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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Blomimetic hydroxyapatite porous microspheres with co-substituted essential trace elements: Surfactant-free hydrotheraial synthesis, enhanced degradation and drug release
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Blomimetic hydroxyapatite porous microspheres with co-substituted essential trace elements: Surfactant-free hydrotheraial synthesis, enhanced degradation and drug release

机译:具有共取代的必需微量元素的拟模拟物羟基磷灰石多孔微球:无表面活性剂的水热合成,增强的降解和药物释放

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摘要

In the absence of any surfactants, organic solvent or template-directing reagents, the biomimetic hydroxyapatite porous microspheres with co-substituted essential trace elements (Na, Mg, K, F, Cl and CO3~(2-)) of natural bone was synthesized via a low-temperature hydrothermal method, using Ca(NO3)2 and NH4H2PO4 as Ca and P sources, respectively; NaNO3, Mg(NO3)2, KNO3, NH4Cl and NH4F as substituted ion sources; and urea as the homogeneous precipitation reagent and CO3~(2-)source. The synthetic powders were characterized using X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), Fourier transform infrared spectroscopy (FTIR), inductively coupled plasma atomic emission spectroscopy (ICP-AES) and ion chromatograph. The degradation, drug loading and release property of the synthetic materials were further investigated. The results showed that the synthetic biomimetic hydroxyapatite porous microspheres were constructed by two-dimensional nano-sheets with thickness of about 60 nm, and widths and lengths of up to 2 μm, and the selected area electron diffraction (SAED) pattern revealed that the nano-sheets in hydroxyapatite porous microspheres were single crystalline. The novel 3D architectures resulted in favourable drug loading and release properties, and the co-substituted essential trace elements enhanced the degradability of the porous microspheres in comparison with the traditional pure HAp materials.
机译:在没有任何表面活性剂,有机溶剂或模板导向剂的情况下,合成了具有天然骨架的微量元素(Na,Mg,K,F,Cl和CO3〜(2-)被共取代的仿生羟基磷灰石多孔微球)通过低温水热法,分别使用Ca(NO3)2和NH4H2PO4作为Ca和P源; NaNO3,Mg(NO3)2,KNO3,NH4Cl和NH4F作为取代离子源;尿素为均相沉淀剂,CO3〜(2-)源。使用X射线衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜(TEM),傅里叶变换红外光谱(FTIR),电感耦合等离子体原子发射光谱(ICP-AES)和离子色谱仪对合成粉末进行表征。进一步研究了合成材料的降解,载药量和释放性能。结果表明,合成的仿生羟基磷灰石多孔微球是由二维纳米片构成,其厚度约为60 nm,宽度和长度最大为2μm,并且选择区域电子衍射(SAED)模式显示出纳米羟基磷灰石多孔微球中的片是单晶的。与传统的纯HAp材料相比,新颖的3D体系结构具有良好的药物装载和释放特性,并且共取代的必需微量元素可提高多孔微球的降解能力。

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