Kostara Christina E, Tsimihodimos Vasilis, Elisaf Moses S, Bairaktari Eleni T
Laboratory of Clinical Chemistry and ‡Department of Internal Medicine, Faculty of Medicine, School of Health Sciences, University of Ioannina , 451 10, Ioannina, Greece.
J Proteome Res. 2017 Apr 7;16(4):1605-1616. doi: 10.1021/acs.jproteome.6b00975. Epub 2017 Mar 21.
Recent studies suggest that the cholesterol content of HDL (high density lipoproteins) may provide limited information on their antiatherogenic properties and that the composition and particles' structure provide more information on their functionality. We used NMR-based (nuclear magnetic resonance-based) lipidomics to study the relationships of serum HDL-C (HDL-cholesterol) levels with the lipid composition of HDL particles in three groups of subjects selected on the basis of their HDL-C levels. Subjects with low and high HDL-C levels exhibited differences in HDL lipidome compared to those with normal HDL-C levels. In pattern recognition analysis, the discrimination power among all groups was of high significance. The low HDL-C group presented enrichment of the core in triglycerides and depletion in cholesterol esters, whereas the high HDL-C group showed a decrease in triglycerides content. Additionally, as HDL-C increases, all lipid classes are esterified with higher percentage of unsaturated than saturated fatty acids. In addition to the aforementioned differences, the surface layer is enriched in sphingomyelin and free cholesterol in the high HDL-C level group. NMR-based lipidomic analysis of HDL can be particularly useful since it provides insights into molecular features and helps in the characterization of the atheroprotective function of HDL lipoproteins and in the identification of novel biomarkers of cardiovascular risk.
近期研究表明,高密度脂蛋白(HDL)的胆固醇含量可能只能提供关于其抗动脉粥样硬化特性的有限信息,而其组成和颗粒结构能提供更多关于其功能的信息。我们使用基于核磁共振的脂质组学方法,研究了根据HDL-C(高密度脂蛋白胆固醇)水平选取的三组受试者血清HDL-C水平与HDL颗粒脂质组成之间的关系。与HDL-C水平正常的受试者相比,HDL-C水平低和高的受试者在HDL脂质组方面存在差异。在模式识别分析中,所有组之间的区分能力具有高度显著性。HDL-C水平低的组呈现出甘油三酯在核心部位富集而胆固醇酯减少的情况,而HDL-C水平高的组甘油三酯含量降低。此外,随着HDL-C升高,所有脂质类别中不饱和脂肪酸酯化的百分比高于饱和脂肪酸。除了上述差异外,HDL-C水平高的组表面层富含鞘磷脂和游离胆固醇。基于核磁共振的HDL脂质组学分析可能特别有用,因为它能深入了解分子特征,有助于表征HDL脂蛋白的抗动脉粥样硬化功能,并有助于识别心血管风险的新型生物标志物。