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载药纳米混悬剂的制备、特性及药代动力学研究。

Nanosuspension for parenteral delivery of a p-terphenyl derivative: preparation, characteristics and pharmacokinetic studies.

机构信息

Department of Pharmaceutics, College of Pharmacy, Shandong University, 44 Wenhua Xilu, Jinan 250012, PR China.

出版信息

Colloids Surf B Biointerfaces. 2013 Aug 1;108:29-33. doi: 10.1016/j.colsurfb.2013.02.038. Epub 2013 Mar 14.

Abstract

Recently, nanosuspension technology has evolved into a mature drug delivery system, which can enhance the saturation solubility and dissolution velocity of poorly soluble drugs. In this study, nanosuspensions of a p-terphenyl derivative (H2) were prepared by combining microfluidization and precipitation method and transformed into dry powder by lyophilization. The resultant nanosuspensions had a mean particle size of 201.7±5.87nm and a zeta potential of -21.07±0.57mV. The X-ray powder diffraction (XRPD) and differential scanning calorimetry (DSC) analysis verified that the crystalline state of H2 was not transformed when it was prepared to nanosuspensions. An increased saturation solubility (1.46ug/ml) and accelerated dissolution velocity were achieved. The percent drug release of bulk H2 and H2 nanosuspension dried powder was 7.16% and 93.5% at 120min point, respectively. The pharmacokinetic test in rats indicated that the area under plasma concentration-time curve (AUC0~∞) value of H2 nanosuspension (5.183mg/Lh) was about 5-fold higher than that of H2 solution (1.094mg/Lh). Additionally, the mean retention time (MRT) value of H2 nanosuspension (2.832h) was significantly longer than that of H2 solution (0.997h).

摘要

最近,纳米混悬剂技术已经发展成为一种成熟的药物传递系统,可以提高难溶性药物的饱和溶解度和溶解速度。在本研究中,通过微流化和沉淀法结合制备了对三联苯衍生物(H2)的纳米混悬剂,并通过冷冻干燥将其转化为干粉。所得纳米混悬剂的平均粒径为 201.7±5.87nm,zeta 电位为-21.07±0.57mV。X 射线粉末衍射(XRPD)和差示扫描量热法(DSC)分析证实,H2 的晶体状态在制备成纳米混悬剂时没有发生转变。实现了溶解度的显著提高(1.46μg/ml)和溶解速度的加速。在 120 分钟时,H2 原料药和 H2 纳米混悬剂干粉的药物累积释放百分比分别为 7.16%和 93.5%。大鼠药代动力学试验表明,H2 纳米混悬剂(5.183mg/Lh)的血浆浓度-时间曲线下面积(AUC0~∞)值约为 H2 溶液(1.094mg/Lh)的 5 倍。此外,H2 纳米混悬剂(2.832h)的平均驻留时间(MRT)值明显长于 H2 溶液(0.997h)。

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