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Conducting polymer-based multilayer films for instructive biomaterial coatings

机译:导电聚合物基多层膜,用于指导性生物材料涂层

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摘要

Aim: To demonstrate the design, fabrication and testing of conformable conducting biomaterials that encourage cell alignment. Materials & methods: Thin conducting composite biomaterials based on multilayer films of poly (3,4-ethylenedioxythiophene) derivatives, chitosan and gelatin were prepared in a layer-by-layer fashion. Fibroblasts were observed with fluorescence microscopy and their alignment (relative to the dipping direction and direction of electrical current passed through the films) was determined using ImageJ. Results: Fibroblasts adhered to and proliferated on the films. Fibroblasts aligned with the dipping direction used during film preparation and this was enhanced by a DC current. Conclusion: We report the preparation of conducting polymer-based films that enhance the alignment of fibroblasts on their surface which is an important feature of a variety of tissues. Lay abstract: Cells inhabit environments known as the extracellular matrix (ECM) which consists of a mixture of different biomolecules, and the precise composition and topographical properties are different in different tissues (e.g., bone, brain, muscle, skin). Cells interact intimately with the ECM, not only constructing the biomolecules, but assist its organization in 3D space, and its degradation (which is important for tissue remodeling); reciprocally, cells respond to the ECM (e.g., by modifying their size, shape, etc). Cellular alignment is observed in organs and tissues such as bones, muscles and skin, and this alignment is important for the healthy functioning of the organ/tissue. Here, we present a novel method of aligning cells on biomaterials, simply by applying an electrical current through the biomaterial.
机译:目的:展示可促进细胞排列的顺应性导电生物材料的设计,制造和测试。材料和方法:以聚(3,4-乙撑二氧噻吩)衍生物,壳聚糖和明胶的多层膜为基础的薄导电复合生物材料,是逐层制备的。用荧光显微镜观察成纤维细胞,并使用ImageJ测定其排列(相对于浸渍方向和通过膜的电流方向)。结果:成纤维细胞粘附并扩散在薄膜上。成纤维细胞与薄膜制备过程中使用的浸入方向对齐,并且通过直流电流得到增强。结论:我们报道了导电聚合物基薄膜的制备,该薄膜可增强成纤维细胞在其表面上的排列,这是多种组织的重要特征。摘要:细胞居住在称为细胞外基质(ECM)的环境中,该环境由不同生物分子的混合物组成,并且不同组织(例如骨骼,大脑,肌肉,皮肤)的精确组成和地形特性也不同。细胞与ECM紧密地相互作用,不仅构建了生物分子,而且还帮助其在3D空间中的组织及其降解(这对于组织重塑很重要);相反,细胞对ECM有反应(例如,通过改变细胞的大小,形状等)。在器官和组织(例如骨骼,肌肉和皮肤)中观察到细胞排列,这种排列对于器官/组织的健康功能很重要。在这里,我们提出了一种通过在生物材料上施加电流简单地对齐生物材料上细胞的新颖方法。

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