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研制瑞格列奈固体脂质纳米载体:制备方法的选择。

Development of repaglinide loaded solid lipid nanocarrier: selection of fabrication method.

机构信息

Department of Pharmaceutics, Institute of Technology, Banaras Hindu University, Varanasi, India.

出版信息

Curr Drug Deliv. 2010 Jan;7(1):44-50. doi: 10.2174/156720110790396472.

Abstract

Repaglinide solid lipid nanoparticles (RG-SLN) were fabricated using stearic acid as lipid. Pluronic F68 (PLF68) and soya lecithin were used as a stabilizer. SLNs were prepared by modified solvent injection and ultrasonication methods. SLNs prepared with modified solvent injection method have larger particle size (360+/-2.5nm) than prepared with ultrasonication method (281+/-5.3nm). The zeta potential of the prepared formulations by these two methods varied from - 23.10 +/-1.23 to -26.01 +/-0.89 mV. The maximum entrapment efficiency (62.14 +/-1.29%) was obtained in modified solvent injection method. The total drug content was nearly same (98%) in both the methods. In vitro release studies were performed in phosphate buffer (pH 6.8) with 0.5% sodium lauryl sulphate (SLS) using dialysis bag diffusion technique. The cumulative drug release was 30% and 50% within 2 hrs in modified solvent injection and ultrasonication method, respectively. This indicates that RG-SLN prepared from modified injection method released the drug more slowly than SLNs prepared with ultrasonication method. Differential scanning calorimetry indicates that repaglinide (RG) entrapped in the solid lipid nanoparticles (SLN) exist in an amorphous or molecular state. Repaglinide loaded solid lipid nanoparticles prepared with both methods were of spherical shape as observed by transmission electron microscopy (TEM). These results suggest that modified solvent injection method is more suitable for preparation of repaglinide SLNs using stearic acid.

摘要

瑞格列奈固体脂质纳米粒(RG-SLN)以硬脂酸为脂质,采用泊洛沙姆 F68(PLF68)和大豆卵磷脂作为稳定剂制备。SLNs 采用改良溶剂注入法和超声法制备。采用改良溶剂注入法制备的 SLNs 的粒径(360+/-2.5nm)大于超声法制备的粒径(281+/-5.3nm)。这两种方法制备的制剂的 Zeta 电位从-23.10 +/-1.23 变化到-26.01 +/-0.89 mV。采用改良溶剂注入法获得最大包封效率(62.14 +/-1.29%)。两种方法的总药物含量几乎相同(98%)。采用透析袋扩散技术,在磷酸盐缓冲液(pH 6.8)中加入 0.5%十二烷基硫酸钠(SLS)进行体外释放研究。改良溶剂注入法和超声法的累积药物释放分别在 2 小时内达到 30%和 50%。这表明,与超声法制备的 SLN 相比,从改良注入法制备的 RG-SLN 释放药物的速度较慢。差示扫描量热法表明,包封在固体脂质纳米粒(SLN)中的瑞格列奈(RG)以无定形或分子状态存在。通过透射电子显微镜(TEM)观察到,用这两种方法制备的载有瑞格列奈的固体脂质纳米粒均呈球形。这些结果表明,改良溶剂注入法更适合于使用硬脂酸制备瑞格列奈 SLN。

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