Chan Leo Li-Ying, McCulley Kelsey J, Kessel Sarah L
Department of Technology R&D, Nexcelom Bioscience LLC, 360 Merrimack Street, Building 9, Lawrence, MA, 01843, USA.
Methods Mol Biol. 2017;1601:27-41. doi: 10.1007/978-1-4939-6960-9_3.
The ability to accurately measure cell viability is important for any cell-based assay. Traditionally, viability measurements have been performed using the trypan blue exclusion method on a hemacytometer, which allows researchers to visually distinguish viable from nonviable cells. While the trypan blue method can work for cell lines or primary cells that have been rigorously purified, in more complex samples such as PBMCs, bone marrow, whole blood, or any sample with low viability, this method can lead to errors. In recent years, advances in optics and fluorescent dyes have led to the development of automated benchtop image-based cell counters for rapid cell concentration and viability measurement. In this work, we demonstrate the use of image-based cytometry for cell viability detection using single-, dual-, or multi-stain techniques. Single-staining methods using nucleic acid stains such as EB, PI, 7-AAD, DAPI, SYTOX Green, and SYTOX Red, and enzymatic stains such as CFDA and Calcein AM, were performed. Dual-staining methods using AO/PI, CFDA/PI, Calcein AM/PI, Hoechst/PI, Hoechst/DRAQ7, and DRAQ5/DAPI that enumerate viable and nonviable cells were also performed. Finally, Hoechst/Calcein AM/PI was used for a multi-staining method. Fluorescent viability staining allows exclusion of cellular debris and nonnucleated cells from analysis, which can eliminate the need to perform purification steps during sample preparation and improve efficiency. Image cytometers increase speed and throughput, capture images for visual confirmation of results, and can greatly simplify cell count and viability measurements.
准确测量细胞活力的能力对于任何基于细胞的检测都很重要。传统上,活力测量是使用台盼蓝排斥法在血细胞计数板上进行的,这使研究人员能够直观地区分活细胞和死细胞。虽然台盼蓝法适用于经过严格纯化的细胞系或原代细胞,但在更复杂的样本(如外周血单核细胞、骨髓、全血或任何活力较低的样本)中,这种方法可能会导致误差。近年来,光学和荧光染料的进步促使了基于图像的自动化台式细胞计数器的发展,用于快速细胞计数和活力测量。在这项工作中,我们展示了使用基于图像的细胞术,通过单染色、双染色或多染色技术进行细胞活力检测。使用了核酸染料(如EB、PI、7-AAD、DAPI、SYTOX Green和SYTOX Red)以及酶促染料(如CFDA和Calcein AM)的单染色方法。还进行了使用AO/PI、CFDA/PI、Calcein AM/PI、Hoechst/PI、Hoechst/DRAQ7和DRAQ5/DAPI来计数活细胞和死细胞的双染色方法。最后,使用Hoechst/Calcein AM/PI进行多染色方法。荧光活力染色允许在分析中排除细胞碎片和无核细胞,这可以消除在样品制备过程中进行纯化步骤的需要并提高效率。图像细胞仪提高了速度和通量,捕获图像以直观确认结果,并且可以极大地简化细胞计数和活力测量。