Department of Physics, University of New Mexico Health Science Center, Albuquerque, NM 87131, USA.
Cytometry A. 2011 Mar;79(3):233-40. doi: 10.1002/cyto.a.21027. Epub 2011 Feb 10.
Extracellular hydrodynamic forces may be transmitted to the interior of cells through the alteration of integrin conformation and affinity. Integrin activation regulates leukocyte recruitment, cell activation, and transmigration. The cellular and molecular mechanisms for integrin activation are not precisely known, although intracellular calcium signaling is involved. Flow cytometry offers a versatile way to study intracellular calcium signaling in real-time. We report a novel method to generate defined shear by using a miniature Couette. Testing involved measuring shear-induced intracellular calcium signals of human monoblastoid U937 cells in suspension. The Couette was connected externally to a flow cytometer and pressurized at 6 PSI (4.1 N/m(2) ). Cells were subjected to a well-defined shear between 0 and 1,000 s(-1) and delivered continuously within 10 s to a FACScan at 1 μl/s. Intracellular calcium levels and the percentage of cells activated increased as shear increased in duration and intensity.
细胞外流体动力可能通过整合素构象和亲和力的改变传递到细胞内部。整合素的激活调节白细胞募集、细胞激活和迁移。尽管涉及细胞内钙信号转导,但整合素激活的细胞和分子机制尚不清楚。流式细胞术提供了一种实时研究细胞内钙信号转导的多功能方法。我们报告了一种使用微型库埃特(Couette)产生定义剪切的新方法。测试涉及测量悬浮状态下人单核细胞白血病 U937 细胞的剪切诱导的细胞内钙信号。库埃特通过外部与流式细胞仪相连,并在 6 PSI(4.1 N/m2)下加压。细胞在 0 到 1,000 s-1 之间受到定义明确的剪切,并在 10 秒内以 1 μl/s 的速度连续输送到 FACScan。随着剪切持续时间和强度的增加,细胞内钙水平和激活细胞的百分比增加。