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描述人体血浆胰岛素 - 131I 消失情况的三室模型的推导。

Derivation of a three compartment model describing disappearance of plasma insulin-131-I in man.

作者信息

Silvers A, Swenson R S, Farquhar J W, Reaven G M

出版信息

J Clin Invest. 1969 Aug;48(8):1461-9. doi: 10.1172/JCI106112.

Abstract

Insulin-(131)I was administered intravenously to normal subjects, to patients with maturity-onset diabetes and normal renal function, and to nondiabetic patients with renal failure. The ensuing plasma disappearance curves of immunoprecipitable radioactive insulin were determined, and these data were analyzed in a variety of ways. Firstly, fractional irreversible loss rates of insulin from plasma were calculated and found to be greatly diminished in patients with renal failure (t((1/2)) = 39 min), as compared with normal (t((1/2)) = 15 min) and diabetic subjects (t((1/2)) = 12 min). Secondly, plasma insulin-(131)I disappearance curves were resolved into sums of three exponentials by the method of "peeling," and values for the resultant three slopes and half-lives were determined. Patients with normal renal function had similar values for all parameters, while those patients with renal failure were differentiated on the basis of the slope of the last component, with a prolongation of its half-life to 275 min (approximately twice normal). Finally, a three pool model was formulated to describe the kinetics of plasma insulin disappearance in man, representing plasma (pool 1), interstitial fluid (pool 2), and all tissues in which insulin is utilized and degraded (pool 3). The proposed model adequately describing the disappearance curves of insulin-(131)I observed in all patients indicated that volumes (per cent body weight) of pool 1 (4.04) and pool 2 (10.11), calculated on the basis of the model and the experimental data, corresponded closely to estimates of plasma and interstitial fluid volumes obtained by independent means. It also demonstrated that patients with renal failure were characterized by a decreased removal rate of insulin from pool 3 and an increased recycling rate of insulin from pool 3 to pool 2. It is concluded that the proposed model represents a reasonable description of the kinetics of insulin distribution and degradation, and that its use provides quantitative insights into the physiology of insulin metabolism.

摘要

将胰岛素 -(131)I静脉注射给正常受试者、肾功能正常的成年发病型糖尿病患者以及患有肾衰竭的非糖尿病患者。测定随后免疫沉淀放射性胰岛素的血浆消失曲线,并以多种方式分析这些数据。首先,计算胰岛素从血浆中的分数不可逆损失率,发现肾衰竭患者(t(1/2)= 39分钟)与正常受试者(t(1/2)= 15分钟)和糖尿病患者(t(1/2)= 12分钟)相比,该损失率大大降低。其次,通过“剥离”方法将血浆胰岛素 -(131)I消失曲线分解为三个指数之和,并确定所得三个斜率和半衰期的值。肾功能正常的患者所有参数值相似,而肾衰竭患者则根据最后一个成分的斜率进行区分,其半衰期延长至275分钟(约为正常的两倍)。最后,建立了一个三室模型来描述人体血浆胰岛素消失的动力学,代表血浆(第1室)、组织间液(第2室)以及所有利用和降解胰岛素的组织(第3室)。所提出的模型能够充分描述在所有患者中观察到的胰岛素 -(131)I消失曲线,这表明根据该模型和实验数据计算得出的第1室(4.04)和第2室(10.11)的体积(占体重百分比)与通过独立方法获得的血浆和组织间液体积估计值密切相符。该模型还表明,肾衰竭患者的特征是胰岛素从第3室的清除率降低以及胰岛素从第3室到第2室的再循环率增加。得出的结论是,所提出的模型合理地描述了胰岛素分布和降解的动力学,并且其应用为胰岛素代谢生理学提供了定量见解。

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本文引用的文献

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The role of the kidney in the disposal of insulin in rats.
Diabetes. 1963 Mar-Apr;12:155-61. doi: 10.2337/diab.12.2.155.

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