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Graphene Oxide Enhances Chitosan-Based 3D Scaffold Properties for Bone Tissue Engineering

机译:氧化石墨烯增强基于壳聚糖的3D支架特性用于骨组织工程

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摘要

The main goal of bone tissue engineering (BTE) is to refine and repair major bone defects based on bioactive biomaterials with distinct properties that can induce and support bone tissue formation. Graphene and its derivatives, such as graphene oxide (GO), display optimal properties for BTE, being able to support cell growth and proliferation, cell attachment, and cytoskeleton development as well as the activation of osteogenesis and bone development pathways. Conversely, the presence of GO within a polymer matrix produces favorable changes to scaffold morphologies that facilitate cell attachment and migration i.e., more ordered morphologies, greater surface area, and higher total porosity. Therefore, there is a need to explore the potential of GO for tissue engineering applications and regenerative medicine. Here, we aim to promote one novel scaffold based on a natural compound of chitosan, improved with 3 wt.% GO, for BTE approaches, considering its good biocompatibility, remarkable 3D characteristics, and ability to support stem cell differentiation processes towards the bone lineage.
机译:骨组织工程(BTE)的主要目标是基于具有独特特性的生物活性生物材料来改善和修复主要的骨缺损,这些生物特性可以诱导和支持骨组织的形成。石墨烯及其衍生物,例如氧化石墨烯(GO),显示出BTE的最佳性能,能够支持细胞生长和增殖,细胞附着和细胞骨架发育以及成骨和骨发育途径的激活。相反,GO在聚合物基质中的存在对支架形态产生有利的改变,从而促进细胞附着和迁移,即,更规则的形态,更大的表面积和更高的总孔隙率。因此,有必要探索GO在组织工程应用和再生医学中的潜力。在这里,我们的目标是推广一种基于壳聚糖天然化合物的新型支架,并用3 wt。%的GO对其进行改良,考虑到其良好的生物相容性,卓越的3D特性以及支持干细胞向骨谱系分化的能力,该支架可用于BTE方法。

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