Department of Bioanalytical Instrumentation, Institute of Analytical Chemistry, v.v.i., Czech Academy of Sciences, Veveří 97, Brno 602 00, Czech Republic; Department of Chemistry, Faculty of Science, Masaryk University, Kotlářská 267/2, Brno 611 37, Czech Republic.
Department of Physics, Chemistry and Vocational Education, Faculty of Education, Masaryk University, Poříčí 7, Brno 603 00, Czech Republic.
J Pharm Biomed Anal. 2022 Feb 5;209:114512. doi: 10.1016/j.jpba.2021.114512. Epub 2021 Dec 1.
Correct determination of the instantaneous level and changes of relevant proteins inside individual cells is essential for correct interpretation and understanding of physiological, diagnostic, and therapeutic events. Thus, single-cell analyses are important for quantification of natural cellular heterogeneity, which cannot be evaluated from averaged data of a cell population measurements. Here, we developed an original highly sensitive and selective instrumentation and methodology based on homogeneous single-step bioluminescence assay to quantify caspases and evaluate their heterogeneity in individual cells. Individual suspended cells are selected under microscope and reliably transferred into the 7 µl detection vials by a micromanipulator. The sensitivity of the method is given by implementation of photomultiplying tube with a cooled photocathode working in the photon counting mode. By optimization of our device and methodology, the limits of detection and quantitation were decreased down to 2.1 and 7.0 fg of recombinant caspase-3, respectively. These masses are lower than average amounts of caspase-3/7 in individual apoptotic and even non-apoptotic cells. As a proof of concept, the content of caspase-3/7 in single treated and untreated HeLa cells was determined to be 154 and 25 fg, respectively. Based on these results, we aim to use the technology for investigations of non-apoptotic functions of caspases.
正确确定单个细胞内相关蛋白质的瞬时水平和变化对于正确解释和理解生理、诊断和治疗事件至关重要。因此,单细胞分析对于量化自然细胞异质性很重要,而这是不能从细胞群体测量的平均数据中评估的。在这里,我们开发了一种基于均相单步生物发光测定的原创、高灵敏度和选择性仪器和方法,用于定量 caspase 并评估其在单个细胞中的异质性。在显微镜下选择单个悬浮细胞,并通过微操纵器可靠地转移到 7μl 检测小瓶中。该方法的灵敏度通过采用具有冷却光阴极的光电倍增管实现,光阴极在光子计数模式下工作。通过对我们的设备和方法进行优化,检测限和定量限分别降低到 2.1 和 7.0 fg 重组 caspase-3。这些质量低于单个凋亡细胞甚至非凋亡细胞中 caspase-3/7 的平均含量。作为概念验证,确定单个处理和未处理的 HeLa 细胞中 caspase-3/7 的含量分别为 154 和 25 fg。基于这些结果,我们旨在使用该技术研究 caspase 的非凋亡功能。