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[一种测量鳗鱼(欧洲鳗鲡)皮质醇代谢清除率和分泌率的方法]

[A method to measure the rate of metabolic clearance and secretion of cortisol in the eel (Anguilla anguilla L.)].

作者信息

Leloup-Hatey J

出版信息

Can J Physiol Pharmacol. 1976 Jun;54(3):262-76.

PMID:953857
Abstract

Classical methods for the analysis of steroid dynamics were adapted to measure the metabolic clearance rate and the secretion rate of cortisol in the European eel using (1, 2-3H) cortisol as a tracer. 1. Measurements were made whilst the eels were in the steady state; stresses which usually result from anaesthesia and handling were avoided by chronic catheterization of the blood vessels of the swim bladder. In this way, the plasma cortisol level were constant; thus, it was possible to obtain valid measurements of the cortisol secretion rate knowing the metabolic clearance rate and the plasma cortisol level. 2. In the eel, cortisol and cortisone together form a chemical compartment', derived originally from cortisol secreted by the interrenal gland and subsequently transformed partially into cortisone in the plasma and maintained thenceforth in dynamic reversible equilibrium. Consequently, the metabolic clearance rate of cortisol has been calculated from the known changes in concentration of both (1, 2-3H) cortisol and (1, 2-3H)cortisone in the plasma deduced from dichloromethane-extractable plasma radioactivity, 72% of which is always attributable to these two steroids from the moment that the radioactivity begins to decline regularly as a function of time (15-30 min after the injection). 3. After a single injection of (1,2-3H) cortisol, the interpretation of the disappearance curve by compartmental analysis is complicated by the delay of tracer distribution and by the evident variability in the initial portion of the curve. Disappearance curves have accordingly been analysed in a more rigorous fashion either by integrating the area under each curve which allows one to calculate individually the metabolic clearance rates, or by integrating according to Normand, M., and Fortier, C. (1970. Can. J. Physiol. Pharmacol. 48, 274-281) which allows one statistical treatment of data. 4. Estimates of the metabolic clearance rate of cortisol were made in a satisfactory manner by either one of the two integration methods. They were also very similar to estimates obtained by prolonged infusion of (1, 2-3H) cortisol to constant specific activity into eels maintained under identical experimental conditions.

摘要

采用(1, 2 - 3H)皮质醇作为示踪剂,将分析类固醇动力学的经典方法进行调整,以测量欧洲鳗鲡皮质醇的代谢清除率和分泌率。1. 在鳗鱼处于稳态时进行测量;通过对鳔血管进行慢性插管,避免了通常由麻醉和处理引起的应激。通过这种方式,血浆皮质醇水平保持恒定;因此,在已知代谢清除率和血浆皮质醇水平的情况下,能够获得皮质醇分泌率的有效测量值。2. 在鳗鱼体内,皮质醇和可的松共同构成一个“化学区室”,最初源自肾上腺皮质分泌的皮质醇,随后部分在血浆中转化为可的松,并从此维持动态可逆平衡。因此,皮质醇的代谢清除率是根据血浆中(1, 2 - 3H)皮质醇和(1, 2 - 3H)可的松浓度的已知变化计算得出的,这些变化由二氯甲烷可萃取的血浆放射性推断而来,从放射性开始随时间有规律下降(注射后15 - 30分钟)起,其中72%始终归因于这两种类固醇。3. 单次注射(1,2 - 3H)皮质醇后,通过隔室分析解释消失曲线会因示踪剂分布延迟和曲线初始部分明显的变异性而变得复杂。因此,消失曲线通过更严格的方式进行分析,要么通过对每条曲线下的面积进行积分,从而能够分别计算代谢清除率,要么按照Normand, M.和Fortier, C.(1970. Can. J. Physiol. Pharmacol. 48, 274 - 281)的方法进行积分,该方法允许对数据进行统计学处理。4. 通过两种积分方法中的任何一种,都能以令人满意的方式估算皮质醇的代谢清除率。这些估算值也与在相同实验条件下,通过向鳗鱼长时间输注(1, 2 - 3H)皮质醇至恒定比活度所获得的估算值非常相似。

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