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Bioprinting of Regenerative Photosynthetic Living Materials

机译:再生光合生活材料的生物印刷

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摘要

Living materials, which are fabricated by encapsulating living biological cells within a non-living matrix, have gained increasing attention in recent years. Their fabrication in spatially defined patterns that are mechanically robust is essential for their optimal functional performance but is difficult to achieve. Here, a bioprinting technique employing environmentally friendly chemistry to encapsulate microalgae within an alginate hydrogel matrix is reported. The bioprinted photosynthetic structures adopt pre-designed geometries at millimeter-scale resolution. A bacterial cellulose substrate confers exceptional advantages to this living material, including strength, toughness, flexibility, robustness, and retention of physical integrity against extreme physical distortions. The bioprinted materials possess sufficient mechanical strength to be self-standing, and can be detached and reattached onto different surfaces. Bioprinted materials can survive stably for a period of at least 3 days without nutrients, and their life can be further extended by transferring them to a fresh source of nutrients within this timeframe. These bioprints are regenerative, that is, they can be reused and expanded to print additional living materials. The fabrication of the bioprinted living materials can be readily up-scaled (up to = 70 cm x 20 cm), highlighting their potential product applications including artificial leaves, photosynthetic bio-garments, and adhesive labels.
机译:通过包封在非生物基质内的生物细胞制造的生物材料近年来越来越受到关注。它们在机械稳健的空间定义模式中的制造对于它们的最佳功能性能是必不可少的,但难以实现。这里,报道了使用环境友好化学在藻酸盐水凝胶基质中封装微藻的生物印刷品技术。 Bioplinted光合结构采用毫米级分辨率采用预先设计的几何形状。细菌纤维素衬底对这种生物材料具有异常优点,包括强度,韧性,柔韧性,鲁棒性和对极端身体扭曲的身体完整性的保留。生物印刷材料具有足够的机械强度才能自体站立,可以脱离并重新连接到不同的表面上。 Bioplinted材料可以稳定地在没有营养物质的情况下至少3天存活,并且可以通过将它们转移到该时间帧内的新鲜营养来源来进一步延伸它们的寿命。这些生物印章是再生的,即它们可以重复使用并扩大以印刷额外的生活材料。可以易于上缩放(最高= 70cm×20cm)的生物印刷的生物材料的制造,突出显示它们的潜在产品应用,包括人造叶,光合生物衣服和粘合剂标签。

著录项

  • 来源
    《Advanced Functional Materials 》 |2021年第31期| 2011162.1-2011162.10| 共10页
  • 作者单位

    Delft Univ Technol Kavli Inst Nanosci Dept Bionanosci Van Maasweg 9 NL-2629 HZ Delft Netherlands|Delft Univ Technol Fac Ind Design Engn Dept Sustainable Design Engn Landbergstr 15 NL-2628 CE Delft Netherlands;

    Delft Univ Technol Kavli Inst Nanosci Dept Bionanosci Van Maasweg 9 NL-2629 HZ Delft Netherlands;

    Univ Rochester Dept Biol Rochester NY 14627 USA;

    Delft Univ Technol Fac Ind Design Engn Dept Sustainable Design Engn Landbergstr 15 NL-2628 CE Delft Netherlands;

    Delft Univ Technol Kavli Inst Nanosci Dept Bionanosci Van Maasweg 9 NL-2629 HZ Delft Netherlands;

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

    3D printing; bacterial cellulose; biofabrication; Chlamydomonas reinhardtii; hydrogel;

    机译:3D打印;细菌纤维素;生物结缔;衣原体芦荟;水凝胶;

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