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聚乙烯吡咯烷酮旋转纺丝纤维的微观和宏观结构表征

Micro- and macrostructural characterization of polyvinylpirrolidone rotary-spun fibers.

作者信息

Sebe István, Kállai-Szabó Barnabás, Kovács Krisztián Norbert, Szabadi Enikő, Zelkó Romána

机构信息

a University Pharmacy Department of Pharmacy Administration, Semmelweis University , Budapest , Hungary .

b Department of Pharmaceutics , Semmelweis University , Budapest , Hungary , and.

出版信息

Drug Dev Ind Pharm. 2015;41(11):1829-34. doi: 10.3109/03639045.2015.1013967. Epub 2015 Feb 18.

DOI:10.3109/03639045.2015.1013967
PMID:25690306
Abstract

The application of high-speed rotary spinning can offer a useful mean for either preparation of fibrous intermediate for conventional dosage forms or drug delivery systems. Polyvinylpyrrolidone (PVP) and poly(vinylpyrrolidone-vinylacetate) (PVP VA) micro- and nanofibers of different polymer concentrations and solvent ratios were prepared with a high-speed rotary spinning technique. In order to study the influence of parameters that enable successful fiber production from polymeric viscous solutions, a complex micro- and macrostructural screening method was implemented. The obtained fiber mats were subjected to detailed morphological analysis using scanning electron microscope (SEM), and rheological measurements while the microstructural changes of fiber samples, based on the free volume changes, was analyzed by positron annihilation lifetime spectroscopy (PALS) and compared with their mechanical characteristics. The plasticizing effect of water tracked by ortho-positronium lifetime changes in relation to the mechanical properties of fibers. A concentration range of polyvinylpyrrolidone solutions was defined for the preparation of fibers of optimum fiber morphology and mechanical properties. The method enabled fiber formulation of advantageous functionality-related properties for further formulation of solid dosage forms.

摘要

高速旋转纺丝的应用可为制备传统剂型的纤维中间体或药物递送系统提供一种有用的方法。采用高速旋转纺丝技术制备了不同聚合物浓度和溶剂比例的聚乙烯吡咯烷酮(PVP)和聚(乙烯基吡咯烷酮-醋酸乙烯酯)(PVP VA)微纤维和纳米纤维。为了研究使聚合物粘性溶液成功制成纤维的参数的影响,实施了一种复杂的微观和宏观结构筛选方法。使用扫描电子显微镜(SEM)对所得纤维毡进行详细的形态分析,并进行流变学测量,同时通过正电子湮没寿命谱(PALS)分析基于自由体积变化的纤维样品的微观结构变化,并将其与机械特性进行比较。通过邻正电子素寿命变化追踪水对纤维机械性能的增塑作用。确定了聚乙烯吡咯烷酮溶液的浓度范围,以制备具有最佳纤维形态和机械性能的纤维。该方法能够制备具有有利功能相关特性的纤维制剂,用于进一步制备固体剂型。

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