首页> 外文期刊>Tissue engineering, Part A >Cell-engineered human elastic chondrocytes regenerate natural scaffold in vitro and neocartilage with neoperichondrium in the human body post-transplantation
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Cell-engineered human elastic chondrocytes regenerate natural scaffold in vitro and neocartilage with neoperichondrium in the human body post-transplantation

机译:细胞工程化的人弹性软骨细胞可在体外再生天然支架,并在移植后的体内将新软骨与新软骨素结合

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We have developed a unique method that allows us to culture large volumes of chondrocyte expansion from a small piece of human elastic cartilage. The characteristic features of our culturing method are that fibroblast growth factor-2 (FGF2), which promotes proliferation of elastic chondrocytes, is added to a culture medium, and that cell-engineering techniques are adopted in the multilayered culture system that we have developed. 1-4 We have subsequently discovered that once multilayered chondrocytes are transplanted into a human body, differentiation induction that makes use of surrounding tissue occurs in situ, and a large cartilage block is obtained through cartinogenesis and matrix formation. We have named this method two-stage transplantation. We have clinically applied this transplantation method to the congenital ear defect, microtia, and reported successful ear reconstruction. 4 In our present study, we demonstrated that when FGF2 was added to elastic chondrocytes, the cell count increased and the level of hyaluronic acid, which is a major extracellular matrix (ECM) component, increased. We also demonstrated that these biochemical changes are reflected in the morphology, with the elastic chondrocytes themselves producing a matrix and fibers in vitro to form a natural scaffold. We then demonstrated that inside the natural scaffold thus formed, the cells overlap, connect intercellularly to each other, and reconstruct a cartilage-like three-dimensional structure in vitro. We further demonstrated by immunohistochemical analysis and electron microscopic analysis that when the multilayered chondrocytes are subsequently transplanted into a living body (abdominal subcutaneous region) in the two-stage transplantation process, neocartilage and neoperichondrium of elastic cartilage origin are regenerated 6 months after transplantation. Further, evaluation by dynamic mechanical analysis showed the regenerated neocartilage to have the same viscoelasticity as normal auricular cartilage. Using our multilayered culture system supplemented with FGF2, elastic chondrocytes produce an ECM and also exhibit an intercellular network; therefore, they are able to maintain tissue integrity post-transplantation. These findings realized a clinical application for generative cartilage surgery.
机译:我们已经开发出一种独特的方法,使我们能够从一小块人类弹性软骨中培养大量的软骨细胞。我们培养方法的特征是将促进弹性软骨细胞增殖的成纤维细胞生长因子2(FGF2)添加到培养基中,并且在我们开发的多层培养系统中采用了细胞工程技术。 1-4我们随后发现,一旦将多层软骨细胞移植到人体中,就可以在原位发生利用周围组织的分化诱导,并通过软骨形成和基质形成获得大的软骨阻滞。我们将这种方法命名为两阶段移植。我们已经将这种移植方法临床应用到先天性耳缺损,小眼症,并报告了成功的耳重建。 4在我们目前的研究中,我们证明了当将FGF2添加到弹性软骨细胞中时,细胞数量增加并且透明质酸(一种主要的细胞外基质(ECM)成分)水平增加。我们还证明了这些生化变化反映在形态上,弹性软骨细胞本身在体外产生基质和纤维以形成天然支架。然后,我们证明了在如此形成的天然支架内部,细胞相互重叠,彼此间存在细胞间连接,并在体外重建了软骨样的三维结构。我们通过免疫组织化学分析和电子显微镜分析进一步证明,当多层软骨细胞随后在两阶段移植过程中移植到活体(腹部皮下区域)中时,弹性软骨起源的新软骨和新软骨膜会在移植后6个月再生。此外,通过动态力学分析的评估显示,再生的新软骨具有与正常耳软骨相同的粘弹性。使用我们的补充了FGF2的多层培养系统,弹性软骨细胞会产生ECM,并表现出细胞间网络。因此,它们能够在移植后维持组织完整性。这些发现实现了软骨软骨手术的临床应用。

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