Suppr超能文献

超声辅助雾化法制备茶碱载入微球。

Theophylline-loaded compritol microspheres prepared by ultrasound-assisted atomization.

机构信息

Department SMETEC, University of Bologna, Bologna, Italy.

出版信息

J Pharm Sci. 2011 Feb;100(2):743-57. doi: 10.1002/jps.22312. Epub 2010 Sep 2.

Abstract

Nine solid dispersions were prepared by the melting method in the form of particles containing theophylline at 10%, 20%, and 30% (w/w) in three Compritols (Compritol 888 ATO, HD5 ATO, E ATO) to compare their efficiency in controlling theophylline release. After solidification the mass was ground and granules were evaluated by thermal [differential scanning calorimetry, hot stage microscopy (HSM)] and spectroscopic [Fourier transform infrared (FTIR), Raman, X-ray powder diffraction (XRD)] analysis and the solubility parameters. Another nine samples of the same composition were obtained as microspheres by ultrasound-assisted (US) atomization. XRD confirmed the presence of crystalline theophylline inside the solid dispersions. FTIR and Raman microspectroscopy revealed that crystals of the drug were present on the granule surface. On the contrary, the surface of the final microspheres did not present free drug crystals. The granules do not work so efficiently as microspheres in controlling the release of theophylline: 888 ATO ≈ HD5 ATO > E ATO represents the order of the ability of the Compritols to control the theophylline release from microspheres. HSM revealed that, on aging, the dissolved drug crystallizes, considerably modifying the granule formulation and that US vibration, speeding up the crystallization of the drug during the preparation of microspheres, greatly reduces the changes associated with aging.

摘要

采用熔融法制备了包含 10%、20%和 30%(w/w)茶碱的 9 种固体分散体,以比较它们控制茶碱释放的效率。固化后,将质量粉碎,并通过热分析(差示扫描量热法、热台显微镜(HSM))和光谱分析(傅里叶变换红外(FTIR)、拉曼、X 射线粉末衍射(XRD))以及溶解度参数对颗粒进行评价。以同样的组分为原料,通过超声辅助(US)雾化获得了另外 9 种微球样品。XRD 证实了固体分散体中存在结晶茶碱。FTIR 和拉曼微光谱表明,药物晶体存在于颗粒表面。相反,最终微球的表面没有游离药物晶体。颗粒在控制茶碱释放方面的效果不如微球:888 ATO≈HD5 ATO>E ATO 表示 Compritol 控制微球中茶碱释放的能力顺序。HSM 表明,随着老化,溶解的药物结晶,极大地改变了颗粒制剂,而 US 振动在制备微球过程中加速了药物结晶,大大减少了与老化相关的变化。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验