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首页> 外文期刊>Journal of materials science >Novel chitosan hydrogel formed by ethylene glycol chitosan, 1,6-diisocyanatohexan and polyethylene glycol-400 for tissue engineering scaffold: in vitro and in vivo evaluation
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Novel chitosan hydrogel formed by ethylene glycol chitosan, 1,6-diisocyanatohexan and polyethylene glycol-400 for tissue engineering scaffold: in vitro and in vivo evaluation

机译:由乙二醇壳聚糖,1,6-二异氰酸根己酯和聚乙二醇-400组成的新型壳聚糖水凝胶用于组织工程支架:体内和体外评估

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摘要

Traditional chitosan hydrogels were prepared by chemical or physical crosslinker, and both of the two kinds of hydrogels have their merits and demerits. In this study, researchers attempted to prepare one kind of chitosan hydrogel by slightly crosslinker, which could combine the advantages of the two kinds of hydrogels. In this experiment, the crosslinker was formed by a reaction between the isocyanate group of 1,6-diisocyanatohexan and the hydroxyl group of polyethylene glycol-400 (PEG-400), then the crosslinker reacted with the amidine and the hydroxyl group of ethylene glycol chitosan to form the network structure. Physical properties of the hydrogel were tested by Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM) and biodegradation. Biocompatibility was assessed by cell implantation in vitro and the scaffold was used as a cartilage tissue engineering scaffold to repair a defect in rabbit knee joints in vivo. FTIR results show the formation of a covalent bond during thickening of the ethylene glycol chitosan. SEM and degradation experiments showed that the ethylene glycol chitosan hydrogel is a 3-D, porous, and degradable scaffold. The hydrogel contained 2 % ethylene glycol chitosan and 10 μl crosslinker was selected for the biocompatibility experiment in vitro and in vivo. After chondrocytes were cultured in the ethylene glycol chitosan hydrogel scaffold for 1 week cells exhibited clustered growth and had generated extracellular matrix on the scaffold in vitro. The results in vivo showed that hydrogel-chondrocytes promoted the repair of defect in rabbits. Based on these results, it could be concluded that ethylene glycol chitosan hydrogel is a scaffold with excellent physicochemical properties and it is a promising tissue engineering scaffold.
机译:传统的壳聚糖水凝胶是通过化学或物理交联剂制备的,两种水凝胶都有其优缺点。在这项研究中,研究人员试图通过轻微交联剂制备一种壳聚糖水凝胶,该凝胶可以结合两种水凝胶的优点。在该实验中,交联剂是通过1,6-二异氰酸根己酯的异氰酸酯基与聚乙二醇-400(PEG-400)的羟基反应而形成的,然后该交联剂与and和乙二醇的羟基反应壳聚糖形成网络结构。通过傅立叶变换红外光谱法(FTIR),扫描电子显微镜(SEM)和生物降解来测试水凝胶的物理性质。通过体外细胞植入评估生物相容性,并将该支架用作软骨组织工程支架,以在体内修复兔膝关节的缺陷。 FTIR结果表明在乙二醇壳聚糖增稠过程中共价键的形成。 SEM和降解实验表明,乙二醇壳聚糖水凝胶是一种3-D,多孔且可降解的支架。包含2%乙二醇壳聚糖的水凝胶,选择10μl交联剂用于体外和体内生物相容性实验。软骨细胞在乙二醇壳聚糖水凝胶支架中培养1周后,细胞呈簇状生长,并在体外在支架上产生细胞外基质。体内结果表明,水凝胶软骨细胞促进了兔缺损的修复。基于这些结果,可以得出结论,乙二醇壳聚糖水凝胶是具有优异的理化性质的支架,并且是有希望的组织工程支架。

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  • 来源
    《Journal of materials science》 |2014年第8期|1903-1913|共11页
  • 作者单位

    Institute of Tissue Engineering and Stem Cells, Nanchong Central Hospital and the Second Clinical Institute of North Sichuan Medical University, Nanchong 637000, Sichuan, China;

    Institute of Tissue Engineering and Stem Cells, Nanchong Central Hospital and the Second Clinical Institute of North Sichuan Medical University, Nanchong 637000, Sichuan, China;

    Institute of Tissue Engineering and Stem Cells, Nanchong Central Hospital and the Second Clinical Institute of North Sichuan Medical University, Nanchong 637000, Sichuan, China;

    Department of Orthopaedic Surgery, University of Virginia School of Medicine, Charlottesville, VA 22908, USA;

    Department of Orthopaedic Surgery, University of Virginia School of Medicine, Charlottesville, VA 22908, USA;

    Institute of Tissue Engineering and Stem Cells, Nanchong Central Hospital and the Second Clinical Institute of North Sichuan Medical University, Nanchong 637000, Sichuan, China;

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