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Nanostructured Hollow Tubes Based on Chitosan and Alginate Multilayers

材料科学 动态力学分析 差示扫描量热法 京尼平 聚电解质 傅里叶变换红外光谱 聚合物 壳聚糖 组织工程 粘附 粘弹性 细胞包封 纳米技术 化学工程 复合材料 肿胀 的 自愈水凝胶 生物医学工程 高分子化学 工程类 物理 热力学 医学
作者
Joana M. Silva,Ana Rita C. Duarte,Catarina A. Custódio,Praveen Sher,Ana I. Neto,A. Pinho,Jaime C. Fonseca,Rui L. Reis,João F. Mano
出处
期刊:Advanced Healthcare Materials [Wiley]
卷期号:3 (3): 433-440 被引量:53
标识
DOI:10.1002/adhm.201300265
摘要

The design and production of structures with nanometer‐sized polymer films based on layer‐by‐layer (LbL) are of particular interest for tissue engineering since they allow the precise control of physical and biochemical cues of implantable devices. In this work, a method is developed for the preparation of nanostructured hollow multilayers tubes combining LbL and template leaching. The aim is to produce hollow tubes based on polyelectrolyte multilayer films with tuned physical‐chemical properties and study their effects on cell behavior. The final tubular structures are characterized by differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR), microscopy, swelling, and mechanical tests, including dynamic mechanical analysis (DMA) in physiological simulated conditions. It is found that more robust films could be produced upon chemical cross‐linking with genipin. In particular, the mechanical properties confirms the viscoelastic properties and a storage and young modulus about two times higher. The water uptake decreases from about 390% to 110% after the cross‐linking. The biological performance is assessed in terms of cell adhesion, viability, and proliferation. The results obtained with the cross‐linked tubes demonstrate that these are more suitable structures for cell adhesion and spreading. The results suggest the potential of these structures to boost the development of innovative tubular structures for tissue engineering approaches.
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