首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Cell bricks-enriched platelet-rich plasma gel for injectable cartilage engineering - an in vivo experiment in nude mice.
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Cell bricks-enriched platelet-rich plasma gel for injectable cartilage engineering - an in vivo experiment in nude mice.

机译:用于注射软骨工程的富含细胞砖的富含血小板的血浆凝胶-裸鼠体内实验

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Clinical application of platelet-rich plasma (PRP)-based injectable tissue engineering is limited by weak mechanical properties and a rapid fibrinolytic rate. We proposed a new strategy, a cell bricks-stabilized PRP injectable system, to engineer and regenerate cartilage with stable morphology and structure?in vivo. Chondrocytes from the auricular cartilage of rabbits were isolated and cultured to form cell bricks (fragmented cell sheet) or cell expansions. Fifteen nude mice were divided evenly (n?=?5) into cells-PRP (C-P), cell bricks-PRP (CB-P) and cell bricks-cells-PRP (CB-C-P) groups. Cells, cell bricks or a cell bricks/cells mixture were suspended in PRP and were injected subcutaneously in animals. After 8?weeks, all the constructs were replaced by white resilient tissue; however, specimens from the CB-P and CB-C-P groups were well maintained in shape, while the C-P group appeared distorted, with a compressed outline. Histologically, all groups presented lacuna-like structures, glycosaminoglycan-enriched matrices and positive immunostaining of collagen type II. Different from the uniform structure presented in CB-C-P samples, CB-P presented interrupted, island-like chondrogenesis and contracted structure; fibrous interruption was shown in the C-P group. The highest percentage of matrix was presented in CB-C-P samples. Collagen and sGAG quantification confirmed that the CB-C-P constructs had statistically higher amounts than the C-P and CB-P groups; statistical differences were also found among the groups in terms of biomechanical properties and gene expression. We concluded that cell bricks-enriched PRP gel sufficiently enhanced the morphological stability of the constructs, maintained chondrocyte phenotypes and favoured chondrogenesis in vivo, which suggests that such an injectable, completely biological system is a suitable cell carrier for cell-based cartilage repair. Copyright ? 2012 John Wiley & Sons, Ltd.
机译:富血小板血浆(PRP)为基础的可注射组织工程的临床应用受到弱的机械性能和快速的纤溶速率的限制。我们提出了一种新的策略,一种细胞砖稳定的PRP注射系统,以在体内工程化和再生具有稳定形态和结构的软骨。从兔子的耳软骨分离软骨细胞并培养形成细胞块(碎片化的细胞片)或细胞扩增。将15只裸鼠均匀地(n≥5)分为细胞-PRP(C-P),细胞砖-PRP(CB-P)和细胞砖-细胞-PRP(CB-C-P)组。将细胞,细胞砖或细胞砖/细胞混合物悬浮在PRP中,并皮下注射到动物体内。 8周后,所有的构建体都被白色弹性组织所代替。然而,CB-P和CB-C-P组的标本保持良好的形状,而C-P组出现扭曲,轮廓压缩。组织学上,所有组均表现出腔隙状结构,富含糖胺聚糖的基质和II型胶原蛋白的阳性免疫染色。与CB-C-P样品呈现的均匀结构不同,CB-P呈现间断的岛状软骨形成和收缩结构。 C-P组显示纤维中断。 CB-C-P样品中的基质含量最高。胶原蛋白和sGAG定量证实,CB-C-P构建体的数量在统计学上高于C-P和CB-P组。在生物力学特性和基因表达方面,各组之间也存在统计学差异。我们得出的结论是,富含细胞砖的PRP凝胶可充分增强构建体的形态稳定性,保持软骨细胞表型并有利于体内软骨形成,这表明这种可注射的完全生物学系统是用于基于细胞的软骨修复的合适细胞载体。版权? 2012年John Wiley&Sons,Ltd.

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