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A Novel Method to Induce Cartilage Regeneration with Cubic Microcartilage

机译:用立方微括约素诱导软骨再生的一种新方法

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Cartilage tissue is characterized by its poor regenerative properties, and the clinical performance of cartilage grafts to replace cartilage defects has been unsatisfactory. Recently, cartilage regeneration with mature chondrocytes and stem cells has been developed and applied in clinical settings. However, there are challenges with the use of mature chondrocytes and stem cells for tissue regeneration, including the high costs associated with the standard stem cell isolation methods and the decreased cell viability due to cell manipulation. Previous studies demonstrated that cartilage can be regenerated from chondrocyte clusters that contain stem cells. Based upon some of the existing techniques, the goal of this study was to develop a novel and practical method to induce cartilage regeneration. A microslicer device was developed to process cartilage tissues into micron-size cartilage (microcartilage) in a minimally invasive manner. We evaluated microcartilage sizes and demonstrated 100-400 mu m as optimal for generating a high cell yield with collagenase digestion. In addition, autologous intrafascial implantation of the composites of microcartilage and an absorbable scaffold with a slow-release system of basic fibroblast growth factor (bFGF) was carried out to induce cartilage regeneration. Our results demonstrated that the extent of bFGF diffusion depends on the size of microcartilage, and that cartilage regeneration was induced most effectively with 100 mu m of microcartilage via SOX5 upregulation. These findings suggest that cartilage regeneration is possible with microcartilage as a source of cells without ex vivo cell expansion. (C) 2017 S. Karger AG, Basel
机译:软骨组织的特点是再生能力差,而软骨移植物替代软骨缺损的临床表现一直不令人满意。近年来,利用成熟软骨细胞和干细胞进行软骨再生已被开发并应用于临床。然而,使用成熟软骨细胞和干细胞进行组织再生存在挑战,包括与标准干细胞分离方法相关的高成本,以及由于细胞操纵导致的细胞活力降低。以前的研究表明,软骨可以从含有干细胞的软骨细胞簇中再生。基于现有的一些技术,本研究的目标是开发一种新的和实用的方法来诱导软骨再生。开发了一种微切片设备,以微创方式将软骨组织加工成微米大小的软骨(微软骨)。我们评估了微胶囊的大小,并证明100-400μm是胶原酶消化产生高细胞产量的最佳条件。此外,还进行了自体筋膜内植入微软骨和可吸收支架复合物,以及碱性成纤维细胞生长因子(bFGF)缓释系统,以诱导软骨再生。我们的结果表明,bFGF的扩散程度取决于微关节的大小,100μm微关节通过SOX5上调诱导软骨再生最有效。这些发现表明,软骨再生是可能的微软骨作为细胞来源,而无需体外细胞扩增。(C) 2017年巴塞尔S.卡格股份公司

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