Identification of functional tumor-stromal interactions in the bone marrow
Identification of functional tumor-stromal interactions in the bone marrow
批准号:
7942944
负责人:
Benjamin Levine Ebert
金额:
$50.0万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-30 至 2012-08-31
关键词:
AcuteAddressAffectAllelesAreaBehaviorBiological AssayBone MarrowCD34 geneCancer BiologyCell CountCell SurvivalCellsCoculture TechniquesCodeColorComputer softwareComputing MethodologiesEngraftmentEnvironmentFlow CytometryFutureGene LibraryGeneral PopulationGenesGoalsHematopoieticHematopoietic SystemHematopoietic stem cellsHeterogeneityHome environmentHomeostasisHumanImageIn VitroIndividualLibrariesLifeLiquid substanceMalignant - descriptorMalignant NeoplasmsMeasuresMethodsMicroarray AnalysisMicroscopyModelingMolecularMorphologyMusMyelogenousOsteoblastsPathway interactionsPhysiologyPopulationProliferatingPublishingRNA InterferenceSamplingScreening procedureSourceStem cellsStromal CellsStromal NeoplasmSubfamily lentivirinaeSystemTestingTissuesTransgenic MiceTransplantationVendoranalytical toolbasecancer stem cellcancer therapycell behaviorin vivoinsightleukemialeukemic stem cellmonolayerneoplastic cellnew technologynovelprogenitorpublic health relevanceresearch studyself-renewalsmall hairpin RNAstemtumor
中文摘要
描述(由申请人提供):本申请涉及广泛的挑战领域“干细胞”和特定领域:“了解癌症及其环境的异质性”(14-CA-102)。肿瘤间质相互作用被广泛认为是癌症生物学的重要修饰剂,但该界面的分子组成在很大程度上仍不明确。在造血中,骨髓中的成骨细胞提供了调节造血干细胞(HSC)稳态的关键基质“生态位”。白血病“干细胞”(LSC)也在这个成骨细胞龛中安家和植入。与大多数肿瘤间质模型不同,其中间质组分仍然不明确,成骨细胞是一个高度特征化的群体,可用于定义白血病生态位的潜在新型调控组分。在这里,我们建议使用RNA干扰屏幕上的利基,以确定一个纲要的分子,在LSC/成骨细胞和HSC/成骨细胞界面的功能。我们已经证明,小鼠LSC(由人MLL-AF 9易位基因的错误表达产生)不能在体外单独存活,但当与成骨细胞单层共培养时,可以增殖并形成自我更新的“鹅卵石”集落,所述成骨细胞单层部分重现离体小生境。我们已经产生了含有“红色”LSC和“绿色”成骨细胞的共培养物(分别使用DS-红色和GFP表达小鼠)。使用阵列式shRNA文库,我们建议敲除“红色”LSC或“绿色”成骨细胞中的单个基因,并使用我们实验室先前开发的成像软件定量细胞数量和鹅卵石功能。然后将使用功能测定验证这些发夹,并交叉注释HSC与LSC效应。这些实验将提供调节成骨细胞和LSC/HSC之间界面的分子途径的纲要,从而为在体内研究中测试这些组分创建平台。这种“基于生态位”的功能筛选也代表了一种新的技术范式,以探索肿瘤间质的相互作用。
公共卫生相关性:肿瘤起始干细胞并不孤立地生活,而是存在于由基质细胞创造的被称为“壁龛”的高度调节的微环境中;识别和根除这些相互作用代表了抗癌治疗的未开发目标,类似于摧毁肿瘤细胞的“家”。在骨髓中,成骨细胞为白血病细胞创造了一个这样的小生境,尽管控制这种界面的分子机制尚不清楚。在这个项目中,我们将开发新技术来评估数千个基因,以找到那些对白血病干细胞与成骨细胞的功能性参与至关重要的基因,希望将来能够靶向这些相互作用。
英文摘要
DESCRIPTION (provided by applicant): This application addresses broad challenge area "Stem cells" and specific area: "Understanding the Heterogeneity of Cancer and its Environment" (14-CA-102). Tumor stroma interactions are widely recognized to be crucial modifiers of the biology of cancer, but molecular components of this interface have remained largely undefined. In hematopoeisis, osteoblasts in the bone marrow provide a critical stromal "niche" that regulates the homeostasis of hematopoietic stem cells (HSCs). Leukemia "stem cells" (LSCs) also home and engraft in this osteoblastic niche. Unlike most tumor-stroma models, where the stromal component remains poorly defined, osteoblasts are a highly characterized population that can be used to define potentially novel regulatory components of the leukemia niche. Here, we propose to use an RNA-interference screen on the niche to define a compendium of molecules that act functionally in the LSC/osteoblast and the HSC/osteoblast interface. We have shown that murine LSCs (generated by the misexpression of the human MLL-AF9 translocation gene) do not survive in vitro in isolation, but can proliferate and form self-renewing "cobblestone" colonies when cocultured on monolayers of osteoblastic cells that partially recapitulate an ex vivo niche. We have generated co-cultures containing "red" LSCs and "green" osteoblasts (using DS-red and GFP expressing mice respectively). Using an arrayed shRNA library, we propose to knockdown individual genes in either the "red" LSCs or "green" osteoblasts and quantify cell number and cobblestoning function using imaging software previously developed in our labs. These hairpins will then be validated using functional assays and cross-annotated for HSC versus LSC effect. These experiments will provide a compendium of molecular pathways that regulate the interface between osteoblasts and LSCs/HSCs, thus creating a platform for testing these components in in-vivo studies. Such "niche-based" functional screening also represents a novel technological paradigm to explore tumor-stroma interactions in general.
PUBLIC HEALTH RELEVANCE: Tumor-initiating stem cells do not live in isolation, but reside in highly regulated microenvironments termed "niches" created by stromal cells; identifying and eradicating these interactions represents an unexploited target for anti-cancer therapy, akin to destroying the "home" of a tumor cell. In the bone marrow, osteoblasts create one such niche for leukemia cells, although the molecular mechanisms that govern this interface are unknown. In this project, we will develop new technologies to evaluate thousands of genes to find those that are essential for the functional engagement of leukemia stem cells with osteoblasts in the hopes of targeting these interactions in the future.
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会议论文
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