Yu Yan, Shao Jin-Yu
Department of Biomedical Engineering, Washington University, Saint Louis, Missouri 63130, USA.
Biophys J. 2007 Jan 15;92(2):418-29. doi: 10.1529/biophysj.105.078808. Epub 2006 Oct 27.
Neutrophil rolling is the initial step of neutrophil recruitment to sites of inflammation. During the rolling, membrane tethers are very likely extracted from both the neutrophil and the endothelial cell lining of vessel walls. Here, we present a two-dimensional neutrophil-rolling model to investigate whether and how membrane tethers contribute to stable neutrophil rolling. In our model, neutrophils are assumed to be rigid spheres covered with randomly distributed deformable microvilli, and endothelial cells are modeled as flat membrane surfaces decorated with evenly distributed ligands. The instantaneous rolling velocity and other unknowns of the model are calculated by coupling the hydrodynamic resistance functions, the geometric relationships, and the constitutive equations that govern microvillus extension and tether extraction. Our results show that glutaraldehyde-fixed neutrophils (without microvillus extension or tether extraction) roll unstably on a P-selectin-coated substrate with large variance in rolling velocity. In contrast, normal neutrophils roll much more stably, with small variance in rolling velocity. Compared with tether extraction from the neutrophil alone, simultaneous tether extraction from the neutrophil and endothelial cell greatly increases the lifetime of the adhesive bond that mediates the rolling, allows more transient tethers to make the transition into stable rolling, and enables rolling neutrophils to be more shear-resistant.
中性粒细胞滚动是中性粒细胞募集至炎症部位的起始步骤。在滚动过程中,膜系链很可能从中性粒细胞和血管壁的内皮细胞中被提取出来。在此,我们提出一个二维中性粒细胞滚动模型,以研究膜系链是否以及如何促进中性粒细胞的稳定滚动。在我们的模型中,中性粒细胞被假定为覆盖有随机分布的可变形微绒毛的刚性球体,而内皮细胞则被建模为装饰有均匀分布配体的平坦膜表面。通过耦合流体动力阻力函数、几何关系以及控制微绒毛伸展和系链提取的本构方程,计算模型的瞬时滚动速度和其他未知量。我们的结果表明,戊二醛固定的中性粒细胞(无微绒毛伸展或系链提取)在P-选择素包被的底物上滚动不稳定,滚动速度变化很大。相比之下,正常中性粒细胞滚动更为稳定,滚动速度变化很小。与仅从中性粒细胞提取系链相比,从中性粒细胞和内皮细胞同时提取系链可大大延长介导滚动的黏附键的寿命,使更多瞬时系链转变为稳定滚动,并使滚动的中性粒细胞更具抗剪切能力。