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Measuring Single-Cell Phenotypic Growth Heterogeneity Using a Microfluidic Cell Volume Sensor

机译:使用微流控细胞体积传感器测量单细胞表型生长异质性

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An imaging-integrated microfluidic cell volume sensor was used to evaluate the volumetric growth rate of single cells from a Saccharomyces cerevisiae population exhibiting two phenotypic expression states of the PDR5 gene. This gene grants multidrug resistance by transcribing a membrane transporter capable of pumping out cytotoxic compounds from the cell. Utilizing fluorescent markers, single cells were isolated and trapped, then their growth rates were measured in two on-chip environments: rich media and media dosed with the antibiotic cycloheximide. Approximating growth rates to first-order, we assessed the fitness of individual?cells and found that those with low PDR5 expression had higher fitness in rich media whereas cells with high PDR5 expression had higher fitness in the presence of the drug. Moreover, the drug dramatically reduced the fitness of cells with low PDR5 expression but had comparatively minimal impact on the fitness of cells with high PDR5 expression. Our experiments show the utility of this imaging-integrated microfluidic cell volume sensor for high-resolution, single-cell analysis, as well as its potential application for studies that characterize and compare the fitness and morphology of individual cells from heterogeneous populations?under different growth conditions.
机译:成像集成的微流控细胞体积传感器用于评估来自酿酒酵母种群的单个细胞的体积生长速率,该酿酒酵母种群表现出PDR5基因的两个表型表达状态。该基因通过转录能够从细胞中泵出细胞毒性化合物的膜转运蛋白来赋予多药耐药性。利用荧光标记,分离并捕获单个细胞,然后在两种芯片环境中测量其生长速率:富培养基和添加了抗生素环己酰亚胺的培养基。将一级生长速率逼近,我们评估了单个细胞的适应性,发现低PDR5表达的细胞在丰富培养基中的适应性更高,而高PDR5表达的细胞在药物存在下的适应性更高。此外,该药物显着降低了具有低PDR5表达的细胞的适应性,但对具有高PDR5表达的细胞的适应性的影响相对最小。我们的实验表明,这种集成了图像的微流体细胞体积传感器可用于高分辨率,单细胞分析,并且可潜在地用于表征和比较不同生长条件下异质群体单个细胞的适应性和形态的研究条件。

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