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Nano-Fibrous Tissue Engineering Scaffolds Capable of Growth Factor Delivery

机译:能够生长因子传递的纳米纤维组织工程支架。

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Tissue engineering aims at constructing biological substitutes to repair damaged tissues. Three-dimensional (3D) porous scaffolds are commonly utilized to define the 3D geometry of tissue engineering constructs and provide adequate pore space and surface to support cell attachment, migration, proliferation, differentiation and neo tissue genesis. Biomimetic 3D scaffolds provide synthetic microenvironments that mimic the natural regeneration microenvironments and promote tissue regeneration process. While nano-fibrous (NF) scaffolds are constructed to mimic the architecture of NF extracellular matrix, controlled-release growth factors are incorporated to modulate the regeneration process. The present article summarizes current advances in methods to fabricate NF polymer scaffolds and the technologies to incorporate controlled growth factor delivery systems into 3D scaffolds, followed by examples of accelerated regeneration when the scaffolds with growth factor releasing capacity are applied in animal models.
机译:组织工程的目的是构建生物替代品以修复受损的组织。三维(3D)多孔支架通常用于定义组织工程构造的3D几何形状,并提供足够的孔隙空间和表面来支持细胞附着,迁移,增殖,分化和新组织发生。仿生3D支架提供了模仿自然再生微环境并促进组织再生过程的合成微环境。虽然构建了纳米纤维(NF)支架以模仿NF细胞外基质的结构,但结合了控释生长因子来调节再生过程。本文总结了制造NF聚合物支架的方法的最新进展以及将受控生长因子递送系统整合到3D支架中的技术,随后列举了将具有生长因子释放能力的支架应用于动物模型时加速再生的实例。

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