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Culture of Macrophage Colony-stimulating Factor Differentiated Human Monocyte-derived Macrophages
Published on: June 30, 2016
Monocyte/macrophage expression of ABCA1 has minimal contribution to plasma HDL levels
M Haghpassand1, P A Bourassa, O L Francone
1Pfizer Global Research and Development, Groton, Connecticut 06340, USA.
Insights
Monocyte/macrophage ATP-binding cassette protein A1 (ABCA1) plays a role in high-density lipoprotein (HDL) formation. However, its contribution to overall plasma HDL levels is minimal, even when expressed in ABCA1-deficient mice.
Area of Science:
- Biochemistry
- Molecular Biology
- Cardiovascular Research
Background:
- Macrophage cholesterol accumulation drives foam cell formation and lesion development.
- ATP-binding cassette protein A1 (ABCA1) in macrophages is crucial for cholesterol efflux and high-density lipoprotein (HDL) production.
Purpose of the Study:
- To investigate the in vivo contribution of monocyte/macrophage ABCA1 to HDL formation.
- To assess the impact of macrophage-specific ABCA1 expression on plasma HDL levels.
Main Methods:
- Generated mice with macrophage-specific ABCA1 expression or inactivation.
- Utilized bone marrow transplantation between ABCA1-deficient and wild-type mice.
- Analyzed plasma HDL levels, apoA-I, and HDL particle characteristics.
Main Results:
- ABCA1-deficient mice consistently showed low HDL levels regardless of donor macrophage genotype.
- Expression of wild-type ABCA1 in deficient mice led to a modest, significant increase in apoA-I and HDL cholesterol.
- The HDL generated exhibited characteristics of alpha-migrating particles.
Conclusions:
- Monocyte/macrophage ABCA1 contributes to HDL formation.
- The overall impact of macrophage ABCA1 on plasma HDL levels is minimal.
Abstract:
Excess accumulation of cholesterol in macrophages results in foam cell production and lesion development. Recent studies have demonstrated that ATP-binding cassette protein A1 (ABCA1) is highly regulated in macrophages and mediates the efflux of cholesterol and phospholipids to apolipoproteins, a process necessary for HDL formation. The goal of this study was to determine the contribution of monocyte/macrophage ABCA1 to HDL formation in vivo. We generated mice expressing ABCA1 in macrophages and mice with selected inactivation of ABCA1 in macrophages by bone marrow transplantation in ABCA1-deficient (ABC1(-/-)) and wild-type (WT) mice. At all times, the level of HDL in ABC1(-/-) recipient mice remained low relative to WT recipient mice irrespective of the genotype of the donor macrophage ABCA1 or high-fat feeding. Expression of WT macrophage ABCA1 in ABC1(-/-) mice resulted in a small but significant increase in apoA-I levels starting 2 weeks after transplantation. No further increase in apoAI was observed up to 14 weeks after transplantation. The increase in apoAI was accompanied by a small but significant increase in HDL cholesterol 6 weeks after transplantation. The HDL formed as a consequence of the expression of WT macrophage ABCA1 migrated to the alpha position in a two-dimensional gel electrophoresis. These results demonstrate that monocyte/macrophage ABCA1 contributes to HDL formation; however, the contribution to the overall plasma HDL levels is minimal.
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