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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Electrospun fibers of acid-labile biodegradable polymers containing ortho ester groups for controlled release of paracetamol.
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Electrospun fibers of acid-labile biodegradable polymers containing ortho ester groups for controlled release of paracetamol.

机译:酸不稳定的可生物降解聚合物的电纺纤维,其含有原酸酯基,用于对乙酰氨基酚的控制释放。

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摘要

The local delivery and controllable release profiles make electrospun ultrafine fibers as potential implantable drug carriers and functional coatings of medical devices. There are few attempts to form acid-labile electrospun fibers, whose release behaviors respond to the local environment and fiber characteristics. In the current study a novel strategy was presented to synthesize biodegradable pH-sensitive polymers containing ortho ester groups. The acid-labile segments were synthesized through reacting 3,9-dimethylene-2,4,8,10-tetraoxaspiro [5.5] undecane with 1,10-decanediol or poly(ethylene glycol), which were further copolymerized with D,L-lactide to obtain triblock copolymers. Biodegradable acid-labile polymers were electrospun with the encapsulation of paracetamol as a model drug. In vitro release study showed that the total amount of drug released from acid-labile polymeric fibers was accelerated after incubation into acid buffer solutions, and the amount of initial burst release and sustained release rate were significantly higher for matrix polymers with hydrophilic acid-labile segments. In vitro degradation study indicated that the electrospun fibers containing acid-labile segments were stable in neutral buffer solution, but the molecular weight reduction of matrix polymers, the morphological changes and mass loss of fibrous mats were significantly enhanced under acid circumstances.
机译:局部递送和可控释放特性使静电纺超细纤维成为潜在的可植入药物载体和医疗器械功能涂层。几乎没有尝试形成酸不稳定的电纺纤维,其释放行为对局部环境和纤维特性有反应。在当前的研究中,提出了一种新颖的策略来合成含有原酸酯基团的可生物降解的pH敏感聚合物。通过使3,9-二亚甲基-2,4,8,10-四氧杂螺[5.5]十一烷与1,10-癸二醇或聚乙二醇反应,合成酸不稳定链段,然后将其进一步与D,L-丙交酯得到三嵌段共聚物。对生物可降解的酸不稳定聚合物进行电纺丝,并以对乙酰氨基酚作为模型药物进行封装。体外释放研究表明,在酸缓冲溶液中温育后,酸不稳定聚合物纤维释放的药物总量得以加速,具有亲水性酸不稳定片段的基质聚合物的初始突释和持续释放速率明显更高。体外降解研究表明,含酸不稳定链段的电纺纤维在中性缓冲溶液中是稳定的,但是在酸性条件下,基质聚合物的分子量降低,纤维毡的形态变化和质量损失显着增强。

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