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脂质基质对载奥氮平固体脂质纳米粒的药物包封率、体外释放及物理稳定性影响的研究

Investigations of the effect of the lipid matrix on drug entrapment, in vitro release, and physical stability of olanzapine-loaded solid lipid nanoparticles.

作者信息

Vivek K, Reddy Harivardhan, Murthy Ramachandra S R

机构信息

Drug Delivery Research Laboratory, Center of Relevance and Excellence in NDDS, Pharmacy Department, GH Patel Building, Donor's Plaza, Fatehgunj, M.S. University, Baroda - 390002, Gujarat, India.

出版信息

AAPS PharmSciTech. 2007 Oct 12;8(4):E83. doi: 10.1208/pt0804083.

Abstract

The purpose of this research was to study the effect of the lipid matrix on the entrapment of olanzapine (OL). OL-loaded solid lipid nanoparticles (SLNs) were prepared using lipids like glyceryl monostearate (GMS), Precirol ATO 5 (PRE), glyceryl tristearate (GTS), and Witepsol E85 (WE 85)--and poloxamer 407 and hydrogenated soya phosphatidylcholine as stabilizers--using a hot melt emulsification high-pressure homogenization technique, and then characterized by particle size analysis, zeta potential, differential scanning calorimetry (DSC), and powder X-ray diffraction (pXRD). Homogenization at 10,000 psi for 3 cycles resulted in the formation of SLNs with a mean particle size of approximately 190 nm for the 4 lipids investigated. The highest partition coefficient for OL between the melted lipid and pH 7.4 phosphate buffer (pH 7.4 PB) was obtained with GTS. The entrapment efficiency was in the following order: GTS SLNs > PRE SLNs > WE 85 SLNs > GMS SLNs. DSC and pXRD showed that much of the incorporated fraction of OL existed in the amorphous state after incorporation into SLNs. A sharp increase in the flocculation of the SLN dispersions was observed upon addition of 0.6 M aqueous sodium sulfate solution. Nanoparticle surface hydrophobicity was in the following order: GTS SLNs > PRE SLNs > WE 85 SLNs > GMS SLNs. A significant increase in size and zeta potential was observed for GTS SLN and WE 85 SLN dispersions stored at 40 degrees C. Release of OL from the SLNs was sustained up to 48 hours in pH 7.4 PB and obeyed Higuchi's release kinetics.

摘要

本研究的目的是研究脂质基质对奥氮平(OL)包封率的影响。使用单硬脂酸甘油酯(GMS)、Precirol ATO 5(PRE)、三硬脂酸甘油酯(GTS)和Witepsol E85(WE 85)等脂质以及泊洛沙姆407和氢化大豆磷脂作为稳定剂,采用热熔乳化高压均质技术制备了载有OL的固体脂质纳米粒(SLNs),然后通过粒度分析、zeta电位、差示扫描量热法(DSC)和粉末X射线衍射(pXRD)对其进行表征。在10000 psi下均质3个循环,所研究的4种脂质均形成了平均粒径约为190 nm的SLNs。GTS在熔融脂质与pH 7.4磷酸盐缓冲液(pH 7.4 PB)之间获得了OL的最高分配系数。包封率顺序如下:GTS SLNs>PRE SLNs>WE 85 SLNs>GMS SLNs。DSC和pXRD表明,OL掺入SLNs后,大部分掺入部分以无定形状态存在。加入0.6 M硫酸钠水溶液后,观察到SLN分散体的絮凝急剧增加。纳米颗粒表面疏水性顺序如下:GTS SLNs>PRE SLNs>WE 85 SLNs>GMS SLNs。在40℃储存时,观察到GTS SLN和WE 85 SLN分散体的粒径和zeta电位显著增加。在pH 7.4 PB中,OL从SLNs中的释放持续长达48小时,并符合Higuchi释放动力学。

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