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LDL Cholesterol Uptake Assay Using Live Cell Imaging Analysis with Cell Health Monitoring
Published on: November 17, 2018
Oxidized low-density lipoprotein regulates matrix metalloproteinase-9 and its tissue inhibitor in human
1Atherosclerosis Research Center, Division of Cardiology, and the Burns and Allen Research Institute, Cedars-Sinai Medical Center and UCLA School of Medicine, Los Angeles, CA, USA.
Background:
Macrophages in human atherosclerotic plaques produce a family of matrix metalloproteinases (MMPs), which may influence vascular remodeling and plaque disruption. Because oxidized LDL (ox-LDL) is implicated in many proatherogenic events, we hypothesized that ox-LDL would regulate expression of MMP-9 and tissue inhibitor of metalloproteinase-1 (TIMP-1) in monocyte-derived macrophages. MWRHOSA AND RESULTS: Mononuclear cells were isolated from normal human subjects with Ficoll-Paque density gradient centrifugation, and adherent cells were allowed to differentiate into macrophages during 7 days of culture in plastic dishes. On day 7, by use of serum-free medium, the macrophages were incubated with various concentrations of native LDL (n-LDL) and copper-oxidized LDL. Exposure to ox-LDL (10 to 50 microg/mL) increased MMP-9 mRNA expression as analyzed by Northern blot, protein expression as measured by ELISA and Western blot, and gelatinolytic activity as determined by zymography. The increase in MMP-9 expression was associated with increased nuclear binding of transcription factor NF-kappaB and AP-1 complex on electromobility shift assay. In contrast, ox-LDL (10 to 50 microg/mL) decreased TIMP-1 expression. Ox-LDL-induced increase in MMP-9 expression was abrogated by HDL (100 microg/mL). n-LDL had no significant effect on MMP-9 or TIMP-1 expression.
Conclusions:
These data demonstrate that unlike n-LDL, ox-LDL upregulates MMP-9 expression while reducing TIMP-1 expression in monocyte-derived macrophages. Furthermore, HDL abrogates ox-LDL-induced MMP-9 expression. Thus, ox-LDL may contribute to macrophage-mediated matrix breakdown in the atherosclerotic plaques, thereby predisposing them to plaque disruption and/or vascular remodeling.
Insights
Oxidized LDL (ox-LDL) increases matrix metalloproteinase-9 (MMP-9) and decreases tissue inhibitor of metalloproteinase-1 (TIMP-1) in macrophages, contributing to atherosclerotic plaque instability. High-density lipoprotein (HDL) can block this effect.
Area of Science:
- Cardiovascular Biology
- Cellular and Molecular Medicine
- Atherosclerosis Research
Background:
- Macrophages in atherosclerotic plaques produce matrix metalloproteinases (MMPs) that influence vascular remodeling and plaque rupture.
- Oxidized low-density lipoprotein (ox-LDL) is a key factor in atherogenesis.
- The role of ox-LDL in regulating MMP-9 and TIMP-1 in macrophages is not fully understood.
Purpose of the Study:
- To investigate the effect of ox-LDL on the expression of MMP-9 and TIMP-1 in human monocyte-derived macrophages.
- To determine the impact of native LDL (n-LDL) and high-density lipoprotein (HDL) on these processes.
Main Methods:
- Human mononuclear cells were differentiated into macrophages.
- Macrophages were exposed to varying concentrations of n-LDL and ox-LDL.
- MMP-9 and TIMP-1 expression, activity, and associated transcription factor binding (NF-kappaB, AP-1) were analyzed using Northern blot, ELISA, Western blot, zymography, and electrophoretic mobility shift assays.
- The effect of HDL on ox-LDL-induced changes was evaluated.
Main Results:
- Ox-LDL significantly increased MMP-9 mRNA and protein expression and gelatinolytic activity in macrophages.
- Ox-LDL exposure led to increased nuclear binding of NF-kappaB and AP-1.
- Conversely, ox-LDL decreased TIMP-1 expression.
- HDL (100 microg/mL) abrogated the ox-LDL-induced increase in MMP-9 expression.
- n-LDL had no significant effect on MMP-9 or TIMP-1 expression.
Conclusions:
- Oxidized LDL upregulates MMP-9 and downregulates TIMP-1 in macrophages, suggesting a role in macrophage-mediated matrix degradation in atherosclerotic plaques.
- These changes may promote plaque disruption and vascular remodeling.
- HDL can counteract the effects of ox-LDL on MMP-9 expression.

