Forming Fibrous Nanocomposite Tissue Engineering Scaffolds Through Electrospinning: a Comparative Study of Three Fabrication Routes

H. Tong, Min Wang
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引用次数: 1

Abstract

Due to osteoconductivity of hydroxyapatite (HA), HA/polymer composite scaffolds have been investigated for bone tissue engineering by various groups. In scaffold fabrication, electrospinning of ultrafine fibrous scaffolds incorporated with substantial amounts of evenly distributed HA nanoparticles is still a challenge. The problem of nanoparticle agglomeration not only reduces the electrospinning efficiency but also undermines the homogeneity of the distribution of the HA nanoparticles along the fibers. In this study, an approach using ultrasonification was developed so as to electrospin fibrous nanocomposite scaffolds having the carbonated HA (CHA) nanosphere content up to about 15 wt% with minimal agglomeration of CHA nanospheres. SEM and EDX results showed an even distribution of CHA nanospheres while FTIR results further confirmed the presence of CHA within the electrospun fibers. The nanocomposite fibrous scaffolds fabricated through this route could be used in further investigations for bone tissue engineering applications.
静电纺丝制备纤维纳米复合材料组织工程支架:三种制备工艺的比较研究
由于羟基磷灰石(HA)具有良好的骨导电性,羟基磷灰石/聚合物复合支架在骨组织工程中的应用得到了不同的研究。在支架制造中,静电纺丝加入大量均匀分布的HA纳米颗粒的超细纤维支架仍然是一个挑战。纳米颗粒团聚问题不仅降低了静电纺丝效率,而且破坏了HA纳米颗粒沿纤维分布的均匀性。在这项研究中,利用超声技术开发了一种方法,使电自旋纤维纳米复合材料支架具有碳化HA (CHA)纳米球含量高达约15%,CHA纳米球团聚最小。SEM和EDX结果表明,聚羧酸纳米球分布均匀,FTIR结果进一步证实了聚羧酸在静电纺丝纤维中的存在。通过该方法制备的纳米复合纤维支架可用于骨组织工程的进一步研究。
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