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Macrophage foam cells from experimental atheroma constitutively produce matrix-degrading proteinases
Z S Galis1, G K Sukhova, R Kranzhöfer
1Department of Medicine, Brigham and Women's Hospital, Boston, MA.
Abstract:
Monocyte-derived foam cells figure prominently in rupture-prone regions of atherosclerotic plaques. Peripheral blood monocytes in culture can produce certain enzymes that degrade extracellular matrix, known as matrix metalloproteinases (MMPs). Lipid-laden macrophages may thus contribute to weakening of extracellular matrix of rupture-prone atherosclerotic plaques. However, the spectrum and regulation of MMP production by foam cells remain unknown. To investigate this issue, we isolated lipid-laden macrophages from rabbit aortic lesions produced by a combination of hypercholesterolemia and balloon injury. Freshly isolated aortic macrophage foam cells, identified using cell-specific antibodies, contained immunoreactive stromelysin and interstitial collagenase, whereas alveolar macrophages isolated from the lungs of same rabbits did not. Macrophages from both tissue sources released gelatinolytic activity consistent with the 92-kDa gelatinase. In vitro, lipid-laden aortic macrophages, but not alveolar macrophages, synthesized de novo and released immunoprecipitable stromelysin and collagenase, with or without stimulation by phorbol ester or bacterial lipopolysaccharide. These stimuli caused foam cells to release additional gelatinolytic activity that migrated faster than a purified preparation of 92-kDa gelatinase in substrate-containing polyacrylamide gels, indicating activation of the 92-kDa gelatinase or induction of the 72-kDa gelatinase. Our results show that lipid-laden macrophages elaborate MMPs capable of degrading the major constituents of vascular extracellular matrix even without further stimulation. Therefore, these cells may contribute to remodeling of the extracellular matrix during atherogenesis and to the disruption of plaques often responsible for acute clinical manifestations of atherosclerosis.
Insights
Lipid-laden foam cells in atherosclerotic plaques produce matrix metalloproteinases (MMPs) that degrade extracellular matrix. These foam cells may contribute to plaque instability and rupture, leading to cardiovascular events.
Area of Science:
- Cardiovascular Biology
- Cell Biology
- Biochemistry
Background:
- Monocyte-derived foam cells are prevalent in atherosclerotic plaques.
- These cells produce matrix metalloproteinases (MMPs) that degrade extracellular matrix.
- The role of foam cells in matrix degradation and plaque vulnerability is not fully understood.
Purpose of the Study:
- To investigate the spectrum and regulation of MMP production by foam cells.
- To determine if lipid-laden macrophages synthesize and release MMPs.
- To assess the potential contribution of foam cells to atherosclerotic plaque instability.
Main Methods:
- Isolation of lipid-laden macrophages from rabbit aortic lesions.
- Identification of MMPs using cell-specific antibodies and enzymatic assays.
- In vitro stimulation of macrophages with phorbol ester and lipopolysaccharide.
Main Results:
- Foam cells isolated from atherosclerotic lesions expressed stromelysin and interstitial collagenase.
- Lipid-laden macrophages synthesized and released these MMPs independently of stimulation.
- Stimulation led to increased gelatinolytic activity, indicating MMP activation or induction.
Conclusions:
- Lipid-laden macrophages produce MMPs capable of degrading vascular extracellular matrix components.
- These cells may contribute to extracellular matrix remodeling in atherosclerosis.
- Foam cell-derived MMPs could play a role in plaque disruption and acute clinical events.