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Porous biodegradable polymer scaffolds for in situ tissue regeneration and method for the preparation thereof

机译:用于原位组织再生的多孔可生物降解聚合物支架及其制备方法

摘要

The present invention relates to an intelligent porous biodegradable polymer scaffold for in situ tissue regeneration in which two kinds of physiologically active substances having high differentiation potential and biocompatibility are introduced into the polymer scaffold and conjugated to the surface thereof, respectively, and a method for the preparation thereof. Since the intelligent porous biodegradable polymer scaffold exhibits improved biocompatibility and differentiation potential due to the introduction of physiologically active substances capable of efficiently inducing cell proliferation and differentiation into both the surface and the inside thereof, it can directly induce in situ tissue regeneration of the musculoskeletal system from stem cells in a living tissue after transplanting the polymer scaffold and stem cells into a human body without additional in vitro cultivation. Therefore, the intelligent porous biodegradable polymer scaffold according to the present invention can be effectively used in the regeneration of various kinds of tissues and organs including the musculoskeletal system.
机译:本发明涉及一种用于原位组织再生的智能多孔可生物降解聚合物支架,其中将具有高分化潜力和生物相容性的两种生理活性物质分别引入该聚合物支架中并与其表面缀合,以及该方法的方法。其制备。由于智能多孔生物可降解聚合物支架由于在其表面和内部引入能够有效诱导细胞增殖和分化的生理活性物质而表现出改善的生物相容性和分化潜能,因此它可以直接诱导肌肉骨骼系统的原位组织再生。将聚合物支架和干细胞移植到人体后,无需进行额外的体外培养,即可从活组织中的干细胞中分离出干细胞。因此,根据本发明的智能型多孔生物可降解聚合物支架可以有效地用于包括肌肉骨骼系统在内的各种组织和器官的再生。

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