Rink Ina, Rink Jan, Helmer Dorothea, Sachs Daniel, Schmitz Katja
Technische Universität Darmstadt, Clemens-Schöpf-Institut für Organische Chemie und Biochemie, 64287 Darmstadt, Germany;
Technische Universität Darmstadt, Ernst-Berl-Institut für Technische und Makromolekulare Chemie, 64287 Darmstadt, Germany; and.
J Immunol. 2015 Jun 1;194(11):5549-58. doi: 10.4049/jimmunol.1500148. Epub 2015 Apr 27.
The migration of leukocytes in response to chemokine gradients is an important process in the homeostasis of the human immune system and inflammation. In vivo the migration takes place on the surface of the endothelium to which the chemokine gradient is immobilized via interaction with glycosaminoglycans. To study leukocyte migration in response to surface-bound chemokines, we generated chemokine gradients by a simple stamping method: agarose stamps were soaked with chemokine solution to form continuous chemokine gradients by diffusion. These gradients could be easily transferred to a petri dish surface by stamping. We show that neutrophil granulocytes recognize these gradients and migrate toward increasing chemokine concentrations dependent on the slope of the gradient. Single-cell responses were recorded, and statistical analyses of cell behavior and migration were performed. For analysis of chemotaxis/haptotaxis, we propose a chemotactic precision index that is broadly applicable, valid, and allows for a straightforward and rapid quantification of the precision by which cells follow the direction of a given gradient. The presented technique is very simple, cost-efficient, and can be broadly applied for generating defined and reproducible immobilized gradients of almost any protein on surfaces, and it is a valuable tool to study haptotaxis.
白细胞响应趋化因子梯度的迁移是人类免疫系统稳态和炎症过程中的一个重要过程。在体内,迁移发生在内皮细胞表面,趋化因子梯度通过与糖胺聚糖相互作用而固定在该表面上。为了研究白细胞对表面结合趋化因子的迁移反应,我们通过一种简单的压印方法生成趋化因子梯度:将琼脂糖印模浸泡在趋化因子溶液中,通过扩散形成连续的趋化因子梯度。这些梯度可以通过压印轻松转移到培养皿表面。我们发现中性粒细胞能够识别这些梯度,并根据梯度斜率朝着趋化因子浓度增加的方向迁移。记录单细胞反应,并对细胞行为和迁移进行统计分析。为了分析趋化性/趋触性,我们提出了一种趋化精度指数,该指数具有广泛的适用性、有效性,并且能够直接快速地量化细胞沿着给定梯度方向迁移的精度。所提出的技术非常简单、成本效益高,可广泛应用于在表面生成几乎任何蛋白质的确定且可重复的固定梯度,是研究趋触性的宝贵工具。