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Shear stress and shear rate differentially affect the multi-step process of leukocyte-facilitated melanoma adhesion

机译:剪切应力和剪切速率差异性地影响白细胞促进黑色素瘤粘附的多步过程

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摘要

Previous studies have shown that neutrophils (PMNs) facilitate melanoma cell extravasation [M.J. Slattery, C. Dong, Neutrophils influence melanoma adhesion and migration under flow conditions, Intl. J. Cancer 106 (2003) 713–722] Little is known, however, about the specific interactions between PMNs, melanoma and the endothelium (EC) or the molecular mechanism involved under flow conditions. The aim of this study is to investigate a “two-step adhesion” hypothesis that involves initial PMN tethering on the EC and subsequent melanoma cells being captured by tethered PMNs. Different effects of hydrodynamic shear stress and shear rate were analyzed using a parallel-plate flow chamber. Results indicate a novel finding that PMN-facilitated melanoma cell arrest on the EC is modulated by shear rate, which is inversely-proportional to cell–cell contact time, rather than by the shear stress, which is proportional to the force exerted on formed bonds. β2 integrins/ICAM-1 adhesion mechanisms were examined and the results indicate LFA-1 and Mac-1 cooperate to mediate the PMN–EC–melanoma interactions under shear conditions. In addition, endogenously produced IL-8 contributes to PMN-facilitated melanoma arrest on the EC through the CXC chemokine receptors 1 and 2 (CXCR1 and CXCR2) on PMN. These results provide new evidence for the complex role of hemodynamic forces, secreted chemokines and PMN–melanoma adhesion in the recruitment of metastatic cancer cells to the EC.
机译:先前的研究表明,中性粒细胞(PMN)促进黑素瘤细胞外渗[M.J. Slattery,C. Dong,嗜中性粒细胞在流动条件下影响黑色素瘤的粘附和迁移。 J. Cancer 106(2003)713–722]然而,关于PMN,黑色素瘤和内皮(EC)之间的特异性相互作用或在流动条件下涉及的分子机制知之甚少。这项研究的目的是研究“两步粘附”假说,该假说涉及在EC上进行最初的PMN系留,以及随后通过系留的PMN捕获黑色素瘤细胞。使用平行板流动室分析了流体动力剪切应力和剪切速率的不同影响。结果表明有一个新发现,即PMN促进的黑色素瘤细胞在EC上的阻滞是通过剪切速率调节的,该剪切速率与细胞间的接触时间成反比,而不是通过剪切应力来调节,剪切应力与剪切力成正比。研究了β2整合素/ ICAM-1的粘附机制,结果表明LFA-1和Mac-1在剪切条件下协同介导PMN-EC-黑色素瘤相互作用。此外,内源性产生的IL-8通过PMN上的CXC趋化因子受体1和2(CXCR1和CXCR2)促使PMN促进黑色素瘤在EC上的停滞。这些结果为血液动力,分泌的趋化因子和PMN-黑色素瘤粘附在转移癌细胞到EC中的复杂作用提供了新的证据。

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