Lin Francis, Nguyen Connie Minh-Canh, Wang Shur-Jen, Saadi Wajeeh, Gross Steven P, Jeon Noo Li
Department of Physics and Astronomy, University of California at Irvine, Irvine, CA 92697, USA.
Biochem Biophys Res Commun. 2004 Jun 25;319(2):576-81. doi: 10.1016/j.bbrc.2004.05.029.
Neutrophils need to correctly interpret gradients of chemotactic factors (CFs) such as interleukin 8 (IL-8) to migrate to the site of infection and perform immune functions. Because diffusion-based chemotaxis assays used in previous studies suffer from temporally changing gradients, it is difficult to distinguish the influence of CF gradient steepness from mean CF concentration on chemotaxis. To better understand the roles of mean CF concentration and CF gradient steepness, we developed a microfluidic device that can maintain stable IL-8 gradients. We report that the random motility of neutrophils is a biphasic function of IL-8 concentration and its magnitude plays a decisive role in effective chemotaxis, a quantitative measure of migration. We show that the concentrations for the optimum chemotaxis in linear IL-8 gradients and for the maximum random motility in uniform IL-8 coincide. In contrast, we find that the steepness of IL-8 gradients has no significant effect on effective chemotaxis.
中性粒细胞需要正确解读诸如白细胞介素8(IL-8)等趋化因子(CFs)的梯度,以便迁移到感染部位并执行免疫功能。由于先前研究中使用的基于扩散的趋化性测定存在随时间变化的梯度,因此很难区分CF梯度陡度与平均CF浓度对趋化性的影响。为了更好地理解平均CF浓度和CF梯度陡度的作用,我们开发了一种能够维持稳定IL-8梯度的微流控装置。我们报告称,中性粒细胞的随机运动是IL-8浓度的双相函数,其大小在有效趋化性(迁移的定量指标)中起决定性作用。我们表明,线性IL-8梯度中最佳趋化性的浓度与均匀IL-8中最大随机运动的浓度一致。相比之下,我们发现IL-8梯度的陡度对有效趋化性没有显著影响。