Li Ting-Bo, Zhang Yin-Zhuang, Liu Wei-Qi, Zhang Jie-Jie, Peng Jun, Luo Xiu-Ju, Ma Qi-Lin
Department of Laboratory Medicine, Xiangya School of Medicine, Changsha, China.
Department of Pharmacology, School of Pharmaceutical Sciences, Central South University, Changsha, China.
Korean J Intern Med. 2018 Mar;33(2):313-322. doi: 10.3904/kjim.2016.140. Epub 2017 Sep 13.
BACKGROUND/AIMS: NADPH (nicotinamide adenine dinucleotide phosphate) oxidase (NOX)-mediated oxidative stress plays a key role in promotion of oxidative injury in the cardiovascular system. The aim of this study is to evaluate the status of NOX in endothelial progenitor cells (EPCs) of hyperlipidemic patients and to assess the correlation between NOX activity and the functions EPCs.
A total of 30 hyperlipidemic patients were enrolled for this study and 30 age-matched volunteers with normal level of plasma lipids served as controls. After the circulating EPCs were isolated, the EPC functions (migration, adhesion and tube formation) were evaluated and the status of NOX (expression and activity) was examined.
Compared to the controls, hyperlipidemic patients showed an increase in plasma lipids and a reduction in EPC functions including the attenuated abilities in adhesion, migration and tube formation, concomitant with an increase in NOX expression (NOX2 and NOX4), NOX activity, and reactive oxygen species production. The data analysis showed negative correlations between NOX activity and EPC functions.
There is a positive correlation between the NOX-mediated oxidative stress and the dysfunctions of circulating EPCs in hyperlipidemic patients, and suppression of NOX might offer a novel strategy to improve EPCs functions in hyperlipidemia.
背景/目的:烟酰胺腺嘌呤二核苷酸磷酸(NADPH)氧化酶(NOX)介导的氧化应激在促进心血管系统氧化损伤中起关键作用。本研究旨在评估高脂血症患者内皮祖细胞(EPCs)中NOX的状态,并评估NOX活性与EPCs功能之间的相关性。
本研究共纳入30例高脂血症患者,30例年龄匹配、血脂水平正常的志愿者作为对照。分离循环EPCs后,评估EPCs功能(迁移、黏附及管腔形成),并检测NOX状态(表达及活性)。
与对照组相比,高脂血症患者血脂升高,EPCs功能降低,包括黏附、迁移及管腔形成能力减弱,同时NOX表达(NOX2和NOX4)、NOX活性及活性氧生成增加。数据分析显示NOX活性与EPCs功能呈负相关。
高脂血症患者中,NOX介导的氧化应激与循环EPCs功能障碍之间存在正相关,抑制NOX可能为改善高脂血症中EPCs功能提供新策略。