Hung Sheng-Ting, Mukherjee Srijit, Jimenez Ralph
JILA, NIST and University of Colorado, Boulder, Colorado 80309, USA.
Lab Chip. 2020 Feb 21;20(4):834-843. doi: 10.1039/c9lc00790c. Epub 2020 Jan 24.
High information content analysis, enrichment, and selection of rare events from a large population are of great importance in biological and biomedical research. The fluorescence lifetime of a fluorophore, a photophysical property which is independent of and complementary to fluorescence intensity, has been incorporated into various imaging and sensing techniques through microscopy, flow cytometry and droplet microfluidics. However, the throughput of fluorescence lifetime activated droplet sorting is orders of magnitude lower than that of fluorescence activated cell sorting, making it unattractive for applications such as directed evolution of enzymes, despite its highly effective compartmentalization of library members. We developed a microfluidic sorter capable of selecting fluorophores based on fluorescence lifetime and brightness at two excitation and emission colors at a maximum droplet rate of 2.5 kHz. We also present a novel selection strategy for efficiently analyzing and/or enriching rare fluorescent members from a large population which capitalizes on the Poisson distribution of analyte encapsulation into droplets. The effectiveness of the droplet sorter and the new selection strategy are demonstrated by enriching rare populations from a ∼10-member site-directed mutagenesis library of fluorescent proteins expressed in bacteria. This selection strategy can in principle be employed on many droplet sorting platforms, and thus can potentially impact broad areas of science where analysis and enrichment of rare events is needed.
从大量人群中对罕见事件进行高信息含量分析、富集和筛选在生物学和生物医学研究中具有重要意义。荧光团的荧光寿命是一种与荧光强度无关且相互补充的光物理性质,已通过显微镜、流式细胞术和液滴微流控技术应用于各种成像和传感技术中。然而,荧光寿命激活的液滴分选通量比荧光激活细胞分选的通量低几个数量级,这使得它在酶的定向进化等应用中缺乏吸引力,尽管它对文库成员具有高效的区室化作用。我们开发了一种微流控分选仪,能够以2.5 kHz的最大液滴速率,基于两种激发和发射颜色下的荧光寿命和亮度来筛选荧光团。我们还提出了一种新颖的筛选策略,用于从大量人群中高效分析和/或富集罕见荧光成员,该策略利用了分析物包封到液滴中的泊松分布。通过从在细菌中表达的荧光蛋白的约10个成员的定点诱变文库中富集罕见群体,证明了液滴分选仪和新筛选策略的有效性。这种筛选策略原则上可以应用于许多液滴分选平台,因此可能会对需要分析和富集罕见事件的广泛科学领域产生影响。