Levin J D, Ting-Beall H P, Hochmuth R M
Department of Mechanical Engineering and Materials Science, Duke University, Durham, North Carolina 27708-0300, USA.
Biophys J. 2001 Feb;80(2):656-67. doi: 10.1016/S0006-3495(01)76046-8.
Many human diseases are mediated through the immune system. In chronic inflammatory disorders, the processes ordinarily involved in tissue healing become destructive. Endothelial cells normally recruit leukocytes to inflamed tissue using cytokine-induced adhesion receptors on the surfaces of interacting cells. Leukocyte capture depends on specialized characteristics of these receptors, particularly the binding kinetics. This study is designed to clarify the relationship between cytokine-induced changes in cell properties and binding kinetics. Here, we measure the kinetics of expression and monoclonal antibody binding for E-selectin in interleukin-1alpha-stimulated microvascular endothelium in vitro and incorporate the data into kinetic models. Quantitative flow cytometry is used to determine molecular density (expression), and micropipette assays are used to find the probability of adhesion (function). Within five hours of interleukin-1alpha stimulation, E-selectin density increases from 0 to 742 sites/microm(2), and antibody-E-selectin adhesion probability increases from a baseline of 6.3% to 64%. A kinetic model is applied to find an apparent association rate constant, k(f), of 3.7 x 10(-14) cm(2)/sec for antibody-E-selectin binding. Although the model successfully predicts experimental results, the rate constant is undervalued for a diffusion-limited process, suggesting that functional adhesion may be modified through cytokine-induced changes in microtopology and receptor localization.
许多人类疾病是由免疫系统介导的。在慢性炎症性疾病中,通常参与组织愈合的过程会变得具有破坏性。内皮细胞通常利用相互作用细胞表面的细胞因子诱导的粘附受体将白细胞募集到炎症组织中。白细胞捕获取决于这些受体的特殊特性,特别是结合动力学。本研究旨在阐明细胞因子诱导的细胞特性变化与结合动力学之间的关系。在这里,我们测量了白细胞介素-1α刺激的体外微血管内皮细胞中E-选择素的表达动力学和单克隆抗体结合情况,并将数据纳入动力学模型。定量流式细胞术用于确定分子密度(表达),微量移液器测定用于确定粘附概率(功能)。在白细胞介素-1α刺激的五小时内,E-选择素密度从0增加到742个位点/微米²,抗体-E-选择素的粘附概率从基线的6.3%增加到64%。应用动力学模型得出抗体-E-选择素结合的表观缔合速率常数k(f)为3.7×10⁻¹⁴厘米²/秒。尽管该模型成功预测了实验结果,但对于扩散受限过程,该速率常数被低估,这表明功能性粘附可能通过细胞因子诱导的微观拓扑结构和受体定位变化而改变。