Hedrington Maka S, Tate Donna B, Younk Lisa M, Davis Stephen N
Department of Medicine, University of Maryland, Baltimore, MD.
Department of Medicine, University of Maryland, Baltimore, MD
Diabetes. 2015 Sep;64(9):3253-61. doi: 10.2337/db15-0212. Epub 2015 Apr 21.
The aim of this study was to determine whether antecedent stimulation of γ-aminobutyric acid (GABA) A receptors with the benzodiazepine alprazolam can blunt physiologic responses during next-day moderate (90 min) exercise in healthy man. Thirty-one healthy individuals (16 male/15 female aged 28 ± 1 year, BMI 23 ± 3 kg/m(2)) were studied during separate, 2-day protocols. Day 1 consisted of morning and afternoon 2-h hyperinsulinemic-euglycemic or hypoglycemic clamps with or without 1 mg alprazolam given 30 min before a clamp. Day 2 consisted of 90-min euglycemic cycling exercise at 50% VO2max. Despite similar euglycemia (5.3 ± 0.1 mmol/L) and insulinemia (46 ± 6 pmol/L) during day 2 exercise studies, GABA A activation with alprazolam during day 1 euglycemia resulted in significant blunting of plasma epinephrine, norepinephrine, glucagon, cortisol, and growth hormone responses. Lipolysis (glycerol, nonesterified fatty acids) and endogenous glucose production during exercise were also reduced, and glucose infusion rates were increased following prior euglycemia with alprazolam. Prior hypoglycemia with alprazolam resulted in further reduction of glucagon and cortisol responses during exercise. We conclude that prior activation of GABA A pathways can play a significant role in blunting key autonomous nervous system, neuroendocrine, and metabolic physiologic responses during next-day exercise in healthy man.
本研究的目的是确定在健康男性中,使用苯二氮䓬类药物阿普唑仑对γ-氨基丁酸(GABA)A受体进行前期刺激是否能减弱次日中等强度(90分钟)运动期间的生理反应。31名健康个体(16名男性/15名女性,年龄28±1岁,体重指数23±3kg/m²)在单独的为期2天的实验方案中接受研究。第1天包括上午和下午进行2小时的高胰岛素-正常血糖或低血糖钳夹试验,钳夹试验前30分钟给予或不给予1毫克阿普唑仑。第2天包括在50%最大摄氧量下进行90分钟的正常血糖循环运动。尽管在第2天运动研究期间血糖(5.3±0.1毫摩尔/升)和胰岛素水平(46±6皮摩尔/升)相似,但在第1天正常血糖期间用阿普唑仑激活GABA A受体导致血浆肾上腺素、去甲肾上腺素、胰高血糖素、皮质醇和生长激素反应显著减弱。运动期间的脂肪分解(甘油、非酯化脂肪酸)和内源性葡萄糖生成也减少,在阿普唑仑导致前期正常血糖后葡萄糖输注率增加。阿普唑仑导致前期低血糖会使运动期间胰高血糖素和皮质醇反应进一步降低。我们得出结论,前期激活GABA A通路在减弱健康男性次日运动期间关键的自主神经系统、神经内分泌和代谢生理反应中可发挥重要作用。