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Functional Bone-mimetic Scaffolds of Bicontinuous, Thermoresponsive L_3-phase Silica/Hydroxyapatite Nanocomposites

机译:双连续,热响应性L_3相二氧化硅/羟基磷灰石纳米复合材料的功能性骨模拟性支架

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This work presents the highly controlled drug delivery system free from the burst release at an initial stage and equipped with the capability of long term drug release. The nanoporous drug releasing reservoir was combined with porous body resembling cancellous bone. The materials were prepared by the integration of synthesized inorganic hydroxyapatite (HA) and the hybrid gels of bicontinuous sponge-phased L3 silicate and thermo-responsive poly(N-isopropylacrylamide) (L3-PNIPAm gels). The materials were designed to have the three dimensionally interconnected heterogeneous porosity of macro- and mesoporosity, in which the HA has the macroporosity of 150 μm to be impregnated the drug into the pores and the L3-PNIPAm gels have mesoporosity of 5 nm to regulate the temperature sensitive drug-release through the pore channels and polymeric network, respectively. Consequently, this bone-mimetic system gave the highly long term drug release over the 60 days without the burst release. The release rate could be controlled with the change of the HA and PNIPAm composition ratios. The structural characterization was achieved by TEM, SEM, XRD, Micro-Raman spectroscopy, BET, and the direct contact cytotoxicity test was also described.
机译:这项工作介绍了高度控制的药物递送系统,初始阶段的爆破释放,并配备了长期药物释放的能力。纳米多孔药物释放储层与类似松散骨的多孔体相结合。通过合成的无机羟基磷灰石(HA)的整合和双连续海绵阶段的L3硅酸盐和热响应聚(N-异丙基丙烯酰胺)(L3-PNIPAM凝胶)的合成的无机羟基磷灰石(HA)和杂化凝胶制备。设计材料具有三维互连的宏观和中间孔隙率,其中HA具有150μm的大孔,以将药物浸渍到孔中,L3-PNIPAM凝胶具有5nm的中孔率以调节通过孔通道和聚合物网络的温度敏感药物释放。因此,这种骨模拟系统在没有爆发释放的情况下给出了60天的长期药物释放。可以通过HA和PNIPAM组成比的变化来控制释放速率。通过TEM,SEM,XRD,微拉曼光谱,BET和直接接触细胞毒性试验也实现了结构表征。

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