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首页> 外文期刊>Materials science & engineering >A simple, green chemistry technology for fabrication of tissue-engineered scaffolds based on mussel-inspired 3D centrifugal spun
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A simple, green chemistry technology for fabrication of tissue-engineered scaffolds based on mussel-inspired 3D centrifugal spun

机译:一种简单,绿色化学技术,用于基于贻贝启发3D离心纺纱的组织工程支架制造

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摘要

The fabrication of 3D fibrous scaffolds with highly interconnected pores has been crucial in the development of tissue regeneration techniques. The present study describes the fabrication of 3D fibrous scaffolds by freeze-drying of polydopamine (PDA) coated centrifugal spun gelatin fibers. We wanted to combine the mussel-inspired chemistry, Maillard reaction, and the 3D microstructural advantages of centrifugal spun fibers to develop the green fibrous scaffolds at low cost, high speed, and desired mold shape. The resultant PDA-gelatin fibers exhibited a smooth 3D microstructure with a uniform formation of PDA thin ad-layer that enhanced the mechanical properties and stability of the scaffolds, and thereby decreased the degradation rate. All scaffolds showed promising properties including good dimensional and mechanical stability under wet state, optimal porosity over 94%, and high water uptake of approximately 1500%. The results of cell culture studies, further confirmed that all scaffolds exhibited appropriate biocompatibility, cell proliferation, migration, and infiltration. Particularly, the PDA-coated scaffolds showed a significant enhancement in proliferation, migration, and infiltration of HDF-GFP(+) cells. These results show that a 3D porous fibrous scaffold with simplifying tunable density and desirable shape on a large scale can be readily prepared for different fields of tissue engineering applications.
机译:3D纤维支架具有高度相互连接的孔隙的制造对于组织再生技术的发展至关重要。本研究描述了通过聚德莫胺(PDA)涂覆的离心纺丝明胶纤维的冷冻干燥的3D纤维支架的制造。我们希望将贻贝灵感化学,毛泽东反应和离心纺丝纤维的3D微观结构优势结合在一起,以低成本,高速和所需的模具形状开发绿色纤维支架。所得PDA-明胶纤维表现出光滑的3D微观结构,其均匀地形成PDA薄ad层,其增强了支架的机械性能和稳定性,从而降低了降解速率。所有支架都显示出具有良好尺寸和机械稳定性的承诺,潮湿的稳定性,最佳孔隙率超过94%,高水吸收约1500%。细胞培养研究的结果进一步证实所有支架表现出适当的生物相容性,细胞增殖,迁移和浸润。特别是,PDA涂覆的支架显示出HDF-GFP(+)细胞的增殖,迁移和浸润的显着增强。这些结果表明,对于不同的组织工程应用领域,可以容易地制备具有简化可调谐密度和所需形状的3D多孔纤维支架。

著录项

  • 来源
    《Materials science & engineering》 |2021年第2期|111849.1-111849.11|共11页
  • 作者单位

    Islamic Azad Univ Soft Tissue Engn Res Ctr Tissue Engn & Regenerat Med Inst Cent Tehran Branch Tehran Iran|Islamic Azad Univ Dept Biomed Engn Cent Tehran Branch Tehran Iran;

    Tecnol Monterrey Sch Engn & Sci Av Eugenio Garza Sada Sur Monterrey 2501 NL Mexico|Islamic Azad Univ Hard Tissue Engn Res Ctr Tissue Engn & Regenerat Med Inst Cent Tehran Branch Tehran Iran;

    ACECR Royan Inst Stem Cell Biol & Technol Dept Cell Engn Cell Sci Res Ctr Tehran Iran;

    Islamic Azad Univ Soft Tissue Engn Res Ctr Tissue Engn & Regenerat Med Inst Cent Tehran Branch Tehran Iran;

    Islamic Azad Univ Hard Tissue Engn Res Ctr Tissue Engn & Regenerat Med Inst Cent Tehran Branch Tehran Iran;

    Univ Zurich Ctr Dent & Oral Med Div Dent Biomat Clin Reconstruct Dent Zurich Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Centrifugal spinning; Maillard reaction; Mussel inspired chemistry; 3D gelatin wools; Tissue engineering;

    机译:离心纺纱;美丽的反应;贻贝灵感化学;3D明胶羊毛;组织工程;

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