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In vitro development of personalized cartilage microtissues uncovers an individualized differentiation capacity of human chondrocytes

机译:个性化软骨微辐射的体外发展揭示了人软骨细胞的个性化分化能力

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Personalized features in the treatment of knee injuries and articular replacement therapies play an important role in modern life with increasing demand. Therefore, cell-based therapeutic approaches for the regeneration of traumatic defects of cartilage tissue were developed. However, great variations in the quality of repair tissue or therapeutic outcome were observed. The aim of the study was to capture and visualize individual differentiation capacities of chondrocytes derived from different donors with regard to a possible personal regeneration capacity using a cell-based therapy. The redifferentiation potential of monolayer cultured cells was analyzed in a scaffold-free three-dimensional tissue model. Furthermore, stimulating options using cartilage maturation factors such as L-ascorbic acid and transforming growth factor beta 2 (TGF-beta(2)) on this process were of special interest. Cells and tissues were analyzed via histological and immunohistochemical methods. Gene expression was measured by quantitative real-time polymerase chain reaction. In monolayer culture, cells from all donors showed an almost identical differentiation profile. In contrast, the differentiation state of cartilage-like three-dimensional microtissues revealed clear differences with respect to individual donors. Analyses at the protein and mRNA levels showed high variations regarding cartilage-typical matrix components (e.g. proteoglycans, collagen type II) and intracellular proteins (e.g. S100). Interestingly, only donor chondrocytes with a basic tendency to re-differentiate in a three-dimensional environment were able to increase this tissue-specific maturation when exposed to L-ascorbic acid and/or TGF-beta 2. Our approach revealed clear-cut possibilities for classification of individual donors into responders or non-responders. On the basis of these results an invitro platform could be designed to discriminate responders from non-responders. This invitro three-dimensional test system may be a suitable basis to establish a personalized diagnostic tool with the opportunity to assess the capacity of expanded chondrocytes to respond to an autologous cell-based therapy.
机译:膝关节损伤和关节替代疗法的个性化特征在现代生活中发挥着重要作用,随着需求的增加。因此,开发了基于细胞的治疗方法,用于制造软骨组织的创伤性缺陷的再生。然而,观察到修复组织或治疗结果的质量的巨大变化。该研究的目的是捕获和可视化来自不同捐赠者的软骨细胞的单个分化能力,了解使用基于细胞的疗法可能的个人再生能力。在无支腿的三维组织模型中分析单层培养细胞的重新细胞潜力。此外,在该过程上使用软骨成熟因子(如L-抗坏血酸和转化生长因子β2)(TGF-β(2))的刺激选择具有特殊兴趣。通过组织学和免疫组织化学分析细胞和组织。通过定量实时聚合酶链反应测量基因表达。在单层培养中,来自所有捐赠者的细胞显示出几乎相同的分化曲线。相反,软骨状三维微观的分化状态揭示了与个体供体的明显差异。蛋白质和mRNA水平的分析显示有关软骨典型基质组分的高变化(例如蛋白多糖,II型)和细胞内蛋白(例如S100)。有趣的是,只有在三维环境中重新分化的基本倾向的供体软骨细胞能够在暴露于L-抗坏血酸和/或TGF-β2时增加这种组织特异性成熟。我们的方法揭示了清晰的可能性用于将个别捐助者分类为响应者或非响应者。在这些结果的基础上,邀请平台可以旨在区分非响应者的响应者。该invitro三维测试系统可以是合适的基础,可以利用评估扩展软骨细胞的能力来响应基于自体细胞的治疗的能力来建立个性化的诊断工具。

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