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首页> 外文期刊>Journal of Colloid and Interface Science >Optimized mesoporous silica nanoparticle-based drug delivery system with removable manganese oxide gatekeeper for controlled delivery of doxorubicin
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Optimized mesoporous silica nanoparticle-based drug delivery system with removable manganese oxide gatekeeper for controlled delivery of doxorubicin

机译:优化的介孔二氧化硅纳米粒子类药物递送系统,可用于可移动锰氧化物守护者,用于对多码本素的控制递送

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Rapid progress has been made for mesoporous silica nanoparticle (MSN) in recent years; however, efforts to fabricate MSN with adjustable size have been met with limited advancement in drug delivery, especially for the synthesis of MSN with adjustable size in the range of 150-300 nm. Herein we report the construction of a series of MSNs with adjustable specific surface area, size, and pore structure, depending on the different silicon monomers selected. The optimized MSN showed large specific surface area and appropriate size distribution for efficiently anchoring doxorubicin (DOX) through the imine linkage formed. Based on the remarkable features of the unique MSN, a novel MSN-based drug delivery system was prepared through the introduction of polydopamine/manganese oxide (PDA/MnO2) coating, which reduced the premature leakage of drugs in physiological environments, and yet facilitated drug release when destroyed by responding to endogenous glutathione (GSH) at the tumor sites. Notably, the transformation of MnO2 to Mn2+ resulted in the collapse of the PDA/MnO2 coating, which facilitated drug release and therefore indicated the controlled release feature. It was demonstrated that the drugloaded MSN-based drug delivery system delivered drugs into cancer cells and showed effective inhibition against cancer cell growth. These results suggested that the emergence of MSN with adjustable size can expand the application of MSN in drug delivery. (C) 2021 Elsevier Inc. All rights reserved.
机译:近年来,介孔二氧化硅纳米颗粒(MSN)的研究进展迅速;然而,制备大小可调的MSN的努力在药物递送方面进展有限,尤其是在合成大小可调在150-300nm范围内的MSN方面。在本文中,我们报告了一系列MSN的构建,这些MSN具有可调节的比表面积、尺寸和孔结构,这取决于所选的不同硅单体。优化后的MSN具有较大的比表面积和合适的粒径分布,可以通过形成的亚胺键有效地锚定阿霉素(DOX)。基于独特MSN的显著特点,通过引入聚多巴胺/氧化锰(PDA/MnO2)涂层,制备了一种新型MSN给药系统,该系统减少了药物在生理环境中的过早泄漏,同时在肿瘤部位对内源性谷胱甘肽(GSH)的反应破坏时促进药物释放。值得注意的是,MnO2转化为Mn2+导致PDA/MnO2涂层崩塌,这促进了药物释放,因此表明了控释特性。结果表明,基于MSN的载药给药系统将药物输送到癌细胞中,并显示出对癌细胞生长的有效抑制。这些结果表明,大小可调的MSN的出现可以扩大MSN在药物递送中的应用。(c)2021爱思唯尔公司保留所有权利。

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