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依托泊苷的处方前研究:确定导致依托泊苷口服生物利用度低且不稳定的物理化学特性。

Preformulation study of etoposide: identification of physicochemical characteristics responsible for the low and erratic oral bioavailability of etoposide.

作者信息

Shah J C, Chen J R, Chow D

机构信息

Department of Pharmaceutics, College of Pharmacy, University of Houston, Texas 77030.

出版信息

Pharm Res. 1989 May;6(5):408-12. doi: 10.1023/a:1015935532725.

Abstract

Preformulation studies of etoposide, including pH-solubility profile, partition coefficient, pH-stability profile, and in vitro dissolution kinetics, were conducted to identify the responsible factor(s) for the low and erratic oral bioavailability of etoposide. A stability-indicating high-performance liquid chromatographic (HPLC) assay was used for drug monitoring. The equilibrium aqueous solubility of etoposide at 37 degrees C was low, 148.5-167.25 micrograms/ml, and did not vary over the pH range of 2 to 6. The pH-stability profile indicated rapid degradation of etoposide at pH 1.3 and 10, with degradation half-lives of 2.88 and 3.83 hr, respectively, at 25 degrees C. The half-life at pH 7.30 was 27.72 days. Maximum stability at 25 degrees C was reached at pH 5 to 6.15, with half-lives of 63 and 49.5 days, respectively. The intrinsic dissolution rate, determined on a Wood's apparatus, was slow, 0.0094 mg/min/cm2, while the etoposide partition coefficient between n-octanol and water was 9.94. Therefore, etoposide absorption appears to be dissolution rate limited rather than permeation rate limited. The low equilibrium aqueous solubility, slow intrinsic dissolution rate, and chemical instability at pH 1.3 could account for the low oral bioavailability.

摘要

对依托泊苷进行了处方前研究,包括pH-溶解度曲线、分配系数、pH-稳定性曲线和体外溶出动力学,以确定导致依托泊苷口服生物利用度低且不稳定的相关因素。采用稳定性指示高效液相色谱(HPLC)法进行药物监测。依托泊苷在37℃时的平衡水溶解度较低,为148.5 - 167.25微克/毫升,在pH值2至6的范围内无变化。pH-稳定性曲线表明,依托泊苷在pH 1.3和10时迅速降解,在25℃下的降解半衰期分别为2.88小时和3.83小时。在pH 7.30时的半衰期为27.72天。在25℃下,pH值为5至6.15时达到最大稳定性,半衰期分别为63天和49.5天。在伍德装置上测定的固有溶出速率较慢,为0.0094毫克/分钟/平方厘米,而依托泊苷在正辛醇和水之间的分配系数为9.94。因此,依托泊苷的吸收似乎受溶出速率限制而非渗透速率限制。低平衡水溶解度、缓慢的固有溶出速率以及在pH 1.3时的化学不稳定可能是口服生物利用度低的原因。

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