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Preparation and Biocompatible Surface Modification of Redox Altered Cerium Oxide Nanoparticle Promising for Nanobiology and Medicine

机译:有望用于纳米生物学和医学的氧化还原氧化铈纳米粒子的制备和生物相容性表面修饰

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The biocompatible surface modification of metal oxide nanoparticles via surface functionalization technique has been used as an important tool in nanotechnology and medicine. In this report, we have prepared aqueous dispersible, trivalent metal ion (samarium)-doped cerium oxide nanoparticles (SmCNPs) as model redox altered CNPs of biological relevance. SmCNP surface modified with hydrophilic biocompatible (6-{2-[2-(2-methoxy-ethoxy)-ethoxy]-ethoxy}-hexyl) triethoxysilane (MEEETES) were prepared using ammonia-induced ethylene glycol-assisted precipitation method and were characterized using a variety of complementary characterization techniques. The chemical interaction of functional moieties with the surface of doped nanoparticle was studied using powerful 13 C cross polarization magic angle sample spinning nuclear magnetic resonance spectroscopy. The results demonstrated the production of the extremely small size MEEETES surface modified doped nanoparticles with significant reduction in aggregation compared to their unmodified state. Moreover, the functional moieties had strong chemical interaction with the surface of the doped nanoparticles. The biocompatible surface modification using MEEETES should also be extended to several other transition metal ion doped and co-doped CNPs for the production of aqueous dispersible redox altered CNPs that are promising for nanobiology and medicine.
机译:通过表面功能化技术对金属氧化物纳米颗粒进行生物相容性表面修饰已被用作纳米技术和医学中的重要工具。在本报告中,我们制备了水可分散的,掺杂三价金属离子(mar)的氧化铈纳米颗粒(SmCNPs),作为具有生物相关性的模型氧化还原改变的CNP。用氨水诱导的乙二醇辅助沉淀法制备了亲水性生物相容性(6- {2- [2-(2-甲氧基-乙氧基)-乙氧基]-乙氧基}-己基)三乙氧基硅烷(MEEETES)修饰的SmCNP,并对其进行了表征。使用各种互补的表征技术。使用强大的13 C交叉极化魔角样品旋转核磁共振波谱研究了功能部分与掺杂纳米颗粒表面的化学相互作用。结果表明,与未改性状态相比,极小尺寸的MEEETES表面改性的掺杂纳米粒子的生产具有明显的聚集减少。而且,功能部分与掺杂的纳米颗粒的表面具有强的化学相互作用。使用MEEETES的生物相容性表面修饰也应扩展到其他几种掺杂和共掺杂过渡金属离子的CNP,以生产对纳米生物学和医学有希望的水分散性氧化还原改变的CNP。

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