Nakai Gaku, Shimura Daisuke, Uesugi Ken, Kajimura Ichige, Jiao Qibin, Kusakari Yoichiro, Soga Tomoyoshi, Goda Nobuhito, Minamisawa Susumu
Department of Life Science and Medical Bioscience, Waseda University, Tokyo, Japan.
Department of Cell Physiology, The Jikei University School of Medicine, 3-25-8 Nishishinbashi, Minatoku, Tokyo, 105-8461, Japan.
Heart Vessels. 2019 Mar;34(3):545-555. doi: 10.1007/s00380-018-1293-3. Epub 2018 Nov 1.
Fatty acid (FA) oxidation is impaired and glycolysis is promoted in the damaged heart. However, the factor(s) in the early stages of myocardial metabolic impairment remain(s) unclear. C57B6 mice were subcutaneously administered monocrotaline (MCT) in doses of 0.3 mg/g body weight twice a week for 3 or 6 weeks. Right and left ventricles at 3 and 6 weeks after administration were subjected to capillary electrophoresis-mass spectrometry metabolomic analysis. We also examined mRNA and protein levels of key metabolic molecules. Although no evidence of PH and right ventricular failure was found in the MCT-administered mice by echocardiographic and histological analyzes, the expression levels of stress markers such as TNFα and IL-6 were increased in right and left ventricles even at 3 weeks, suggesting that there was myocardial damage. Metabolites in the tricarboxylic acid (TCA) cycle were decreased and those in glycolysis were increased at 6 weeks. The expression levels of FA oxidation-related factors were decreased at 6 weeks. The phosphorylation level of pyruvate dehydrogenase (PDH) was significantly decreased at 3 weeks. FA oxidation and the TCA cycle were down-regulated, whereas glycolysis was partially up-regulated by MCT-induced myocardial damage. PDH activation preceded these alterations, suggesting that PDH activation is one of the earliest events to compensate for a subtle metabolic impairment from myocardial damage.
在受损心脏中,脂肪酸(FA)氧化受损,糖酵解增强。然而,心肌代谢受损早期的影响因素仍不清楚。将C57B6小鼠每周两次皮下注射剂量为0.3 mg/g体重的野百合碱(MCT),持续3周或6周。给药后3周和6周时,取左右心室进行毛细管电泳-质谱代谢组学分析。我们还检测了关键代谢分子的mRNA和蛋白质水平。虽然通过超声心动图和组织学分析在给予MCT的小鼠中未发现肺动脉高压和右心室衰竭的证据,但即使在3周时,左右心室中TNFα和IL-6等应激标志物的表达水平也有所升高,提示存在心肌损伤。在6周时,三羧酸(TCA)循环中的代谢产物减少,糖酵解中的代谢产物增加。在6周时,FA氧化相关因子的表达水平降低。在3周时,丙酮酸脱氢酶(PDH)的磷酸化水平显著降低。MCT诱导的心肌损伤使FA氧化和TCA循环下调,而糖酵解部分上调。PDH激活先于这些改变,提示PDH激活是最早补偿心肌损伤所致轻微代谢损伤的事件之一。