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Microporous methacrylated glycol chitosan-montmorillonite nanocomposite hydrogel for bone tissue engineering

机译:用于骨组织工程的微孔甲基丙烯酸乙二醇壳聚糖-蒙脱土纳米复合水凝胶

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摘要

Injectable hydrogels can fill irregular defects and promote in situ tissue regrowth and regeneration. The ability of directing stem cell differentiation in a three-dimensional microenvironment for bone regeneration remains a challenge. In this study, we successfully nanoengineer an interconnected microporous networked photocrosslinkable chitosan in situ-forming hydrogel by introducing two-dimensional nanoclay particles with intercalation chemistry. The presence of the nanosilicates increases the Young’s modulus and stalls the degradation rate of the resulting hydrogels. We demonstrate that the reinforced hydrogels promote the proliferation as well as the attachment and induced the differentiation of encapsulated mesenchymal stem cells in vitro. Furthermore, we explore the effects of nanoengineered hydrogels in vivo with the critical-sized mouse calvarial defect model. Our results confirm that chitosan-montmorillonite hydrogels are able to recruit native cells and promote calvarial healing without delivery of additional therapeutic agents or stem cells, indicating their tissue engineering potential.
机译:可注射的水凝胶可以填充不规则的缺损,并促进原位组织的再生长和再生。在三维微环境中引导干细胞分化以促进骨再生的能力仍然是一个挑战。在这项研究中,我们通过引入具有插层化学作用的二维纳米粘土颗粒,成功地纳米工程化了一种互连的微孔网络化可光交联的壳聚糖原位形成的水凝胶。纳米硅酸盐的存在增加了杨氏模量并阻止了所得水凝胶的降解速率。我们证明增强的水凝胶促进增殖以及附着,并诱导体外封装的间充质干细胞的分化。此外,我们用临界大小的小鼠颅盖缺损模型探索了纳米工程水凝胶在体内的作用。我们的结果证实,壳聚糖-蒙脱石水凝胶能够募集天然细胞并促进颅盖愈合,而无需递送其他治疗剂或干细胞,这表明它们的组织工程学潜力。

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