for treating patients and will provide a foundation for Dr. Chan to become an independent investigator with his own R01 funded laboratory.
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Determining the role and function of a high plasticity cell state in lung adenocarcinoma
  • 批准号:
    10525396
  • 项目类别:
  • 资助金额:
    $24.95万
  • 财政年份:
    2022
  • 负责人:
    Jason Earl Chan
  • 依托单位:
海外基金