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首页> 外文期刊>Biomacromolecules >Tissue-Engineered Trachea Consisting of Electrospun Patterned scPLA/GO-g-IL Fibrous Membranes with Antibacterial Property and 3D-Printed Skeletons with Elasticity
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Tissue-Engineered Trachea Consisting of Electrospun Patterned scPLA/GO-g-IL Fibrous Membranes with Antibacterial Property and 3D-Printed Skeletons with Elasticity

机译:由耐电器图案化的Scpla / Go-G-IL纤维膜组成的组织工程气管,具有抗菌性和具有弹性的3D印刷骨架

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摘要

In this study, a tissue-engineered trachea, consisting of multilevel structural electrospun polylactide (PLA) membranes enveloping 3D-printed thermoplastic polyurethane (TPU) skeletons, was developed to create a mechanically robust, antibacterial and bioresorbable graft for the tracheal reconstruction. The study design incorporated two distinct uses of stereocomplex PLA: patterned electrospun fibers to enhance tissue integration compared to the random layered fibers, meanwhile possessing good antibacterial property; and 3D-printed TPU scaffold with elasticity to provide external support and protection. Herein, ionic liquid (IL)-functioned graphene oxide (GO) was synthesized and presented enhanced mechanical and hydrophilicity properties. More interesting, antibacterial activity of the GO-g-IL modified PLA membranes were proved by Escherichia coli and Staphylococcus aureus, showing superior antibacterial effect compared to single GO or IL. The synergistic antibacterial effect could be related to that GO break cytomembrane of bacteria by its extremely sharp edges, while IL works by electrostatic interaction between its cationic structures and electronegative phosphate groups of bacteria membranes, leading to the loss of cell electrolyte and cell death. Hence, after L929 fibroblast cells were seeded on patterned fibrous membranes with phenotypic shape, further effective cell infiltration, cell proliferation and attachment were observed. In addition, the tissue-engineered trachea scaffolds were implanted into rabbit models. The in vivo result confirmed that the scaffolds with patterned membranes manifested favorable biocompatibility and promoted tissue regeneration.
机译:在该研究中,由包围3D印刷热塑性聚氨酯(TPU)骨架的多级结构ElectrospOx聚氨酯(PLA)膜组成的组织工程气管组成,以制造用于气管重建的机械稳健,抗菌和可生物可吸收移植物。该研究设计掺入了立体复合PLA的两个不同用途:与随机层状纤维相比,图案化的电纺纤维增强组织积分,同时具有良好的抗菌性;和3D印花TPU脚手架,具有弹性,提供外部支撑和保护。这里,合成并呈现离子液体(IL)难分的石墨烯氧化物(GO),并呈现增强的机械和亲水性。通过大肠杆菌和金黄色葡萄球菌证明了Go-G-IL改性PLA膜的更有趣,抗菌活性,与单次或IL相比,呈现出优异的抗菌作用。协同抗菌效果可能与其极锋利的边缘发生细胞的细胞膜,而IL通过其阳离子结构与细菌膜的电负磷酸盐基团之间的静电相互作用,导致细胞电解质和细胞死亡的丧失。因此,在用表型形状接种在图案化的纤维膜上,观察到进一步有效的细胞浸润,细胞增殖和附着物。此外,将组织工程化气管支架植入兔模型中。体内结果证实,具有图案化膜的支架表现出有利的生物相容性和促进的组织再生。

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  • 来源
    《Biomacromolecules》 |2019年第4期|共12页
  • 作者单位

    Northwestern Polytech Univ Sch Nat &

    Appl Sci Dept Appl Chem Xian 710129 Shaanxi Peoples R China;

    Fourth Mil Med Univ Sch Pharm Dept Pharmaceut Anal Xian 710032 Shaanxi Peoples R China;

    Fourth Mil Med Univ Sch Pharm Dept Pharmaceut Anal Xian 710032 Shaanxi Peoples R China;

    Northwestern Polytech Univ Sch Nat &

    Appl Sci Dept Appl Chem Xian 710129 Shaanxi Peoples R China;

    Queen Mary Univ London Sch Engn &

    Mat Sci Mile End Rd London E1 4NS England;

    Queen Mary Univ London Sch Engn &

    Mat Sci Mile End Rd London E1 4NS England;

    Northwestern Polytech Univ Sch Nat &

    Appl Sci Dept Appl Chem Xian 710129 Shaanxi Peoples R China;

    Northwestern Polytech Univ Sch Nat &

    Appl Sci Dept Appl Chem Xian 710129 Shaanxi Peoples R China;

    Northwestern Polytech Univ Sch Nat &

    Appl Sci Dept Appl Chem Xian 710129 Shaanxi Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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