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首页> 外文期刊>Annals of Biomedical Engineering >Hydrodynamic Shear Rate Regulates Melanoma-Leukocyte Aggregation, Melanoma Adhesion to the Endothelium, and Subsequent Extravasation
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Hydrodynamic Shear Rate Regulates Melanoma-Leukocyte Aggregation, Melanoma Adhesion to the Endothelium, and Subsequent Extravasation

机译:流体动力剪切速率调节黑色素瘤-白细胞聚集,黑色素瘤对内皮的粘附和随后的外渗。

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Adhesion to and subsequent extravasation through the endothelial lining of blood vessels is critical for tumor cells to establish metastases. Recent studies have indicated that polymorphonuclear neutrophils (PMNs) may enhance melanoma adhesion to the endothelium (EC) and subsequent extravasation under dynamic flow conditions. However, little is known about hydrodynamics involved in the tumor microenvironment within the microcirculation. In this study, effects of hydrodynamic flow on regulating melanoma cell adhesion to the EC have been investigated. Results indicate that under flow conditions, interactions between melanoma cells and the EC are distinctly different from PMN–EC interactions. Without expressions of surface integrins or sialylated molecules, most melanoma cells that express a high-level of intercellular adhesion molecule (ICAM-1) are not able to effectively adhere to the inflamed EC by themselves. Binding of melanoma cells and PMNs through ICAM-1 on melanoma cells and β2 integrins on PMNs has been shown to enhance melanoma cell arrest on the EC. Although PMN tethering on the EC is regulated by both the shear rate and shear stress, melanoma cell adhesion to the EC and subsequent extravasation via tethering PMN on the EC is predominantly regulated by shear rate, which partly is due to the shear-rate-dependent PMN-melanoma aggregation in shear flow. These findings provide a rationale and mechanistic basis for understanding of leukocyte–tumor cell interactions under flow conditions during tumor cell extravasation and metastasis.
机译:血管内皮层的粘附和随后的渗出对于肿瘤细胞建立转移至关重要。最近的研究表明,多形核中性粒细胞(PMN)可能会增强黑色素瘤在动态血流条件下对内皮(EC)的粘附和随后的外渗。然而,关于微循环内的肿瘤微环境中涉及的流体动力学的了解甚少。在这项研究中,已经研究了流体动力流对调节黑色素瘤细胞对EC的粘附的影响。结果表明,在流动条件下,黑色素瘤细胞与EC之间的相互作用与PMN-EC之间的相互作用明显不同。如果不表达表面整联蛋白或唾液酸化分子,大多数表达高水平细胞间粘附分子(ICAM-1)的黑色素瘤细胞自身将无法有效粘附于发炎的EC。黑色素瘤细胞和PMNs通过ICAM-1结合在黑色素瘤细胞上,β 2 整合素与PMNs结合,可增强黑色素瘤细胞在EC上的阻滞作用。尽管在EC上的PMN束缚受剪切速率和剪切应力的调节,但黑色素瘤细胞对EC的粘附以及随后通过PMN在EC上束缚的外渗主要受剪切速率的调节,部分原因是剪切速率依赖性PMN-黑色素瘤在剪切流中聚集。这些发现为了解肿瘤细胞外渗和转移过程中流动条件下的白细胞-肿瘤细胞相互作用提供了理论依据和机理基础。

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