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胰腺切除、完全缺乏胰岛素的犬运动期间葡萄糖周转的调节。β-肾上腺素能阻滞剂的作用。

Regulation of glucose turnover during exercise in pancreatectomized, totally insulin-deficient dogs. Effects of beta-adrenergic blockade.

作者信息

Bjorkman O, Miles P, Wasserman D, Lickley L, Vranic M

机构信息

Department of Physiology, University of Toronto, Ontario, Canada.

出版信息

J Clin Invest. 1988 Jun;81(6):1759-67. doi: 10.1172/JCI113517.

Abstract

To examine whether glucose metabolic clearance increases and whether catecholamines influence glucose turnover during exercise in total insulin deficiency, 24-h fasted and insulin-deprived pancreatectomized dogs were studied before and during exercise (60 min; 100 m/min; 10% slope) with (n = 8) and without (n = 8) propranolol infusion (PI, 5 micrograms/kg-min). Exercise with or without PI was accompanied by four and fivefold increments in norepinephrine and epinephrine respectively, while glucagon (extrapancreatic) fell slightly. Basal plasma glucose and FFA concentrations and rates of tracer-determined (3[3H]glucose) hepatic glucose production (Ra) and total glucose clearance (including urinary glucose loss) were 459 +/- 24 mg/dl, 1.7 +/- 0.5 mmol/liter, 7.8 +/- 0.9 mg/kg-min and 1.6 +/- 0.1 ml/kg-min, respectively. When corrected for urinary glucose excretion, basal glucose metabolic clearance rate (MCR) was 0.7 +/- 0.1 mg/kg-min and rose twofold (P less than 0.0001) during exercise. Despite lower lactate (3.3 +/- 0.6 vs. 6.6 +/- 1.3 mmol/liter; P less than 0.005) and FFA levels (1.1 +/- 0.2 vs. 2.2 +/- 0.2 mmol/liter; P less than 0.0001) with PI, PI failed to influence MCR during exercise. Ra rose by 3.7 +/- 1.7 mg/kg-min during exercise (P less than 0.02) while with PI the increase was only 1.9 +/- 0.7 mg/kg-min (P less than 0.002). Glucose levels remained unchanged during exercise alone but fell slightly with PI (P less than 0.0001). Therefore, in total insulin deficiency, MCR increases marginally with exercise (13% of normal); the beta adrenergic effects of catecholamines that stimulate both FFA mobilization and muscle glycogenolysis do not regulate muscle glucose uptake. The exercise-induced rise in hepatic glucose production does not require an increase in glucagon levels, but is mediated partially by catecholamines. Present and previous data in normal and alloxan-diabetic dogs, suggest that (a) in total insulin deficiency, control of hepatic glucose production during exercise is shifted from glucagon to catecholamines and that this may involve catecholamine-induced mobilization of peripheral substrates for gluconeogenesis and/or hepatic insensitivity to glucagon, and (b) insulin is not essential for a small exercise-induced increase in muscle glucose uptake, but normal insulin levels are required for the full response. Furthermore, the catecholamines appear to regulate muscle glucose uptake during exercise only when sufficient insulin is available to prevent markedly elevated FFA levels. We speculate that the main role of insulin is not to regulate glucose uptake by the contracting muscle directly, but to restrain lipolysis and thereby also FFA oxidation in the muscle.

摘要

为了研究在完全胰岛素缺乏的情况下运动期间葡萄糖代谢清除率是否增加以及儿茶酚胺是否影响葡萄糖周转,我们对24小时禁食且胰岛素缺乏的胰腺切除犬在运动前和运动期间(60分钟;100米/分钟;10%坡度)进行了研究,其中8只犬输注普萘洛尔(PI,5微克/千克·分钟),8只犬未输注。无论有无PI,运动均分别伴随着去甲肾上腺素和肾上腺素增加4倍和5倍,而胰高血糖素(胰腺外)略有下降。基础血浆葡萄糖和游离脂肪酸浓度以及示踪剂测定的(3[3H]葡萄糖)肝脏葡萄糖生成率(Ra)和总葡萄糖清除率(包括尿糖丢失)分别为459±24毫克/分升、1.7±0.5毫摩尔/升、7.8±0.9毫克/千克·分钟和1.6±0.1毫升/千克·分钟。校正尿糖排泄后,基础葡萄糖代谢清除率(MCR)为0.7±0.1毫克/千克·分钟,运动期间增加两倍(P<0.0001)。尽管使用PI时乳酸(3.3±0.6对6.6±1.3毫摩尔/升;P<0.005)和游离脂肪酸水平(1.1±0.2对2.2±0.2毫摩尔/升;P<0.0001)较低,但PI在运动期间未能影响MCR。运动期间Ra增加3.7±1.7毫克/千克·分钟(P<0.02),而使用PI时增加仅为1.9±0.7毫克/千克·分钟(P<0.002)。单独运动期间葡萄糖水平保持不变,但使用PI时略有下降(P<0.0001)。因此,在完全胰岛素缺乏的情况下,MCR随运动略有增加(为正常的13%);刺激游离脂肪酸动员和肌肉糖原分解的儿茶酚胺的β肾上腺素能效应不调节肌肉葡萄糖摄取。运动诱导的肝脏葡萄糖生成增加不需要胰高血糖素水平升高,但部分由儿茶酚胺介导。正常犬和四氧嘧啶糖尿病犬目前和先前的数据表明,(a)在完全胰岛素缺乏的情况下,运动期间肝脏葡萄糖生成的控制从胰高血糖素转移到儿茶酚胺,这可能涉及儿茶酚胺诱导的外周底物用于糖异生的动员和/或肝脏对胰高血糖素的不敏感,以及(b)胰岛素对于运动诱导的肌肉葡萄糖摄取的小幅增加不是必需的,但正常胰岛素水平对于充分反应是必需的。此外,儿茶酚胺似乎仅在有足够胰岛素防止游离脂肪酸水平显著升高时才调节运动期间的肌肉葡萄糖摄取。我们推测胰岛素的主要作用不是直接调节收缩肌肉对葡萄糖的摄取,而是抑制脂肪分解,从而也抑制肌肉中的游离脂肪酸氧化。

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