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Advances in cartilage repair: The influence of inorganic clays to improve mechanical and healing properties of antibacterial Gellan gum-Manuka honey hydrogels

机译:软骨修复的进展:无机粘土的影响改善抗菌胶胶麦肉蜂蜜水凝胶的机械和愈合性能

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摘要

Effective treatment of cartilage defects represents a challenging problem, mainly due to the tissue's limited intrinsic self-repair capacity; the use of polymeric scaffolds as tissue substitute is rapidly increasing, but it is still limited by poor mechanical properties. Moreover, the onset of an infection can irreversibly affect the healing process. Accordingly, in this work we describe, for the first time, the preparation of composite scaffolds based on gellan gum, antibacterial Manuka honey and an inorganic clay (mesoporous silica, sodium-calcium bentonite or halloysite nanotubes). The surface composition, morphology, mechanical and biological features of such composites are herein assessed, aiming to optimize the composition of a superior scaffold for cartilage repair. Results demonstrated that after 45 days of in vitro incubation with human mesenchymal stem cells, the mesoporous silica-composite hydrogels exhibited significant changes in peak elastic and dynamic moduli over time thus demonstrating superior mechanical properties. Moreover, mesoporous silica provided the best performances in terms of in vitro cytocompatibility and antibacterial preventive activity in protection of cells in a co-culture model. Therefore, this selected composition was exploited for subcutaneous implantation in mice to investigate materials biocompatibility and infection prevention. Results demonstrated that composites did not cause severe immune response as well as they were able to restrain the infection. Accordingly, GG-MH-MS composites represent a very promising tool for cartilage tissue engineering.
机译:有效治疗软骨缺陷代表了一个具有挑战性的问题,主要是由于组织的有限的内在自修复能力;使用聚合物支架作为组织替代品迅速增加,但仍然受到差的机械性能的限制。此外,感染的发作可以不可逆转地影响愈合过程。因此,在这项工作中,我们首次描述了基于Gellan Gum,抗菌麦克风蜂蜜和无机粘土(中孔二氧化硅,膨润土或霍氏铁矿石纳米管)的复合支架的制备。本文评估了这种复合材料的表面组成,形态,机械和生物学特征,旨在优化用于软骨修复的上高支架的组成。结果表明,在与人间充质干细胞的体外温育45天后,中孔二氧化硅复合水凝胶在峰值弹性和动态模量随时间表现出显着的变化,从而展示了优异的机械性能。此外,中孔二氧化硅在体外细胞组织性和抗菌预防活性方面提供了在共培养模型中保护细胞的最佳性能。因此,利用该选定的组合物用于对小鼠进行皮下植入,以研究生物相容性和感染预防。结果表明复合材料没有引起严重的免疫应答以及它们能够抑制感染。因此,GG-MH-MS复合材料代表了软骨组织工程的非常有前途的工具。

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