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从载药电纺纤维形成角度预测含盐酸罂粟碱水溶液中羟丙基纤维素与聚乙烯醇的比例

Prediction of the hydroxypropyl cellulose-poly(vinyl alcohol) ratio in aqueous solution containing papaverine hydrochloride in terms of drug loaded electrospun fiber formation.

作者信息

Kazsoki Adrienn, Szabó Péter, Zelkó Romána

机构信息

University Pharmacy Department of Pharmacy Administration, Semmelweis University, Hőgyes Endre St. 7-9, H-1092 Budapest, Hungary.

University Pharmacy Department of Pharmacy Administration, Semmelweis University, Hőgyes Endre St. 7-9, H-1092 Budapest, Hungary.

出版信息

J Pharm Biomed Anal. 2017 May 10;138:357-362. doi: 10.1016/j.jpba.2017.02.030. Epub 2017 Feb 22.

Abstract

Papaverine hydrochloride loaded electrospun fibers were prepared for buccal drug delivery with the aim of improving the oral bioavailability of the crystalline drug, which can be achieved by the increased solubility and by the circumvention of the intensive first pass metabolism. The water soluble hydroxypropyl cellulose (HPC) was chosen as a mucoadhesive polymer. In order to improve the electrospinnability of HPC, the also mucoadhesive poly(vinyl alcohol) (PVA) was used. During the experiments, the total polymer concentration was kept constantly at 15% (w/w), and only the ratio of the two polymers was changed. Five different HPC:PVA ratios (5:5, 6:4, 7:3, 8:2, 9:1) were examined. Combination of rheological measurements and molar reflectance characterization with scanning electron microscopy was applied for the determination of the optimum composition of the gels for fiber formation. The crystalline-amorphous transition of papaverine hydrochloride was also tracked by Fourier transform infrared spectroscopy. A correlation was found between the macrostructural properties of the polymer solutions and their electrospinnability and the consequent morphology of the resultant samples. Along with the changes of the polymer ratio, the corresponding morphology of the electrospun samples also varied. With decreasing HPC ratio of the system, a transition from the spray-dried film-like structure through fibrous film to fibers was observed. Polymer solutions of the lowest elasticity and smallest intermolecular interactions contributed to the best fiber characteristics of the samples. The results enable the determination of the polymer ratio for the formation of applicable quality of electrospun fibers. According to the results 5:5 and 6:4 polymer ratios enabled the best fiber performance.

摘要

制备了负载盐酸罂粟碱的电纺纤维用于口腔给药,目的是提高这种结晶药物的口服生物利用度,这可以通过增加溶解度和避免强烈的首过代谢来实现。选择水溶性羟丙基纤维素(HPC)作为粘膜粘附聚合物。为了提高HPC的可电纺性,还使用了同样具有粘膜粘附性的聚乙烯醇(PVA)。在实验过程中,总聚合物浓度保持恒定在15%(w/w),仅改变两种聚合物的比例。研究了五种不同的HPC:PVA比例(5:5、6:4、7:3、8:2、9:1)。将流变学测量、摩尔反射率表征与扫描电子显微镜相结合,用于确定形成纤维的凝胶的最佳组成。还通过傅里叶变换红外光谱跟踪盐酸罂粟碱的晶态-非晶态转变。发现聚合物溶液的宏观结构性质与其可电纺性以及所得样品的相应形态之间存在相关性。随着聚合物比例的变化,电纺样品的相应形态也发生变化。随着体系中HPC比例的降低,观察到从喷雾干燥的膜状结构到纤维状膜再到纤维的转变。弹性最低且分子间相互作用最小的聚合物溶液有助于样品具有最佳的纤维特性。这些结果能够确定形成适用质量电纺纤维的聚合物比例。根据结果,5:5和6:4的聚合物比例使纤维性能最佳。

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