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Multilayer Films Assembled from Naturally-Derived Materials for Controlled Protein Release

机译:由天然材料组装而成的多层膜可控制蛋白质的释放

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摘要

Herein we designed and characterized films composed of naturally derived materials for controlled release of proteins. Traditional drug delivery strategies rely on synthetic or semi-synthetic materials, or utilize potentially denaturing assembly conditions that are not optimal for sensitive biologics. Layer-by-Layer (LbL) assembly of films uses benign conditions and can generate films with various release mechanisms including hydrolysis-facilitated degradation. These use components such as synthetic polycations that degrade into non-natural products. Herein we report the use of a naturally-derived, biocompatible and degradable polyanion, poly(β-l-malic acid), alone and in combination with chitosan in an LbL film, whose degradation products of malic acid and chitosan are both generally recognized as safe (GRAS) by the FDA. We have found that films based on this polyanion have shown sustained release of a model protein, lysozyme that can be timed from tens of minutes to multiple days through different film architectures. We also report the incorporation and release of a clinically used biologic, basic fibroblast growth factor (bFGF), which demonstrates the use of this strategy as a platform for controlled release of various biologics.
机译:本文中,我们设计并表征了由天然衍生材料组成的薄膜,用于蛋白质的受控释放。传统的药物输送策略依赖于合成或半合成材料,或者利用了潜在的变性装配条件,这对于敏感的生物制剂而言并非最佳。薄膜的逐层组装(LbL)使用良性条件,并且可以生成具有各种释放机制的薄膜,包括水解促进的降解。这些使用降解成非天然产物的成分,例如合成聚阳离子。本文中,我们报告了在LbL膜中单独或与壳聚糖结合使用天然来源的,生物相容性和可降解的聚阴离子聚(β-1-苹果酸),其苹果酸和壳聚糖的降解产物通常被认为是FDA(FDA)安全(GRAS)。我们已经发现,基于这种聚阴离子的薄膜已经显示出模型蛋白(溶菌酶)的持续释放,可以通过不同的薄膜结构将其从几十分钟定为几天。我们还报告了临床上使用的生物制剂,基本成纤维细胞生长因子(bFGF)的掺入和释放,证明了该策略作为各种生物制剂的控释平台的用途。

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