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A platform for high-throughput bioenergy production phenotype characterization in single cells

机译:单细胞高通量生物能源生产表型表征的平台

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摘要

Driven by an increasing number of studies demonstrating its relevance to a broad variety of disease states, the bioenergy production phenotype has been widely characterized at the bulk sample level. Its cell-to-cell variability, a key player associated with cancer cell survival and recurrence, however, remains poorly understood due to ensemble averaging of the current approaches. We present a technology platform for performing oxygen consumption and extracellular acidification measurements of several hundreds to 1,000 individual cells per assay, while offering simultaneous analysis of cellular communication effects on the energy production phenotype. The platform comprises two major components: a tandem optical sensor for combined oxygen and pH detection, and a microwell device for isolation and analysis of single and few cells in hermetically sealed sub-nanoliter chambers. Our approach revealed subpopulations of cells with aberrant energy production profiles and enables determination of cellular response variability to electron transfer chain inhibitors and ion uncouplers.
机译:在越来越多的研究表明其与多种疾病状态的相关性的推动下,生物能源生产表型已在大样本水平上得到了广泛表征。然而,由于目前方法的整体平均,其细胞间变异性(与癌细胞存活和复发相关的关键因素)仍然知之甚少。我们提供了一个技术平台,可以执行每个测定数百至1,000个单个细胞的耗氧量和细胞外酸化测量,同时提供细胞通讯对能量产生表型的影响的同时分析。该平台包括两个主要组件:一个用于氧气和pH值组合检测的串联光学传感器,以及一个用于隔离和分析气密性亚纳升小室中单个细胞和少量细胞的微孔设备。我们的方法揭示了具有异常能量产生曲线的细胞亚群,并能够确定细胞对电子转移链抑制剂和离子解偶联剂的响应变异性。

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