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超极化磁共振成像显示,左旋肉碱可刺激1型糖尿病心脏的体内碳水化合物代谢。

L-Carnitine Stimulates In Vivo Carbohydrate Metabolism in the Type 1 Diabetic Heart as Demonstrated by Hyperpolarized MRI.

作者信息

Savic Dragana, Ball Vicky, Curtis M Kate, Sousa Fialho Maria da Luz, Timm Kerstin N, Hauton David, West James, Griffin Julian, Heather Lisa C, Tyler Damian J

机构信息

Cardiac Metabolism Research Group, Department of Physiology Anatomy and Genetics, University of Oxford, Oxford OX1 3PT, UK.

Oxford Centre for Clinical Magnetic Resonance Research (OCMR), Division of Cardiovascular Medicine, Radcliffe Department of Medicine, University of Oxford, Oxford OX1 3PT, UK.

出版信息

Metabolites. 2021 Mar 23;11(3):191. doi: 10.3390/metabo11030191.

Abstract

The diabetic heart is energetically and metabolically abnormal, with increased fatty acid oxidation and decreased glucose oxidation. One factor contributing to the metabolic dysfunction in diabetes may be abnormal handling of acetyl and acyl groups by the mitochondria. L-carnitine is responsible for their transfer across the mitochondrial membrane, therefore, supplementation with L-carnitine may provide a route to improve the metabolic state of the diabetic heart. The primary aim of this study was to use hyperpolarized magnetic resonance imaging (MRI) to investigate the effects of L-carnitine supplementation on the in vivo metabolism of [1-C]pyruvate in diabetes. Male Wistar rats were injected with either vehicle or streptozotocin (55 mg/kg) to induce type-1 diabetes. Three weeks of daily i.p. treatment with either saline or L-carnitine (3 g/kg/day) was subsequently undertaken. In vivo cardiac function and metabolism were assessed with CINE and hyperpolarized MRI, respectively. L-carnitine supplementation prevented the progression of hyperglycemia, which was observed in untreated streptozotocin injected animals and led to reductions in plasma triglyceride and ß-hydroxybutyrate concentrations. Hyperpolarized MRI revealed that L-carnitine treatment elevated pyruvate dehydrogenase flux by 3-fold in the diabetic animals, potentially through increased buffering of excess acetyl-CoA units in the mitochondria. Improved functional recovery following ischemia was also observed in the L-carnitine treated diabetic animals.

摘要

糖尿病心脏在能量和代谢方面存在异常,脂肪酸氧化增加而葡萄糖氧化减少。糖尿病代谢功能障碍的一个促成因素可能是线粒体对乙酰基和酰基的处理异常。左旋肉碱负责它们在线粒体内膜的转运,因此,补充左旋肉碱可能为改善糖尿病心脏的代谢状态提供一条途径。本研究的主要目的是使用超极化磁共振成像(MRI)来研究补充左旋肉碱对糖尿病动物体内[1-C]丙酮酸代谢的影响。雄性Wistar大鼠注射溶剂或链脲佐菌素(55 mg/kg)以诱导1型糖尿病。随后进行为期三周的每日腹腔注射生理盐水或左旋肉碱(3 g/kg/天)治疗。分别用电影MRI和超极化MRI评估体内心脏功能和代谢。补充左旋肉碱可防止高血糖的进展,未治疗的注射链脲佐菌素的动物出现了高血糖进展,补充左旋肉碱还可降低血浆甘油三酯和β-羟基丁酸酯浓度。超极化MRI显示,左旋肉碱治疗使糖尿病动物的丙酮酸脱氢酶通量提高了3倍,这可能是通过增加线粒体中过量乙酰辅酶A单位的缓冲来实现的。在接受左旋肉碱治疗的糖尿病动物中,还观察到缺血后功能恢复得到改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33ce/8004902/de21141f6b82/metabolites-11-00191-g001.jpg

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