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采用乳液/蒸发法制备并表征 D,L-PLA 载 17-β-雌二醇戊酸酯。

Preparation and characterization of D, L-PLA loaded 17-β-Estradiol valerate by emulsion/evaporation methods.

机构信息

Department of Pharmaceutical Sciences, Laboratory of Pharmaceutical Technology, School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Ribeirão Preto, São Paulo, Brazil.

出版信息

J Microencapsul. 2009 May;26(3):202-13. doi: 10.1080/02652040802233786.

Abstract

PLA microparticles containing 17-β-estradiol valerate were prepared by an emulsion/evaporation method in order to sustain drug release. This system was characterized concerning particle size, particle morphology and the influence of formulation and processing parameters on drug encapsulation and in vitro drug release. The biodegradation of the microparticles was observed by tissue histological analysis. Scanning electron microscopy and particle size analysis showed that the microparticles were spherical, presenting non-aggregated homogeneous surface and had diameters in the range of 718-880 nm (inert micro-particles) and 3-4 µm (drug loaded microparticles). The encapsulation efficiency was ∼80%. Hormone released from microparticles was sustained. An in vivo degradation experiment confirmed that microparticles are biodegradable. The preparation method was shown to be suitable, since the morphological characteristics and efficiency yield were satisfactory. Thus, the method of developed microparticles seems to be a promising system for sustained release of 17-β-estradiol.

摘要

PLA 载 17-β-雌二醇戊酸酯微球通过乳液/蒸发法制备,以实现药物的持续释放。该系统的特征在于粒径、颗粒形态以及制剂和加工参数对药物包封和体外药物释放的影响。通过组织学分析观察微球的生物降解情况。扫描电子显微镜和粒径分析表明,微球呈球形,具有非聚集的均匀表面,粒径在 718-880nm(惰性微球)和 3-4µm(载药微球)之间。包封效率约为 80%。从微球中释放的激素得以持续。体内降解实验证实微球可生物降解。该制备方法显示出适用性,因为形态特征和效率收率令人满意。因此,所开发的微球的方法似乎是一种有前途的 17-β-雌二醇持续释放系统。

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