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Impaired Long-Chain Fatty Acid Oxidation and Contractile Dysfunction in the Obese Zucker Rat Heart

机译:肥胖的祖克大鼠心脏受损的长链脂肪酸氧化和收缩功能障碍。

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We investigated whether decreased responsiveness of the heart to physiological increases in fatty acid availability results in lipid accumulation and lipotoxic heart disease. Lean and obese Zucker rats were either fed ad libitum or fasted overnight. Fasting increased plasma nonesterifled fatty acid levels in both lean and obese rats, although levels were greatest in obese rats regardless of nutritional status. Despite increased fatty acid availability, the mRNA transcript levels of peroxisome proliferator-activated receptor (PPAR)-α-regulated genes were similar in fed lean and fed obese rat hearts. Fasting increased expression of all PPAR-α-regulated genes in lean Zucker rat hearts, whereas, in obese Zucker rat hearts, muscle carnitine palmitoyltransferase and medium-chain acyl-CoA dehydrogenase were unaltered with fasting. Rates of oleate oxidation were similar for hearts from fed rats. However, fasting increased rates of oleate oxidation only in hearts from lean rats. Dramatic lipid deposition occurred within cardiomyocytes of obese, but not lean, Zucker rats upon fasting. Cardiac output was significantly depressed in hearts isolated from obese rats compared with lean rats, regardless of nutritional status. Fasting increased cardiac output in hearts of lean rats only. Thus, the heart's inability to increase fatty acid oxidation in proportion to increased fatty acid availability is associated with lipid accumulation and contractile dysfunction of the obese Zucker rat.
机译:我们调查了心脏对脂肪酸可用性的生理增加的反应性下降是否导致脂质蓄积和脂毒性心脏病。肥胖和肥胖的Zucker大鼠可以随意喂养或禁食过夜。空腹增加瘦和肥胖大鼠的血浆非酯化脂肪酸水平,尽管无论营养状况如何,肥胖大鼠的血浆非酯化脂肪酸水平最高。尽管增加了脂肪酸的利用,但在肥胖和肥胖的肥胖大鼠心脏中,过氧化物酶体增殖物激活受体(PPAR)-α调控基因的mRNA转录水平相似。空腹增加在瘦的祖克大鼠心脏中所有PPAR-α调节基因的表达,而在肥胖的祖克大鼠心脏中,肌肉肉碱棕榈酰转移酶和中链酰基辅酶A脱氢酶未因禁食而改变。喂食大鼠心脏的油酸盐氧化速率相似。然而,禁食仅在来自瘦大鼠的心脏中增加了油酸盐氧化的速率。肥胖但不瘦的Zucker大鼠在禁食后心肌细胞内发生大量脂质沉积。不论营养状况如何,与瘦大鼠相比,从肥胖大鼠分离的心脏中的心脏输出明显降低。空腹仅增加瘦大鼠心脏的心输出量。因此,心脏无法与增加的脂肪酸利用率成比例地增加脂肪酸氧化与肥胖的Zucker大鼠的脂质蓄积和收缩功能障碍有关。

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