Center for Biomedical Engineering, Department of Chemical and Nuclear Engineering, The University of New Mexico, Albuquerque, New Mexico 87131-0001, USA.
Anal Chem. 2012 Feb 21;84(4):1831-9. doi: 10.1021/ac200963n. Epub 2012 Jan 30.
Flow cytometry can simultaneously measure and analyze multiple properties of single cells or particles with high sensitivity and precision. Yet, conventional flow cytometers have fundamental limitations with regards to analyzing particles larger than about 70 μm, analyzing at flow rates greater than a few hundred microliters per minute, and providing analysis rates greater than 50,000 per second. To overcome these limits, we have developed multinode acoustic focusing flow cells that can position particles (as small as a red blood cell and as large as 107 μm in diameter) into as many as 37 parallel flow streams. We demonstrate the potential of such flow cells for the development of high throughput, parallel flow cytometers by precision focusing of flow cytometry alignment microspheres, red blood cells, and the analysis of a CD4+ cellular immunophenotyping assay. This approach will have significant impact toward the creation of high throughput flow cytometers for rare cell detection applications (e.g., circulating tumor cells), applications requiring large particle analysis, and high volume flow cytometry.
流式细胞术可以同时测量和分析单细胞或粒子的多个特性,具有高灵敏度和精度。然而,传统的流式细胞仪在分析大于约 70μm 的粒子、分析大于几百微升/分钟的流速以及提供大于每秒 50000 次的分析速率方面存在根本限制。为了克服这些限制,我们开发了多节点声聚焦流室,可以将粒子(小到红细胞,大到 107μm 直径)定位到多达 37 条平行流道中。我们通过精确聚焦流式细胞术对准微球、红细胞,并分析 CD4+细胞免疫表型测定,展示了这种流室在开发高通量、并行流式细胞仪方面的潜力。这种方法将对创建用于稀有细胞检测应用(例如,循环肿瘤细胞)、需要大颗粒分析和大容量流式细胞术的高通量流式细胞仪产生重大影响。