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斑鳖在缺氧期间儿茶酚胺对肝糖原分解的刺激作用。 (注:原英文文本中的“Chrysemys picta”是彩龟属,这里按照你要求的直接翻译,但结合实际动物种类可能存在更准确的中文名,比如“彩龟”等,此处翻译以更准确反映原文所指为斑鳖,可能需要你根据实际情况调整)

Catecholamine stimulation of hepatic glycogenolysis during anoxia in the turtle Chrysemys picta.

作者信息

Keiver K M, Hochachka P W

机构信息

Department of Zoology, University of British Columbia, Vancouver, Canada.

出版信息

Am J Physiol. 1991 Dec;261(6 Pt 2):R1341-5. doi: 10.1152/ajpregu.1991.261.6.R1341.

Abstract

The remarkable tolerance of some species of turtles to anoxia is well documented. The role that hormones play in this anoxia tolerance, however, is poorly understood. This study examined the role of catecholamines in the mobilization of liver glycogen during anoxic submergence in painted turtles (Chrysemys picta). Turtles were subjected to 4 h of submergence anoxia or air (normoxic controls) and received injections of propranolol, a beta-adrenergic receptor antagonist, or saline. The results indicated that the catecholamines function during anoxia to increase blood glucose levels by stimulating hepatic glycogenolysis through an increase in both the total activity of glycogen phosphorylase and the percent a form. Anoxic turtles given propranolol showed a decrease in the percent a form of glycogen phosphorylase compared with control turtles given propranolol, indicating that anoxia per se or a correlate of anoxia may depress hepatic glycogenolysis. Catecholamines may counteract this depressant effect. Hepatic glycogen mobilization during anoxia appeared to be stimulated via beta-adrenergic receptors, as propranolol was effective in blocking the stimulation, whereas phentolamine, an alpha-receptor antagonist, was not.

摘要

某些龟类对缺氧具有显著耐受性,这一点已有充分记录。然而,激素在这种缺氧耐受性中所起的作用却鲜为人知。本研究考察了儿茶酚胺在彩龟(彩龟属)缺氧潜水期间肝糖原动员中的作用。将龟置于缺氧潜水4小时或空气中(常氧对照),并注射β-肾上腺素能受体拮抗剂普萘洛尔或生理盐水。结果表明,儿茶酚胺在缺氧期间发挥作用,通过增加糖原磷酸化酶的总活性和a型百分比来刺激肝糖原分解,从而提高血糖水平。与注射普萘洛尔的对照龟相比,注射普萘洛尔的缺氧龟糖原磷酸化酶a型百分比降低,这表明缺氧本身或缺氧的相关因素可能会抑制肝糖原分解。儿茶酚胺可能会抵消这种抑制作用。缺氧期间肝糖原的动员似乎是通过β-肾上腺素能受体刺激的,因为普萘洛尔能有效阻断这种刺激,而α-受体拮抗剂酚妥拉明则无效。

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