Yoshida A, Yamamoto M, Irie T, Hirayama F, Uekama K
Chem Pharm Bull (Tokyo). 1989 Apr;37(4):1059-63. doi: 10.1248/cpb.37.1059.
3-Hydroxypropyl- and 2,3-dihydroxypropyl-beta-cyclodextrins (3-HP- and DHP-beta-CyDs) with different degrees of substitution (D.S.) were prepared and their pharmaceutical properties were investigated. The aqueous solubility of 3-HP- and DHP-beta-CyDs was much higher than that of the parent beta-CyD and the dissolution of DHP-beta-CyD in water was endothermic. The acid- and alpha-amylase-catalyzed hydrolysis rates of 3-HP- and DHP-beta-CyDs were slower than those of the parent beta-CyD. The hemolytic activity (human erythrocytes) and local irritancy (rabbit muscle) of DHP-beta-CyD were considerably less than those of natural, methylated or other hydroxyalkylated beta-CyDs, and decreased with increasing D.S. The ability of the hydroxyalkylated beta-CyDs to remove cholesterol and proteins from human erythrocytes decreased with increasing D.S., and correlated well with their hemolytic activity. 3-HP-beta-CyD was a more effective solubilizer for poorly water-soluble drugs than the parent beta-CyD, and its stabilizing effect on chemically instable drugs was higher than that of the parent beta-CyD. The above data suggest a considerable pharmaceutical potential of 3-HP- and DHP-beta-CyDs as parenteral carriers.
制备了具有不同取代度(D.S.)的3-羟丙基-β-环糊精和2,3-二羟丙基-β-环糊精(3-HP-β-CyD和DHP-β-CyD),并研究了它们的药学性质。3-HP-β-CyD和DHP-β-CyD的水溶性远高于母体β-环糊精,且DHP-β-CyD在水中的溶解是吸热的。3-HP-β-CyD和DHP-β-CyD的酸催化水解速率和α-淀粉酶催化水解速率均比母体β-环糊精慢。DHP-β-CyD的溶血活性(人红细胞)和局部刺激性(兔肌肉)明显低于天然的、甲基化的或其他羟烷基化的β-环糊精,且随取代度增加而降低。羟烷基化β-环糊精从人红细胞中去除胆固醇和蛋白质的能力随取代度增加而降低,且与其溶血活性密切相关。3-HP-β-CyD对难溶性药物的增溶效果比母体β-环糊精更有效,且其对化学不稳定药物的稳定作用高于母体β-环糊精。上述数据表明3-HP-β-CyD和DHP-β-CyD作为注射用载体具有相当大的药学潜力。