Deutsches Rheuma-Forschungszentrum Berlin (DRFZ), a Leibniz Institute, Charitéplatz 1, 10117 Berlin, Germany.
Cytometry A. 2010 Jul;77(7):643-7. doi: 10.1002/cyto.a.20918.
Today, magnetic cell sorting and flow cytometric cell sorting both are state-of-the-art technologies, with a plethora of applications in biology and biomedicine. Both technologies have their stand-alone applications, but they also perfectly complement each other, in particular for the analysis and isolation of fragile and rare cells. The technological evolution from simple magnets and steel wool separation columns to sophisticated instrumentation and automated procedures has paved the way for magnetic cell separation in the scientific community. This review will focus on applications of magnetic cell sorting with commercially available paramagnetic MACS(R)-nanoparticles (Miltenyi Biotech, Bergisch-Gladbach, Germany) that have allowed unprecedented approaches to the exploration of the immune system in basal and clinical research of humans and rodents. Thus, during the last 20 years this technology has been continuously developed so that the widest array of leukocyte subsets, stem cells, and connective tissue cells can be addressed by MACS(R)-conjugated antibodies directed against cell-specific surface antigens or secreted cytokines for research and clinical applications.
今天,磁性细胞分选和流式细胞分选都是最先进的技术,在生物学和生物医学中有大量的应用。这两种技术都有其独立的应用,但它们也完美互补,特别是对于脆弱和稀有细胞的分析和分离。从简单的磁铁和钢毛分离柱到复杂的仪器和自动化程序的技术发展,为科学界的磁性细胞分离铺平了道路。这篇综述将重点介绍商用顺磁 MACS(R)-纳米颗粒(Miltenyi Biotech,Bergisch-Gladbach,德国)的磁性细胞分选应用,这些颗粒使人们能够以前所未有的方式探索免疫系统,从而在人类和啮齿动物的基础和临床研究中开展工作。因此,在过去的 20 年中,这项技术不断发展,使得通过针对细胞特异性表面抗原或分泌细胞因子的 MACS(R)-结合抗体,可以对最广泛的白细胞亚群、干细胞和结缔组织细胞进行研究和临床应用。