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肉碱补充剂可缓解非肥胖遗传性高甘油三酯血症大鼠的脂质代谢紊乱并抵御氧化应激。

Carnitine supplementation alleviates lipid metabolism derangements and protects against oxidative stress in non-obese hereditary hypertriglyceridemic rats.

作者信息

Cahova Monika, Chrastina Petr, Hansikova Hana, Drahota Zdenek, Trnovska Jaroslava, Skop Vojtech, Spacilova Jana, Malinska Hana, Oliyarnyk Olena, Papackova Zuzana, Palenickova Eliska, Kazdova Ludmila

机构信息

Center for Experimental Medicine, Institute for Clinical and Experimental Medicine, Videnska 1958/9, Prague 4, Czech Republic.

出版信息

Appl Physiol Nutr Metab. 2015 Mar;40(3):280-91. doi: 10.1139/apnm-2014-0163.

Abstract

The aim of this study was to estimate the effect of carnitine supplementation on lipid disorders and peripheral tissue insulin sensitivity in a non-obese animal model of insulin resistance, the hereditary hypertriglyceridemic (HHTg) rat. Male HHTg rats were fed a standard diet, and half of them received daily doses of carnitine (500 mg·kg(-1) body weight) for 8 weeks. Rats of the original Wistar strain were used for comparison. HHTg rats exhibited increased urinary excretion of free carnitine and reduced carnitine content in the liver and blood. Carnitine supplementation compensated for this shortage and promoted urinary excretion of acetylcarnitine without any signs of (acyl)carnitine accumulation in skeletal muscle. Compared with their untreated littermates, carnitine-treated HHTg rats exhibited lower weight gain, reduced liver steatosis, lower fasting triglyceridemia, and greater reduction of serum free fatty acid content after glucose load. Carnitine treatment was associated with increased mitochondrial biogenesis and oxidative capacity for fatty acids, amelioration of oxidative stress, and restored substrate switching in the liver. In skeletal muscle (diaphragm), carnitine supplementation was associated with significantly higher palmitate oxidation and a more favorable complete to incomplete oxidation products ratio. Carnitine supplementation further enhanced insulin sensitivity ex vivo. No effects on whole-body glucose tolerance were observed. Our data suggest that some metabolic syndrome-related disorders, particularly fatty acid oxidation, steatosis, and oxidative stress in the liver, could be attenuated by carnitine supplementation. The effect of carnitine could be explained, at least partly, by enhanced substrate oxidation and increased fatty acid transport from tissues in the form of short-chain acylcarnitines.

摘要

本研究的目的是评估补充肉碱对胰岛素抵抗的非肥胖动物模型——遗传性高甘油三酯血症(HHTg)大鼠的脂质紊乱和外周组织胰岛素敏感性的影响。雄性HHTg大鼠喂食标准饮食,其中一半大鼠每天接受肉碱剂量(500 mg·kg⁻¹体重),持续8周。使用原Wistar品系的大鼠作为对照。HHTg大鼠表现出游离肉碱尿排泄增加,肝脏和血液中的肉碱含量降低。补充肉碱弥补了这种不足,并促进了乙酰肉碱的尿排泄,且骨骼肌中没有(酰基)肉碱积累的迹象。与未治疗的同窝仔鼠相比,肉碱治疗的HHTg大鼠体重增加较低,肝脂肪变性减轻,空腹甘油三酯血症降低,葡萄糖负荷后血清游离脂肪酸含量降低幅度更大。肉碱治疗与线粒体生物合成增加、脂肪酸氧化能力增强、氧化应激改善以及肝脏中底物转换恢复有关。在骨骼肌(膈肌)中,补充肉碱与显著更高的棕榈酸氧化以及更有利的完全氧化与不完全氧化产物比率有关。补充肉碱进一步增强了体外胰岛素敏感性。未观察到对全身葡萄糖耐量的影响。我们的数据表明,补充肉碱可以减轻一些与代谢综合征相关的紊乱,特别是肝脏中的脂肪酸氧化、脂肪变性和氧化应激。肉碱的作用至少部分可以通过增强底物氧化和以短链酰基肉碱形式从组织中增加脂肪酸转运来解释。

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