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首页> 外文期刊>International Journal of Nanomedicine >Graphene-based 3D scaffolds in tissue engineering: fabrication, applications, and future scope in liver tissue engineering
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Graphene-based 3D scaffolds in tissue engineering: fabrication, applications, and future scope in liver tissue engineering

机译:基于石墨烯的3D支架在组织工程中的应用:肝组织工程的制造,应用和未来范围

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Tissue engineering embraces the potential of recreating and replacing defective body parts by advancements in the medical field. Being a biocompatible nanomaterial with outstanding physical, chemical, optical, and biological properties, graphene-based materials were successfully employed in creating the perfect scaffold for a range of organs, starting from the skin through to the brain. Investigations on 2D and 3D tissue culture scaffolds incorporated with graphene or its derivatives have revealed the capability of this carbon material in mimicking in vivo environment. The porous morphology, great surface area, selective permeability of gases, excellent mechanical strength, good thermal and electrical conductivity, good optical properties, and biodegradability enable graphene materials to be the best component for scaffold engineering. Along with the apt microenvironment, this material was found to be efficient in differentiating stem cells into specific cell types. Furthermore, the scope of graphene nanomaterials in liver tissue engineering as a promising biomaterial is also discussed. This review critically looks into the unlimited potential of graphene-based nanomaterials in future tissue engineering and regenerative therapy.
机译:组织工程学具有通过医学领域的进步来重建和替换有缺陷的身体部位的潜力。作为具有出色物理,化学,光学和生物特性的生物相容性纳米材料,基于石墨烯的材料已成功用于为从皮肤到大脑的各种器官创建完美的支架。对掺有石墨烯或其衍生物的2D和3D组织培养支架的研究表明,这种碳材料具有模仿体内环境的能力。多孔的形态,较大的表面积,气体的选择性渗透性,出色的机械强度,良好的导热性和导电性,良好的光学性能以及可生物降解性使石墨烯材料成为支架工程的最佳组件。与适当的微环境一起,发现这种材料可有效地将干细胞分化为特定的细胞类型。此外,还讨论了石墨烯纳米材料在肝脏组织工程中作为有前途的生物材料的范围。这篇评论评论了石墨烯基纳米材料在未来组织工程和再生疗法中的无限潜力。

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