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A cell-seeded biocomposite for cartilage repair.

机译:一种具有细胞种子的生物复合材料,用于软骨修复。

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摘要

Chondrocytes in monolayer cultures lose their phenotype and capability to express type-II collagen, they dedifferentiate into a fibroblastic cell type. Using three-dimensional culture systems a redifferentiation of these cells may occur. In the present study we investigated the morphology and biosynthetic activity of human articular chondrocytes seeded on porous matrices of type I/III collagen (Chondrogide, Geistlich Biomaterials, Wolhusen, Switzerland). Microscopical examinations showed that chondrocytes adhere firmly to a collagen-I/III-membrane exhibiting their characteristic spherical cell shape. Cell numbers after enzymatic digestion of the membrane showed a 93% recovery of seeded cells. Immunohistological examination revealed positive staining for type-II collagen in some areas. The generated biocomposite withstands mechanical stress, keeps its size and design and does not shrink in culture. It is therefore easy to handle, can be sutured, glued or fixed with pins. This study shows, that in vitro production of autologous cartilage-like tissue could be established using a bilayer collagen type I/III fleece. This biocomposite carries active chondrocytes and is currently being evaluated in vivo in a sheep model as well as in a clinical trial for the repair of localized cartilage defects in the knee.
机译:单层培养物中的软骨细胞失去其表型和表达II型胶原的能力,它们去分化为成纤维细胞类型。使用三维培养系统,可能会发生这些细胞的再分化。在本研究中,我们调查了植入I / III型胶原多孔基质(Chondrogide,Geistlich Biomaterials,Wolhusen,瑞士)的人关节软骨细胞的形态和生物合成活性。显微镜检查表明,软骨细胞牢固地粘附于表现出其特征球形细胞形状的胶原蛋白I / III膜。膜酶消化后的细胞数显示接种细胞的回收率为93%。免疫组织学检查显示某些区域II型胶原蛋白呈阳性染色。产生的生物复合材料可以承受机械应力,保持其大小和设计,并且在培养过程中不会收缩。因此,它易于操作,可以用销钉缝合,胶合或固定。这项研究表明,可以使用I / III型双层胶原蛋白羊毛建立体外自体软骨样组织。这种生物复合材料携带活跃的软骨细胞,目前正在绵羊模型以及膝关节局部软骨缺损修复的临床试验中进行体内评估。

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