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用于坎地沙坦酯口服给药的固体脂质纳米粒的研发

DEVELOPMENT OF SOLID LIPID NANOCARRIERS FOR ORAL DELIVERY OF CANDESERTAN CILEXETIL.

作者信息

Ugurlu Timucin, Nalbantoglu Aysun, Sengel-Turk Ceyda Tuba

出版信息

Acta Pol Pharm. 2016 Nov;73(6):1631-1638.

Abstract

Candesertan cilexetil is a Biopharmaceutics Classification System (BCS) Class II drug possessing high permeability but low aqueous solubility; hence its oral bioavailability is limited in terms of the solubility rate. The aim of this research was to develop solid lipid nanopa rticle (SLN) drug delivery systems of candesertan cilexetil to enhance its aqueous solubility, thereby improving the oral bioavailability of the drug. SLN formulations were produced using a combined technique of high shear homogenization and ultrasonication method. Drug/lipid and surfactant/co-surfactant ratios of the candesertan cilexetil loaded SLNs were investigated based on various final characteristics of the nanocarriers; namely, encapsulation efficiency, average particle diameter, size distribution, surface charge, thermal behavior, and in vitro drug release profiles. Lipid based nanocarriers of candesertan cilexetil displayed spherical particles having a nanometer size. High encapsulation efficiencies were obtained due to the high lipid solubility of the drug. DSC analysis demonstrated the transformation of the crystalline structure of candesertan cilexetil to amorphous form into the SLN formulations and there was no interaction between the drug and the excipients. Consequently, the oral delivery of candesertan cilexetil with the design of Compritol® 888 ATO based lipid nanocarriers may lead to an increase in bioavailability of the drug and thus, more effective therapy may be obtained.

摘要

坎地沙坦酯是一种生物药剂学分类系统(BCS)II类药物,具有高渗透性但低水溶性;因此,其口服生物利用度在溶解速率方面受到限制。本研究的目的是开发坎地沙坦酯的固体脂质纳米粒(SLN)药物递送系统,以提高其水溶性,从而提高该药物的口服生物利用度。采用高剪切均质化和超声处理相结合的技术制备SLN制剂。基于纳米载体的各种最终特性,即包封率、平均粒径、粒径分布、表面电荷、热行为和体外药物释放曲线,研究了载有坎地沙坦酯的SLN的药物/脂质和表面活性剂/助表面活性剂比例。坎地沙坦酯的脂质基纳米载体呈现出纳米尺寸的球形颗粒。由于药物的高脂质溶解度,获得了高包封率。差示扫描量热法(DSC)分析表明,坎地沙坦酯的晶体结构在SLN制剂中转变为无定形形式,且药物与辅料之间没有相互作用。因此,基于Compritol® 888 ATO的脂质纳米载体设计口服递送坎地沙坦酯可能会提高该药物的生物利用度,从而获得更有效的治疗效果。

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