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Functionalization of 3D Electrospun Nanofibrous Polycaprolactone Scaffolds for Bone Tissue Engineering

机译:用于骨组织工程的3D电纺纳米纤维聚己内酯支架的功能化

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Conclusions: Electrospun PCL 3D nanofibrous scaffold could be generated via innovative and convenient approach (i.e. thermally induced nanofiber self-agglomeration followed by freeze drying), possessing interconnected and hierarchically structured pores up to 300 μm. HA could be integrated uniformly within the scaffold matrix via precipitation from simulated body fluid, and could significantly increase the osteogenic capabilities of mBMSCs on TISA PCL scaffolds.
机译:结论:可以通过创新和便捷的方法(即热诱导纳米纤维自团聚然后冷冻干燥)产生静电纺PCL 3D纳米纤维支架,该支架具有互连且分层的结构孔,最大可达300μm。 HA可以通过从模拟体液中沉淀而均匀地整合在支架基质中,并且可以显着提高mISA在TISA PCL支架上的成骨能力。

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