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A novel poly (vinyl alcohol)/poly (ethylene glycol) scaffold for tissue engineering with a unique bimodal open-celled structure fabricated using supercritical fluid foaming

机译:用于组织工程的新型聚(乙烯醇)/聚(乙二醇)支架,其使用超临界流体发泡制造独特的双峰开孔结构

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In this study, a novel poly (vinyl alcohol) (PVA)/poly (ethylene glycol) (PEG) scaffold was carefully designed via thermal processing and subsequent supercritical fluid (SCF) foaming. Interestingly, a bimodal open-celled structure with interconnected networks was successfully created in the plasticized PVA (WPVA)/PEG scaffold. Large cells were produced from the nucleation sites generated in the PVA phase during rapid depressurization, while plenty?of small pores generate in the cell walls of the big cells. The formation mechanism of this cellular structure was studied by considering the various phase morphologies and the diffusion behaviour of the carbon dioxide (COsub2/sub) in individual phases. In addition, the intermolecular interactions of the WPVA/PEG blend were studied using X-ray diffraction and FTIR analysis. The results demonstrate that various types of hydrogen bonds among the hydroxyl groups on the PVA chains, PEG and water molecules are formed in the blend system. The realization of thermoplastic foaming of the PVA/PEG blend benefits from the interactions of complexation and plasticization between water and PEG molecules. The SEM images also revealed that L929 fibroblast cells were able to attach and spread on surfaces of the WPVA/PEG samples. Thus the WPVA/PEG scaffold with unique bimodal cellular structure is nontoxic and favours the attachment and proliferation of cells, making it promising for use as the candidate for tissue engineering applications.
机译:在该研究中,通过热处理和随后的超临界流体(SCF)发泡,小心地设计了一种新型聚(乙烯醇)/聚(PVA)/聚(乙二醇)(PEG)支架。有趣的是,在塑化的PVA(WPVA)/ PEG支架中成功地创建了一种具有互连网络的双峰开放式结构。从PVA相期间在快速减压期间产生的大细胞产生大细胞,而大量孔在大细胞的细胞壁中产生。通过考虑各个相中二氧化碳(CO 2 )的各种相形态和扩散行为来研究这种细胞结构的形成机制。另外,使用X射线衍射和FTIR分析研究了WPVA / PEG共混物的分子间相互作用。结果表明,在共混体系中形成了PVA链,PEG和水分子上的羟基中的各种类型的氢键。 PVA / PEG的热塑性发泡的实现从水和PEG分子之间的络合和塑化的相互作用中受益。 SEM图像还显示L929成纤维细胞能够在WPVA / PEG样品的表面上附着和涂布。因此,WPVA / PEG支架具有独特的双峰细胞结构是无毒的,并且有利于细胞的附着和增殖,使其有望用作组织工程应用的候选者。

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