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Early structural and metabolic cardiac remodelling in response to inducible adipose triglyceride lipase ablation.

机译:早期结构性和代谢性心脏重塑,以响应诱导型甘油三酸酯脂肪酶消融。

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摘要

While chronic alterations in cardiac triacylglycerol (TAG) metabolism and accumulation are associated with cardiomyopathy, it is unclear whether TAG catabolizing enzymes such as adipose triglyceride lipase (ATGL) play a role in acquired cardiomyopathies. Importantly, germline deletion of ATGL leads to marked cardiac steatosis and heart failure in part through reducing peroxisome proliferator-activated receptor α (PPARα) activity and subsequent fatty acid oxidation (FAO). However, whether ATGL deficiency specifically in adult cardiomyocytes contributes to impaired PPARα activity, cardiac function, and metabolism is not known.To study the effects of acquired cardiac ATGL deficiency on cardiac PPARα activity, function, and metabolism, we generated adult mice with tamoxifen-inducible cardiomyocyte-specific ATGL deficiency (icAtglKO). Within 4-6 weeks following ATGL ablation, icAtglKO mice had markedly increased myocardial TAG accumulation, fibrotic remodelling, and pathological hypertrophy. Echocardiographic analysis of hearts in vivo revealed that contractile function was moderately reduced in icAtglKO mice. Analysis of energy metabolism in ex vivo perfused working hearts showed diminished FAO rates which was not paralleled by markedly impaired PPARα target gene expression.This study shows that acquired cardiomyocyte-specific ATGL deficiency in adult mice is sufficient to promote fibrotic and hypertrophic cardiomyopathy and impair myocardial FAO in the absence of markedly reduced PPARα signalling.
机译:虽然心脏三酰甘油(TAG)代谢和积累的慢性改变与心肌病有关,但尚不清楚TAG分解酶(例如脂肪甘油三酸酯脂酶(ATGL))是否在获得性心肌病中起作用。重要的是,ATGL的种系缺失部分导致过氧化物酶体增殖物激活受体α(PPARα)活性降低和随后的脂肪酸氧化(FAO),从而导致明显的心脏脂肪变性和心力衰竭。但是,尚不清楚成年心肌细胞中ATGL缺乏是否会导致PPARα活性,心脏功能和代谢受损。为研究获得性心脏ATGL缺失对心脏PPARα活性,功能和代谢的影响,我们生成了他莫昔芬-成年小鼠诱导型心肌细胞特异性ATGL缺乏症(icAtglKO)。在ATGL消融后的4-6周内,icAtglKO小鼠的心肌TAG积累,纤维化重塑和病理性肥大明显增加。体内心脏的超声心动图分析显示,icAtglKO小鼠的收缩功能适度降低。对离体灌注工作心脏的能量代谢分析表明,FAO速率降低,这与PPARα靶基因表达明显受损并没有同时发生。粮农组织没有明显减少的PPARα信号。

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