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使用四流体喷嘴喷雾干燥器制备用于口服、肺部和注射剂型的含药物纳米颗粒的微粒。

Preparation of drug nanoparticle-containing microparticles using a 4-fluid nozzle spray drier for oral, pulmonary, and injection dosage forms.

作者信息

Mizoe Takuto, Ozeki Tetsuya, Okada Hiroaki

机构信息

Laboratory of Pharmaceutics and Drug Delivery, School of Pharmacy, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji, Tokyo, Japan.

出版信息

J Control Release. 2007 Sep 11;122(1):10-5. doi: 10.1016/j.jconrel.2007.06.001. Epub 2007 Jun 12.

Abstract

We prepared microparticles containing nanoparticles of water-insoluble pranlukast hemihydrate (PLH) using a 4-fluid nozzle spray drier. These particles were designed to improve the absorption of PLH and to allow delivery by oral, pulmonary, and injection routes. Mannitol (MAN) was used as a water-soluble carrier for the microparticles. We orally administered suspensions of PLH powder and PLH-MAN microparticles to rats. We also compared the in vitro aerosol performance of the PLH powder and PLH-MAN microparticles using a cascade impactor, and we compared the delivery of PLH by oral administration of PLH powder and pulmonary delivery of PLH-MAN microparticles at PLH/MAN ratios of 1:4 and 1:10. The absorption of PLH was markedly enhanced by pulmonary deliver of PLH-MAN composite microparticles. The area under the plasma concentration-time curve per dose for pulmonary administration of the 1:4 and 1:10 PLH-MAN microparticles was approximately 85- and 100-fold higher, respectively, than for oral administration of PLH powder. Also, we found that PLH rapidly disappeared from the plasma following injection of PLH aqueous solution or PLH-MAN microparticles dissolved in water. The PLH particles remaining after dissolution of MAN from the 1:10 PLH-MAN microparticles were 200 nm in diameter. Therefore, PLH particles may be captured immediately after injection by reticuloendothelial tissues such as the liver and spleen. This study demonstrated that it is possible to use the 4-fluid spray drier to prepare microparticles containing PLH nanoparticles that that improve drug absorption and can be administered by oral, pulmonary, and injection routes.

摘要

我们使用四流体喷嘴喷雾干燥器制备了含有水不溶性半水普仑司特(PLH)纳米颗粒的微粒。这些微粒旨在提高PLH的吸收,并允许通过口服、肺部和注射途径给药。甘露醇(MAN)用作微粒的水溶性载体。我们将PLH粉末和PLH-MAN微粒的悬浮液口服给予大鼠。我们还使用级联撞击器比较了PLH粉末和PLH-MAN微粒的体外气溶胶性能,并比较了在PLH/MAN比例为1:4和1:10时,口服PLH粉末和肺部递送PLH-MAN微粒时PLH的递送情况。PLH-MAN复合微粒的肺部递送显著增强了PLH的吸收。1:4和1:10的PLH-MAN微粒肺部给药每剂量的血浆浓度-时间曲线下面积分别比口服PLH粉末高约85倍和100倍。此外,我们发现注射PLH水溶液或溶于水的PLH-MAN微粒后,PLH迅速从血浆中消失。从1:10的PLH-MAN微粒中溶解MAN后剩余的PLH颗粒直径为200nm。因此,PLH颗粒在注射后可能会立即被肝脏和脾脏等网状内皮组织捕获。本研究表明,使用四流体喷雾干燥器制备含有PLH纳米颗粒的微粒是可行的,这些微粒可改善药物吸收,并可通过口服、肺部和注射途径给药。

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