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通过静电纺丝和电喷雾制备用于成骨细胞矿化的纳米结构生物复合基质。

Nanostructured biocomposite substrates by electrospinning and electrospraying for the mineralization of osteoblasts.

作者信息

Gupta Deepika, Venugopal J, Mitra S, Giri Dev V R, Ramakrishna S

机构信息

Nanoscience and Nanotechnology Initiative, National University of Singapore, Singapore.

出版信息

Biomaterials. 2009 Apr;30(11):2085-94. doi: 10.1016/j.biomaterials.2008.12.079. Epub 2009 Jan 23.

Abstract

Nanotechnology has enabled the engineering of nanostructured materials to meet current challenges in bone replacement therapies. Biocomposite nanofibrous scaffolds of poly(l-lactic acid)-co-poly(epsilon-caprolactone), gelatin and hydroxyapatite (HA) were fabricated by combining the electrospinning and electrospraying techniques in order to create a better osteophilic environment for the growth and mineralization of osteoblasts. Electrospraying of HA nanoparticles on electrospun nanofibers helped to attain rough surface morphology ideal for cell attachment and proliferation and also achieve improved mechanical properties than HA blended nanofibers. Nanofibrous scaffolds showed high pore size and porosity up to 90% with fiber diameter in the range of 200-700 nm. Nanofibrous scaffolds were characterized for their functional groups and chemical structure by FTIR and XRD analysis. Studies on cell-scaffold interaction were carried out by culturing human fetal osteoblast cells (hFOB) on both HA blended and sprayed PLACL/Gel scaffolds and assessing their growth, proliferation, mineralization and enzyme activity. The results of MTS, ALP, SEM and ARS studies confirmed, not only did HA sprayed biocomposite scaffolds showed better cell proliferation but also enhanced mineralization and alkaline phosphatase activity (ALP) proving that electrospraying in combination with electrospinning produced superior and more suitable biocomposite nanofibrous scaffolds for bone tissue regeneration.

摘要

纳米技术已使纳米结构材料的工程化成为可能,以应对骨替代疗法当前面临的挑战。通过结合静电纺丝和电喷雾技术,制备了聚(L-乳酸)-共-聚(ε-己内酯)、明胶和羟基磷灰石(HA)的生物复合纳米纤维支架,以便为成骨细胞的生长和矿化创造更好的亲骨环境。在静电纺丝纳米纤维上进行HA纳米颗粒的电喷雾有助于获得理想的粗糙表面形态,以利于细胞附着和增殖,并且与HA共混纳米纤维相比,还能提高机械性能。纳米纤维支架显示出高达90%的高孔径和孔隙率,纤维直径在200-700nm范围内。通过FTIR和XRD分析对纳米纤维支架的官能团和化学结构进行了表征。通过在HA共混和喷雾的PLACL/凝胶支架上培养人胎儿成骨细胞(hFOB)并评估其生长、增殖、矿化和酶活性,开展了细胞-支架相互作用的研究。MTS、ALP、SEM和ARS研究结果证实,不仅HA喷雾生物复合支架显示出更好的细胞增殖,而且矿化和碱性磷酸酶活性(ALP)增强,证明电喷雾与静电纺丝相结合产生了用于骨组织再生的更优质、更合适的生物复合纳米纤维支架。

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