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Culture of Macrophage Colony-stimulating Factor Differentiated Human Monocyte-derived Macrophages
Published on: June 30, 2016
Human Lupus Plasma Pro-Atherogenic Effects on Cultured Macrophages Are Not Mitigated by Statin Therapy: A Mechanistic
Allison B Reiss1, Hirra A Arain2, Lora J Kasselman2
1NYU Winthrop Biomedical Research Institute and NYU Long Island School of Medicine, Mineola, NY 11501, USA. Allison.Reiss@NYULangone.org.
Insights
Statins fail to normalize cholesterol transport in lupus patients, indicating they may not effectively reduce cardiovascular disease risk in this population. These pro-atherogenic changes persist and worsen over time despite statin treatment.
Area of Science:
- Cardiovascular Medicine
- Rheumatology
- Molecular Biology
Background:
- Systemic lupus erythematosus (SLE) significantly increases the risk of atherosclerotic cardiovascular disease (CVD).
- Statins are commonly used for CVD due to their lipid-lowering and anti-inflammatory effects.
- The Lupus Atherosclerosis Prevention Study (LAPS) found atorvastatin ineffective in reducing CVD progression in SLE patients.
Purpose of the Study:
- To investigate the mechanistic rationale behind statin ineffectiveness in reducing CVD in SLE patients.
- To explore the atherogenic properties of plasma from LAPS subjects using cultured macrophages.
- To analyze the impact of statin therapy on cholesterol transport gene expression in SLE patients.
Main Methods:
- THP-1 differentiated macrophages were treated with plasma from SLE patients (pre- and post-atorvastatin or placebo).
- Gene expression of cholesterol transport genes (ABCA1, ABCG1, 27-hydroxylase, LXRα, PPARγ, CD36, ScRA1) was measured using qRT-PCR.
- Intracellular free cholesterol levels were assessed.
Main Results:
- Macrophages exposed to SLE patient plasma showed decreased cholesterol efflux (ABCA1, ABCG1) and increased 27-hydroxylase and LDL receptor expression.
- Intracellular free cholesterol decreased, but influx receptors (ScRA1, CD36) and nuclear proteins (LXRα, PPARγ) remained unchanged.
- These pro-atherogenic changes were observed in both statin-treated and placebo groups.
Conclusions:
- Statins do not normalize pro-atherogenic changes in cholesterol transport in SLE patients.
- The observed changes in gene expression suggest statins are ineffective in altering the cholesterol transport balance in human macrophages within the SLE environment.
- These findings explain the LAPS results and suggest statins may not be beneficial for attenuating lipid overload and CVD risk in SLE.
Abstract:
Background and Objectives: Atherosclerotic cardiovascular disease (CVD) remains a major cause of morbidity and mortality in persons with systemic lupus erythematosus (SLE, lupus). Atherosclerosis, which involves interplay between cholesterol metabolism and cellular inflammatory pathways, is primarily treated with statins since statins have lipid-lowering and anti-inflammatory properties. The Lupus Atherosclerosis Prevention Study (LAPS) was designed to investigate the efficacy of statins against CVD in SLE patients. LAPS demonstrated that 2 years of atorvastatin administration did not reduce atherosclerosis progression in lupus patients. In this LAPs substudy, we use cultured macrophages to explore the atherogenic properties of plasma from LAPS subjects to explain the mechanistic rationale for the inability of statins to reduce CVD in lupus. Materials and Methods: THP-1 differentiated macrophages were treated for 18 h with 10% SLE patient plasma obtained pre- and post-atorvastatin therapy or placebo. Gene expression of the following cholesterol transport genes was measured by qRT-PCR. For efflux-ATP binding cassette transporter (ABC)A1 and ABCG1, 27-hydroxylase, peroxisome proliferator-activated receptor (PPAR)γ, and liver X receptor (LXR)α; and for influx-cluster of differentiation 36 (CD36) and scavenger receptor (ScR)A1. Results: Macrophages exposed to plasma from both statin-treated and placebo-treated groups showed a significant decrease in cholesterol efflux proteins ATP binding cassette (ABC) transporters A1 and ABCG1, an increase in 27-hydroxylase, an increase in the LDL receptor and a decrease in intracellular free cholesterol. No change in influx receptors ScRA1 and CD36, nor nuclear proteins LXRα and PPARγ was observed. Conclusions: Statins do not normalize pro-atherogenic changes induced by lupus and these changes continue to worsen over time. This study provides mechanistic insight into LAPS findings by demonstrating that statins are overall ineffective in altering the balance of cholesterol transport gene expression in human macrophages. Furthermore, our study suggests that statins as a CVD treatment may not be useful in attenuating lipid overload in the SLE environment.
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