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首页> 外文期刊>Journal of Applied Polymer Science >Synergistic effects of surface aminolysis and hydrolysis on improving fibroblast cell colonization within poly(L-lactide) scaffolds
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Synergistic effects of surface aminolysis and hydrolysis on improving fibroblast cell colonization within poly(L-lactide) scaffolds

机译:表面氨基溶的协同作用及水解对改善聚(L-丙交酯)支架内成纤维细胞定殖

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摘要

This work presents a method for overcoming the low internal cell colonization within the tissue engineering scaffolds. 3D scaffolds were fabricated by the compression molding/salt leaching technique from mixtures of aminolyzed and hydrolyzed poly(L-lactide) single crystals (PLLAsc) with poly(D,L-lactide) (PDLLA) microparticles. Modified PLLAsc were used to guarantee the surface hydrophilicity, while PDLLA microparticles were used to reinforce the scaffolds. Mechanical properties, morphology, water uptake and fibroblast cell response of the scaffolds were investigated in comparison with scaffolds from only pristine, hydrolyzed, or aminolyzed PLLAsc. Results showed that the scaffolds exhibited proper morphology and hydrophilicity with an enhanced strength. Water uptake by scaffolds from modified PLLAsc was 1.9 times that from pristine PLLAsc. The scaffolds' compressive moduli increased 2.5 times by using of PDLLA (30 wt%). After cell seeding for a week, the number of cells founded on aminolyzed/hydrolyzed PLLAsc scaffolds were 4.28, 2.14, and 1.36 times that founded for pristine, aminolyzed and hydrolyzed PLLAsc scaffolds, respectively. SEM studies showed that fibroblasts migrated and spread throughout the aminolyzed/hydrolyzed PLLAsc scaffolds better than other scaffolds. Hence, combining both aminolyzed and hydrolyzed PLLAsc with PDLLA could result in a mechanically stable scaffold with an enhanced cell colonization.
机译:这项工作提出了一种克服组织工程支架内部细胞定植率低的方法。采用压缩成型/盐浸技术,从氨解和水解的聚L-丙交酯单晶(PLLAsc)与聚D,L-丙交酯(PDLLA)微粒的混合物中制备3D支架。改性PLLAsc用于保证表面亲水性,而PDLLA微粒用于加强支架。与纯PLLAsc、水解PLLAsc或氨解PLLAsc支架相比,研究了支架的力学性能、形态、吸水率和成纤维细胞反应。结果表明,该支架具有良好的形态和亲水性,强度有所提高。改性PLLAsc支架的吸水率是原始PLLAsc支架的1.9倍。PDLLA(30 wt%)使支架的压缩模量增加了2.5倍。细胞接种一周后,在氨解/水解PLLAsc支架上发现的细胞数量分别是原始、氨解和水解PLLAsc支架的4.28、2.14和1.36倍。SEM研究表明,成纤维细胞在氨解/水解PLLAsc支架中的迁移和扩散优于其他支架。因此,将氨解和水解的PLLAsc与PDLLA结合可以产生机械稳定的支架,增强细胞定植。

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