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溶胶-凝胶法制备的喷雾干燥硅胶微粒合成参数对右美托咪定释放速率的影响

Effect of synthesis parameters of the sol-gel-processed spray-dried silica gel microparticles on the release rate of dexmedetomidine.

作者信息

Kortesuo Pirjo, Ahola Manja, Kangas Minna, Jokinen Mika, Leino Tiina, Vuorilehto Lauri, Laakso Sirpa, Kiesvaara Juha, Yli-Urpo Antti, Marvola Martti

机构信息

Pharmaceutical Development Department, Orion Corporation, Turku, Finland.

出版信息

Biomaterials. 2002 Jul;23(13):2795-801. doi: 10.1016/s0142-9612(02)00016-9.

Abstract

The objective of this study was to evaluate the possibilities to control the release rate of dexmedetomidine (DMED) from different spray-dried silica gel microparticle formulations. Microparticles were prepared by spray drying a silica sol polymer solution containing the drug. Drug release was investigated both in vitro and in vivo. The influence of sol-gel synthesis parameters, like pH and the water/alkoxide ratio (r) of the sol, on the release behaviour of the drug was studied. Silica gel microparticles had a smooth surface. Microparticles prepared from diluted sol, however, were more aggregated and clustered. The drug release conformed to zero order release from microparticles prepared near the isoelectric point of silica (pH 2.3 and pH 3) and to the square root of time kinetics from microparticles prepared at pH 1 and pH 5. The release also showed a dual-phasic profile with an initial burst and after that a slower release period. The dexmedetomidine release conformed to zero order kinetics from microparticles prepared at water/ alkoxide ratios between r = 6 and r = 35 (at pH 2.3). The release rate was the slowest from microparticles prepared with water/ alkoxide ratio 35. The bioavailability of dexmedetomidine in dogs showed that the release was sustained from silica gel microparticles as compared with a subcutaneously administered reference dose of 0.1 mg.

摘要

本研究的目的是评估控制右美托咪定(DMED)从不同喷雾干燥硅胶微粒制剂中释放速率的可能性。通过喷雾干燥含有药物的硅溶胶聚合物溶液来制备微粒。对药物释放进行了体外和体内研究。研究了溶胶 - 凝胶合成参数,如溶胶的pH值和水/醇盐比(r)对药物释放行为的影响。硅胶微粒表面光滑。然而,由稀释溶胶制备的微粒更易聚集和结块。药物从在二氧化硅等电点附近(pH 2.3和pH 3)制备的微粒中释放符合零级释放,从在pH 1和pH 5制备的微粒中释放符合时间平方根动力学。释放还呈现双相特征,有一个初始突释期,之后是一个较慢的释放期。在水/醇盐比介于r = 6和r = 35(pH 2.3)之间制备的微粒中,右美托咪定的释放符合零级动力学。用水/醇盐比35制备的微粒释放速率最慢。与皮下注射0.1 mg的参比剂量相比,右美托咪定在犬体内的生物利用度表明其从硅胶微粒中的释放是持续的。

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