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Enhancement of solubility, dissolution and bioavailability of ibuprofen in solid dispersion systems.

机译:布洛芬在固体分散体系中的溶解度,溶解度和生物利用度的提高。

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摘要

To improve its solubility, dissolution, and bioavailability; Ibuprofen-polyethylene glycol 8000 (PEG 8000) solid dispersions (SDs) with different drug loadings were prepared, characterized by scanning electron microscopy (SEM) and differential scanning calorimetry (DSC), and evaluated for solubility, in-vitro release, and oral bioavailability of ibuprofen in rats. Loss of individual surface properties during melting and solidification as revealed by SEM micrographs indicated the formation of effective SDs. Absence or shifting towards the lower melting temperature of the drug peak in SDs and physical mixtures in DSC study indicated the possibilities of drug-polymer interactions. Quicker release of ibuprofen from SDs in rat intestine resulted in a significant increase in AUC and C(max), and a significant decrease in T(max) over pure ibuprofen. Preliminary results of this study suggested that the preparation of ibuprofen SDs using PEG 8000 as a meltable hydrophilic polymer carrier could be a promising approach to improve solubility, dissolution and bioavailability of ibuprofen.
机译:改善其溶解度,溶解度和生物利用度;制备了具有不同载药量的布洛芬-聚乙二醇8000(PEG 8000)固体分散体(SD),通过扫描电子显微镜(SEM)和差示扫描量热法(DSC)进行了表征,并评估了其溶解度,体外释放和口服生物利用度布洛芬在大鼠中的含量。 SEM显微照片显示,熔融和凝固过程中单个表面性能的损失表明形成了有效的SD。在SD和DSC研究中,药物混合物和物理混合物中药物峰的熔融温度不存在或朝较低熔点方向移动表明药物-聚合物相互作用的可能性。与纯布洛芬相比,大鼠肠道中布洛芬从SD释放的更快导致AUC和C(max)显着增加,T(max)显着降低。这项研究的初步结果表明,使用PEG 8000作为可熔融亲水性聚合物载体制备布洛芬SD可能是提高布洛芬溶解度,溶解度和生物利用度的一种有前途的方法。

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