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一种难溶性抗疟药物的溶解度增强:实验设计及改良型多流体喷嘴中试喷雾干燥器的应用

Solubility enhancement of a poorly water-soluble anti-malarial drug: experimental design and use of a modified multifluid nozzle pilot spray drier.

作者信息

Sahoo Nanda Gopal, Abbas Ali, Judeh Zaher, Li Chang Ming, Yuen Kah-Hay

机构信息

School of Chemical and Biomedical Engineering, Nanyang Technological University, Singapore.

出版信息

J Pharm Sci. 2009 Jan;98(1):281-96. doi: 10.1002/jps.21399.

Abstract

A modified multifluid nozzle spray drier was used to prepare drug containing microparticles of a poorly water-soluble anti-malarial drug, artemisinin (ART) with the aim of improving its solubility. We investigated the spray drying of ART with maltodextrin (MD) via a full factorial experimental design considering the effect of drying temperature, feed ratio (ART:MD), feed flow rate and pressure on the physical properties and solubility of spray-dried ART. Characterization of the ART powder, spray-dried ART microparticles and spray-dried ART-MD were analyzed by scanning electron microscopy (SEM), differential scanning calorimetry (DSC), Fourier transform infrared (FT-IR) spectroscopy, X-ray diffraction (XRD) and solubility. DSC and XRD studies suggested that the crystallinity of spray-dried particles was decreased with increasing inlet temperatures and flow rate. The particle size of spray-dried ART microparticles was found to be dependent on inlet temperature, flow rate, pressure and feed ratio. The solubility of spray-dried ART particles in composites was markedly increased as compared to commercial ART. A solubility surface-response model was regressed and statistically assessed before elucidating the significant and direct relationships between inlet temperature and feed rate on one hand and solubility on the other. An optimal pressure condition was observed while feed ratio had relatively reduced effect on solubility. The model was also used in an optimization exercise identifying the optimal solubility to be 66.2 +/- 7.17 microg/mL under the calculated spray drying conditions of: inlet temperature = 140 degrees C, feed ratio (ART:MD) = 0.1, feed flow rate = 250 mL h(-1), and pressure = 1.38 bar.

摘要

使用一种改进的多流体喷嘴喷雾干燥器来制备含有难溶性抗疟药物青蒿素(ART)的微粒,目的是提高其溶解度。我们通过全因子实验设计研究了ART与麦芽糊精(MD)的喷雾干燥,考虑了干燥温度、进料比(ART:MD)、进料流速和压力对喷雾干燥ART的物理性质和溶解度的影响。通过扫描电子显微镜(SEM)、差示扫描量热法(DSC)、傅里叶变换红外(FT-IR)光谱、X射线衍射(XRD)和溶解度分析对ART粉末、喷雾干燥的ART微粒和喷雾干燥的ART-MD进行表征。DSC和XRD研究表明,喷雾干燥颗粒的结晶度随着入口温度和流速的增加而降低。发现喷雾干燥的ART微粒的粒径取决于入口温度、流速、压力和进料比。与市售ART相比,喷雾干燥的ART颗粒在复合材料中的溶解度显著增加。在阐明入口温度和进料速率一方面与溶解度另一方面之间的显著和直接关系之前,对溶解度表面响应模型进行了回归和统计评估。观察到一个最佳压力条件,而进料比对溶解度的影响相对较小。该模型还用于优化实验,确定在计算的喷雾干燥条件下:入口温度 = 140℃,进料比(ART:MD) = 0.1,进料流速 = 250 mL h(-1),压力 = 1.38 bar时,最佳溶解度为66.2 +/- 7.17 microg/mL。

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