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A Facile In Vitro 384-Well Plate System to Model Disseminated Tumor Cells in the Bone Marrow Microenvironment

机译:一种方便的体外384孔板系统可对骨髓微环境中的已扩散肿瘤细胞进行建模

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摘要

Bone marrow disseminated tumor cells (DTCs) are dormant cancer cells that harbor themselves in a bone marrow niche for years after patient remission before potentially returning to a proliferative state, causing recurrent cancer. DTCs reside in bone marrow environments with physiologically important mesenchymal stem cells that are often negatively affected by chemotherapy treatments. Currently, there are very few models of DTCs that recapitulate their dormant phenotype while producing enough samples to accurately quantify cancer and surrounding stromal cell behaviors. We present a three-dimensional spheroid-based model system that uses dual-color bioluminescence imaging to quantify differential cell viability in response to various compounds. We successfully screened for compounds that selectively eliminated cancer cells versus supportive stromal cells and verified results with comparison to efficacy in vivo. The spheroid co-culture system successfully modeled key aspects of DTCs in the bone marrow microenvironment, facilitating testing for compounds to selectively eliminate DTCs.
机译:骨髓弥漫性肿瘤细胞(DTC)是休眠的癌细胞,在患者缓解后数年就一直处于骨髓小生境中,然后有可能恢复到增生状态,从而导致癌症复发。 DTC驻留在具有重要生理意义的间充质干细胞的骨髓环境中,而骨髓间充质干细胞通常会受到化学疗法的负面影响。当前,很少有DTC模型能够概括其休眠表型,同时产生足够的样本以准确量化癌症和周围基质细胞的行为。我们提出了一个基于三维球体的模型系统,该系统使用双色生物发光成像来量化对各种化合物响应的差异细胞活力。我们成功地筛选了选择性消除癌细胞和支持性基质细胞的化合物,并与体内功效进行了比较,验证了结果。球体共培养系统成功地模拟了骨髓微环境中DTC的关键方面,有助于测试化合物以选择性消除DTC。

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