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Design of nanofibrous platforms for bone regeneration by tuning morphological and chemical cues

机译:通过调整形态学和化学学线索设计用于骨骼再生的纳米纤维平台

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Recently, the design and fabrication of complex structural architectures from sub-micronic to nanometric dimensional scale have gained the interest of tissue engineering because of their ability to mimic, geometrically and topologically, the native state of extracellular matrix (ECM) macromolecules in living tissues (i.e. collagen, hyaluronic acid, laminin, and fibronectin) (Ma, 1999). To date, electrospinning represents the more promising technology to realize tailored 2D/3D platforms for tissue regeneration. In particular, this technology enables to satisfy all basic requirements of scaffold design (i.e, high porosity, nanometric scaled fibres, fully pore interconnectivity) through an highly versatile deposition process which may be easily customized to obtain a wide range of micro and nano-structured substrates to use as ECM substitutes (Zhang, 2005).
机译:近年来,从亚微米级到纳米级尺度的复杂结构体系结构的设计和制造已经引起了组织工程学的兴趣,因为它们具有在几何上和拓扑学上模仿活组织中细胞外基质(ECM)大分子的天然状态的能力(即胶原蛋白,透明质酸,层粘连蛋白和纤连蛋白(Ma,1999)。迄今为止,静电纺丝是实现组织再生的定制2D / 3D平台的更有前途的技术。尤其是,这项技术通过高度通用的沉积工艺能够满足支架设计的所有基本要求(即高孔隙率,纳米级纤维,完全的孔互连性),可以轻松定制该工艺以获得广泛的微米和纳米结构用作ECM的替代材料(Zhang,2005)。

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