首页> 外文期刊>Journal of Pharmaceutical Analysis >Inclusion complexes of cefuroxime axetil with β-cyclodextrin: Physicochemical characterization, molecular modeling and effect of l-arginine on complexation
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Inclusion complexes of cefuroxime axetil with β-cyclodextrin: Physicochemical characterization, molecular modeling and effect of l-arginine on complexation

机译:头孢呋辛酯与β-环糊精的包合物:理化性质,分子模型及 l -精氨酸对络合的影响

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The inclusion complexes of poorly water-soluble cephalosporin, cefuroxime axetil (CFA), were prepared with β-cyclodextrin (βCD) with or without addition of l -arginine (ARG) to improve its physicochemical properties. We also investigated the effect of ARG on complexation efficiency (CE) of βCD towards CFA in an aqueous medium through phase solubility behaviour according to Higuchi and Connors. Although phase solubility studies showed A L (linear) type of solubility curve in presence and absence of ARG, the CE and association constant ( K s) of βCD towards CFA were significantly promoted in presence of ARG, justifying its use as a ternary component. The solid systems of CFA with βCD were obtained by spray drying technique with or without incorporation of ARG and characterized by differential scanning calorimetry (DSC), X-ray powder diffractometry (XRPD), scanning electron microscopy (SEM), and saturation solubility and dissolution studies. The molecular modeling studies provided a better insight into geometry and inclusion mode of CFA inside βCD cavity. The solubility and dissolution rate of CFA were significantly improved upon complexation with βCD as compared to CFA alone. However, ternary system incorporated with ARG performed better than binary system in physicochemical evaluation. In conclusion, ARG could be exploited as a ternary component to improve the physicochemical properties of CFA via βCD complexation.
机译:水溶性较差的头孢菌素头孢呋辛酯(CFA)的包合物是用β-环糊精(βCD)加或不加1-精氨酸(ARG)制备的,以改善其理化性质。我们还通过Higuchi和Connors的相溶行为研究了ARG对βCD对CFA在水介质中的络合效率(CE)的影响。尽管相溶解度研究表明在存在和不存在ARG的情况下A(线性)类型的溶解度曲线,但是在存在ARG的情况下,βCD对CFA的CE和缔合常数(K s)显着提高,证明其可作为三元组分使用。含βCD的CFA固体体系是通过喷雾干燥技术在有或没有掺入ARG的情况下获得的,并通过差示扫描量热法(DSC),X射线粉末衍射法(XRPD),扫描电子显微镜(SEM)以及饱和溶解度和溶解度进行表征学习。分子模型研究为βCD腔内CFA的几何形状和包含模式提供了更好的见识。与单独的CFA相比,与βCD络合后,CFA的溶解度和溶解速率显着提高。但是,与ARG结合的三元系统在理化评估方面表现优于二元系统。总之,ARG可以作为三元组分通过βCD络合物改善CFA的理化性质。

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