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基于可生物降解淀粉共混物的纤维和3D网状支架:制备与表征

Fibers and 3D mesh scaffolds from biodegradable starch-based blends: production and characterization.

作者信息

Pavlov Miroslav P, Mano João F, Neves Nuno M, Reis Rui L

机构信息

Department of Polymer Engineering, University of Minho, Campus of Azurem, 4800-058 Guimaraes, Portugal.

出版信息

Macromol Biosci. 2004 Aug 9;4(8):776-84. doi: 10.1002/mabi.200400002.

Abstract

The aim of this work is the production of fibers from biodegradable polymers to obtain 3D scaffolds for tissue engineering of hard tissues. The scaffolds required for this highly demanding application need to have, as well as the biological and mechanical characteristics, a high degree of porosity with suitable dimensions for cell seeding and proliferation. Furthermore, the open cell porosity should have adequate interconnectivity for a continuous flow of nutrients and outflow of cell metabolic residues as well as to allow cell growth into confluent layers. Blends of corn starch, a natural biodegradable polymer, with other synthetic polymers (poly(ethylene vinyl alcohol), poly(epsilon-caprolactone), poly(lactic acid)) were selected for this work because of their good balance of properties, namely biocompatibility, processability and mechanical properties. Melt spinning was used to produce fibers from all the blends and 3D meshes from one of the starch-poly(lactic acid) blends. The experimental characterization included the evaluation of the tensile mechanical properties and thermal properties of the fibers and the compression stiffness, porosity and degradation behavior of the 3D meshes. Light microscopy picture of 3D meshes.

摘要

这项工作的目的是由可生物降解聚合物制备纤维,以获得用于硬组织工程的三维支架。这种高要求应用所需的支架除了具备生物学和力学特性外,还需要有高度的孔隙率,其尺寸要适合细胞接种和增殖。此外,开孔孔隙率应具有足够的连通性,以实现营养物质的持续流动和细胞代谢残余物的流出,并允许细胞生长形成汇合层。由于玉米淀粉(一种天然可生物降解聚合物)与其他合成聚合物(聚乙烯醇、聚己内酯、聚乳酸)的性能具有良好的平衡性,即生物相容性、可加工性和力学性能,因此选择它们的共混物用于这项工作。采用熔融纺丝法由所有共混物制备纤维,并由一种淀粉 - 聚乳酸共混物制备三维网片。实验表征包括对纤维的拉伸力学性能和热性能以及三维网片的压缩刚度、孔隙率和降解行为进行评估。三维网片的光学显微镜照片。

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