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Role of the extracellular matrix: Enzyme activities and metastasis

Authors
Choi, I.-K.Yun, C.-O.
Issue Date
Jun-2013
Publisher
Springer New York
Subjects
Cancer; Cancer cells; Cancer tharapy; Drug delivery; Tumor; Tumor heterogeneity
Abstract
The local milieu of malignant tumor cells has key roles in cancer progression. A major component of the niche is the extracellular matrix (ECM), a complex interdigitating meshwork of macromolecules with multiple biophysical and biochemical characteristics. Although tightly controlled during normal tissue development and homeostasis, the ECM is mostly deregulated and becomes disorganized in cancer. Abnormal ECM has an impact on cancer progression by promoting tumor malignancy and metastatic dissemination. Importantly, the altered ECM in tumor is associated with deregulated ECM-regulating enzymes (matrix metalloproteinases, lysyl oxidase, urokinase plasminogen activator, and cysteine cathepsin). Excess expression of ECM-regulating enzymes alters behavior of cancer cells in the tumor niche, and its sustained upregulation results in the progressive breakdown of normal ECM which is replaced by tumor-derived ECM, thereby allowing tumor malignancy and cancer cell dissemination. Thus, ECM-regulating enzymes act as essential mediators of deregulating and disorganizing ECM. In this chapter, we will review and discuss how ECM-regulating enzymes generate disruption of ECM homeostasis and contribute to cancer progression, especially cancer metastasis. ? 2013 Springer Science+Business Media New York. All rights reserved.
Pages
737
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/27758
DOI
10.1007/978-1-4614-7876-8_11
Start Page
289
End Page
307
ISBN
978-1-4614-7875-1
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