Physiotherapy Department, Pontifícia Universidade Católica, Belo Horizonte, Brazil.
Department of Physiology and Biophysics, Institute of Biological Sciences, Federal University of Minas Gerais, Belo Horizonte, Brazil.
Pharmacology. 2022;107(1-2):46-53. doi: 10.1159/000519807. Epub 2021 Nov 17.
The aim of this study was to assess the influence of adrenomedullary secretion on the plasma glucose, lactate, and free fatty acids (FFAs) during running exercise in rats submitted to intracerebroventricular (i.c.v.) injection of physostigmine (PHY). PHY i.c.v. was used to activate the central cholinergic system.
Wistar rats were divided into sham-saline (sham-SAL), sham-PHY, adrenal medullectomy-SAL, and ADM-PHY groups. The plasma concentrations of glucose, lactate, and FFAs were determined immediately before and after i.c.v. injection of 20 μL of SAL or PHY at rest and during running exercise on a treadmill.
The i.c.v. injection of PHY at rest increased plasma glucose in the sham group, but not in the ADM group. An increase in plasma glucose, lactate, and FFAs mobilization from adipose tissue was observed during physical exercise in the sham-SAL group; however, the increase in plasma glucose was greater with i.c.v. PHY. Moreover, the hyperglycemia induced by exercise and PHY in the ADM group were blunted by ADM, whereas FFA mobilization was unaffected.
These results indicate that there is a dual metabolic control by which activation of the central cholinergic pathway increases plasma glucose but not FFA during rest and exercise, and that this hyperglycemic response is dependent on adrenomedullary secretion.
本研究旨在评估在向大鼠脑室内(i.c.v.)注射毒扁豆碱(PHY)后,去甲肾上腺素分泌对运动时血糖、乳酸和游离脂肪酸(FFAs)的影响。PHY i.c.v. 用于激活中枢胆碱能系统。
Wistar 大鼠分为假手术生理盐水(sham-SAL)、假手术毒扁豆碱(sham-PHY)、肾上腺髓质切除术生理盐水(adrenomedullectomy-SAL)和肾上腺髓质切除术毒扁豆碱(ADM-PHY)组。在休息和在跑步机上进行运动时,立即在 i.c.v. 注射 20 μL 的 SAL 或 PHY 之前和之后,测定血浆葡萄糖、乳酸和 FFAs 的浓度。
在休息时,i.c.v. 注射 PHY 会增加 sham 组的血糖,但不会增加 ADM 组的血糖。在 sham-SAL 组中,运动期间观察到血糖、乳酸和脂肪组织中 FFAs 的动员增加;然而,与 i.c.v. PHY 相比,血糖升高更为明显。此外,ADM 可减轻 ADM 组运动和 PHY 引起的高血糖,但对 FFA 动员无影响。
这些结果表明,存在双重代谢控制,即中枢胆碱能途径的激活在休息和运动时增加血糖而不增加 FFA,并且这种高血糖反应依赖于去甲肾上腺素的分泌。