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Hierarchically nanostructured hydroxyapatite: hydrothermal synthesis, morphology control, growth mechanism, and biological activity

机译:分层纳米结构羟基磷灰石:水热合成,形态控制,生长机理和生物活性

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Abstract: Hierarchically nanosized hydroxyapatite (HA) with flower-like structure assembled from nanosheets consisting of nanorod building blocks was successfully synthesized by using CaCl2, NaH2PO4, and potassium sodium tartrate via a hydrothermal method at 200°C for 24 hours. The effects of heating time and heating temperature on the products were investigated. As a chelating ligand and template molecule, the potassium sodium tartrate plays a key role in the formation of hierarchically nanostructured HA. On the basis of experimental results, a possible mechanism based on soft-template and self-assembly was proposed for the formation and growth of the hierarchically nanostructured HA. Cytotoxicity experiments indicated that the hierarchically nanostructured HA had good biocompatibility. It was shown by in-vitro experiments that mesenchymal stem cells could attach to the hierarchically nanostructured HA after being cultured for 48 hours.Objective: The purpose of this study was to develop facile and effective methods for the synthesis of novel hydroxyapatite (HA) with hierarchical nanostructures assembled from independent and discrete nanobuilding blocks.Methods: A simple hydrothermal approach was applied to synthesize HA by using CaCl2, NaH2PO4, and potassium sodium tartrate at 200°C for 24 hours. The cell cytotoxicity of the hierarchically nanostructured HA was tested by MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) assay.Results: HA displayed the flower-like structure assembled from nanosheets consisting of nanorod building blocks. The potassium sodium tartrate was used as a chelating ligand, inducing the formation and self-assembly of HA nanorods. The heating time and heating temperature influenced the aggregation and morphology of HA. The cell viability did not decrease with the increasing concentration of hierarchically nanostructured HA added.Conclusion: A novel, simple and reliable hydrothermal route had been developed for the synthesis of hierarchically nanosized HA with flower-like structure assembled from nanosheets consisting of nanorod building blocks. The HA with the hierarchical nanostructure was formed via a soft-template assisted self-assembly mechanism. The hierarchically nanostructured HA has a good biocompatibility and essentially no in-vitro cytotoxicity.
机译:摘要:由CaCl2,NaH2PO4和酒石酸钾钠在200°C的温度下使用CaCl2,NaH2PO4和酒石酸钾钠成功地合成了具有花状结构的分层纳米级羟基磷灰石(HA),该纳米片由纳米棒组成。研究了加热时间和加热温度对产品的影响。酒石酸钾钠作为螯合的配体和模板分子,在分级纳米结构HA的形成中起关键作用。根据实验结果,提出了一种基于软模板和自组装的可能机制,用于纳米级结构HA的形成和生长。细胞毒性实验表明,纳米级结构的HA具有良好的生物相容性。通过体外实验表明,间充质干细胞在培养48小时后可以附着在分级纳米结构的HA上。目的:本研究的目的是开发一种简便有效的方法,用于合成新型羟基磷灰石(HA)。方法:采用简单的水热方法,在200°C下使用CaCl2,NaH2PO4和酒石酸钾钠在24小时内合成HA。通过MTT(3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴化物)试验测试了分级纳米结构HA的细胞毒性。结果:HA展示了由由纳米棒构建块。酒石酸钾钠用作螯合配体,诱导HA纳米棒的形成和自组装。加热时间和加热温度影响HA的聚集和形态。结论:为合成具有花状结构的分层纳米HA,开发了一种新颖,简单,可靠的水热途径,该方法是由纳米棒组成的纳米片组装而成的。具有分层纳米结构的HA是通过软模板辅助的自组装机制形成的。分级纳米结构的HA具有良好的生物相容性,并且基本上没有体外细胞毒性。

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