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Shaping nanoparticles with hydrophilic compositions and hydrophobic properties as nanocarriers for antibiotic delivery

机译:塑造具有亲水性成分和疏水性的纳米颗粒,作为用于抗生素递送的纳米载体

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摘要

Inspired by the lotus effect in nature, surface roughness engineering has led to novel materials and applications in many fields. Despite the rapid progress in superhydrophobic and superoleophobic materials, this concept of Mother Nature’s choice is yet to be applied in the design of advanced nanocarriers for drug delivery. Pioneering work has emerged in the development of nanoparticles with rough surfaces for gene delivery; however, the preparation of nanoparticles with hydrophilic compositions but with enhanced hydrophobic property at the nanoscale level employing surface topology engineering remains a challenge. Herein we report for the first time the unique properties of mesoporous hollow silica (MHS) nanospheres with controlled surface roughness. Compared to MHS with a smooth surface, rough mesoporous hollow silica (RMHS) nanoparticles with the same hydrophilic composition show unusual hydrophobicity, leading to higher adsorption of a range of hydrophobic molecules and controlled release of hydrophilic molecules. RMHS loaded with vancomycin exhibits an enhanced antibacterial effect. Our strategy provides a new pathway in the design of novel nanocarriers for diverse bioapplications.
机译:受自然界中荷花效应的启发,表面粗糙度工程导致了许多领域的新型材料和应用。尽管超疏水和超疏油材料取得了飞速的发展,但大自然母亲的这一选择概念尚未在先进的纳米载体药物设计中得到应用。在具有粗糙表面用于基因递送的纳米颗粒的开发中已经出现了开拓性的工作。然而,采用表面拓扑工程技术制备具有亲水性组合物但在纳米级具有增强的疏水性的纳米颗粒仍然是一个挑战。在此,我们首次报道了具有可控表面粗糙度的中孔空心二氧化硅(MHS)纳米球的独特性能。与具有光滑表面的MHS相比,具有相同亲水性成分的粗糙的中孔空心二氧化硅(RMHS)纳米颗粒显示出异常的疏水性,从而导致一系列疏水性分子的更高吸附性和亲水性分子的受控释放。装有万古霉素的RMHS表现出增强的抗菌作用。我们的策略为设计用于各种生物应用的新型纳米载体提供了一条新途径。

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