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小鼠心脏代谢:示踪方法的发展及体内应用揭示糖尿病中严重的代谢灵活性受损

Cardiac metabolism in mice: tracer method developments and in vivo application revealing profound metabolic inflexibility in diabetes.

作者信息

Oakes Nicholas D, Thalén Pia, Aasum Ellen, Edgley Amanda, Larsen Terje, Furler Stuart M, Ljung Bengt, Severson David

机构信息

Integrative Pharmacology, AstraZeneca R&D, S-431 83 Mölndal, Sweden.

出版信息

Am J Physiol Endocrinol Metab. 2006 May;290(5):E870-81. doi: 10.1152/ajpendo.00233.2005. Epub 2005 Dec 13.

Abstract

Studies of cardiac fuel metabolism in mice have been almost exclusively conducted ex vivo. The major aim of this study was to assess in vivo plasma FFA and glucose utilization by the hearts of healthy control (db/+) and diabetic (db/db) mice, based on cardiac uptake of (R)-2-[9,10-(3)H]bromopalmitate ([3H]R-BrP) and 2-deoxy-D-[U-14C]glucose tracers. To obtain quantitative information about the evaluation of cardiac FFA utilization with [3H]R-BrP, simultaneous comparisons of [3H]R-BrP and [14C]palmitate ([14C]P) uptake were first made in isolated perfused working hearts from db/+ mice. It was found that [3H]R-BrP uptake was closely correlated with [14C]P oxidation (r2 = 0.94, P < 0.001). Then, methods for in vivo application of [3H]R-BrP and [14C]2-DG previously developed for application in the rat were specially adapted for use in the mouse. The method yields indexes of cardiac FFA utilization (R(f)) and clearance (K(f)), as well as glucose utilization (R(g)'). Finally, in the main part of the study, the ability of the heart to switch between FFA and glucose fuels (metabolic flexibility) was investigated by studying anesthetized, 8-h-fasted control and db/db mice in either the basal state or during glucose infusion. In control mice, glucose infusion raised plasma levels of glucose and insulin, raised R(g)' (+58%), and lowered plasma FFA level (-48%), K(f)* (-45%), and R(f)* (-70%). This apparent reciprocal regulation of glucose and FFA utilization by control hearts illustrates metabolic flexibility for substrate use. By contrast, in the db/db mice, glucose infusion raised glucose levels with no apparent influence on cardiac FFA or glucose utilization. In conclusion, tracer methodology for assessing in vivo tissue-specific plasma FFA and glucose utilization has been adapted for use in mice and reveals a profound loss of metabolic flexibility in the diabetic db/db heart, suggesting a fixed level of FFA oxidation in fasted and glucose-infused states.

摘要

对小鼠心脏燃料代谢的研究几乎都是在体外进行的。本研究的主要目的是基于心脏对(R)-2-[9,10-(3)H]溴棕榈酸酯([3H]R-BrP)和2-脱氧-D-[U-14C]葡萄糖示踪剂的摄取,评估健康对照(db/+)和糖尿病(db/db)小鼠心脏在体内对血浆游离脂肪酸(FFA)和葡萄糖的利用情况。为了获得关于用[3H]R-BrP评估心脏FFA利用的定量信息,首先在来自db/+小鼠的离体灌注工作心脏中对[3H]R-BrP和[14C]棕榈酸酯([14C]P)的摄取进行了同步比较。发现[3H]R-BrP摄取与[14C]P氧化密切相关(r2 = 0.94,P < 0.001)。然后,先前为大鼠开发的[3H]R-BrP和[14C]2-DG体内应用方法经过特别调整后用于小鼠。该方法可得出心脏FFA利用指数(R(f))和清除率(K(f))以及葡萄糖利用指数(R(g)')。最后,在研究的主要部分,通过研究麻醉的、禁食8小时的对照小鼠和db/db小鼠在基础状态或葡萄糖输注期间的情况,研究了心脏在FFA和葡萄糖燃料之间切换的能力(代谢灵活性)。在对照小鼠中,葡萄糖输注提高了血浆葡萄糖和胰岛素水平,提高了R(g)'(+58%),并降低了血浆FFA水平(-48%)、K(f)(-45%)和R(f)(-70%)。对照心脏对葡萄糖和FFA利用的这种明显的相互调节说明了底物利用的代谢灵活性。相比之下,在db/db小鼠中,葡萄糖输注提高了葡萄糖水平,但对心脏FFA或葡萄糖利用没有明显影响。总之,用于评估体内组织特异性血浆FFA和葡萄糖利用的示踪方法已适用于小鼠,并揭示了糖尿病db/db心脏中代谢灵活性的严重丧失,表明在禁食和葡萄糖输注状态下FFA氧化水平固定。

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