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首页> 外文期刊>Advanced Functional Materials >Bioprinting of Cartilaginous Auricular Constructs Utilizing an Enzymatically Crosslinkable Bioink
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Bioprinting of Cartilaginous Auricular Constructs Utilizing an Enzymatically Crosslinkable Bioink

机译:利用酶促可交联的生物链的软骨耳廓构建体的生物印刷

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摘要

Bioprinting of functional tissues could overcome tissue shortages and allow a more rapid response for treatments. However, despite recent progress in bioprinting, and its outstanding ability to position cells and biomaterials in a precise 3D manner, its success has been limited, due to insufficient maturation of constructs into functional tissue. Here, a novel calcium-triggered enzymatic crosslinking (CTEC) mechanism for bioinks based on the activation cascade of Factor XIII is presented and utilized for the biofabrication of cartilaginous constructs. Hyaluronan transglutaminase (HA-TG), an enzymatically crosslinkable material, has shown excellent characteristics for chondrogenesis and builds the basis of the CTEC bioink. The bioink supports tissue maturation with neocartilage formation and stiffening of constructs up to 400 kPa. Bioprinted constructs remain stable in vivo for 24 weeks and bioprinted auricular constructs transform into cartilaginous grafts. A major limitation of the current study is the deposition of collagen I, indicating the maturation toward fibrocartilage rather than elastic cartilage. Shifting the maturation process toward elastic cartilage will therefore be essential in order for the developed bioinks to offer a novel tissue engineered treatment for microtia patients. CTEC bioprinting furthermore opens up use of enzymatically crosslinkable biopolymers and their modularity to support a multitude of tissues.
机译:功能组织的生物打印能够克服组织的短缺,并允许处理更快速的响应。然而,尽管在生物打印最近的进展,其突出能力位置细胞和精确的3D方式的生物材料,其成功受到了限制,由于成熟不足构建体进入功能性组织。在此,一种新型的钙触发酶交联(CTEC)机构,用于基于因子XIII的活化级联bioinks被呈现和软骨构建体的生物制造利用。转谷氨酰胺酶的乙酰透明质酸(HA-TG),酶促交联材料,已经显示出对软骨优异的特性,并构建CTEC生物油墨的基础。所述生物油墨支撑组织成熟期间用新生软骨的形成和构建体到400kPa的加强。生物打印构建体保持稳定的体内24周和生物打印耳廓构建体转化成软骨移植物。目前研究的一个主要限制是I型胶原的沉积,这表明朝向纤维软骨而不是弹性软骨的成熟。因此移位成熟过程朝向弹性软骨将在顺序必不可少的发达bioinks提供用于耳畸形患者的新型组织工程处理。 CTEC生物打印另外开辟了利用酶法交联的生物聚合物及其模块,以支持组织的,众说纷纭。

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  • 来源
    《Advanced Functional Materials 》 |2021年第16期| 2008261.1-2008261.15| 共15页
  • 作者单位

    Swiss Fed Inst Technol Inst Biomech Tissue Engn & Biofabricat Lab Otto Stern Weg 7 CH-8093 Zurich Switzerland;

    Ecole Polytech Fed Lausanne Lab Stem Cell Bioengn Inst Bioengn Sch Life Sci SV CH-1015 Lausanne Switzerland|Ecole Polytech Fed Lausanne Sch Engn STI CH-1015 Lausanne Switzerland;

    Marine Polymer Technol Inc 1 Van De Graaff Dr Burlington MA 01803 USA;

    HNO Luzerner Kantonsspital Spitalstr CH-6000 Luzern Switzerland;

    Swiss Fed Inst Technol Inst Biomech Tissue Engn & Biofabricat Lab Otto Stern Weg 7 CH-8093 Zurich Switzerland;

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

    auricle; bioinks; bioprinting; enzymatic crosslinking; microtia; transglutaminase;

    机译:耳廓;生物链;生物印刷;酶联交联;微立菌;转谷氨酰胺酶;

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