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Coaxial extrusion bioprinting of 3D microfibrous constructs with cell-favorable gelatin methacryloyl microenvironments

机译:三维微纤维构建体的同轴挤出生物监测与细胞良好的明胶甲基丙烯酰基微环境

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摘要

Bioinks with shear-thinning/rapid solidification properties and strong mechanics are usually needed for the bioprinting of three-dimensional (3D) cell-laden constructs. As such, it remains challenging to generate soft constructs from bioinks at low concentrations that are favorable for cellular activities. Herein, we report a strategy to fabricate cell-laden constructs with tunable 3D microenvironments achieved by bioprinting of gelatin methacryloyl (GelMA)/alginate core/sheath microfibers, where the alginate sheath serves as a template to support and confine the GelMA pre-hydrogel in the core during the extrusion process, allowing for subsequent UV crosslinking. This novel strategy minimizes the bioprinting requirements for the core bioink, and facilitates the fabrication of cell-laden GelMA constructs at low concentrations. We showed the capability of generating various alginate hollow microfibrous constructs using a coaxial nozzle setup, and verified the diffusibility and perfusability of the bioprinted hollow structures which are important for the tissue-engineering applications. More importantly, the hollow alginate microfibers were used as templates for generating cell-laden GelMA constructs with soft microenvironments, by using GelMA pre-hydrogel as the bioink for the core phase during bioprinting. As such, GelMA constructs at extremely low concentrations (down to 1.5%) could be extruded to effectively support cellular activities including proliferation and spreading for various cell types. We believe that our strategy is likely to provide broad opportunities in bioprinting 3D constructs with cell-favorable microenvironments for applications in tissue engineering and pharmaceutical screening.
机译:通常需要具有剪切变薄/快速凝固性能和强力机械的生物型,用于三维(3D)升起构建体的生物印刷。因此,在低浓度下产生来自生物链的软构造仍然具有挑战性,这是有利于细胞活性的低浓度。在此,我们报告了通过由明胶甲基丙烯酰基(凝胶)/藻酸盐芯/鞘微纤维的生物印刷,其中藻酸盐护套作为模板来制造具有可调谐3D微环境的细胞载荷兰构建体的策略,其中藻酸盐鞘用作支持和限制凝胶剂前水凝胶的模板挤出过程中的核心,允许随后的紫外线交联。该新型策略最小化了核心生物芯片的生物印刷制品要求,并促进在低浓度下制造细胞升起的凝胶构建体。我们展示了使用同轴喷嘴设定产生各种藻酸盐中空微纤维构造的能力,并验证了对组织工程应用很重要的生物印刷中空结构的扩散和灌注性。更重要的是,通过使用凝胶前水凝胶作为生物相期间的核心相,通过使用牙龈前水凝胶作为生物凝胶,将中空藻酸盐微纤维用作模板以产生具有软微细环境的细胞升起的凝胶MICA1构建体。这样,可以挤出极低浓度(低至1.5%)的凝胶M构建体,以有效地支持细胞活性,包括用于各种细胞类型的增殖和扩散。我们认为,我们的战略可能在组织工程和药物筛选中提供具有细胞良好的微环境的Bioplinting 3D构建体的广泛机会。

著录项

  • 来源
    《Biofabrication》 |2018年第2期|共10页
  • 作者单位

    Harvard Med Sch Brigham &

    Womens Hosp Div Engn Med Biomat Innovat Res Ctr Cambridge MA 02139 USA;

    Harvard Med Sch Brigham &

    Womens Hosp Div Engn Med Biomat Innovat Res Ctr Cambridge MA 02139 USA;

    Harvard Med Sch Brigham &

    Womens Hosp Div Engn Med Biomat Innovat Res Ctr Cambridge MA 02139 USA;

    Harvard Med Sch Brigham &

    Womens Hosp Div Engn Med Biomat Innovat Res Ctr Cambridge MA 02139 USA;

    Harvard Med Sch Brigham &

    Womens Hosp Div Engn Med Biomat Innovat Res Ctr Cambridge MA 02139 USA;

    Harvard Med Sch Brigham &

    Womens Hosp Div Engn Med Biomat Innovat Res Ctr Cambridge MA 02139 USA;

    Harvard Med Sch Brigham &

    Womens Hosp Div Engn Med Biomat Innovat Res Ctr Cambridge MA 02139 USA;

    Donghua Univ Coll Text Key Lab Text Sci &

    Technol Minist Educ Shanghai 201620 Peoples R China;

    Harvard Med Sch Brigham &

    Womens Hosp Div Engn Med Biomat Innovat Res Ctr Cambridge MA 02139 USA;

    Harvard Med Sch Brigham &

    Womens Hosp Div Engn Med Biomat Innovat Res Ctr Cambridge MA 02139 USA;

  • 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

    bioprinting; alginate; gelatin methacryloyl (GelMA); cell-laden; hydrogel; tissue engineering;

    机译:生物印刷;藻酸盐;明胶甲基丙烯酰(GELMA);细胞包装;水凝胶;组织工程;

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