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一种用于软骨功能组织工程的仿生三维编织复合支架。

A biomimetic three-dimensional woven composite scaffold for functional tissue engineering of cartilage.

作者信息

Moutos Franklin T, Freed Lisa E, Guilak Farshid

机构信息

Department of Surgery, 375 MSRB, Box 3093, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Nat Mater. 2007 Feb;6(2):162-7. doi: 10.1038/nmat1822. Epub 2007 Jan 21.

Abstract

Tissue engineering seeks to repair or regenerate tissues through combinations of implanted cells, biomaterial scaffolds and biologically active molecules. The rapid restoration of tissue biomechanical function remains an important challenge, emphasizing the need to replicate structural and mechanical properties using novel scaffold designs. Here we present a microscale 3D weaving technique to generate anisotropic 3D woven structures as the basis for novel composite scaffolds that are consolidated with a chondrocyte-hydrogel mixture into cartilage tissue constructs. Composite scaffolds show mechanical properties of the same order of magnitude as values for native articular cartilage, as measured by compressive, tensile and shear testing. Moreover, our findings showed that porous composite scaffolds could be engineered with initial properties that reproduce the anisotropy, viscoelasticity and tension-compression nonlinearity of native articular cartilage. Such scaffolds uniquely combine the potential for load-bearing immediately after implantation in vivo with biological support for cell-based tissue regeneration without requiring cultivation in vitro.

摘要

组织工程学旨在通过植入细胞、生物材料支架和生物活性分子的组合来修复或再生组织。组织生物力学功能的快速恢复仍然是一项重大挑战,这凸显了使用新型支架设计来复制结构和力学性能的必要性。在此,我们展示了一种微观尺度的3D编织技术,以生成各向异性的3D编织结构,作为新型复合支架的基础,该复合支架与软骨细胞 - 水凝胶混合物结合形成软骨组织构建体。通过压缩、拉伸和剪切测试测量,复合支架显示出与天然关节软骨相同数量级的力学性能。此外,我们的研究结果表明,可以设计出具有初始特性的多孔复合支架,这些特性能够重现天然关节软骨的各向异性、粘弹性和拉伸 - 压缩非线性。这种支架独特地结合了在体内植入后立即承受负荷的潜力以及对基于细胞的组织再生的生物支持,而无需体外培养。

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