首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Preparation, characterization and dissolution behavior of artemisinin microparticles
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Preparation, characterization and dissolution behavior of artemisinin microparticles

机译:青蒿素微粒的制备,表征和溶解行为

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In the present study, a modified 4-fluid nozzle spray drier was used to prepare microparticles of a poorly water soluble drug, artemisinin with the aim of improving its solubility. We also investigated the effect of process variables on the physical properties and dissolution rate of spray dried artemisinin. A full factorial experimentally designed study was performed to investigate the following spray drying variables: inlet temperature and feed concentration. The artemisinin powder and spray dried artemisinin microparticles were characterized by scanning electron microscopy (SEM), differential scanning calorimetric (DSC), X-ray diffraction (XRD) and dissolution. SEM study suggested that the inlet temperature and feed concentration impacted on the particle size of the spray dried particles. The crystallinity of spray dried particles was slightly decreased with increasing inlet temperature and concentration. The dissolution of spray dried particles was markedly improved as compared to commercial artemisinin. A dissolution surface-response model was used to elucidate the significant and direct relationships between drug feed concentration and inlet temperature on one hand and dissolution on the other hand. The best dissolution was found to be 117.00 ± 5.15 μg/mL at the drug feed concentration of 10 g/L and inlet temperature of 140 °C.
机译:在本研究中,使用一种改良的4流体喷嘴喷雾干燥器来制备水溶性差的药物青蒿素的微粒,以提高其溶解度。我们还研究了工艺变量对喷雾干燥青蒿素物理性质和溶解速率的影响。进行了一项全因子实验设计的研究,以研究以下喷雾干燥变量:入口温度和进料浓度。青蒿素粉末和喷雾干燥的青蒿素微粒通过扫描电子显微镜(SEM),差示扫描量热法(DSC),X射线衍射(XRD)和溶解进行表征。 SEM研究表明,入口温度和进料浓度会影响喷雾干燥颗粒的粒径。喷雾干燥颗粒的结晶度随入口温度和浓度的增加而略有降低。与市售青蒿素相比,喷雾干燥颗粒的溶解性得到了显着改善。溶出度表面响应模型用于阐明一方面药物进料浓度和入口温度与另一方面溶出度之间的显着直接关系。发现在10 g / L的药物进料浓度和140°C的入口温度下,最佳溶出度为117.00±5.15μg/ mL。

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