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首页> 外文期刊>Bulletin of materials science >Sacrificial sulphonated polystyrene template-assisted synthesis of mesoporous hollow core-shell silica nanoparticles for drug-delivery application
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Sacrificial sulphonated polystyrene template-assisted synthesis of mesoporous hollow core-shell silica nanoparticles for drug-delivery application

机译:牺牲磺化聚苯乙烯模板辅助合成介孔中空芯壳二氧化硅纳米粒子用于药物递送应用

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Spherical mesoporous hollow core-shell silica nanoparticles (HCSNs) of size $200 pm 50$ nm with tunable thickness from 20 to 60 nm are synthesized using a sacrificial sulphonated polystyrene (PS, particle size 160 nm) template. A facile method is adopted for the sulphonation of PS using sulphuric acid, which enhanced the negative charge on the surface of PS as confirmed by zeta potential analysis and Fourier transform infrared radiation analysis. The thickness of the silica shell is tuned by altering the concentration of the silica precursor and is found to increase due to the use of the sulphonated PS template. N$_2$ adsorption/desorption studies reported the variation of specificsurface area of HCSNs from 644.1 to 197.8 m$^ 2$ g$^{-1}$ and average pore size from 1.55 to 3.4 nm. The drug release behaviour of HCSNs with different shell thicknesses is investigated using doxorubicin as the model drug. A delay inthe drug release for $sim$300 min is successfully achieved by employing HCSNs with enhanced thickness of 60 nm. Application of HCSNs in targeted drug delivery was further supported by the in-vitro cytotoxicity studies carried out on lung adenocarcinoma cells.
机译:使用牺牲磺化聚苯乙烯(PS,粒度160nm)模板合成球形介尺200℃的球形介孔中空核 - 硅纳米粒子(HCSNS)的尺寸为200℃,可调谐厚度为20至60nm。使用硫酸采用PS磺化的容易方法,该硫酸增强了PS表面上的负电荷,如Zeta电位分析和傅里叶变换红外辐射分析所确认的。通过改变二氧化硅前体的浓度来调节二氧化硅壳的厚度,并且被发现由于使用磺化PS模板而增加。 N $ _2 $吸附/解吸研究报告了HCSNS的具体曲面区的变化从644.1到197.8 M $ ^ $ g $ ^ { - 1} $和平均孔径从1.55到3.4 nm。使用多柔比星作为模型药物研究了具有不同壳厚度的HCSN的药物释放行为。通过采用HCSN的厚度为60nm的HCSN成功实现了$ SIM的药物释放300分钟。通过对肺腺癌细胞进行的体外细胞毒性研究进一步支持HCSNS在靶向药物递送中的应用。

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