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Optimization of Synthesis Parameters for Mesoporous Shell Formation on Magnetic Nanocores and Their Application as Nanocarriers for Docetaxel Cancer Drug

机译:磁性纳米核上介孔壳形成的合成参数优化及其在多西他赛抗癌药物纳米载体中的应用

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摘要

In this work, Fe3O4@SiO2 nanoparticles were coated with mesoporous silica shell by SN+I pathway by using anionic surfactant (S) and co-structure directing agent (N+). The role of co-structure directing agent (CSDA) is to assist the electrostatic interaction between negatively charged silica layers and the negatively charged surfactant molecules. Prior to the mesoporous shell formation step, magnetic cores were coated with a dense silica layer to prevent iron oxide cores from leaching into the mother system under any acidic circumstances. However, it was found that both dense and mesoporous coating parameters affect the textural properties of the produced mesoporous silica shell (i.e., surface area, pore volume and shell thickness). The synthesized Fe3O4@SiO2@m-SiO2 (MCMSS) nanoparticles have been characterized by low-angle X-ray diffraction, transmission electron microscopy (TEM), and N2 adsorption-desorption analysis, and magnetic properties. The synthesized particles had dense and mesoporous silica shells of 8–37 nm and 26–50 nm, respectively. Furthermore, MCMSS possessed surface area of ca. 259–621 m2·g−1, and pore volume of ca. 0.216–0.443 cc·g−1. MCMSS showed docetaxcel cancer drug storage capacity of 25–33 w/w% and possessed control release from their mesochannels which suggest them as proper nanocarriers for docetaxcel molecules.
机译:在这项工作中,Fe3O4 @ SiO2纳米颗粒通过使用阴离子表面活性剂(S < sup>-)和共结构导向剂(N + )。共结构导向剂(CSDA)的作用是协助带负电的二氧化硅层和带负电的表面活性剂分子之间的静电相互作用。在中孔壳形成步骤之前,在磁芯上涂上一层致密的二氧化硅层,以防止氧化铁芯在任何酸性条件下浸入母体系统中。但是,已经发现,致密和中孔涂层参数都影响所生产的中孔二氧化硅壳的结构性质(即表面积,孔体积和壳厚度)。合成的Fe3O4 @ SiO2 @ m-SiO2(MCMSS)纳米颗粒通过低角度X射线衍射,透射电子显微镜(TEM)和N2吸附-脱附分析以及磁性能进行了表征。合成的颗粒分别具有8-37 nm和26-50 nm的致密和中孔二氧化硅壳。此外,MCMSS的表面积约为。 259–621 m 2 ·g −1 ,孔体积约为0.216–0.443 cc·g -1 。 MCMSS显示多西紫杉醇的药物存储容量为25-33 w / w%,并具有从其介孔通道释放的控制作用,这表明它们是多西紫杉醇分子的适当纳米载体。

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