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拮抗剂[精氨酸6,D-色氨酸7,9,甲基苯丙氨酸8]-P物质[6-11]在水溶液中的降解动力学

Degradation kinetics of antagonist [Arg6, D-Trp7,9, MePhe8]-substance P [6-11] in aqueous solutions.

作者信息

Reubsaet J L, Beijnen J H, Bult A, van der Houwen O A, Teeuwsen J, Koster E H, Underberg W J

机构信息

Department of Pharmaceutical Analysis, Faculty of Pharmacy, Utrecht University, The Netherlands.

出版信息

Anal Biochem. 1995 May 20;227(2):334-41. doi: 10.1006/abio.1995.1289.

Abstract

Antagonist [Arg6, D-Trp7,9, MePhe8]-substance P {6-11} was subjected to a systematic stability study in which kinetic parameters were obtained for the degradation of this hexapeptide under several well-defined conditions. The influences of pH, temperature, ionic strength, buffer concentration, and initial concentration of the peptide on the reaction rate constant, kobs, were investigated with a stability-indicating reversed-phase high-performance liquid chromatographic system. From the pH-log kobs degradation profile, obtained at 63 degrees C, it appears that antagonist [Arg6, D-Trp7,9, MePhe8]-substance P {6-11} shows its maximum stability around pH 4.2. The half-life at this pH and temperature is 150 days. In both the hydroxyl- and proton-catalyzed parts of the pH-log kobs degradation profile, the influence of temperature was investigated and Arrhenius plots were constructed. The activation energies in both parts were comparable; however, the frequency factor in the hydroxyl-catalyzed part was 3.3 x 10(4) times higher than in the proton-catalyzed part. Eyring analysis of the data reveals that in both acidic and alkaline media the overall degradation was endotherm (delta H++ as well as delta G++ positive between 273 and 373 degrees K) and the entropy was negative. Increasing ionic strengths in acidic media causes an increase in kobs, while in alkaline media the kobs decreases with increasing ionic strength. Increasing buffer concentrations of acetate, phosphate, and carbonate led to an increase of kobs values. Drug concentrations up to 1 mg/ml at pH 10.8 and constant temperature and ionic strength have no influence on the overall degradation rate. At higher concentrations, above 1 mg/ml, kobs decreases.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对拮抗剂[Arg6, D-Trp7,9, MePhe8]-P物质{6-11}进行了系统的稳定性研究,在几个明确的条件下获得了该六肽降解的动力学参数。使用稳定性指示反相高效液相色谱系统研究了pH、温度、离子强度、缓冲液浓度和肽的初始浓度对反应速率常数kobs的影响。从63℃下获得的pH-log kobs降解曲线来看,拮抗剂[Arg6, D-Trp7,9, MePhe8]-P物质{6-11}在pH 4.2左右显示出最大稳定性。在此pH和温度下的半衰期为150天。在pH-log kobs降解曲线的羟基催化和质子催化部分,均研究了温度的影响并绘制了阿仑尼乌斯图。两部分的活化能相当;然而,羟基催化部分的频率因子比质子催化部分高3.3×10(4)倍。对数据的艾林分析表明,在酸性和碱性介质中,总体降解均为吸热反应(在273至373K之间,ΔH++以及ΔG++均为正值)且熵为负值。在酸性介质中增加离子强度会导致kobs增加,而在碱性介质中kobs随离子强度增加而降低。增加乙酸盐、磷酸盐和碳酸盐的缓冲液浓度会导致kobs值增加。在pH 10.8、恒温及恒定离子强度下,药物浓度高达1mg/ml对总体降解速率无影响。在高于1mg/ml的更高浓度下,kobs降低。(摘要截断于250字)

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