聚合物功能梯度支架的发展综述

R. Scaffaro, F. Lopresti, Andrea Maio, F. Sutera, L. Botta
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引用次数: 50

摘要

近年来,人们对多层支架的制造方法越来越感兴趣。事实上,功能梯度支架(FGSs)提供了可能与天然组织相似的生物和机械功能。根据支架的最终应用,有不同的性质(物理、机械、生化等)需要在空间中逐渐改变。因此,已经研究了许多不同的技术,并经常将其结合起来,以尽可能地定制支架的每个区域,旨在实现最佳的再生性能。通常,根据整个结构中的层数,FGS可以分为双层或多层。在其他情况下,支架的特征在于1个或多个特定性质的连续梯度,这些特性与明显区分的层的存在无关。由于每种传统方法都有其独特的优点和缺点,因此FGSs是克服当前治疗方案局限性的好候选者。与文献中报道的综述(通常侧重于FGS的应用)不同,本简要综述概述了制备FGS所采用的最常见策略。
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Development of Polymeric Functionally Graded Scaffolds: A Brief Review
Over recent years, there has been a growing interest in multilayer scaffolds fabrication approaches. In fact, functionally graded scaffolds (FGSs) provide biological and mechanical functions potentially similar to those of native tissues. Based on the final application of the scaffold, there are different properties (physical, mechanical, biochemical, etc.) which need to gradually change in space. Therefore, a number of different technologies have been investigated, and often combined, to customize each region of the scaffolds as much as possible, aiming at achieving the best regenerative performance. In general, FGSs can be categorized as bilayered or multilayered, depending on the number of layers in the whole structure. In other cases, scaffolds are characterized by a continuous gradient of 1 or more specific properties that cannot be related to the presence of clearly distinguished layers. Since each traditional approach presents peculiar advantages and disadvantages, FGSs are good candidates to overcome the limitations of current treatment options. In contrast to the reviews reported in the literature, which usually focus on the application of FGS, this brief review provides an overview of the most common strategies adopted to prepare FGS.
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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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审稿时长
12 months
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