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基质金属蛋白酶与肿瘤转移

Matrix metalloproteinases and tumor metastasis.

作者信息

Deryugina Elena I, Quigley James P

机构信息

Department of Cell Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Cancer Metastasis Rev. 2006 Mar;25(1):9-34. doi: 10.1007/s10555-006-7886-9.

Abstract

Functions of individual matrix metalloproteinases (MMPs) differentially expressed by tumor cells and stromal cells, are finely regulated by their spatial as well as temporal interactions with distinct cellular and extracellular components of the tumor microenvironment and also distant pre-metastatic sites. Certain aspects of MMP involvement in tumor metastasis such as tumor-induced angiogenesis, tumor invasion, and establishment of metastatic foci at the secondary site, have received extensive attention that resulted in an overwhelming amount of experimental and observational data in favor of critical roles of MMPs in these processes. In particular, dependency of tumor angiogenesis on the activity of MMPs, especially that of MMP-9, renders this step possibly the most effective target of synthetic MMP inhibitors. MMP functioning in other stages of metastasis, including the escape of individual tumor cells from the primary tumor, their intravasation, survival in circulation, and extravasation at the secondary site, have not yet received enough consideration, resulting in insufficient or controversial data. The major pieces of evidence that are most compelling and clearly determine the role and involvement of MMPs in the metastatic cascade are provided by molecular genetic studies employing knock-out or transgenic animals and tumor cell lines, modified to overexpress or downregulate a specific MMP. Findings from all of these studies implicate different functional mechanisms for both tumor and stromal MMPs during distinct steps of the metastatic cascade and indicate that MMPs can exhibit pro-metastatic as well as anti-metastatic roles depending on their nature and the experimental setting. This dual function of individual MMPs in metastasis has become a major focus of this review.

摘要

肿瘤细胞和基质细胞差异表达的单个基质金属蛋白酶(MMPs)的功能,受到其与肿瘤微环境以及远处转移前位点的不同细胞和细胞外成分在空间和时间上相互作用的精细调控。MMPs参与肿瘤转移的某些方面,如肿瘤诱导的血管生成、肿瘤侵袭以及在继发部位转移灶的形成,已受到广泛关注,这导致了大量支持MMPs在这些过程中起关键作用的实验和观察数据。特别是,肿瘤血管生成对MMPs活性的依赖性,尤其是对MMP-9活性的依赖性,使得这一步骤可能成为合成MMP抑制剂最有效的靶点。MMPs在转移的其他阶段发挥作用,包括单个肿瘤细胞从原发肿瘤中逸出、它们的血管内渗、在循环中的存活以及在继发部位的血管外渗,尚未得到充分考虑,导致数据不足或存在争议。使用基因敲除或转基因动物以及经过修饰以过表达或下调特定MMP的肿瘤细胞系进行的分子遗传学研究,提供了最有说服力且能明确确定MMPs在转移级联反应中的作用和参与情况的主要证据。所有这些研究结果表明,在转移级联反应的不同步骤中,肿瘤和基质MMPs具有不同的功能机制,并表明MMPs根据其性质和实验环境可表现出促转移和抗转移作用。单个MMPs在转移中的这种双重功能已成为本综述的主要焦点。

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