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Reinforcement Fibrin-hyaluronic Acid Composite Gel for Tissue Engineering Cartilage Genesis

机译:组织工程软骨特征的增强纤维蛋白 - 透明质酸复合凝胶

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The reimplantation method of cultured chondrocytes broadly has been offered as an alternative for articular cartilage repair. A variety of biologically derived and synthetic polymeric and hydrogel materials also have been investigated for good cell delivery efficiency. Preciously, we examined the feasibility of fibrin gel, mixed with hyaluronic acid(HA) as a cell delivery carrier. In order to reinforce the material, hybrid biomaterials of fibrin/HA composite gels with fibrinolysis inhibition factors(FIFs: aprotinin, DI101, EACA) have been investigated in the present work because we did not satisfy a little progress. These fibrin/HA composite gels added FIFs maintained their structural integrity in long-term culture over 4~(th) weeks. Contrary to our expectation the mass of the fibrin/HA composite with DI 101 was significantly superior to the ones of other combinations. In histological evidence, all of them are showed good positive result of stain of Safranin-0 and alcian blue during the culture period. In gross examination, samples of all groups grossly resembled cartilage in color and were resistant to external compression. Our study demonstrates that most favorable polymer can be used good quality tissue engineered cartilage and in this culture systems have been useful for studying the basic biology of chondrocyte biosynthesis of ECM and new cartilage matrix formation without a loss of volume. After all, we proved the safety of inhibitors of the fibrinolytic system without hazardous effect on cell behavior and found out that DI 101 would be the most effective agent.
机译:培养的软骨细胞的再抑制方法广泛地提供了关节软骨修复的替代方案。还研究了各种生物衍生和合成的聚合物和水凝胶材料以进行良好的细胞输送效率。尤其是,我们检查了纤维蛋白凝胶的可行性,与透明质酸(HA)混合为细胞输送载体。为了加强材料,在目前的工作中已经研究了纤维蛋白/ HA复合凝胶的纤维蛋白/ HA复合凝胶的杂化生物材料(FIFS:抑肽蛋白,DI101,EACA),因为我们没有满足一点进展。这些纤维蛋白/ HA复合凝胶添加了50多个在4〜(th)周内长期培养的结构完整性。与我们期望与DI 101的纤维蛋白/ HA复合材料的质量显着优于其他组合。在组织学证据中,在文化期间,所有这些都显示出Safranin-0和Alcian蓝色的染色良好的阳性结果。在总考试中,所有群体的样品都像软骨一样着色,并且对外部压缩具有抗性。我们的研究表明,最有利的聚合物可以使用优质的组织工程软骨,并且在这种培养系统中对于研究ECM和新软骨基质形成的软骨细胞生物合成的基本生物学是有用的。毕竟,我们证明了纤维蛋白溶解系统的抑制剂的安全性对细胞行为没有危险作用,发现DI 101将是最有效的药剂。

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