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In situ self-assembly of gold nanoparticles on hydrophilic and hydrophobic substrates for influenza virus-sensing platform

机译:在流感病毒传感平台的亲水性和疏水基材上的金纳米颗粒的原位自组装

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Nanomaterials without chemical linkers or physical interactions that reside on a two-dimensional surface are attractive because of their electronic, optical and catalytic properties. An in situ method has been developed to fabricate gold nanoparticle (Au NP) films on different substrates, regardless of whether they are hydrophilic or hydrophobic surfaces, including glass, 96-well polystyrene plates, and polydimethylsiloxane (PDMS). A mixture of sodium formate (HCOONa) and chloroauric acid (HAuCl4) solution was used to prepare Au NP films at room temperature. An experimental study of the mechanism revealed that film formation is dependent on surface wettability and inter particle attraction. The as-fabricated Au NP films were further applied to the colorimetric detection of influenza virus. The response to the commercial target, New Caledonia/H1N1/1999 influenza virus, was linear in the range from 10?pg/ml to 10?μg/ml and limit of detection was 50.5?pg/ml. In the presence of clinically isolated influenza A virus (H3N2), the optical density of developed color was dependent on the virus concentration (10–50,000?PFU/ml). The limit of detection of this study was 24.3?PFU/ml, a limit 116 times lower than that of conventional ELISA (2824.3?PFU/ml). The sensitivity was also 500 times greater than that of commercial immunochromatography kits.
机译:没有化​​学接头的纳米材料或物理相互作用,其在二维表面上居住在其电子,光学和催化性质上具有吸引力。已经开发了一种原位方法以在不同底物上制造金纳米粒子(Au NP)膜,无论它们是亲水性还是疏水表面,包括玻璃,96孔聚苯乙烯板和聚二甲基硅氧烷(PDMS)。使用甲酸钠(HCOONA)和氯葵酸(HAUCR4)溶液的混合物在室温下制备Au NP膜。该机制的实验研究表明,成膜取决于表面润湿性和颗粒缺陷。制造的Au NP膜进一步应用于流感病毒的比色性检测。对商业目标的回应,新的Caledonia / H1N1 / 1999流感病毒,在10?Pg / ml至10?μg/ ml的范围内是线性的,并且检测极限为50.5〜pg / ml。在临床上分离的流感病毒(H3N2)存在下,发育颜色的光学密度取决于病毒浓度(10-50,000μlPFU/ mL)。该研究的检测极限为24.3?pfu / ml,限制比常规ELISA(2824.3〜PFU / ml)低116倍。敏感性也比商业免疫层状试剂盒大的500倍。

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