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转移级联的糖组力学:循环中的肿瘤细胞-内皮细胞相互作用。

Glycomechanics of the metastatic cascade: tumor cell-endothelial cell interactions in the circulation.

机构信息

Department of Biomedical Engineering, Cornell University, Ithaca, NY 14853, USA.

出版信息

Ann Biomed Eng. 2012 Apr;40(4):790-805. doi: 10.1007/s10439-011-0463-6. Epub 2011 Nov 19.

Abstract

Hydrodynamic shear force plays an important role in the leukocyte adhesion cascade that involves the tethering and rolling of cells along the endothelial layer, their firm adhesion or arrest, and their extravasation or escape from the circulatory system by inducing passive deformation, or cell flattening, and microvilli stretching, as well as regulating the expression, distribution, and conformation of adhesion molecules on leukocytes and the endothelial layer. Similarly, the dissemination of circulating tumor cells (CTCs) from the primary tumor sites is believed to involve tethering, rolling, and firm adhesion steps before their eventual extravasation which leads to secondary tumor sites (metastasis). Of particular importance to both the leukocyte adhesion cascade and the extravasation of CTCs, glycoproteins are involved in all three steps (capture, rolling, and firm adhesion) and consist of a variety of important selectin ligands. This review article provides an overview of glycoprotein glycosylation associated with the abnormal glycan expression on cancer cell surfaces, where well-established and novel selectin ligands that are cancer related are discussed. An overview of computational approaches on the effects of fluid mechanical force on glycoprotein mediated cancer cell rolling and adhesion is presented with a highlight of recent flow-based and selectin-mediated cell capturing/enriching devices. Finally, as an important branch of the glycoprotein family, mucins, specifically MUC1, are discussed in the context of their aberrant expression on cancer cells and their role as cancer cell adhesion molecules. Since metastasis relies heavily on glycoprotein interactions in the bloodstream where the fluid shear stress highly regulates cell adhesion forces, it is important to study and understand the glycomechanics of all relevant glycoproteins (well-established and novel) as they relate to the metastatic cascade.

摘要

流体剪切力在白细胞黏附级联反应中起着重要作用,该反应涉及细胞沿着内皮层的连接和滚动、它们的牢固黏附或停滞,以及通过诱导被动变形(或细胞扁平化和微绒毛拉伸)以及调节白细胞和内皮层上黏附分子的表达、分布和构象,使它们从循环系统中渗出或逃逸。同样,循环肿瘤细胞 (CTC) 从原发性肿瘤部位的扩散被认为涉及连接、滚动和牢固黏附步骤,然后最终渗出导致继发性肿瘤部位(转移)。糖蛋白在白细胞黏附级联反应和 CTC 渗出中都非常重要,涉及所有三个步骤(捕获、滚动和牢固黏附),并包含各种重要的选择素配体。这篇综述文章概述了与癌细胞表面异常糖基化相关的糖蛋白糖基化,讨论了已建立的和新的与癌症相关的选择素配体。本文还概述了关于流体力学对糖蛋白介导的癌细胞滚动和黏附影响的计算方法,并重点介绍了最近基于流动的和选择素介导的细胞捕获/富集装置。最后,作为糖蛋白家族的一个重要分支,黏蛋白,特别是 MUC1,在讨论它们在癌细胞上的异常表达及其作为癌细胞黏附分子的作用时,也被提及。由于转移严重依赖于血液中糖蛋白的相互作用,而流体剪切力高度调节细胞黏附力,因此研究和了解所有相关糖蛋白(已建立的和新的)的糖基力学非常重要,因为它们与转移级联有关。

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