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Skeletal Regeneration: application of nanotopography and biomaterials for skeletal stem cell based bone repair

机译:骨骼再生:纳米形貌学和生物材料在基于骨骼干细胞的骨修复中的应用

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The application of selected skeletal progenitor cells and appropriate biomimetic microenvironments and nanotopographical surfaces offer the potential for innovative approaches to bone disease treatment and bone regeneration. Skeletal stem cells, commonly referred to as mesenchymal stem cells or human bone marrow stromal stem cells are multipotent progenitor cells with the ability to generate the stromal lineages of bone, cartilage, muscle, tendon, ligament and fat. This review will examine i) the application of innovative nanotopography surfaces that provide cues for human stem cell differentiation in the absence of chemical cues, ii) unique biomimetic microenvironments for skeletal tissue repair as well as iii) data from translational studies from the laboratory through to the clinic demonstrating the potential of skeletal cell based repair using impaction bone grafting as an exemplar. The development of protocols, tools and above all multidisciplinary approaches that integrate biomimetic materials, nanotopography, angiogenic, cell and clinical techniques for skeletal tissue regeneration for de novo tissue formation offers an opportunity to improve the quality of life of many.
机译:选定的骨骼祖细胞以及合适的仿生微环境和纳米形貌表面的应用为骨病治疗和骨再生的创新方法提供了潜力。骨骼干细胞,通常称为间充质干细胞或人骨髓基质干细胞,是多能祖细胞,具有产生骨骼,软骨,肌肉,肌腱,韧带和脂肪的基质谱系的能力。这篇综述将研究i)在没有化学提示的情况下为人类干细胞分化提供提示的创新纳米形貌表面的应用,ii)骨骼组织修复的独特仿生微环境,以及iii)从实验室到实验室的转化研究数据该诊所展示了使用冲击骨移植作为范例的基于骨骼细胞的修复的潜力。协议,工具以及最重要的多学科方法的发展,这些方法结合了仿生材料,纳米形貌,血管生成,细胞和用于骨骼组织再生以从头组织形成的临床技术,为改善许多人的生活质量提供了机会。

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