Lim So-Mang, Yoo Jeong-Ah, Lee Eun-Young, Cho Kyung-Hyun
1 School of Biotechnology, Yeungnam University , Gyeongsan, Republic of Korea.
2 Research Institute of Protein Sensor, Yeungnam University , Gyeongsan, Republic of Korea.
Rejuvenation Res. 2016 Feb;19(1):59-70. doi: 10.1089/rej.2015.1712. Epub 2015 Nov 11.
Consumption of policosanol (PCO), a refined mixture of sugar cane wax alcohols, can elevate serum levels of high-density lipoprotein cholesterol (HDL-C), although the molecular mechanism is still unknown. To investigate the mechanism of action responsible for the anti-senescence effects of PCO on lipoprotein metabolism and HDL functionality, we synthesized reconstituted HDL (rHDL) containing PCO. Encapsulation of PCO by rHDL (PCO-rHDL) enhanced anti-oxidant activity against cupric ion-mediated low-density lipoprotein (LDL) oxidation. PCO-rHDL (final concentration, 9 μM PCO) showed more potent anti-oxidant activity than vitamin C treatment (final concentration, 100 μM). PCO-rHDL inhibited fructose-mediated glycation, which is a major pathological mechanism of diabetic complications, in a dose-dependent manner. PCO also showed cytoprotective effects in monocytes and macrophages with less triggering of apoptotic processes and reactive oxygen species (ROS) production in the presence of hydrogen peroxide (H2O2). PCO-rHDL strongly inhibited uptake of acetylated LDL into macrophages, which is an initial atherosclerotic process. Surprisingly, PCO-rHDL inhibited human serum cholesteryl ester transfer protein (CETP) activity by up to 47% (final concentration, 10 μM PCO). Subcutaneous injection of PCO-rHDL dose-dependently enhanced tissue regeneration activity by 2.4-fold and 3.6-fold compared to that of the phosphate-buffered saline (PBS) control. In conclusion, PCO in HDL showed potent anti-oxidant, anti-glycation, and CETP inhibitory activities along with tissue regenerative activity, especially upon incorporation into HDL. These results suggest that PCO can enhance functionality of HDL in serum to exert anti-senescence and longevity effects.
甘蔗蜡醇的精制混合物——聚二十碳五烯醇(PCO)的摄入可以提高血清高密度脂蛋白胆固醇(HDL-C)水平,尽管其分子机制尚不清楚。为了研究PCO对脂蛋白代谢和HDL功能的抗衰老作用的作用机制,我们合成了含有PCO的重组HDL(rHDL)。rHDL对PCO的包封(PCO-rHDL)增强了对铜离子介导的低密度脂蛋白(LDL)氧化的抗氧化活性。PCO-rHDL(终浓度,9μM PCO)显示出比维生素C处理(终浓度,100μM)更强的抗氧化活性。PCO-rHDL以剂量依赖的方式抑制果糖介导的糖基化,这是糖尿病并发症的主要病理机制。在过氧化氢(H2O2)存在的情况下,PCO在单核细胞和巨噬细胞中也表现出细胞保护作用,较少触发凋亡过程和活性氧(ROS)的产生。PCO-rHDL强烈抑制乙酰化LDL进入巨噬细胞的摄取,这是动脉粥样硬化的初始过程。令人惊讶的是,PCO-rHDL将人血清胆固醇酯转移蛋白(CETP)活性抑制高达47%(终浓度,10μM PCO)。与磷酸盐缓冲盐水(PBS)对照相比,皮下注射PCO-rHDL剂量依赖性地将组织再生活性提高了2.4倍和3.6倍。总之,HDL中的PCO表现出强大的抗氧化、抗糖基化和CETP抑制活性以及组织再生活性,特别是在掺入HDL后。这些结果表明,PCO可以增强血清中HDL的功能,以发挥抗衰老和延长寿命的作用。