Degens Hans, de Brouwer Kristel F J, Gilde Andries J, Lindhout Martijn, Willemsen Peter H M, Janssen Ben J, van der Vusse Ger J, van Bilsen Marc
Dep. of Physiology, Cardiovascular Research Institute Maastricht (CARIM) Maastricht University, 616, 6200 MD Maastricht, the Netherlands.
Basic Res Cardiol. 2006 Jan;101(1):17-26. doi: 10.1007/s00395-005-0549-0. Epub 2005 Sep 5.
Cardiac hypertrophy and failure are associated with alterations in cardiac substrate metabolism. It remains to be established, however, whether genomically driven changes in cardiac glucose and fatty acid (FA) metabolism represent a key event of the hypertrophic remodeling process. Accordingly, we investigated metabolic gene expression and substrate metabolism during compensatory hypertrophy, in relation to other cardiac remodeling processes. Thereto, cardiac hypertrophy was induced in rats by supra-renal aortic constriction to various degrees, resulting in increased heart/body weight ratios of 22% (Aob-1), 24% (Aob-2) and 32% (Aob-3) (p < 0.005) after 4 weeks. The unaltered ejection fraction in all groups indicated that the hypertrophy was still compensatory in nature. beta-Myosin Heavy Chain protein and ANF mRNA levels were increased in all groups. Only in Aob-3 rats were SERCA2a mRNA levels markedly reduced. In this group, glycolytic capacity was modestly elevated (+ 25%; p < 0.01). Notwithstanding these phenotypical changes, the expression of genes involved in FA metabolism and FA oxidation rate in cardiac homogenates was completely preserved, irrespective of the degree of hypertrophy. These findings indicate that cardiac FA oxidative capacity is preserved during compensatory hypertrophy, and that a decline in metabolic gene expression does not represent a hallmark of the development of hypertrophy.
心脏肥大和衰竭与心脏底物代谢的改变有关。然而,由基因组驱动的心脏葡萄糖和脂肪酸(FA)代谢变化是否代表肥厚性重塑过程的关键事件仍有待确定。因此,我们研究了代偿性肥大期间的代谢基因表达和底物代谢,并将其与其他心脏重塑过程相关联。为此,通过肾上腹主动脉缩窄在大鼠中诱导不同程度的心脏肥大,4周后心脏/体重比分别增加22%(Aob-1)、24%(Aob-2)和32%(Aob-3)(p<0.005)。所有组中射血分数未改变表明肥大本质上仍为代偿性。所有组中β-肌球蛋白重链蛋白和ANF mRNA水平均升高。仅在Aob-3大鼠中,SERCA2a mRNA水平显著降低。在该组中,糖酵解能力适度升高(+25%;p<0.01)。尽管有这些表型变化,但无论肥大程度如何,心脏匀浆中参与FA代谢的基因表达和FA氧化率均完全保持。这些发现表明,在代偿性肥大期间心脏FA氧化能力得以保留,且代谢基因表达的下降并不代表肥大发展的标志。