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首页> 外文期刊>Biomacromolecules >Aligned Chitosan-Gelatin Cryogel-Filled Polyurethane Nerve Guidance Channel for Neural Tissue Engineering: Fabrication, Characterization, and In Vitro Evaluation
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Aligned Chitosan-Gelatin Cryogel-Filled Polyurethane Nerve Guidance Channel for Neural Tissue Engineering: Fabrication, Characterization, and In Vitro Evaluation

机译:对齐的壳聚糖 - 明胶冷冻凝胶填充聚氨酯神经引导通道用于神经组织工程:制造,表征和体外评估

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摘要

Recent trends in peripheral nerve regeneration are directed toward the development of nerve guidance channels to assist the regeneration of the nerves across critical size defects. Advanced nerve guidance channels (aNGCs) should possess multifunctional properties to direct the axonal regeneration from proximal to distal end, allow the concentration of growth factors secreted by the injured nerve end, and attenuate the ingrowth of scar tissue at the site of injury. The design of the nerve guidance channel (NGC) is critical for providing the necessary topographical, chemotactic, as well as haptotactic cues for efficient nerve regeneration. In this study, we have designed and fabricated clinically relevant aNGCs comprising an antioxidant polyurethane (PUAO) conduit filled with aligned chitosan-gelatin (CG) cryogel filler for peripheral nerve regeneration. The effects of temperature, polymer concentration, and cross-linker concentration on the physicochemical properties of the CG cryogel filler were studied. The synthesized scaffolds were evaluated by scanning electron microscopy (SEM) and compression testing to obtain the matrix best suited to form the aNGC. The nanofibrous PUAO conduit was fabricated by electrospinning with a wall thickness of 114.16 +/- 26.91 mu m, which was filled with CG (1.2/6.4%)-aligned cryogel matrix to obtain the aNGCs. The aNGCs with 2.01 +/- 0.04 mm internal diameter, 15 mm length, and internal CG filler with a pore diameter of 29.60 +/- 9.83 mu m were fabricated. The aNGCs were evaluated by SEM and in vitro neuronal culture for biocompatibility and cellular alignment. In vitro dorsal root ganglion cultures showed the aligned growth and cellular migration along the aligned pores of aNGCs. With this study, we conclude that this clinically relevant aligned porous aNGC will have a promising effect in repair and regeneration of peripheral nerve injuries.
机译:周围神经再生的最近趋势涉及神经引导通道的发展,以帮助临界尺寸缺陷的神经再生。先进的神经引导通道(Angcs)应该具有多功能性质,以引导近端到远端的轴突再生,从而允许受伤神经终止分泌的生长因子的浓度,并衰减伤害部位的瘢痕组织的发起。神经引导通道(NGC)的设计对于提供必要的地形,趋化学以及高效神经再生的静脉曲张性提示至关重要。在这项研究中,我们已经设计和制造了临床相关的Angcs,其包含填充有对准的壳聚糖 - 明胶(CG)冷冻填料的抗氧化聚氨酯(Puao)导管,用于外周神经再生。研究了温度,聚合物浓度和交联剂浓度对CG冷冻填料的物理化学性质的影响。通过扫描电子显微镜(SEM)和压缩测试来评估合成的支架,以获得最适合形成ANGC的基质。通过静电纺丝通过114.16 +/-26.91μm的静电纺丝制造纳米纤维脓型导管,其填充有Cg(1.2 / 6.4%) - 对准的冷冻凝胶基质以获得造鞍。制造了2.01 +/- 0.04mm的Angcs,内径为15毫米长,孔径为29.60 +/-9.83μm的内部Cg填料。通过SEM和体外神经元培养来评估ANGCS,用于生物相容性和细胞比对。体外背根神经节培养物显示沿着对齐的吴沟孔的对齐生长和细胞迁移。通过这项研究,我们得出结论,这种临床相关的对齐的多孔Angc将对周围神经损伤的修复和再生具有有希望的效果。

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  • 来源
    《Biomacromolecules 》 |2019年第2期| 共12页
  • 作者单位

    Indian Inst Technol Kanpur Dept Biol Sci &

    Bioengn Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Kanpur Dept Biol Sci &

    Bioengn Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Kanpur Dept Biol Sci &

    Bioengn Kanpur 208016 Uttar Pradesh India;

    Aalto Univ Sch Chem Engn Dept Chem &

    Met Engn Helsinki Finland;

    Indian Inst Technol Kanpur Dept Biol Sci &

    Bioengn Kanpur 208016 Uttar Pradesh India;

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  • 正文语种 eng
  • 中图分类 分子生物学 ;
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