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Continuous-flow precipitation as a route to prepare highly controlled nanohydroxyapatite: in vitromineralization and biological evaluation

机译:连续流沉淀法制备高度受控的纳米羟基磷灰石的方法:体外矿化和生物学评估

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摘要

This work reports the biological evaluation of nanosized hydroxyapatite (HAp) previously synthesized by continuous-flow precipitation in a scaled-up meso oscillatory flow reactor (meso-OFR). Physico- chemical characterization of the synthesized HAp suggests high surface reactivity namely because of its high specific surface area and low crystallinity. On the other hand, in vitro biomineralization assays demonstrated the apatite-forming activity of the prepared HAp and their higher surface reactivity when compared to a commercial HAp. Furthermore, human osteoblastic-like (Saos-2) cells culture evidenced that the synthesized HAp stimulated cell proliferation, especially when applied at lower concentrations (30 and 50 μg mlâ 1), although its cellular uptake behavior. Therefore, the prepared HAp shows immense potential as biomedical material, as well as drug and gene delivery vehicle. The results are also very promising regarding further scaling up of the process, as the designed methodology allow for the preparation in a continuous mode of nanosized HAp with controlled physico-chemical properties.
机译:这项工作报告了先前通过按比例放大的中观振荡流反应器(meso-OFR)中连续流动沉淀合成的纳米羟基磷灰石(HAp)的生物学评估。合成的HAp的理化特性表明具有高表面反应性,即由于其高比表面积和低结晶度。另一方面,体外生物矿化试验表明,与商业化HAp相比,制备的HAp的磷灰石形成活性及其更高的表面反应性。此外,人类成骨细胞样(Saos-2)细胞培养证明合成的HAp刺激细胞增殖,特别是当以较低的浓度(30和50μgml-1)应用时,尽管它具有细胞摄取行为。因此,制备的HAp显示出作为生物医学材料以及药物和基因递送载体的巨大潜力。在进一步扩大工艺规模方面,结果也很有希望,因为设计的方法允许以连续模式制备具有可控理化性质的纳米级HAp。

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