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Development of a clay based bioink for 3D cell printing for skeletal application

机译:用于骨骼应用的3D细胞印刷基于粘土的生物链

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摘要

Three-dimensional printing of cell-laden hydrogels has evolved as a promising approach on the route to patient-specific or complex tissue-engineered constructs. However, it is still challenging to print structures with both, high shape fidelity and cell vitality. Herein, we used a synthetic nanosilicate clay, called Laponite, to build up scaffolds utilising the extrusion-based method 3D plotting. By blending with alginate and methylcellulose, a bioink was developed which allowed easy extrusion, achieving scaffolds with high printing fidelity. Following extrusion, approximately 70%-75% of printed immortalised human mesenchymal stem cells survived and cell viability was maintained over 21 days within the plotted constructs. Mechanical properties of scaffolds comprised of the composite bioink decreased over time when stored under cell culture conditions. Nevertheless, shape of the plotted constructs was preserved even over longer cultivation periods. Laponite is known for its favourable drug delivery properties. Two model proteins, bovine serum albumin and vascular endothelial growth factor were loaded into the bioink. Wedemonstrate that the release of both growth factors significantly changed to a more sustained profile by inclusion of Laponite in comparison to an alginate-methylcellulose blend in the absence of Laponite. In summary, addition of a synthetic clay, Laponite, improved printability, increased shape fidelity and was beneficial for controlled release of biologically active agents such as growth factors.
机译:细胞升起水凝胶的三维印刷在向患者特异性或复杂的组织工程构建体的途径上发展成为一种有希望的方法。然而,在具有高形状保真度和细胞生命力的情况下印刷结构仍然挑战。在此,我们使用称为Laponite的合成纳米硅酸盐粘土,以利用基于挤出的方法3D曲线构建支架。通过用藻酸盐和甲基纤维素混合,开发了一种生物丝,其允许易挤出,实现具有高印刷保真度的支架。在挤出之后,约70%-75%的印刷永生化的人间充质干细胞存活和细胞活力在绘图构建体内超过21天。在细胞培养条件下储存时,由复合生物链组成的支架的机械性能随时间减少。然而,绘制构建体的形状甚至保持较长的培养期。 Laponite以其有利的药物递送性能而闻名。将两种模型蛋白质,牛血清白蛋白和血管内皮生长因子加载到生物旋入。威胁表明,通过在不存在Laponite的藻酸盐 - 甲基纤维素混合物的比较中,释放两种生长因子的释放显着变为更持续的型材。总之,加入合成粘土,氯峰,改善的可印刷性,增加的形状富力度,有利于对生物活性剂如生长因子的控制释放。

著录项

  • 来源
    《Biofabrication》 |2017年第3期|共16页
  • 作者单位

    Univ Hosp Carl Gustav Carus Ctr Translat Bone Joint &

    Soft Tissue Res Dresden Germany;

    Univ Southampton Inst Dev Sci Bone &

    Joint Res Grp Ctr Human Dev Stem Cells &

    Regenerat Southampton Hants England;

    Univ Hosp Carl Gustav Carus Ctr Translat Bone Joint &

    Soft Tissue Res Dresden Germany;

    Univ Hosp Carl Gustav Carus Ctr Translat Bone Joint &

    Soft Tissue Res Dresden Germany;

    Univ Hosp Carl Gustav Carus Ctr Translat Bone Joint &

    Soft Tissue Res Dresden Germany;

    Univ Southampton Inst Dev Sci Bone &

    Joint Res Grp Ctr Human Dev Stem Cells &

    Regenerat Southampton Hants England;

    Univ Southampton Fac Engn &

    Environm Engn Mat Res Grp Southampton Hants England;

    Univ Hosp Carl Gustav Carus Ctr Translat Bone Joint &

    Soft Tissue Res Dresden Germany;

    Univ Southampton Inst Dev Sci Bone &

    Joint Res Grp Ctr Human Dev Stem Cells &

    Regenerat Southampton Hants England;

    Univ Hosp Carl Gustav Carus Ctr Translat Bone Joint &

    Soft Tissue Res Dresden Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

    Laponite; bioink; bioprinting; growth factor delivery; hydrogels; additive manufacturing;

    机译:Laponite;生物链;Bioplinting;生长因子输送;水凝胶;添加剂制造;

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