Department of Materials Science, Faculty of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba 305-8573, Ibaraki, Japan.
Health and Medical Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), 1-1-1 Higashi, Tsukuba 305-8566, Ibaraki, Japan.
Anal Methods. 2023 Jun 29;15(25):3019-3025. doi: 10.1039/d3ay00401e.
The development of high-throughput screening methods for microorganisms is desired because microorganisms are useful and sustainable resources with which valuable substances utilized in various industries can be produced. Micro-space-based methods are the best candidates for the efficient screening of microorganisms owing to their low reagent consumption and compact integration. In this study, we developed a picoliter-sized incubator array for quantitative and labeling-free evaluation of the growth process of () by autofluorescence. Because the array with 8464 incubators is able to compartmentalize single individually utilizing the Poisson distribution, the array can evaluate 100 single simultaneously. Our incubator array not only realized the high-throughput screening of microorganisms, but also provided an analytical tool for assessing individual differences in .
由于微生物是具有利用价值且可持续的资源,可用于生产各个行业所需的有价值物质,因此人们希望开发高通量筛选微生物的方法。基于微空间的方法由于试剂消耗低且集成紧凑,是高效筛选微生物的最佳候选方法。在本研究中,我们开发了一种皮升级孵育器阵列,用于通过自发荧光对()的生长过程进行定量和无标记评估。由于利用泊松分布可将 8464 个孵育器中的单个 分别分隔开,因此该阵列可同时评估 100 个单个 。我们的孵育器阵列不仅实现了微生物的高通量筛选,而且还为评估 中的个体差异提供了分析工具。