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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Design and characterization of microcapsules-integrated collagen matrixes as multifunctional three-dimensional scaffolds for soft tissue engineering
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Design and characterization of microcapsules-integrated collagen matrixes as multifunctional three-dimensional scaffolds for soft tissue engineering

机译:微胶囊整合胶原基质作为软组织工程多功能三维支架的设计与鉴定

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摘要

Three-dimensional (3D) porous scaffolds based on collagen are promising candidates for soft tissue engineering applications. The addition of stimuli-responsive carriers (nano- and microparticles) in the current approaches to tissue reconstruction and repair brings about novel challenges in the design and conception of carrier-integrated polymer scaffolds. In this study, a facile method was developed to functionalize 3D collagen porous scaffolds with biodegradable multilayer microcapsules. The effects of the capsule charge as well as the influence of the functionalization methods on the binding efficiency to the scaffolds were studied. It was found that the binding of cationic microcapsules was higher than that of anionic ones, and application of vacuum during scaffolds functionalization significantly hindered the attachment of the microcapsules to the collagen matrix. The physical properties of microcapsules-integrated scaffolds were compared to pristine scaffolds. The modified scaffolds showed swelling ratios, weight losses and mechanical properties similar to those of unmodified scaffolds. Finally, in vitro diffusional tests proved that the collagen scaffolds could stably retain the microcapsules over long incubation time in Tris HCl buffer at 37 degrees C without undergoing morphological changes, thus confirming their suitability for tissue engineering applications. The obtained results indicate that by tuning the charge of the microcapsules and by varying the fabrication conditions, collagen scaffolds patterned with high or low number of microcapsules can be obtained, and that the microcapsules-integrated scaffolds fully retain their original physical properties. (C) 2016 Elsevier Ltd. All rights reserved.
机译:基于胶原蛋白的三维(3D)多孔支架是软组织工程应用的承诺候选者。在目前的组织重建和修复方法中添加刺激响应载体(纳米和微粒)在载体整合聚合物支架的设计和概念中提出了新的挑战。在该研究中,开发了一种容易方法以用可生物降解的多层微胶囊官能化3D胶原多孔支架。研究了胶囊电荷的影响以及官能化方法对支架对支架的结合效率的影响。发现阳离子微胶囊的结合高于阴离子物质的结合,并且在支架中的真空施加在官能化期间的施加显着地阻碍了微胶囊的附着到胶原基质中。将微胶囊综合支架的物理性质与原始支架进行比较。改性的支架显示出与未修饰的支架类似的溶胀比,重量损失和机械性能。最后,在体外扩散试验证明,胶原蛋白支架可以在37摄氏度在37摄氏度在Tris HCl缓冲液中稳定地保持微胶囊,而不经历形态变化,从而确认它们适用于组织工程应用的适用性。所得结果表明,通过调节微胶囊的电荷并通过改变制造条件,可以获得具有高或低数量微胶囊的胶原屑支架,并且微胶囊 - 集成支架完全保持其原始物理性质。 (c)2016 Elsevier Ltd.保留所有权利。

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