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通过静电纺丝从组合大分子库中筛选候选物,制备具有多种性能的可生物降解纤维支架。

Biodegradable fibrous scaffolds with diverse properties by electrospinning candidates from a combinatorial macromer library.

机构信息

Department of Bioengineering, University of Pennsylvania, 240 Skirkanich Hall, 210 S. 33rd Street, Philadelphia, PA 19104, USA.

出版信息

Acta Biomater. 2010 Apr;6(4):1219-26. doi: 10.1016/j.actbio.2009.10.027. Epub 2009 Oct 21.

Abstract

The properties of electrospun fibrous scaffolds, including degradation, mechanics and cellular interactions, are important for their use in tissue engineering applications. Although some diversity has been obtained previously in fibrous scaffolds, optimization of scaffold properties relies on iterative techniques in both polymer synthesis and processing. Here, we electrospun candidates from a combinatorial library of biodegradable and photopolymerizable poly(beta-amino ester)s (PBAEs) to show that the diversity in properties found in this library is retained when processed into fibrous scaffolds. Specifically, three PBAE macromers were electrospun into scaffolds and possessed similar initial mechanical properties, but exhibited mass loss ranging from rapid (complete degradation within approximately 2 weeks) to moderate (complete degradation within approximately 3 months) to slow (only partial degradation after 3 months). These trends in mechanics and degradation mimicked what was previously observed in the bulk polymers. Although cellular adhesion was dependent on the polymer composition in films, adhesion to scaffolds that were electrospun with gelatin was similar on all formulations and controls. To further illustrate the diverse properties that are attainable in these systems, the fastest and slowest degrading polymers were electrospun together into one scaffold, but as distinct fiber populations. This dual-polymer scaffold exhibited behavior in mass loss and mechanics with time that fell between the single-polymer scaffolds. In general, this work indicates that combinatorial libraries may be an important source of information and specific polymer compositions for the fabrication of electrospun fibrous scaffolds with tunable properties.

摘要

静电纺丝纤维支架的特性,包括降解、力学和细胞相互作用,对于它们在组织工程应用中的使用非常重要。尽管以前已经在纤维支架中获得了一些多样性,但支架性能的优化依赖于聚合物合成和加工中的迭代技术。在这里,我们从可生物降解和光聚合性聚(β-氨基酯)(PBAE)的组合文库中静电纺丝候选物,以表明在将其加工成纤维支架时,该文库中发现的性能多样性得以保留。具体来说,三种 PBAE 大分子单体被静电纺成支架,具有相似的初始机械性能,但表现出的质量损失范围从快速(大约 2 周内完全降解)到中等(大约 3 个月内完全降解)到缓慢(3 个月后仅部分降解)。这些力学和降解趋势与在大块聚合物中观察到的趋势相似。尽管细胞黏附性取决于薄膜中的聚合物组成,但在所有配方和对照中,用明胶静电纺丝的支架的黏附性相似。为了进一步说明在这些系统中可以获得的多样性能,将降解最快和最慢的聚合物一起静电纺丝成一个支架,但为不同的纤维群体。这种双聚合物支架在质量损失和力学性能方面的行为随时间的推移介于单聚合物支架之间。总的来说,这项工作表明,组合文库可能是获取具有可调性能的静电纺丝纤维支架的重要信息和特定聚合物组成的来源。

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