首页> 美国卫生研究院文献>Tissue Engineering and Regenerative Medicine >Disc-type hyaline cartilage reconstruction using 3D-cell sheet culture of human bone marrow stromal cells and human costal chondrocytes and maintenance of its shape and phenotype after transplantation
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Disc-type hyaline cartilage reconstruction using 3D-cell sheet culture of human bone marrow stromal cells and human costal chondrocytes and maintenance of its shape and phenotype after transplantation

机译:使用人骨髓基质细胞和人肋软骨细胞的3D细胞片培养重建椎间盘型透明软骨并在移植后保持其形状和表型

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摘要

In this study, we developed the disc-type bio-cartilage reconstruction strategies for transplantable hyaline cartilage for reconstructive surgery using 3D-cell sheet culture of human bone marrow stromal cells and human costal chondrocytes. We compared chondrogenesis efficiency between different chondrogenic-induction methods such as micromass culture, pellet culture, and 3D-cell sheet culture. Among them, the 3D-cell sheet culture resulted in the best chondrogenesis with the disc-type bio-cartilage (>12 mm diameter in size) in vitro, but sometimes spontaneous curling and contraction of 3D-cell sheet culture resulted in the formation of bead-type cartilage, which was prevented by type I collagen coating or by culturing on amniotic membrane. Previously, it was reported that tissue-engineered cartilage reconstructed in vitro does not maintain its cartilage phenotype after transplantation but tends to transform to other tissue type such as bone or connective tissue. However, the disc-type bio-cartilage of 3D-cell sheet culture maintained its hyaline cartilage phenotype even after exposure to the osteogenic-induction condition in vitro for 3 weeks or after the transplantation for 4 weeks in mouse subcutaneous. Collectively, the disc-type bio-cartilage with 12 mm diameter can be reproducibly reconstructed by the 3D-cell sheet culture, whose hyaline cartilage phenotype and shape can be maintained under the osteogenic-induction condition as well as after the transplantation. This disc-type bio-cartilage can be proposed for the application to reconstructive surgery and repair of disc-type cartilage such as mandibular cartilage and digits.Electronic Supplementary MaterialSupplementary material is available for this article at 10.1007/s13770-016-9065-6 and is accessible for authorized users.
机译:在这项研究中,我们开发了使用人骨髓基质细胞和人肋软骨细胞的3D细胞片培养技术进行可手术移植的透明软骨的圆盘式生物软骨重建策略。我们比较了不同软骨诱导方法(如微团培养,沉淀培养和3D细胞片培养)之间的软骨形成效率。其中,3D细胞片培养在体外具有盘状生物支架(直径大于12毫米)产生最佳的软骨形成,但有时3D细胞片培养的自发卷曲和收缩导致形成软骨。珠型软骨,可通过I型胶原蛋白涂层或在羊膜上培养来预防。以前,有报道说,在体外重建的组织工程软骨在移植后不能维持其软骨表型,而是倾向于转化为其他组织类型,例如骨骼或结缔组织。但是,即使在体外暴露于成骨诱导条件下3周或在小鼠皮下移植4周后,3D细胞片培养的圆盘型生物载体仍保持其透明软骨表型。总体上,直径为12 mm的盘状生物支架可通过3D细胞片培养物进行再现性重建,其透明软骨表型和形状可在成骨诱导条件下以及移植后保持。这种椎间盘式生物软骨可被建议用于椎间盘式软骨的修复手术和修复,例如下颌软骨和指骨。电子补充材料本文提供的补充材料为10.1007 / s13770-016-9065-6和可供授权用户访问。

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