Oakes Patrick W, Patel Dipan C, Morin Nicole A, Zitterbart Daniel P, Fabry Ben, Reichner Jonathan S, Tang Jay X
Department of Physics, Brown University, Providence, RI, USA.
Blood. 2009 Aug 13;114(7):1387-95. doi: 10.1182/blood-2008-11-191445. Epub 2009 Jun 2.
To reach sites of inflammation, neutrophils execute a series of adhesion and migration events that include transmigration through the vascular endothelium and chemotaxis through the vicinal extracellular matrix until contact is made with the point of injury or infection. These in vivo microenvironments differ in their mechanical properties. Using polyacrylamide gels of physiologically relevant elasticity in the range of 5 to 100 kPa and coated with fibronectin, we tested how neutrophil adhesion, spreading, and migration were affected by substrate stiffness. Neutrophils on the softest gels showed only small changes in spread area, whereas on the stiffest gels they showed a 3-fold increase. During adhesion and migration, the magnitudes of the distortions induced in the gel substrate were independent of substrate stiffness, corresponding to the generation of significantly larger traction stresses on the stiffer gels. Cells migrated more slowly but more persistently on stiffer substrates, which resulted in neutrophils moving greater distances over time despite their slower speeds. The largest tractions were localized to the posterior of migrating neutrophils and were independent of substrate stiffness. Finally, the phosphatidylinositol 3-kinase inhibitor LY294002 obviated the ability to sense substrate stiffness, suggesting that phosphatidylinositol 3-kinase plays a mechanistic role in neutrophil mechanosensing.
为了抵达炎症部位,中性粒细胞会执行一系列黏附与迁移活动,其中包括穿过血管内皮进行跨膜迁移以及通过邻近的细胞外基质进行趋化运动,直至与损伤或感染部位接触。这些体内微环境的力学性质各不相同。我们使用了生理相关弹性范围在5至100千帕且涂有纤连蛋白的聚丙烯酰胺凝胶,来测试底物硬度如何影响中性粒细胞的黏附、铺展和迁移。在最软的凝胶上的中性粒细胞铺展面积变化很小,而在最硬的凝胶上其铺展面积增加了3倍。在黏附和迁移过程中,凝胶底物中产生的变形程度与底物硬度无关,但在较硬的凝胶上会产生明显更大的牵引应力。细胞在较硬的底物上迁移得更慢但更持久,这导致中性粒细胞尽管速度较慢,但随着时间推移移动的距离更远。最大的牵引力集中在迁移的中性粒细胞后部,且与底物硬度无关。最后,磷脂酰肌醇3激酶抑制剂LY294002消除了感知底物硬度的能力,这表明磷脂酰肌醇3激酶在中性粒细胞机械传感中发挥着机制性作用。