Department of Bioengineering, University of California, Los Angeles, CA 90095, USA.
Lab Chip. 2011 Sep 7;11(17):2827-34. doi: 10.1039/c1lc20330d. Epub 2011 Jul 29.
The standard centrifuge is a laboratory instrument widely used by biologists and medical technicians for preparing cell samples. Efforts to automate the operations of concentration, cell separation, and solution exchange that a centrifuge performs in a simpler and smaller platform have had limited success. Here, we present a microfluidic chip that replicates the functions of a centrifuge without moving parts or external forces. The device operates using a purely fluid dynamic phenomenon in which cells selectively enter and are maintained in microscale vortices. Continuous and sequential operation allows enrichment of cancer cells from spiked blood samples at the mL min(-1) scale, followed by fluorescent labeling of intra- and extra-cellular antigens on the cells without the need for manual pipetting and washing steps. A versatile centrifuge-analogue may open opportunities in automated, low-cost and high-throughput sample preparation as an alternative to the standard benchtop centrifuge in standardized clinical diagnostics or resource poor settings.
标准离心机是一种广泛应用于生物学家和医学技术人员的实验室仪器,用于制备细胞样本。将离心机进行浓缩、细胞分离和溶液交换等操作自动化的努力在一个更简单、更小的平台上取得了有限的成功。在这里,我们提出了一种微流控芯片,它可以在没有运动部件或外部力的情况下复制离心机的功能。该设备仅使用一种纯流体动力学现象来操作,其中细胞选择性地进入并保持在微尺度涡流中。连续和顺序操作可以在 mL min(-1) 的规模上从加标血液样本中富集癌细胞,然后在不需要手动移液和洗涤步骤的情况下对细胞内和细胞外抗原进行荧光标记。作为标准台式离心机的替代方案,这种多功能的离心机模拟物可能为自动化、低成本和高通量的样品制备开辟机会,用于标准化临床诊断或资源匮乏的环境中。