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Genipin cross-linked fibrin hydrogels for in vitro human articular cartilage tissue-engineered regeneration.

机译:Genipin交联的纤维蛋白水凝胶用于体外人关节软骨组织工程再生。

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摘要

Our objective was to examine the potential of a genipin cross-linked human fibrin hydrogel system as a scaffold for articular cartilage tissue engineering. Human articular chondrocytes were incorporated into modified human fibrin gels and evaluated for mechanical properties, cell viability, gene expression, extracellular matrix production and subcutaneous biodegradation. Genipin, a naturally occurring compound used in the treatment of inflammation, was used as a cross-linker. Genipin cross-linking did not significantly affect cell viability, but significantly increased the dynamic compression and shear moduli of the hydrogel. The ratio of the change in collagen II versus collagen I expression increased more than 8-fold over 5 weeks as detected with real-time RT-PCR. Accumulation of collagen II and aggrecan in hydrogel extracellular matrix was observed after 5 weeks in cell culture. Overall, our results indicate that genipin appeared to inhibit the inflammatory reaction observed 3 weeks after subcutaneous implantation of the fibrin into rats. Therefore, genipin cross-linked fibrin hydrogels can be used as cell-compatible tissue engineering scaffolds for articular cartilage regeneration, for utility in autologous treatments that eliminate the risk of tissue rejection and viral infection.
机译:我们的目标是检查一种Genipin交联的人类纤维蛋白水凝胶系统作为关节软骨组织工程支架的潜力。将人关节软骨细胞掺入修饰的人纤维蛋白凝胶中,并评估其机械性能,细胞活力,基因表达,细胞外基质产生和皮下生物降解。 Genipin是一种用于治疗炎症的天然化合物,被用作交联剂。 Genipin交联并未显着影响细胞活力,但显着增加了水凝胶的动态压缩和剪切模量。实时RT-PCR检测到,胶原蛋白II与胶原蛋白I表达变化的比率在5周内增加了8倍以上。细胞培养5周后,观察到水凝胶细胞外基质中胶原II和聚集蛋白聚糖的积累。总体而言,我们的结果表明,在将纤维蛋白皮下植入大鼠体内3周后,观察到的Genipin似乎抑制了炎症反应。因此,genipin交联的纤维蛋白水凝胶可用作关节软骨再生的细胞相容性组织工程支架,用于自体治疗,可消除组织排斥和病毒感染的风险。

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