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2型糖尿病小鼠心脏基础代谢和兴奋-收缩偶联的氧消耗增加。

Increased O2 cost of basal metabolism and excitation-contraction coupling in hearts from type 2 diabetic mice.

作者信息

Boardman Neoma, Hafstad Anne D, Larsen Terje S, Severson David L, Aasum Ellen

机构信息

Dept. of Medical Physiology, Institute of Medical Biology, Faculty of Medicine, Univ. of Tromsø, N-9037 Tromsø, Norway.

出版信息

Am J Physiol Heart Circ Physiol. 2009 May;296(5):H1373-9. doi: 10.1152/ajpheart.01264.2008. Epub 2009 Mar 13.

Abstract

We have reported previously that hearts from type 2 diabetic (db/db) mice show decreased cardiac efficiency due to increased work-independent myocardial O(2) consumption (unloaded MVo(2)), indicating higher O(2) use for nonmechanical processes such as basal metabolism (MVo(2)(BM)) and excitation-contraction coupling (MVo(2)(ECC)). Although alterations in cardiac metabolism and/or Ca(2+) handling may contribute to increased energy expenditure in diabetic hearts, direct measurements of the O(2) cost for these individual processes have not been determined. In this study, we 1) validate a procedure for measuring unloaded MVo(2) directly (MVo(2)(unloaded)) and for determining MVo(2)(BM) and MVo(2)(ECC) separately in isolated perfused mouse hearts and 2) determine O(2) cost for these processes in hearts from db/db mice. Unloaded MVo(2), extrapolated from the relationship between cardiac work (measured as pressure-volume area, PVA) and MVo(2), was found to correspond with MVo(2) measured directly in unloaded retrograde perfused hearts (MVo(2)(unloaded)). MVo(2) in K(+)-arrested hearts was defined as MVo(2)(BM); the difference between MVo(2)(unloaded) and MVo(2)(BM) represented MVo(2)(ECC). This procedure was validated by demonstrating that elevations in perfusate fatty acid (FA) and/or Ca(2+) concentrations resulted in changes in either MVo(2)(BM) and/or MVo(2)(ECC). The higher MVo(2)(unloaded) in db/db mice was due to both a higher MVo(2)(BM) and MVo(2)(ECC). Elevation of glucose and insulin decreased FA oxidation and reduced both MVo(2)(unloaded) and MVo(2)(BM). In conclusion, this study provides direct evidence that MVo(2)(BM) and MVo(2)(ECC) are elevated in diabetes and that acute metabolic interventions can have a therapeutic benefit in diabetic hearts due to a MVo(2)-lowering effect.

摘要

我们之前报道过,2型糖尿病(db/db)小鼠的心脏由于与工作无关的心肌氧消耗(无负荷MVo₂)增加而导致心脏效率降低,这表明用于基础代谢(MVo₂(BM))和兴奋-收缩偶联(MVo₂(ECC))等非机械过程的氧利用更高。尽管心脏代谢和/或钙处理的改变可能导致糖尿病心脏能量消耗增加,但尚未确定这些个体过程的氧消耗直接测量值。在本研究中,我们1)验证了一种在离体灌注小鼠心脏中直接测量无负荷MVo₂(MVo₂(无负荷))以及分别测定MVo₂(BM)和MVo₂(ECC)的方法,2)并确定db/db小鼠心脏中这些过程的氧消耗。从心脏工作(以压力-容积面积,PVA衡量)与MVo₂之间的关系推断出的无负荷MVo₂,被发现与在无负荷逆行灌注心脏中直接测量的MVo₂(MVo₂(无负荷))相对应。钾离子停搏心脏中的MVo₂被定义为MVo₂(BM);MVo₂(无负荷)与MVo₂(BM)之间的差值代表MVo₂(ECC)。通过证明灌注液中脂肪酸(FA)和/或钙离子浓度的升高导致MVo₂(BM)和/或MVo₂(ECC)的变化,验证了该方法。db/db小鼠中较高的MVo₂(无负荷)是由于较高的MVo₂(BM)和MVo₂(ECC)两者共同导致的。葡萄糖和胰岛素的升高降低了脂肪酸氧化,并降低了MVo₂(无负荷)和MVo₂(BM)两者。总之,本研究提供了直接证据,表明糖尿病中MVo₂(BM)和MVo₂(ECC)升高,并且急性代谢干预由于降低MVo₂的作用,可对糖尿病心脏产生治疗益处。

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