Oliyai R, Stella V J
Department of Pharmaceutical Chemistry, University of Kansas, Lawrence 66045.
Pharm Res. 1992 May;9(5):617-22. doi: 10.1023/a:1015841824760.
The kinetics of isomerization of cyclosporin A to isocyclosporin A were studied in various nonaqueous solvents as a function of temperature and added methanesulfonic acid. The rate of isomerization was found to be acid-catalyzed over the acid concentration range studied. The choice of organic solvent significantly altered the rate of isomerization. For a series of alcohols, the rate was enhanced with increasing dielectric constant of the media, however, this correlation did not hold upon introduction of the dipolar aprotic solvent, tetrahydrofuran. Conversion of cyclosporin A to isocyclosporin A in tetrahydrofuran was found to contain diminished side reactions as compared to alcoholic solvents. The rate of conversion of isocyclosporin A to cyclosporin A was determined in aqueous buffers as a function of pH, buffer concentration, and temperature. The rates of conversion were extremely rapid compared to the forward reaction. Based on the pH dependencies of dilute solution reactivities, isocyclosporin A displayed a kinetically generated pKa value of 6.9 for the secondary amine moiety. From pH 8 to pH 10 the pH-rate profile plot is linear, with a slope approximately equal to unity, indicating apparent hydroxide ion catalysis. The break in pH-rate profile suggests a change in the rate-determining step upon protonation of isocyclosporin A. The rate of isomerization in plasma was comparable with that found in a pH 7.4 buffer solution, indicating that plasma proteins do not significantly alter the isomerization kinetics of isocyclosporin A to cyclosporin A.
在各种非水溶剂中,研究了环孢素A异构化为异环孢素A的动力学,该动力学是温度和添加甲磺酸的函数。在所研究的酸浓度范围内,发现异构化速率是酸催化的。有机溶剂的选择显著改变了异构化速率。对于一系列醇类,随着介质介电常数的增加,速率加快,然而,引入偶极非质子溶剂四氢呋喃后,这种相关性不成立。与醇类溶剂相比,发现环孢素A在四氢呋喃中转化为异环孢素A时副反应减少。在水性缓冲液中测定了异环孢素A转化为环孢素A的速率,该速率是pH、缓冲液浓度和温度的函数。与正向反应相比,转化速率极快。基于稀溶液反应活性的pH依赖性,异环孢素A二级胺部分的动力学生成pKa值为6.9。从pH 8到pH 10,pH-速率分布图呈线性,斜率约等于1,表明存在明显的氢氧根离子催化作用。pH-速率分布图中的断点表明异环孢素A质子化后速率决定步骤发生了变化。血浆中的异构化速率与pH 7.4缓冲溶液中的异构化速率相当,表明血浆蛋白不会显著改变异环孢素A转化为环孢素A的异构化动力学。