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透明质酸微球提高大鼠体内吡罗昔康的口服生物利用度。

Enhanced oral bioavailability of piroxicam in rats by hyaluronate microspheres.

作者信息

Piao Ming Guan, Kim Jeong-Hoon, Kim Jong Oh, Lyoo Won Seok, Lee Mann Hyung, Yong Chul Soon, Choi Han-Gon

机构信息

College of Pharmacy, Yeungnam University, Dae-Dong, Gyongsan, South Korea.

出版信息

Drug Dev Ind Pharm. 2007 Apr;33(4):485-91. doi: 10.1080/03639040600865223.

Abstract

To enhance the dissolution and oral bioavailability of poorly water soluble piroxicam, the piroxicam-loaded hyaluronic microspheres were prepared with various ratios of piroxicam, sodium hyaluronate and polyethylene glycol 4000 (PEG) using a spray dryer, and their physicochemical properties such as shape, size, drug-loading efficiency and dissolution were investigated. The pharmacokinetic study of piroxicam-loaded hyaluronic micropheres in rats was then performed compared to piroxicam powder. The piroxicam-loaded hyaluronic microspheres, spherical in shape, had the geometric mean diameters of about 1.5 microm and drug loading efficiency of about 90%, irrespective of ratio of piroxicam/sodium hyaluronate/PEG. The hyaluronic microspheres containing PEG gave significantly higher dissolution rates of drug than did piroxicam powder, PEG-based solid dispersion system and hyaluronic microspheres without PEG, suggesting that the hyaluronic microsphere with sodium hyaluronate and PEG was more useful for improving the dissolution rate of poorly water soluble piroxicam. The piroxicam-loaded hyaluronic microcapsule composed of (piroxicam/sodium hyaluronate/PEG; 2: 20: 1) gave about threefold improved dissolution of drug in water for 4 h compared to piroxicam powder. It showed higher plasma concentrations of drug compared to piroxicam powder. It gave significantly higher AUC and faster Tmax of piroxicam than did piroxicam powder. In particular, the AUC of piroxicam from hyaluronic microsphere was about twofold higher than that from piroxicam powder, suggesting that it could enhance the oral bioavailability of piroxicam. Thus, the hyaluronic microsphere developed using spray-drying technique with sodium hyaluronate and PEG was a more effective oral dosage form for poorly water soluble piroxicam.

摘要

为提高难溶性吡罗昔康的溶出度和口服生物利用度,采用喷雾干燥法,以不同比例的吡罗昔康、透明质酸钠和聚乙二醇4000(PEG)制备了载吡罗昔康的透明质酸微球,并对其形状、大小、载药效率和溶出度等理化性质进行了研究。然后,与吡罗昔康粉末相比,对大鼠体内载吡罗昔康的透明质酸微球进行了药代动力学研究。载吡罗昔康的透明质酸微球呈球形,无论吡罗昔康/透明质酸钠/PEG的比例如何,其几何平均直径约为1.5微米,载药效率约为90%。含有PEG的透明质酸微球的药物溶出率明显高于吡罗昔康粉末、基于PEG的固体分散体系统和不含PEG的透明质酸微球,这表明含有透明质酸钠和PEG的透明质酸微球对提高难溶性吡罗昔康的溶出率更有用。由(吡罗昔康/透明质酸钠/PEG;2:20:1)组成的载吡罗昔康的透明质酸微囊在水中4小时的药物溶出度比吡罗昔康粉末提高了约三倍。与吡罗昔康粉末相比,它显示出更高的血浆药物浓度。它的吡罗昔康AUC和Tmax明显高于吡罗昔康粉末。特别是,来自透明质酸微球的吡罗昔康AUC比来自吡罗昔康粉末的AUC高约两倍, 这表明它可以提高吡罗昔康的口服生物利用度。因此,采用喷雾干燥技术与透明质酸钠和PEG研制的透明质酸微球是一种更有效的难溶性吡罗昔康口服剂型。

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