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首页> 外文期刊>Journal of molecular cell biology >Development of a miniaturized 3D organoid culture platform for ultra-high-throughput screening
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Development of a miniaturized 3D organoid culture platform for ultra-high-throughput screening

机译:用于超高通量筛选的小型化3D细胞拓平台的开发

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The recent advent of robust methods to grow human tissues as 3D organoids allows us to recapitulate the 3D architecture of tumors in an in vitro setting and offers a new orthogonal approach for drug discovery. However, organoid culturing with extracellular matrix to support 3D architecture has been challenging for high-throughput screening (HTS)-based drug discovery due to technical difficulties. Using genetically engineered human colon organoids as a model system, here we report our effort to miniaturize such 3D organoid culture with extracellular matrix support in high-density plates to enable HTS. We first established organoid culturing in a 384-well plate format and validated its application in a cell viability HTS assay by screening a 2036-compound library. We further miniaturized the 3D organoid culturing in a 1536-well ultra-HTS format and demonstrated its robust performance for large-scale primary compound screening. Our miniaturized organoid culturing method may be adapted to other types of organoids. By leveraging the power of 3D organoid culture in a high-density plate format, we provide a physiologically relevant screening platform to model tumors to accelerate organoid-based research and drug discovery.
机译:最近稳健的方法出现,以使人体组织种植为3D硬件,使我们能够在体外设置中重新承载肿瘤的3D架构,并为药物发现提供了新的正交方法。然而,由于技术困难,用细胞外基质与细胞外基质进行支持3D架构的有机体培养对于基于高通量筛选(HTS)的药物发现是挑战。使用基因工程的人结肠有机体作为模型系统,在这里我们努力用高密度板中的细胞外基质载体小型化细胞体培养,以使HTS能够实现HT。我们首先以384孔板格式建立有机侧培养,并通过筛选2036-复合文库验证其在细胞活力HTS测定中的应用。我们进一步以1536孔超高HTS格式培养的3D细胞体培养,并证明了其对大型初级复合筛选的鲁棒性能。我们的小型化有机体培养方法可以适应于其他类型的有机体。通过利用高密度板格式的3D细胞素培养的力量,我们提供了一种生理相关的筛选平台,用于模拟肿瘤以加速基于有机体的研究和药物发现。

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