Research Center, Maisonneuve-Rosemont Hospital, Montreal, Quebec, Canada.
Biomedical Engineering Institute, University of Montreal, Montreal, Quebec, Canada.
Sci Rep. 2017 Jun 6;7(1):2869. doi: 10.1038/s41598-017-02993-6.
Neutrophil recruitment guided by chemotactic cues is a central event in host defense against infection and tissue injury. While the mechanisms underlying neutrophil chemotaxis have been extensively studied, these are just recently being addressed by using high-content approaches or surface-bound chemotactic gradients (haptotaxis) in vitro. Here, we report a haptotaxis assay, based on the classic under-agarose assay, which combines an optical patterning technique to generate surface-bound formyl peptide gradients as well as an automated imaging and analysis of a large number of migration trajectories. We show that human neutrophils migrate on covalently-bound formyl-peptide gradients, which influence the speed and frequency of neutrophil penetration under the agarose. Analysis revealed that neutrophils migrating on surface-bound patterns accumulate in the region of the highest peptide concentration, thereby mimicking in vivo events. We propose the use of a chemotactic precision index, gyration tensors and neutrophil penetration rate for characterizing haptotaxis. This high-content assay provides a simple approach that can be applied for studying molecular mechanisms underlying haptotaxis on user-defined gradient shape.
趋化性信号引导的中性粒细胞募集是宿主防御感染和组织损伤的核心事件。虽然已经广泛研究了中性粒细胞趋化性的机制,但最近才开始使用高内涵方法或体外表面结合趋化性梯度(趋附性)来解决这些问题。在这里,我们报告了一种基于经典琼脂糖下趋化性检测的趋附性检测方法,该方法结合了光学图案化技术以生成表面结合的甲酰肽梯度,并对大量迁移轨迹进行自动成像和分析。我们发现,人中性粒细胞在共价结合的甲酰肽梯度上迁移,这会影响琼脂糖下中性粒细胞穿透的速度和频率。分析表明,在表面结合图案上迁移的中性粒细胞会在肽浓度最高的区域聚集,从而模拟体内事件。我们建议使用趋化性精度指数、回旋张量和中性粒细胞穿透率来描述趋附性。这种高内涵检测方法提供了一种简单的方法,可以应用于研究用户定义的梯度形状下趋附性的分子机制。