Department of Chemistry, University of Washington, Seattle, WA 98195-1700, USA.
Lab Chip. 2010 Apr 7;10(7):837-42. doi: 10.1039/b922301k. Epub 2010 Jan 19.
Biological cells are highly sensitive to variation in local pressure because cellular membranes are not rigid. Unlike microbeads, cells deform under pressure or even lyse. In isolating or enriching cells by mechanical filtration, pressure-induced lysis is exacerbated when high local fluidic velocity is present or when a filter reaches its intended capacity. Microfabrication offers new possibilities to design fluidic environments to reduce cellular stress during the filtration process. We describe the underlying biophysics of cellular stress and general solutions to scale up filtration processes for biological cells.
生物细胞对局部压力的变化非常敏感,因为细胞膜不是刚性的。与微珠不同,细胞在压力下会变形,甚至会破裂。在通过机械过滤分离或富集细胞时,当存在高局部流体速度或过滤器达到其预期容量时,压力诱导的细胞破裂会加剧。微制造为设计流体环境提供了新的可能性,以减少过滤过程中细胞的应激。我们描述了细胞应激的基础生物物理学以及用于扩大生物细胞过滤过程的一般解决方案。