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首页> 外文期刊>Drug Design, Development and Therapy >Development of β-cyclodextrin-based hydrogel microparticles for solubility enhancement of rosuvastatin: an in vitro and in vivo evaluation
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Development of β-cyclodextrin-based hydrogel microparticles for solubility enhancement of rosuvastatin: an in vitro and in vivo evaluation

机译:用于增强瑞舒伐他汀溶解性的基于β-环糊精的水凝胶微粒的开发:体内和体外评估

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The aim of this study was to enhance the solubility of rosuvastatin (RST) calcium by developing β-cyclodextrin-g-poly(2-acrylamido-2-methylpropane sulfonic acid [AMPS]) hydrogel microparticles through aqueous free-radical polymerization technique. Prepared hydrogel microparticles were characterized for percent entrapment efficiency, solubility studies, Fourier transform infrared spectroscopy, differential scanning calorimetry, thermal gravimetric analysis, powder X-ray diffraction, scanning electron microscopy, zeta size and potential, swelling and release studies. Formulations (HS1–HS9) have shown entrapment efficiency between 83.50%±0.30% and 88.50%±0.25%, and optimum release was offered by formulation HS7 at both pH levels, ie,?1.2?(89%) and 7.4 (92%). The majority of microparticles had a particle size of less than 500?μm and zeta potential of –37?mV. Similarly, optimum solubility, ie, 10.66-fold, was determined at pH?6.8 as compared to pure RST calcium, ie, 7.30-fold. In vivo studies on fabricated hydrogel microparticulate system in comparison to pure drug were carried out, and better results regarding pharmacokinetic parameters were seen in the case of hydrogel microparticles. A potential approach for solubility enhancement of RST calcium and other hydrophobic moieties was successfully developed.
机译:这项研究的目的是通过水性自由基聚合技术开发β-环糊精-g-聚(2-丙烯酰胺基-2-甲基丙烷磺酸[AMPS])水凝胶微粒,从而提高罗舒伐他汀(RST)钙的溶解度。制备的水凝胶微粒的特征在于包封率百分比,溶解度研究,傅立叶变换红外光谱,差示扫描量热法,热重分析,粉末X射线衍射,扫描电子显微镜,ζ大小和电势,溶胀和释放研究。配方(HS1-HS9)的包封率在83.50%±0.30%和88.50%±0.25%之间,并且配方HS7在两种pH值(即?1.2?(89%)和7.4(92%)下均可提供最佳释放效果)。大多数微粒的粒径小于500?μm,ζ电位为–37?mV。类似地,在pH≥6.8下测定的最佳溶解度,即10.66倍,是纯RST钙的最佳溶解度,即7.30倍。与纯药物相比,已对制成的水凝胶微粒系统进行了体内研究,在水凝胶微粒的情况下,可以看到有关药代动力学参数的更好结果。成功开发出了增强RST钙和其他疏水部分溶解度的潜在方法。

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