High-density lipoprotein remodeling by phospholipid nanoparticles improves cholesterol efflux capacity and protects from atherosclerosis

被引:9
作者
Kudinov, Vasily A. [1 ,2 ]
Torkhovskaya, Tatiana I. [3 ]
Zakharova, Tamara S. [3 ]
Morozevich, Galina E. [4 ]
Artyushev, Rafael I. [1 ]
Zubareva, Marina Yu. [5 ]
Markin, Sergey S. [6 ]
机构
[1] Inst Biomed Chem, Sci Grp Phospholipid Drugs, Moscow 119121, Russia
[2] FSBSI Inst Gen Pathol & Pathophysiol, Lab Cell Biol & Dev Pathol, Moscow 125315, Russia
[3] Inst Biomed Chem, Lab Phospholipid Transport Syst & Nanomed, Moscow 119121, Russia
[4] Inst Biomed Chem, Lab Prot Biosynth, Moscow 119121, Russia
[5] Minist Hlth Russian Federat, FSBI Natl Med Res Ctr Cardiol, Dept Atherosclerosis Problems, Moscow, Russia
[6] Inst Biomed Chem, Clin Res Dept, Moscow 119121, Russia
关键词
Atorvastatin; Reverse cholesterol transport; Phosphatidylcholine; Dyslipidemia; Macrophage; Cholesterol; BINDING CASSETTE TRANSPORTER; BLOOD-PLASMA LIPIDOME; HDL CHOLESTEROL; UNILAMELLAR LIPOSOMES; BIDIRECTIONAL FLUX; PHOSPHATIDYLCHOLINE; OPPORTUNITIES; DETERMINANTS; DIAGNOSTICS; MECHANISMS;
D O I
10.1016/j.biopha.2021.111900
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
The efficiency of cholesterol efflux from cells promoted by high-density lipoproteins (HDLs) depends on HDL concentration and functional properties. The term "dysfunctional HDL" describes HDLs with impaired protective properties. Cholesterol efflux capacity (CEC) of HDL is reduced in patients with atherosclerosis, but the exact mechanisms underlying this impairment are not well characterized. Enriching HDLs with phospholipids (PLs) improves CEC. Herein, we assessed the potential of PL nanoparticles in improving HDL functionality. We lipidated HDL subfractions by incubating with PL nanoparticles containing soybean polyunsaturated phosphatidylcholine. Incubating blood plasma with PL nanoparticles resulted in the dose-dependent lipidation of all HDL subfractions. Changes in apolipoprotein A1 (apoA-1) and PL concentrations were the most prominent in the HDL2 fraction. Concentrations of PL in the HDL3 fraction and the fraction with a density > 1.21 g/mL increased by 30-50%, whereas apoA-1 levels decreased. We hypothesized that PL nanoparticles may cause HDL remodeling that can improve their functions. The CECs of lipidated HDLs were analyzed by incubating apolipoprotein B (apoB)-depleted plasma with H-3-cholesterol-labeled THP-1 macrophages. The findings revealed a two-fold increase in cholesterol efflux compared with native apoB-depleted plasma. Moreover, intravenous administration of PL nanoparticles restored lipid profiles and effectively protected blood vessels from atherosclerosis progression in cholesterol-fed rabbits compared with that of fenofibrate and atorvastatin. PL nanoparticles also protected against atherosclerosis and decreased the atherogenic index. Altogether, these results indicate that PL nanoparticles can be used to correct the lipid composition and CEC of HDLs.
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页数:11
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