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基于亚磺酰胺的聚合物制备的微粒。

Microparticles prepared from sulfenamide-based polymers.

机构信息

Department of Pharmaceutical Sciences & Experimental Therapeutics, College of Pharmacy, University of Iowa , Iowa City, IA , USA and.

出版信息

J Microencapsul. 2014;31(2):137-46. doi: 10.3109/02652048.2013.814728. Epub 2013 Jul 18.

Abstract

Polysulfenamides (PSN), with a SN linkage (RSNR2) along the polymer backbone, are a new class of biodegradable and biocompatible polymers. These polymers were unknown prior to 2012 when their synthesis and medicinally relevant properties were reported. The aim of this study was to develop microparticles as a controlled drug delivery system using polysulfenamide as the matrix material. The microparticles were prepared by a water-in-oil-in-water double-emulsion solvent-evaporation method. For producing drug-loaded particles, FITC-dextran was used as a model hydrophilic compound. At the optimal formulation conditions, the external morphology of the PSN microparticles was examined by scanning electron microscopy to show the formation of smooth-surfaced spherical particles with low polydispersity. The microparticles had a net negative surface charge (-23 mV) as analyzed by the zetasizer. The drug encapsulation efficiency of the particles and the drug loading were found to be dependent on the drug molecular weight, amount of FITC-dextran used in fabricating FITC-dextran-loaded microparticles, concentration of PSN and surfactant, and volume of the internal and external water phases. FITC-dextran was found to be distributed throughout the PSN microparticles and was released in an initial burst followed by more continuous release over time. Confocal laser scanning microscopy was used to qualitatively observe the cellular uptake of PSN microparticles and indicated localization of the particles in both the cytoplasm and the nucleus.

摘要

聚硫酰胺(PSN)具有沿聚合物主链排列的 SN 键(RSNR2),是一类新型可生物降解和生物相容的聚合物。这些聚合物在 2012 年之前是未知的,当时它们的合成和医学相关性质被报道。本研究的目的是开发微粒作为一种使用聚硫酰胺作为基质材料的控制药物释放系统。微粒是通过水包油包水双乳液溶剂蒸发法制备的。为了制备载药颗粒,使用 FITC-葡聚糖作为模型亲水性化合物。在最佳配方条件下,通过扫描电子显微镜检查 PSN 微粒的外部形态,以显示形成具有低多分散性的光滑表面球形颗粒。通过 Zetasizer 分析,微粒具有净负表面电荷(-23 mV)。发现颗粒的药物包封效率和药物载量取决于药物分子量、用于制备 FITC-葡聚糖载药微粒的 FITC-葡聚糖用量、PSN 和表面活性剂的浓度以及内外水相的体积。发现 FITC-葡聚糖分布在 PSN 微粒中,并在初始突释后随时间的推移呈更连续的释放。共聚焦激光扫描显微镜用于定性观察 PSN 微粒的细胞摄取,并表明微粒定位于细胞质和细胞核中。

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