Graduate Institute of Biotechnology, Chinese Culture University, Taipei 11114, Taiwan.
Mar Drugs. 2019 Jan 21;17(1):69. doi: 10.3390/md17010069.
The effects of low molecular weight fucoidan (LMWF) in combination with high-stability fucoxanthin (HSFUCO) on cardiac function and the metabolic pathways of aging mice () were investigated. We demonstrated that LMWF and HSFUCO could improve cardiac function in aging mice. Aging mice were treated with LMWF and HSFUCO, either on their own or in combination, on 28 consecutive days. Electrocardiography and whole-cell patch-clamp were used to measure QT interval and action potential duration (APD) of the subjects. Cardiac tissue morphology, reactive oxygen species, and Western blot were also applied. Ultra-high-performance liquid chromatography⁻quadrupole time-of-flight (UPLC-QTOF) mass spectrometry was used for investigating metabolic alterations. The use of LMWF and HSFUCO resulted in improvements in both ventricular rhythms (QT and APD). Treatment with fucoidan and fucoxanthin reduced the expression levels of SOS1 and GRB2 while increasing GSK3β, CREB and IRS1 proteins expression in the aging process. Three main metabolic pathways, namely the TCA cycle, glycolysis, and steroid hormone biosynthesis, were highly enriched in the pathway enrichment analysis. When taken together, the LMWF and HSFUCO treatment improved both the ventricular rhythm and the muscular function of aging subjects by interfering with the metabolism and gene function.
研究了低分子量岩藻聚糖(LMWF)与高稳定性岩藻黄素(HSFUCO)联合对心脏功能和衰老小鼠代谢途径的影响。我们证明 LMWF 和 HSFUCO 可以改善衰老小鼠的心脏功能。在 28 天的连续时间里,用 LMWF 和 HSFUCO 单独或联合处理衰老小鼠。使用心电图和全细胞膜片钳技术测量研究对象的 QT 间期和动作电位时程(APD)。还应用了心脏组织形态、活性氧和 Western blot。超高效液相色谱⁻四极杆飞行时间(UPLC-QTOF)质谱用于研究代谢变化。使用 LMWF 和 HSFUCO 可改善心室节律(QT 和 APD)。岩藻聚糖和岩藻黄素的治疗降低了 SOS1 和 GRB2 的表达水平,同时增加了衰老过程中 GSK3β、CREB 和 IRS1 蛋白的表达。在途径富集分析中,三个主要的代谢途径,即三羧酸循环、糖酵解和甾体激素生物合成,高度富集。总的来说,LMWF 和 HSFUCO 治疗通过干扰代谢和基因功能改善了衰老受试者的心室节律和肌肉功能。