Sperandio Markus, Pickard John, Unnikrishnan Sunil, Acton Scott T, Ley Klaus
Children's Hospital, Division of Neonatology, University of Heidelberg, Germany.
Methods Enzymol. 2006;416:346-71. doi: 10.1016/S0076-6879(06)16023-1.
Leukocyte rolling is an important step for the successful recruitment of leukocytes from blood to tissues mediated by a specialized group of glycoproteins termed selectins. Because of the dynamic process of leukocyte rolling, binding of selectins to their respective counter-receptors (selectin ligands) needs to fulfill three major requirements: (1) rapid bond formation, (2) high tensile strength, and (3) fast dissociation rates. These criteria are perfectly met by selectins, which interact with specific carbohydrate determinants on selectin ligands. This chapter describes the theoretical background, technical requirements, and analytical tools needed to quantitatively assess leukocyte rolling in vivo and in vitro. For the in vivo setting, intravital microscopy allows the observation and recording of leukocyte rolling under different physiological and pathological conditions in almost every organ. Real-time and off-line analysis tools help to assess geometric, hemodynamic, and rolling parameters. Under in vitro conditions, flow chamber assays such as parallel plate flow chamber systems have been the mainstay to study interactions between leukocytes and adhesion molecules under flow. In this setting, adhesion molecules are immobilized on plastic, in a lipid monolayer, or presented on cultured endothelial cells on the chamber surface. Microflow chambers are available for studying leukocyte adhesion in the context of whole blood and without blood cell isolation. The microscopic observation of leukocyte rolling in different in vivo and in vitro settings has significantly contributed to our understanding of the molecular mechanisms responsible for the stepwise extravasation of leukocytes into inflamed tissues.
白细胞滚动是白细胞从血液成功募集到组织的重要步骤,这一过程由一组称为选择素的特殊糖蛋白介导。由于白细胞滚动是一个动态过程,选择素与其各自的反受体(选择素配体)的结合需要满足三个主要要求:(1)快速形成键;(2)高抗张强度;(3)快速解离速率。选择素与选择素配体上的特定碳水化合物决定簇相互作用,完美地满足了这些标准。本章描述了在体内和体外定量评估白细胞滚动所需的理论背景、技术要求和分析工具。对于体内情况,活体显微镜检查允许在几乎每个器官的不同生理和病理条件下观察和记录白细胞滚动。实时和离线分析工具有助于评估几何、血流动力学和滚动参数。在体外条件下,流动腔试验,如平行板流动腔系统,一直是研究流动条件下白细胞与黏附分子相互作用的主要手段。在这种情况下,黏附分子固定在塑料上、脂质单层中或呈现在腔室表面培养的内皮细胞上。微流腔可用于在全血环境中且不进行血细胞分离的情况下研究白细胞黏附。在不同的体内和体外环境中对白细胞滚动进行显微镜观察,极大地促进了我们对白细胞逐步渗出到炎症组织中所涉及分子机制的理解。