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Published on: October 12, 2017
Restoration of endothelial function by increasing high-density lipoprotein in subjects with isolated low high-density
Radjesh J Bisoendial1, G Kees Hovingh, Johannes H M Levels
1Department of Vascular Medicine, Academic Medical Center, Meibergdreef 9, 1105 AZ Amsterdam, Netherlands.
Insights
Familial hypoalphalipoproteinemia due to ATP-binding cassette (ABCA)-1 mutations causes low HDL, leading to endothelial dysfunction. Infusion of apolipoprotein A-I/phosphatidylcholine (apoA-I/PC) disks rapidly restored vascular function, highlighting HDL
Area of Science:
- Cardiovascular Biology
- Lipid Metabolism
- Vascular Physiology
Background:
- Familial hypoalphalipoproteinemia (low HDL) is caused by loss-of-function mutations in the ATP-binding cassette (ABCA)-1 gene.
- This provides a model for studying isolated low high-density lipoprotein (HDL) cholesterol.
Purpose of the Study:
- To evaluate the impact of isolated low HDL on endothelial function.
- To assess the vascular effects of an acute increase in HDL.
Main Methods:
- Vascular function was measured using venous occlusion plethysmography in 9 ABCA1 heterozygotes and 9 controls.
- Forearm blood flow responses to vasodilators (serotonin) and nitric oxide synthase inhibition (L-NMMA) were assessed.
- Responses were re-evaluated after intravenous infusion of apolipoprotein A-I/phosphatidylcholine (apoA-I/PC) disks.
Main Results:
- ABCA1 heterozygotes exhibited significantly lower HDL levels and blunted forearm blood flow responses to serotonin and L-NMMA compared to controls.
- Infusion of apoA-I/PC disks normalized HDL levels in ABCA1 heterozygotes.
- Post-infusion, vasomotor responses to both serotonin and L-NMMA were completely restored in ABCA1 heterozygotes.
Conclusions:
- Isolated low HDL in ABCA1 heterozygotes is linked to endothelial dysfunction and impaired nitric oxide bioactivity.
- A single infusion of apoA-I/PC rapidly and completely restored endothelial function.
- HDL exerts direct beneficial effects on the arterial wall beyond its role in reverse cholesterol transport.
Background:
Loss-of-function mutations in the ATP-binding cassette (ABCA)-1 gene locus are the underlying cause for familial hypoalphalipoproteinemia, providing a human isolated low-HDL model. In these familial hypoalphalipoproteinemia subjects, we evaluated the impact of isolated low HDL on endothelial function and the vascular effects of an acute increase in HDL.
Methods And Results:
In 9 ABCA1 heterozygotes and 9 control subjects, vascular function was assessed by venous occlusion plethysmography. Forearm blood flow responses to the endothelium-dependent and -independent vasodilators serotonin (5HT) and sodium nitroprusside, respectively, and the inhibitor of nitric oxide synthase NG-monomethyl-l-arginine (L-NMMA) were measured. Dose-response curves were repeated after systemic infusion of apolipoprotein A-I/phosphatidylcholine (apoA-I/PC) disks. At baseline, ABCA1 heterozygotes had decreased HDL levels (0.4+/-0.2 mmol/L; P<0.05), and their forearm blood flow responses to both 5HT (maximum, 49.0+/-10.4%) and L-NMMA (maximum, -22.8+/-22.9%) were blunted compared with control subjects (both P< or =0.005). Infusion of apoA-I/PC disks increased plasma HDL to 1.3+/-0.4 mmol/L in ABCA1 heterozygotes, which resulted in complete restoration of vasomotor responses to both 5HT and L-NMMA (both P=0.001). Endothelium-independent vasodilation remained unaltered throughout the protocol.
Conclusions:
In ABCA1 heterozygotes, isolated low HDL is associated with endothelial dysfunction, attested to by impaired basal and stimulated NO bioactivity. Strikingly, both parameters were completely restored after a single, rapid infusion of apoA-I/PC. These findings indicate that in addition to its long-term role within reverse cholesterol transport, HDL per se also exerts direct beneficial effects on the arterial wall.
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