Uekama K, Fujinaga T, Hirayama F, Otagiri M, Kurono Y, Ikeda K
J Pharm Pharmacol. 1982 Oct;34(10):627-30. doi: 10.1111/j.2042-7158.1982.tb04690.x.
The effects of three cyclodextrins (alpha-, beta-, gamma-CyD) on the acid hydrolysis of digoxin were examined. From the high performance liquid chromatographic tracing of each of the four components (digoxin, bisdigitoxoside, monodigitoxoside, digoxigenin) in reaction mixtures, the individual rate constants (K1-K6) were determined by analogue computer simulation. The hydrolysis was suppressed by CyDs in the order of beta-great than gamma-greater than alpha-greater than-CyD, where beta-CyD inhibited the appearance rates of digoxigenin (k3, K5, and K6) significantly. In the dissolution study of digoxin tablets, the increase in dissolution rate and decrease in acid hydrolysis were attained by inclusion complexation. The data are presented suggesting that CyDs are useful for improving the oral bioavailability of digoxin.
研究了三种环糊精(α-、β-、γ-环糊精)对地高辛酸水解的影响。通过对反应混合物中四种成分(地高辛、双去氧糖地高辛、单去氧糖地高辛、地高辛配基)的高效液相色谱追踪,采用模拟计算机模拟确定了各个速率常数(K1-K6)。环糊精对地高辛酸水解的抑制作用顺序为:β-环糊精>γ-环糊精>α-环糊精,其中β-环糊精显著抑制了地高辛配基的生成速率(k3、K5和K6)。在地高辛片的溶出度研究中,包合络合作用提高了溶出速率并降低了酸水解程度。研究数据表明,环糊精有助于提高地高辛的口服生物利用度。