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Adhesive free-standing multilayer films containing sulfated levan for biomedical applications

机译:含有硫酸化Levan的胶粘剂的多层薄膜用于生物医学应用

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This work is the first reporting the use of layer-by-layer to produce adhesive free-standing (FS) films fully produced using natural-based macromolecules: chitosan (CHI), alginate (ALG) and sulfated levan (L-S). The deposition conditions of the natural polymers were studied through zeta potential measurements and quartz crystal microbalance with dissipation monitoring analysis. The properties of the FS films were evaluated and compared with the control ones composed of only CHI and ALG in order to assess the influence of levan polysaccharide introduced in the multilayers. Tensile tests, dynamic mechanical analysis and single lap shear strength tests were performed to evaluate the mechanical properties of the prepared FS films. The presence of L-S conferred both higher tensile strength and shear strength to the developed FS membranes. The results showed an adhesion strength 4 times higher than the control (CHI/ALG) FS films demonstrating the adhesive character of the FS films containing L-S. Morphological and topography studies were carried out revealing that the crosslinking reaction granted the L-S based FS film with a higher roughness and surface homogeneity. Preliminary biological assays were performed by cultivating myoblasts cells on the surface of the produced FS films. Both crosslinked and uncrosslinked FS films containing L-S were cytocompatible and myoconductive. (C) 2018 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:这项工作是第一个报告使用层逐层生产粘合剂独立(FS)薄膜,使用基于天然的大分子(Chi),藻酸盐(ALG)和硫酸化levan(L-S)完全产生。通过Zeta电位测量和石英晶体微稳定研究天然聚合物的沉积条件,随着耗散监测分析。评估FS膜的性质,并与仅由CHI和ALG组成的对照组进行比较,以评估多层引入的左南多糖的影响。进行拉伸试验,进行动态机械分析和单圈剪切强度试验,以评估制备的FS膜的机械性能。 L-S的存在赋予发育的FS膜的较高拉伸强度和剪切强度。结果表明粘合强度高出4倍,比对照(CHI / ALG)FS膜,用于证明含有L-S的FS膜的粘合特性。进行形态学和地形研究表明,交联反应授予L-S的FS膜,具有更高的粗糙度和表面均匀性。通过在所产生的FS膜的表面上培养肌细胞细胞进行初步生物测定。含有L-S的交联和未交联的FS膜两者都是细胞势不可溶的和无导体。 (c)2018 Acta Materialia Inc.出版的Althervier Ltd.保留所有权利。

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