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采用温控离心纺丝法制备难溶性药物在蔗糖中的微纤维固体分散体

Development of micro-fibrous solid dispersions of poorly water-soluble drugs in sucrose using temperature-controlled centrifugal spinning.

作者信息

Marano Stefania, Barker Susan Anne, Raimi-Abraham Bahijja Tolulope, Missaghi Shahrzad, Rajabi-Siahboomi Ali, Craig Duncan Q M

机构信息

UCL School of Pharmacy, 29-39 Brunswick Square, London, UK.

Colorcon Inc., Global Headquarters, 275 Ruth Road, Harleysville, PA 19438, USA.

出版信息

Eur J Pharm Biopharm. 2016 Jun;103:84-94. doi: 10.1016/j.ejpb.2016.03.021. Epub 2016 Mar 21.

Abstract

Solid dispersion technology represents a successful approach to addressing the bioavailability issues caused by the low aqueous solubility of many Biopharmaceutics Classification System (BCS) Class II drugs. In this study, the use of high-yield manufacture of fiber-based dispersion is explored as an alternative approach to monolith production methods. A temperature-controlled solvent-free centrifugal spinning process was used to produce sucrose-based microfibers containing the poorly water-soluble drugs olanzapine and piroxicam (both BCS Class II); these were successfully incorporated into the microfibers and the basic characteristics of fiber diameter, glassy behavior, drug loading capacity and drug-sucrose interaction assessment were measured. Scanning electron microscopy revealed that bead-free drug-loaded microfibers with homogenous morphology and diameter in the range of a few micrometers were prepared using our process. Differential scanning calorimetric and X-ray diffraction analyses showed that both drug and carrier were present in the amorphous state in the microfibers, although in the case of piroxicam-loaded microfibers, the presence of small amounts of crystalline drug was observed under polarized light microscopy and in Fourier transform infrared spectra. Drug dissolution performance was evaluated under both sink and non-sink conditions and was found to be significantly enhanced compared to the corresponding crystalline physical mixtures and pure drugs, with evidence of supersaturation behavior noted under non-sink conditions. This study has demonstrated that microfiber-based dispersions may be manufactured by the centrifugal spinning process and may possess characteristics that are favorable for the enhanced dissolution and oral absorption of drugs.

摘要

固体分散技术是解决许多生物药剂学分类系统(BCS)II类药物低水溶性所导致的生物利用度问题的一种成功方法。在本研究中,探索了使用高产率制造基于纤维的分散体作为整体生产方法的替代方法。采用温度控制的无溶剂离心纺丝工艺制备了含有水溶性差的药物奥氮平和吡罗昔康(均为BCS II类)的蔗糖基微纤维;这些药物成功地掺入微纤维中,并测量了纤维直径、玻璃态行为、载药量和药物 - 蔗糖相互作用评估的基本特性。扫描电子显微镜显示,使用我们的工艺制备出了形态均匀、直径在几微米范围内的无珠载药微纤维。差示扫描量热法和X射线衍射分析表明,微纤维中的药物和载体均以无定形状态存在,尽管在载有吡罗昔康的微纤维中,在偏光显微镜和傅里叶变换红外光谱下观察到有少量结晶药物存在。在漏槽和非漏槽条件下评估了药物溶解性能,发现与相应的结晶物理混合物和纯药物相比,药物溶解性能显著增强,在非漏槽条件下有过饱和行为的证据。本研究表明,基于微纤维的分散体可以通过离心纺丝工艺制造,并且可能具有有利于增强药物溶解和口服吸收的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5049/4866555/523e9611a27e/fx1.jpg

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