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A Solvent-Free Surface Suspension Melt Technique for Making Biodegradable PCL Membrane Scaffolds for Tissue Engineering Applications

机译:用于制造组织工程应用的可生物降解的PCL膜支架的无溶剂表面悬浮熔体技术

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摘要

In tissue engineering, there is limited availability of a simple, fast and solvent-free process for fabricating micro-porous thin membrane scaffolds. This paper presents the first report of a novel surface suspension melt technique to fabricate a micro-porous thin membrane scaffolds without using any organic solvent. Briefly, a layer of polycaprolactone (PCL) particles is directly spread on top of water in the form of a suspension. After that, with the use of heat, the powder layer is transformed into a melted layer, and following cooling, a thin membrane is obtained. Two different sizes of PCL powder particles (100 µm and 500 µm) are used. Results show that membranes made from 100 µm powders have lower thickness, smaller pore size, smoother surface, higher value of stiffness but lower ultimate tensile load compared to membranes made from 500 µm powder. C2C12 cell culture results indicate that the membrane supports cell growth and differentiation. Thus, this novel membrane generation method holds great promise for tissue engineering.
机译:在组织工程中,用于制造微孔薄膜支架的简单,快速且无溶剂的工艺的可用性有限。本文首次提出了一种新颖的表面悬浮熔融技术,无需任何有机溶剂即可制备微孔薄膜支架的报道。简而言之,一层聚己内酯(PCL)颗粒以悬浮液的形式直接铺在水面上。之后,通过加热,将粉末层转变成熔融层,并且在冷却之后,获得薄膜。使用两种不同尺寸的PCL粉末颗粒(100 µm和500 µm)。结果表明,与由500 µm粉末制成的膜相比,由100 µm粉末制成的膜具有更低的厚度,更小的孔径,更光滑的表面,更高的刚度值以及更低的极限拉伸载荷。 C2C12细胞培养结果表明该膜支持细胞生长和分化。因此,这种新颖的膜产生方法对于组织工程具有广阔的前景。

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