Girdhar Gaurav, Chen Yong, Shao Jin-Yu
Department of Biomedical Engineering, Washington University, Saint Louis, Missouri 63130-4899, USA.
Biophys J. 2007 Feb 1;92(3):1035-45. doi: 10.1529/biophysj.106.086256. Epub 2006 Nov 10.
Multiple tethers are very likely extracted when leukocytes roll on the endothelium under high shear stress. Endothelial cells have been predicted to contribute more significantly to simultaneous tethers and thus to the overall rolling stabilization. We therefore extracted and quantified double tethers from endothelial cells with the micropipette aspiration technique. We show that the constitutive parameters (threshold force (F0) and effective viscosity (etaeff)) for double-tether extraction are twice those for single-tether extraction and are remarkably similar for human neonatal (F0=105+/-5 pN; etaeff=1.0+/-0.1 pN.s/microm) and adult (F0=118+/-13 pN; etaeff=1.3+/-0.2 pN.s/microm) dermal microvascular, and human umbilical vein (F0=99+/-3 pN; etaeff=1.0+/-0.1 pN.s/microm) endothelial cells. Additionally, these parameters are also independent of surface receptor type, cytokine stimulation, and attachment state of the endothelial cell. We also introduce a novel correlation between the cell-substrate contact stress and gap width, with which we can predict the apparent cell-substrate separation range to be 0.01-0.1 microm during leukocyte rolling. With a biomechanical model of leukocyte rolling, we calculate the force history on the receptor-ligand bond during tether extraction and predict maximum stabilization for the double simultaneous tether extraction case.
当白细胞在高剪切应力下在内皮细胞上滚动时,很可能会抽出多条系链。据预测,内皮细胞对同时形成的系链贡献更大,从而对整体滚动稳定性贡献更大。因此,我们使用微量移液器抽吸技术从内皮细胞中提取并定量了双系链。我们发现,双系链提取的本构参数(阈值力(F0)和有效粘度(etaeff))是单系链提取的两倍,并且对于人类新生儿(F0 = 105±5 pN;etaeff = 1.0±0.1 pN·s/μm)和成人(F0 = 118±13 pN;etaeff = 1.3±0.2 pN·s/μm)的真皮微血管内皮细胞以及人脐静脉内皮细胞(F0 = 99±3 pN;etaeff = 1.0±0.1 pN·s/μm)而言,这些参数非常相似。此外,这些参数还与表面受体类型、细胞因子刺激以及内皮细胞的附着状态无关。我们还引入了一种细胞 - 底物接触应力与间隙宽度之间的新关联,利用此关联我们可以预测白细胞滚动过程中表观细胞 - 底物分离范围为0.01 - 0.1μm。通过白细胞滚动的生物力学模型,我们计算了系链提取过程中受体 - 配体键上的力历程,并预测了双系链同时提取情况下的最大稳定性。