首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Gold Nanoparticles: A Powerful Tool to Visualize Proteins on Ordered Mesoporous Silica and for the Realization of Theranostic Nanobioconjugates
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Gold Nanoparticles: A Powerful Tool to Visualize Proteins on Ordered Mesoporous Silica and for the Realization of Theranostic Nanobioconjugates

机译:金纳米粒子:一个有力的工具以可视化有序介孔二氧化硅上的蛋白质和实现Theranostic纳米生物共轭物。

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摘要

Ordered mesoporous silica (OMS) is a very interesting nanostructured material for the design and engineering of new target and controlled drug-delivery systems. Particularly relevant is the interaction between OMS and proteins. Large pores (6–9 nm) micrometric particles can be used for the realization of a drug depot system where therapeutic proteins are adsorbed either inside the mesopores or on the external surface. Small pores (1–2 nm) mesoporous silica nanoparticles (MSNs), can be injected in the blood stream. In the latter case, therapeutic proteins are mainly adsorbed on the MSNs’ external surface. Whenever a protein-OMS conjugate is prepared, a diagnostic method to locate the protein either on the internal or the external silica surface is of utmost importance. To visualize the fine localization of proteins adsorbed in mesoporous silica micro- and nanoparticles, we have employed specific transmission electron microscopy (TEM) analytical strategies based on the use of gold nanoparticles (GNPs) conjugates. GNPs are gaining in popularity, representing a fundamental tool to design future applications of MSNs in nanomedicine by realizing theranostic nanobioconjugates. It may be pointed out that we are at the very beginning of a new age of the nanomaterial science: the “mesoporous golden age”.
机译:有序介孔二氧化硅(OMS)是一种非常有趣的纳米结构材料,用于设计和工程化新的靶标和受控药物递送系统。特别相关的是OMS与蛋白质之间的相互作用。大孔径(6–9 nm)的微米级颗粒可用于实现药物储库系统,其中治疗性蛋白质被吸附在中孔内部或外表面。可以将细孔(1-2 nm)的介孔二氧化硅纳米颗粒(MSN)注入血流中。在后一种情况下,治疗性蛋白质主要吸附在MSN的外表面。每当制备蛋白质-OMS偶联物时,将蛋白质定位在二氧化硅内部或外部表面的诊断方法至关重要。为了可视化中孔二氧化硅微颗粒和纳米颗粒中吸附的蛋白质的精细定位,我们基于金纳米颗粒(GNPs)共轭物的使用采用了特定的透射电子显微镜(TEM)分析策略。 GNP越来越受欢迎,它代表了一种通过实现治疗性纳米生物共轭物来设计MSN在纳米医学中未来应用的基本工具。可以指出的是,我们正处在纳米材料科学新时代的开始:“中年黄金时代”。

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