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Hollow Micropillar Array Method for High-Capacity Drug Screening on Filter-Grown Epithelial Cells

机译:滤过上皮细胞高容量药物筛选中空微硅阵列方法

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New high-throughput assay formats and innovative screening technologies are needed for miniaturized screens using small quantities of near-native, patient-derived cells. Here, we developed a hollow micropillar array method to screen compounds using epithelial cells cultured on a porous support, with the goal of screening thousands of compounds using a single 24 mm diameter transwell filter containing cultured cells. Test compounds (similar to 1 nL) in an alginate hydrogel were printed by microinjection in hollow cylindrical micropillars (height = 150 mu m, inner diameter = 100 mu m) spaced 300 mu m apart in a square array configuration. Compounds were delivered by positioning the array near the surface of a cell layer, with 5-10 mu m of distance between the micropillars and cell surface. Micropillar array geometry, and the viscosity of the hydrogel and overlying solutions, were optimized computationally and experimentally to produce sustained exposure of cells to test compounds with minimal cross-talk from compounds in neighboring micropillar wells. The method was implemented using a 10 x 10 micropillar array (size = 3 x 3 mm) on CFTR-expressing epithelial cells, in which CFTR chloride channel function was measured from fluorescence in response to iodide addition using a genetically encoded cytoplasmic yellow fluorescent protein halide indicator. The hollow micropillar array platform developed here should be generally applicable for high-capacity drug screening using small numbers of cells cultured on solid or porous supports.
机译:采用少量近似患者衍生的细胞需要新的高吞吐量测定格式和创新的筛选技术。在这里,我们开发了一种空心的微小硅阵列方法,用于使用在多孔载体上培养的上皮细胞进行筛选化合物,其目的是使用含有培养细胞的单个24mm直径的Transwell过滤器筛选成千上万化合物。通过在中空圆柱形微粒(高度=150μm,内径=100μm)间隔300μm以方形阵列配置,通过显微注射印刷藻酸盐水凝胶中的测试化合物(类似于1nl)。通过将阵列定位在细胞层的表面附近,在微储物和细胞表面之间定位距离沿距离的距离,递送化合物。微米阵列几何形状和水凝胶和覆盖溶液的粘度计算,并实验地进行了优化,以产生持续暴露的细胞,以测试具有邻近微孔孔中的化合物的串扰的化合物。使用10×10微米阵列(尺寸= 3×3mm)在CFTR表达上皮细胞上实施该方法,其中使用遗传编码的细胞质黄色荧光蛋白卤化物响应荧光测量CFTR氯化物通道功能指标。这里开发的空心微储层阵列平台通常适用于使用少量在固体或多孔载体上培养的少量细胞的高容量药物筛选。

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