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首页> 外文期刊>Acta biomaterialia >Highly porous bioresorbable scaffolds with controlled release of bioactive agents for tissue-regeneration applications.
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Highly porous bioresorbable scaffolds with controlled release of bioactive agents for tissue-regeneration applications.

机译:高度多孔的可生物吸收支架,具有可控释放的生物活性剂,可用于组织再生应用。

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摘要

Highly porous poly(DL-lactic-co-glycolic acid) films with controlled release of horseradish peroxidase (HRP) as a model protein have been successfully developed and studied. These films, which are prepared by freeze-drying inverted emulsions, are designed for use in tissue-regeneration applications. The effects of the emulsion's formulation and host polymer's characteristics on the film's microstructure and HRP release profile over 4 weeks were investigated. A dual pore size population is characteristic for most films, with large 12-18 microm pores and small 1.5-7 microm pores, and porosity in the range of 76-92%. An increase in the polymer content and its initial molecular weight, organic/aqueous (O:A) phase ratio and lactic acid content, or a decrease in the HRP content, all resulted in a decreased burst effect and a more moderate release profile. A simultaneous change in two or three of these formulation parameters (compared to a reference formulation) resulted in a synergistic effect on the HRP release profile. A constant HRP release rate was achieved when a composite film was used. Human gingival fibroblast adhesion to the films indicated good biocompatibility. Appropriate selection of the emulsion's parameters can therefore yield highly porous films with the desired protein-release behavior which can serve as scaffolds for bioactive agents in tissue-regeneration applications.
机译:已经成功开发并研究了高度受控的辣根过氧化物酶(HRP)释放作为模型蛋白的聚(DL-乳酸-乙醇酸)多孔膜。这些薄膜是通过将反相乳液冷冻干燥制成的,旨在用于组织再生应用。研究了乳液配方和主体聚合物的特性对4周内膜的微观结构和HRP释放曲线的影响。对于大多数膜来说,双重孔径的特征是特征,其具有大的12-18微米的孔和小的1.5-7微米的孔,并且孔隙率在76-92%的范围内。聚合物含量及其初始分子量,有机/水(O:A)相比和乳酸含量的增加,或HRP含量的减少,都导致了突释作用的降低和更适度的释放曲线。这些制剂参数中的两个或三个(与参考制剂相比)的同时变化导致对HRP释放曲线的协同作用。使用复合膜时,HRP的释放速率恒定。人牙龈成纤维细胞对膜的粘附表明良好的生物相容性。因此,适当选择乳液的参数可以产生具有所需蛋白质释放性能的高度多孔的薄膜,该薄膜可以用作组织再生应用中生物活性剂的支架。

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