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Aligned 3D porous polyurethane scaffolds for biological anisotropic tissue regeneration

机译:对齐的3D多孔聚氨酯支架用于生物各向异性组织再生

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摘要

A green fabrication process (organic solvent-free) of artificial scaffolds is required in tissue engineering field. In this work, a series of aligned three-dimensional (3D) scaffolds are made from biodegradable waterborne polyurethane (PU) emulsion via directional freeze–drying method to ensure no organic byproducts. After optimizing the concentration of polymer in the emulsion and investigating different freezing temperatures, an aligned PUs scaffold (PU14) generated from 14 wt% polymer content and processed at −196°C was selected based on the desired oriented porous structure (pore size of 32.5 ± 9.3 μm, porosity of 92%) and balanced mechanical properties both in the horizontal direction (strength of 41.3 kPa, modulus of 72.3 kPa) and in the vertical direction (strength of 45.5 kPa, modulus of 139.3 kPa). The response of L929 cells and the regeneration of muscle tissue demonstrated that such pure material-based aligned 3D scaffold can facilitate the development of orientated cells and anisotropic tissue regeneration both and . Thus, these pure material-based scaffolds with ordered architecture have great potentials in tissue engineering for biological anisotropic tissue regeneration, such as muscle, nerve, spinal cord and so on.
机译:在组织工程领域,需要绿色的人工支架制造工艺(无有机溶剂)。在这项工作中,通过定向冷冻干燥方法,由可生物降解的水性聚氨酯(PU)乳液制成一系列对齐的三维(3D)支架,以确保没有有机副产物。优化乳液中聚合物的浓度并研究不同的冷冻温度后,基于所需的定向多孔结构(孔径为32.5),选择了由14 wt%的聚合物生成并在-196°C处理的对齐的PU支架(PU14)在水平方向(强度为41.3 kPa,模量为72.3 kPa)和在垂直方向(强度为45.5 kPa,模量为139.3 kPa)均具有±9.3μm,孔隙度为92%)和平衡的力学性能。 L929细胞的反应和肌肉组织的再生表明,这种基于纯材料的对齐3D支架可以促进定向细胞的发育和各向异性组织的再生。因此,这些具有有序结构的基于纯材料的支架在组织工程中具有巨大的潜力,可用于生物各向异性组织的再生,例如肌肉,神经,脊髓等。

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