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Adhesion maturation of neutrophils on nanoscopically presented platelet glycoprotein ibα

机译:中性粒细胞在纳米呈递的血小板糖蛋白ibα上的黏附成熟

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Neutrophilic granulocytes play a fundamental role in cardiovascular disease. They interact with platelet aggregates via the integrin Mac-1 and the platelet receptor glycoprotein Ibα (GPIbα). In vivo, GPIbα presentation is highly variable under different physiological and pathophysiological conditions. Here, we quantitatively determined the conditions for neutrophil adhesion in a biomimetic in vitro system, which allowed precise adjustment of the spacings between human GPIbα presented on the nanoscale from 60 to 200 nm. Unlike most conventional nanopatterning approaches, this method provided control over the local receptor density (spacing) rather than just the global receptor density. Under physiological flow conditions, neutrophils required a minimum spacing of GPIbα molecules to successfully adhere. In contrast, under low-flow conditions, neutrophils adhered on all tested spacings with subtle but nonlinear differences in cell response, including spreading area, spreading kinetics, adhesion maturation, and mobility. Surprisingly, Mac-1-dependent neutrophil adhesion was very robust to GPIbα density variations up to 1 order of magnitude. This complex response map indicates that neutrophil adhesion under flow and adhesion maturation are differentially regulated by GPIbα density. Our study reveals how Mac-1/GPIbα interactions govern cell adhesion and how neutrophils process the number of available surface receptors on the nanoscale. In the future, such in vitro studies can be useful to determine optimum therapeutic ranges for targeting this interaction.
机译:中性粒细胞在心血管疾病中起基本作用。它们通过整合素Mac-1和血小板受体糖蛋白Ibα(GPIbα)与血小板聚集体相互作用。在体内,GPIbα呈递在不同的生理和病理生理条件下高度可变。在这里,我们定量地确定了仿生体外系统中嗜中性粒细胞粘附的条件,该条件可以精确调节纳米级的人GPIbα之间的间距,从60到200 nm。与大多数传统的纳米图案化方法不同,此方法提供了对局部受体密度(间隔)的控制,而不仅仅是对全局受体密度的控制。在生理流动条件下,中性粒细胞需要GPIbα分子的最小间距才能成功粘附。相反,在低流量条件下,嗜中性粒细胞粘附在所有测试的间隔上,细胞反应包括细微但非线性的差异,包括扩散面积,扩散动力学,黏附成熟度和迁移率。令人惊讶的是,依赖Mac-1的嗜中性白细胞粘附对高达1个数量级的GPIbα密度变化非常有力。这个复杂的反应图表明,在流动和粘附成熟下中性粒细胞的粘附受GPIbα密度的差异调节。我们的研究揭示了Mac-1 /GPIbα相互作用如何控制细胞粘附以及嗜中性粒细胞如何处理纳米级可用表面受体的数量。将来,此类体外研究可用于确定靶向这种相互作用的最佳治疗范围。

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