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Matrix metalloproteinases: their biological functions and clinical implications
1Institute of Experimental Medicine, Faculty of Medicine, Safarikiensis University, Kosice, Slovakia. hijova@pobox.sk
Abstract:
Matrix metalloproteinases (MMPs), which are also known as matrixins, are proteinases that participate in extracellular matrix remodelling and degradation. Under normal physiological conditions, the activities of MMPs are precisely regulated at the level of transcription, at that of activation of the pro-MMP precursor zymogenes as well as at that of inhibition by endogenous inhibitors (tissue inhibitors of metalloproteinases, TIMPs). Alterations in the regulation of MMP activity are implicated in diseases such as cancer, fibrosis, arthritis and atherosclerosis. The pathological effects of MMPs and TIMPs in cardiovascular diseases involve vascular remodelling, atherosclerotic plaque instability and cardiac remodelling in congestive heart failure or after myocardial infarction. Since excessive tissue remodelling and increased matrix metalloproteinases activity have been demonstrated during atherosclerotic lesion progression (including plaque disruption), MMPs represent a potential target for therapeutic intervention aimed at the modification of vascular pathology by restoring the physiological balance between MMPs and TIMPs. Recent findings suggest that MMPs are also involved in cancer initiation, invasion and metastasis; MMP inhibitors could be considered for evaluation as cancer chemopreventive molecules. This review describes the members of MMP and TIMP families and discusses the structure, function and regulation of MMP activity. (Tab. 1, Ref: 45.)
Insights
Matrix metalloproteinases (MMPs) regulate extracellular matrix. Dysregulation of MMPs is linked to diseases like cancer and cardiovascular conditions, making them therapeutic targets.
Area of Science:
- Biochemistry
- Molecular Biology
- Pathology
Background:
- Matrix metalloproteinases (MMPs) are enzymes crucial for extracellular matrix remodeling.
- Their activity is tightly regulated by transcription, zymogen activation, and inhibitors like TIMPs.
- MMP dysregulation is implicated in various diseases, including cancer, arthritis, and cardiovascular diseases.
Purpose of the Study:
- To review the MMP and TIMP families.
- To discuss the structure, function, and regulation of MMP activity.
- To highlight the pathological roles of MMPs in diseases and their therapeutic potential.
Main Methods:
- Literature review of MMP and TIMP families.
- Analysis of MMP structure, function, and regulation.
- Examination of MMP involvement in disease pathogenesis.
Main Results:
- MMPs play key roles in extracellular matrix degradation and remodeling.
- Altered MMP activity contributes to diseases such as cancer, fibrosis, arthritis, and atherosclerosis.
- MMPs are involved in vascular remodeling, plaque instability, and cardiac remodeling.
Conclusions:
- MMPs are critical in cardiovascular diseases and cancer progression.
- Restoring MMP/TIMP balance is a potential therapeutic strategy for vascular pathology.
- MMP inhibitors show promise for cancer chemoprevention.
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