首页> 外文期刊>International Journal of Nanomedicine >3-aminopropyl functionalized magnesium phyllosilicate as an organoclay based drug carrier for improving the bioavailability of flurbiprofen
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3-aminopropyl functionalized magnesium phyllosilicate as an organoclay based drug carrier for improving the bioavailability of flurbiprofen

机译:3-氨基丙基官能化镁作为基于有机粘土的药物载体,用于改善Flbiprofen的生物利用度

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Abstract: This study aimed to develop an oral delivery system using clay-based organic–inorganic hybrid materials to improve the bioavailability of the drug, flurbiprofen, which is poorly soluble in water. 3-aminopropyl functionalized magnesium phyllosilicate (AMP clay) was synthesized by a one-pot direct sol-gel method, and then flurbiprofen (FB) was incorporated into AMP clay (FB-AMP) at different drug/clay ratios. The structural characteristics of AMP and FB-AMP formulation were confirmed by X-ray diffraction, Fourier transform infrared spectroscopy, and transmission electron microscopy. Among tested formulations, FB-AMP(3), dramatically increased the dissolution of FB and achieved rapid and complete drug release within 2 hours. More than 60% of FB was released from FB-AMP(3) after 30 minutes; the drug was completely dissolved in the water within 2 hours. Under the acidic condition (pH 1.2), FB-AMP(3) also increased the dissolution of FB by up to 47.1% within 1 hour, which was three-fold higher than that of untreated FB. Furthermore, following an oral administration of FB-AMP(3) to Sprague-Dawley rats, the peak plasma concentration and area under the plasma concentration-time curve of FB increased two-fold, and the time to reach the peak plasma concentration was shortened compared with that in the untreated FB. This result suggests that the oral drug delivery system using clay-based organic–inorganic hybrid material might be useful to improve the bioavailability of FB.
机译:摘要:本研究旨在使用基于粘土的有机无机杂化材料开发口腔递送系统,以改善药物的生物利用度,絮凝剂溶于水差。通过单罐直接溶胶 - 凝胶法合成3-氨基丙基官能化镁硅酸盐(AMP粘土),然后在不同的药物/粘土比例中掺入Bulbiprofen(FB)中的含量粘土(FB-AMP)。通过X射线衍射,傅里叶变换红外光谱和透射电子显微镜证实了AMP和FB-AMP配方的结构特征。在测试的制剂中,FB-AMP(3),显着增加了FB的溶解并在2小时内实现了快速和完全的药物释放。 30分钟后,超过60%的FB从FB-AMP(3)中释放;将该药物在2小时内完全溶解在水中。在酸性条件(pH 1.2)下,FB-AMP(3)也将FB的溶解量增加至1小时内的1小时内,其比未处理的FB高出三倍。此外,在口服施用FB-AMP(3)到Sprague-Dawley大鼠之后,FB血浆浓度 - 时间曲线下的峰血浆浓度和面积增加,缩短了达到峰值血浆浓度的时间与未经治疗的FB相比。该结果表明,使用基于粘土的有机无机杂化材料的口服药物输送系统可能有助于改善FB的生物利用度。

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