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Myocardial energy shortage and unmet anaplerotic needs in the fasted long-chain acyl-Co A dehydrogenase knockout mouse

机译:禁食的长链酰基辅酶A脱氢酶基因敲除小鼠的心肌能量短缺和未满足的动脉粥样硬化需求

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Aims: The aim of this animal study istoassess fasting-induced changes in myocardial substrate metabolism and energy statusas a consequence of mitochondrial long-chain fatty acid β-oxidation deficiency, using magnetic resonance spectroscopy (MRS). Methods and results: Carbon-13 (13C) MRS of hyperpolarized [1-13C]pyruvate was used to assess in vivo pyruvate dehydrogenase (PDH) activity in fed and fasted wild-type (WT) mice and long-chain acyl-Co A dehydrogenase knockout (LCAD KO) mice. PDH activity decreased after fasting in both genotypes, but was 2.7-fold higher in fasted LCAD KO mice compared with fasted WT mice. Incorporation of the13C label into themyocardial malate and as partate poolsinfasted LCADKOmice demonstrates enhanced activity of anaplerotic pathways in fasted LCAD KO hearts. These findings were corroborated byex vivo assays revealing partially depleted pools of citric acid cycle intermediates in fasted LCAD KO myocardium, suggesting an increased, but unmet need for anaplerosis. The in vivo myocardial energy status, assessed using phosphorous-31 (31P) MRS, was lower in fasted LCAD KO mice than in fasted WT mice. Conclusion: This study revealed that the heart of fasted LCAD KO mice has an elevated reliance on glucose oxidation, in combination withanunmet demand for myocardial anaplerosis. Due toa lack of substrate availability, the sustained myocardial glucose uptake and PDH activity in LCAD KO mice are ineffective to maintain metabolic homeostasis during fasting, which is reflected by an impaired myocardial energy status in fasted LCAD KO mice.
机译:目的:本动物研究的目的是利用磁共振波谱(MRS)评估禁食引起的线粒体长链脂肪酸β-氧化缺乏所致的心肌底物代谢和能量状态的变化。方法和结果:超极化的[1-13C]丙酮酸的Carbon-13(13C)MRS用于评估进食和禁食野生型(WT)小鼠和长链酰基辅酶A的体内丙酮酸脱氢酶(PDH)活性脱氢酶敲除(LCAD KO)小鼠。两种基因型在禁食后PDH活性均下降,但与禁食的WT小鼠相比,禁食的LCAD KO小鼠的PDH活性高2.7倍。在禁食的LCADKO小鼠中将13 C标记物掺入心肌苹果酸中和作为部分合并物证明禁食的LCAD KO心脏中的动脉粥样硬化途径的活性增强。这些发现得到了离体试验的证实,该试验揭示了禁食的LCAD KO心肌中柠檬酸循环中间体的部分耗尽,表明对动脉粥样硬化的需求增加但未得到满足。禁食的LCAD KO小鼠使用磷31(31P)MRS评估的体内心肌能量状态比禁食的WT小鼠低。结论:这项研究表明,禁食的LCAD KO小鼠的心脏对葡萄糖氧化的依赖性增加,并伴有对心肌动脉粥样硬化的未满足需求。由于缺乏底物可用性,LCAD KO小鼠中持续的心肌葡萄糖摄取和PDH活性在禁食期间无法有效维持代谢稳态,这在禁食的LCAD KO小鼠中心肌能量状态受损中得到体现。

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