首页> 外文期刊>International Journal of Pharmaceutics >Bile salt composition is secondary to bile salt concentration in determining hydrocortisone and progesterone solubility in intestinal mimetic fluids
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Bile salt composition is secondary to bile salt concentration in determining hydrocortisone and progesterone solubility in intestinal mimetic fluids

机译:在确定氢化可的松和孕酮在肠道模拟液中的溶解度时,胆汁盐成分仅次于胆汁盐浓度

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Simulated intestinal fluids (SIFs) used to assay the solubility of orally administered drugs are typically based on a single bile sa sodium taurocholate (STC). The aim of this study was to develop mimetic intestinal fluids with a closer similarity to physiological fluids than those reported to date by developing a mixed bile salt (MBS) system (STC, sodium glycodeoxycholate, sodium deoxycholate; 60:39:1) with different concentrations of lecithin, the preponderant intestinal phospholipid. Hydrocortisone and progesterone were used as model drugs to evaluate systematically the influence of SIF composition on solubility. Increasing total bile salt concentration from 0 to 30 mM increased hydrocortisone and progesterone solubility by 2- and ~25-fold, respectively. Accordingly, higher solubilities were measured in the fed-state compared to the fasted-state SIFs. Progesterone showed the greatest increases in solubility in STC and MBS systems (2-7-fold) compared to hydrocortisone (no significant change; P > 0.05) as lecithin concentration was increased. Overall, MBS systems gave similar solubility profiles to STC. In conclusion, the addenda of MBS and lecithin were found to be secondary to the influence of BS concentration. These data provide a foundation for the design of more bio-similar media for pivotal decision-guiding assays in drug development and quality control settings.
机译:用于测定口服药物溶解度的模拟肠液(SIF)通常基于单一胆汁盐;牛磺胆酸钠(STC)。这项研究的目的是通过开发混合胆汁盐(MBS)系统(STC,糖脱氧胆酸钠,脱氧胆酸钠; 60:39:1)来开发与目前为止报道的生理液更相似的模拟肠液。卵磷脂的浓度,主要是肠道磷脂。氢化可的松和孕酮用作模型药物,以系统地评估SIF组成对溶解度的影响。将总胆汁盐浓度从0增加到30 mM,氢化可的松和孕酮的溶解度分别增加2倍和〜25倍。因此,与禁食状态的SIF相比,在进料状态下测得的溶解度更高。随着卵磷脂浓度的增加,与氢化可的松相比,孕酮在STC和MBS系统中的溶解度增加最大(2-7倍)(无显着变化; P> 0.05)。总体而言,MBS系统具有与STC相似的溶解度曲线。总之,发现MBS和卵磷脂的附加物次于BS浓度的影响。这些数据为在药物开发和质量控制环境中进行关键决策指导测定的更多生物相似介质的设计提供了基础。

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