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首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >Transendothelial migration enhances integrin-dependent human neutrophil chemokinesis.
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Transendothelial migration enhances integrin-dependent human neutrophil chemokinesis.

机译:跨内皮迁移增强了整合素依赖性人类嗜中性白细胞的趋化因子。

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Transendothelial migration of neutrophils induces phenotypic changes that influence the interactions of neutrophils with extravascular tissue components. To assess the influence of transmigration on neutrophil chemokinetic motility, we used polyethylene glycol hydrogels covalently modified with specific peptide sequences relevant to extracellular matrix proteins. We evaluated fMLP-stimulated human neutrophil motility on peptides Arg-Gly-Asp-Ser (RGDS) and TMKIIPFNRTLIGG (P2), alone and in combination. RGDS is a bioactive sequence found in a number of proteins, and P2 is a membrane-activated complex-1 (Mac-1) ligand located in the gamma-chain of the fibrinogen protein. We evaluated, via video microscopy, cell motility by measuring cell displacement from origin and total accumulated distance traveled and then calculated average velocity. Results indicate that although adhesion and shape change were supported by hydrogels containing RGD alone, motility was not. Mac-1-dependent motility was supported on hydrogels containing P2 alone. Motility was enhanced through combined presentation of RGD and P2, engaging Mac-1, alpha(V)beta(3), and beta(1) integrins. Naive neutrophil motility on combined peptide substrates was dependent on Mac-1, and alpha(4)beta(1) while alpha(6)beta(1) contributed to speed and linear movement. Transmigrated neutrophil motility was dependent on alpha(v)beta(3) and alpha(5)beta(1), and alpha(4)beta(1), alpha(6)beta(1), and Mac-1 contributed to speed and linear motion. Together, the data demonstrate that efficient neutrophil migration, dependent on multi-integrin interaction, is enhanced after transendothelial migration.
机译:中性粒细胞的内皮迁移引起表型变化,该变化影响中性粒细胞与血管外组织成分的相互作用。为了评估迁移对中性粒细胞化学动力学运动的影响,我们使用了与细胞外基质蛋白相关的特定肽序列共价修饰的聚乙二醇水凝胶。我们评估了单独或组合使用fMLP刺激的人对肽Arg-Gly-Asp-Ser(RGDS)和TMKIIPFNRTLIGG(P2)的中性粒细胞运动。 RGDS是在多种蛋白质中发现的生物活性序列,P2是位于纤维蛋白原蛋白质γ链中的膜激活复合物1(Mac-1)配体。我们通过视频显微镜评估了细胞的运动能力,方法是测量细胞从原点的位移和总的累积行进距离,然后计算平均速度。结果表明,尽管仅含RGD的水凝胶可支持粘附力和形状变化,但不能提供运动性。仅含有P2的水凝胶支持Mac-1依赖的运动。通过RGD和P2的联合展示,与Mac-1,alpha(V)beta(3)和beta(1)整合素结合,增强了运动能力。幼稚的中性粒细胞在结合肽底物上的运动性取决于Mac-1和alpha(4)beta(1)而alpha(6)beta(1)有助于速度和线性运动。迁移的中性粒细胞运动依赖于alpha(v)beta(3)和alpha(5)beta(1),而alpha(4)beta(1),alpha(6)beta(1)和Mac-1有助于速度和线性运动。在一起,数据表明依赖多整合素相互作用的有效嗜中性白细胞迁移在跨内皮迁移后得到增强。

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