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先前对雄性清醒大鼠进行短期中枢神经系统给予雌激素和孕酮会改变其对低血糖的对抗调节反应。

Antecedent short-term central nervous system administration of estrogen and progesterone alters counterregulatory responses to hypoglycemia in conscious male rats.

作者信息

Sandoval Darleen A, Gong Bin, Davis Stephen N

机构信息

Univ. of Cincinnati, 2170 E. Galbraith Rd., Bldg. E., Rm. 317, Cincinnati, OH 45237, USA.

出版信息

Am J Physiol Endocrinol Metab. 2007 Dec;293(6):E1511-6. doi: 10.1152/ajpendo.00340.2007. Epub 2007 Oct 16.

Abstract

The aim of this study was to test the hypothesis that antecedent short-term administration of estradiol or progesterone into the central nervous system (CNS) reduces levels of neuroendocrine counterregulatory hormones during subsequent hypoglycemia. Conscious unrestrained male Sprague-Dawley rats were studied during randomized 2-day experiments. Day 1 consisted of an 8-h lateral ventricle infusion of estradiol (1 mug/mul; n = 9), progesterone (1 mug/mul; n = 9), or saline (0.2 mul/min; n = 10). On day 2, a 2-h hyperinsulinemic (30 pmol.kg(-1).min(-1)) hypoglycemic (2.9 +/- 0.2 mM) clamp was performed on all rats. Central administration of estradiol on day 1 resulted in significantly lower plasma epinephrine levels during hypoglycemia compared with saline, whereas central administration of progesterone resulted in increased levels of plasma norepinephrine and decreased levels of corticosterone both at baseline and during hypoglycemia. Glucagon responses during hypoglycemia were unaffected by prior administration of estradiol or progesterone. Endogenous glucose production following day 1 estradiol was significantly lower during day 2 hypoglycemia, and consequently, the glucose infusion rate to maintain the glycemia was significantly greater after estradiol administration compared with saline. These data suggest that 1) CNS administration of both female reproductive hormones can have rapid effects in modulating levels of counterregulatory hormones during subsequent hypoglycemia in conscious male rats, 2) forebrain administration of reproductive hormones can significantly reduce pituitary adrenal and sympathetic nervous system drive during hypoglycemia, 3) reproductive steroid hormones produce differential effects on sympathetic nervous system activity during hypoglycemia, and 4) reduction of epinephrine resulted in significantly blunted metabolic counterregulatory responses during hypoglycemia.

摘要

本研究的目的是验证以下假设

预先向中枢神经系统(CNS)短期给予雌二醇或孕酮可降低随后低血糖期间神经内分泌对抗调节激素的水平。在为期2天的随机实验中,对清醒、不受束缚的雄性Sprague-Dawley大鼠进行了研究。第1天包括向侧脑室输注8小时的雌二醇(1微克/微升;n = 9)、孕酮(1微克/微升;n = 9)或生理盐水(0.2微升/分钟;n = 10)。在第2天,对所有大鼠进行了2小时的高胰岛素血症(30皮摩尔·千克-1·分钟-1)低血糖(2.9±0.2毫摩尔)钳夹实验。与生理盐水相比,第1天中枢给予雌二醇导致低血糖期间血浆肾上腺素水平显著降低,而中枢给予孕酮导致基线和低血糖期间血浆去甲肾上腺素水平升高,皮质酮水平降低。低血糖期间的胰高血糖素反应不受先前给予雌二醇或孕酮的影响。第1天给予雌二醇后,第2天低血糖期间内源性葡萄糖生成显著降低,因此,与生理盐水相比,给予雌二醇后维持血糖所需的葡萄糖输注速率显著更高。这些数据表明:1)在清醒雄性大鼠随后的低血糖期间,中枢给予两种雌性生殖激素均可快速调节对抗调节激素的水平;2)前脑给予生殖激素可显著降低低血糖期间垂体-肾上腺和交感神经系统的驱动;3)生殖甾体激素在低血糖期间对交感神经系统活动产生不同影响;4)肾上腺素的减少导致低血糖期间代谢对抗调节反应明显减弱。

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