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The Kinetics of the Distribution and Breakdown of I131-Albumin in the Rabbit

机译:I131-白蛋白在兔体内分布和分解的动力学

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摘要

Rabbit plasma albumin was labelled with I131, injected intravenously, and measurements were made of the radioactivity in plasma, urine, and feces over many days. In some experiments plasma radioactivity was fractionated into I131-albumin activity and that of labelled breakdown products. Curves of these radioactivities were compared with corresponding curves predicted by four mathematical models. Each model included a vascular and extravascular albumin compartment in transfer equilibrium, a radioactive breakdown products compartment, and an excretion compartment; but model A supposed I131-albumin catabolism to occur within the vascular system, model B within the extravascular compartment, model C within both, and model D within a separate compartment receiving albumin for catabolism from the plasma. The experimental data were reasonably well predicted by models A and C. However, model D, though data were insufficient for its complete validation, gave the best predictions and agrees with present knowledge of albumin catabolism. Various methods for calculating the rate of albumin breakdown are discussed. When calculations are based solely on the plasma radioactivity data, identical rates are predicted by models A, C, and D. When, as a valuable independent method, catabolism is calculated from plasma and excreted radioactivities, an error (ordinarily small) is incurred unless account is taken of the rate of passage of I131-albumin to the breakdown sites, and of the rate of excretion of the radioactive breakdown products.
机译:兔血浆白蛋白用I 131 标记,静脉注射,并测量了血浆,尿液和粪便在多天内的放射性。在某些实验中,血浆放射性被分为I 131 -白蛋白活性和标记的分解产物。将这些放射性的曲线与通过四个数学模型预测的相应曲线进行比较。每个模型都包括一个处于转移平衡状态的血管和血管外白蛋白区,一个放射性分解产物区和一个排泄区。但是模型A假设I 131 -白蛋白分解代谢会在血管系统内发生,模型B在血管外腔内发生,模型C在两者内都发生,模型D在单独的腔内接受白蛋白从血浆中分解代谢。模型A和模型C对实验数据进行了合理的预测。然而,模型D尽管数据不足以对其进行完全验证,但给出了最佳预测,并且与白蛋白分解代谢的现有知识相一致。讨论了各种计算白蛋白分解率的方法。当仅基于血浆放射性数据进行计算时,模型A,C和D会预测相同的速率。作为有价值的独立方法,根据血浆和排泄的放射性计算分解代谢时,除非产生误差(通常很小),否则考虑了I 131 -白蛋白通向击穿部位的速率,以及放射性击穿产物的排泄速率。

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