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胸腺五肽及其类似物在水溶液中的等温与非等温分解

Isothermal and nonisothermal decomposition of thymopentin and its analogs in aqueous solution.

作者信息

Lee M L, Stavchansky S

机构信息

The University of Texas at Austin, Pharmaceutics Division, College of Pharmacy, 78712, USA.

出版信息

Pharm Res. 1998 Nov;15(11):1702-7. doi: 10.1023/a:1011952511091.

Abstract

PURPOSE

The degradation kinetics of thymopentin (RKDVY) and its analogs (RKDVW and RPDVY) in aqueous solution was studied by isothermal and nonisothermal methods.

METHODS

The isothermal decomposition of thymopentin and its analogs was investigated as a function of pH (2-10), temperature (37, 57, and 80 degrees C) and ionic strength (micro = 0.02 to 1). Nonisothermal decomposition studies were performed using a linear temperature programmer. The temperature increasing rate was set to 0.25 degrees C per hour and the temperature interval varied from 40 to 88 degrees C.

RESULTS

The decomposition of thymopentin and its analogs followed first order kinetics. The dependence of the rate constant on temperature followed a linear Arrhenius plot. This indicated that the degradation mechanism of thymopentin and its analogs might be the same within the temperature range studied. The energies of activation were found to be in close agreement for the isothermal and nonisothermal studies, suggesting that the nonisothermal studies may save considerable amount of time in the early stages of drug development. The logK-pH profile of thymopentin suggests that maximum stability is achieved in the pH range of 6-8.

CONCLUSIONS

These results indicate that the nonisothermal methodology provides an attractive alternative to isothermal methods, as it requires a much lower amount of both material and time, to determine the peptide stability and to estimate the shelf-life for peptide pharmaceutical preparations.

摘要

目的

采用等温法和非等温法研究胸腺五肽(RKDVY)及其类似物(RKDVW和RPDVY)在水溶液中的降解动力学。

方法

研究胸腺五肽及其类似物在不同pH值(2 - 10)、温度(37、57和80℃)和离子强度(μ = 0.02至1)条件下的等温分解情况。使用线性温度程序器进行非等温分解研究。升温速率设定为每小时0.25℃,温度范围从40℃至88℃。

结果

胸腺五肽及其类似物的分解遵循一级动力学。速率常数与温度的关系符合线性阿伦尼乌斯图。这表明在所研究的温度范围内,胸腺五肽及其类似物的降解机制可能相同。等温研究和非等温研究得到的活化能相近,这表明非等温研究在药物研发早期阶段可节省大量时间。胸腺五肽的logK - pH曲线表明,在pH值6 - 8范围内稳定性最高。

结论

这些结果表明,非等温方法为等温方法提供了一种有吸引力的替代方法,因为它在确定肽类药物制剂的稳定性和估计保质期时,所需的材料和时间要少得多。

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