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Mathematical Modeling of Cancer Invasion: The Role of Membrane-Bound Matrix Metalloproteinases

机译:癌症侵袭的数学模型:膜结合基质金属蛋白酶的作用。

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摘要

One of the hallmarks of cancer growth and metastatic spread is the process of local invasion of the surrounding tissue. Cancer cells achieve protease-dependent invasion by the secretion of enzymes involved in proteolysis. These overly expressed proteolytic enzymes then proceed to degrade the host tissue allowing the cancer cells to disseminate throughout the microenvironment by active migration and interaction with components of the extracellular matrix (ECM) such as collagen. In this paper we develop a mathematical model of cancer invasion which consider the role of matrix metalloproteinases (MMPs). Specifically our model will focus on two distinct types of MMP, i.e., soluble, diffusible MMPs (e.g., MMP-2) and membrane-bound MMPs (e.g., MT1-MMP), and the roles each of these plays in cancer invasion. The implications of MMP-2 activation by MMP-14 and the tissue inhibitor of metalloproteinases-2 are considered alongside the effect the architecture of the matrix may have when applied to a model of cancer invasion. Elements of the ECM architecture investigated include pore size of the matrix, since in some highly dense collagen structures such as breast tissue, the cancer cells are unable to physically fit through a porous region, and the crosslinking of collagen fibers. In this scenario, cancer cells rely on membrane-bound MMPs to forge a path through which degradation by other MMPs and movement of cancer cells becomes possible.
机译:癌生长和转移性扩散的标志之一是周围组织的局部侵入过程。癌细胞通过分泌参与蛋白水解的酶来实现蛋白酶依赖性的入侵。然后,这些过度表达的蛋白水解酶继续降解宿主组织,从而使癌细胞通过主动迁移并与细胞外基质(ECM)的成分(例如胶原蛋白)相互作用而在整个微环境中扩散。在本文中,我们建立了考虑基质金属蛋白酶(MMP)作用的癌症侵袭的数学模型。具体而言,我们的模型将集中于两种不同类型的MMP,即可溶性,可扩散MMP(例如MMP-2)和膜结合MMP(例如MT1-MMP),以及它们各自在癌症侵袭中的作用。 MMP-14激活MMP-2和金属蛋白酶2的组织抑制剂的意义与基质的结构在应用于癌症侵袭模型时可能产生的影响一起考虑。研究的ECM体系结构的要素包括基质的孔径,因为在某些高度致密的胶原结构(如乳腺组织)中,癌细胞无法通过多孔区域进行物理装配,并且无法进行胶原纤维的交联。在这种情况下,癌细胞依靠与膜结合的MMP形成一条路径,通过该路径其他MMP的降解和癌细胞的移动成为可能。

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