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运动期间β-肾上腺素能机制在控制不佳的糖尿病中的作用

Role of beta-adrenergic mechanisms during exercise in poorly controlled diabetes.

作者信息

Wasserman D H, Lickley H L, Vranic M

出版信息

J Appl Physiol (1985). 1985 Oct;59(4):1282-9. doi: 10.1152/jappl.1985.59.4.1282.

Abstract

To examine the beta-adrenergic effects of the catecholamines in poorly controlled diabetes, we have studied insulin-deprived alloxan-diabetic (A-D) dogs during 90 min of moderate exercise (100 m/min, 10-12 degrees) alone (C) or with propranolol (5 micrograms . kg-1 . min-1) (P) or combined P and somatostatin infusion (0.5 microgram . kg-1 . min-1) (P + St). In P, in contrast to C, immunoreactive glucagon (IRG) rose only after 50 min of exercise. However, hepatic glucose production (Ra) rose normally. In P + St, IRG fell 50% below basal, and the Ra response to exercise was abolished. Interestingly, in P and P + St, glucose metabolic clearance rate (MCR) rose by 400% above the inadequate MCR response to exercise in C, despite 30% lower insulin levels. Compared with C, free fatty acids (FFA) and lactate were sharply reduced during P and P + St. Plasma glucose (G) did not change in C, but due to elevated glucose uptake, G fell over 120 mg/dl in P, and due to diminished Ra, G fell 170 mg/dl in P + St. Norepinephrine was similar in all groups. Epinephrine and cortisol were higher in P + St by 90 min of exercise, perhaps as a result of hypoglycemia. In summary, during exercise in poorly controlled A-D dogs, beta-blockade does not appear to affect Ra; beta-blockade leads to diminished mobilization of extrahepatic substrate as evidenced by reduced FFA and lactate levels; beta-blockade increases MCR to levels seen in normal dogs during exercise alone.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

为研究儿茶酚胺在控制不佳的糖尿病中的β-肾上腺素能效应,我们对胰岛素缺乏的四氧嘧啶糖尿病(A-D)犬进行了研究,在90分钟的中等强度运动(100米/分钟,10 - 12度)期间,单独运动(C组),或联合普萘洛尔(5微克·千克⁻¹·分钟⁻¹)(P组),或联合P组和生长抑素输注(0.5微克·千克⁻¹·分钟⁻¹)(P + St组)。与C组相比,P组中,免疫反应性胰高血糖素(IRG)仅在运动50分钟后升高。然而,肝脏葡萄糖生成(Ra)正常升高。在P + St组中,IRG降至基础水平以下50%,且运动引起的Ra反应被消除。有趣的是,在P组和P + St组中,尽管胰岛素水平低30%,但葡萄糖代谢清除率(MCR)比C组中对运动不充分的MCR反应升高了400%。与C组相比,P组和P + St组期间游离脂肪酸(FFA)和乳酸急剧减少。C组血浆葡萄糖(G)无变化,但由于葡萄糖摄取增加,P组G下降超过120毫克/分升,且由于Ra减少,P + St组G下降170毫克/分升。所有组中去甲肾上腺素相似。运动90分钟时,P + St组肾上腺素和皮质醇更高,可能是低血糖的结果。总之,在控制不佳的A-D犬运动期间,β受体阻滞剂似乎不影响Ra;β受体阻滞剂导致肝外底物动员减少,表现为FFA和乳酸水平降低;β受体阻滞剂将MCR提高到正常犬单独运动时的水平。(摘要截短于250字)

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