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Template-free synthesis of mesoporous Ce_3NbO_7/CeO_2 hollow nanospheres for label-free electrochemical immunosensing of leptin

机译:无介孔Ce_3NBO_7 / CEO_2中空纳米球的无模板合成,用于瘦蛋白的无标记电化学免疫抑制剂

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摘要

In recent years, obesity has become a major problem in the western world, affecting almost one-third of the population. Treatment for obesity is very expensive; therefore, the 'fat-busting' hormone leptin (LEP) has provoked wide-ranging interest over the last few years, and the immunosensing of LEP has received considerable attention in the field of obesity diagnosis. Bimetal oxides are significantly promising materials for biosensor applications owing to their large surface area, high stability, many active sites, and good biocompatibility. In this study, cerium niobate/cerium oxide (Ce_3NbO_7/CeO_2) hollow nanospheres were synthesized using a template-free hydrothermal technique. The Ce_3NbO_7/CeO_2 exhibits the high catalytic activity, large surface area, porous nature, and more active sites towards the LEP immunosensor. To improve the conductivity of the electrode, the AuNPs were decorated through the electrodeposition method (potential range: -0.4 to -0.9 V with an optimum successive cycle of 20). Au/Ce_3NbO_7/CeO_2 was then thiol factionalized (Au-S bond-forming) with MPA to obtain a strong surface. Consequently, EDC/NHS enabled the -COOH group activation and firmly bonded with the anti-LEP molecules. Under optimal conditions, the developed immunosensor exhibited a good linear range from 0.5 pg/mL to 12,000 ± 500 pg/mL with a low detection limit (LOD) of 0.138 pg/mL, and good precision, selectivity, and stability results achieved for the immunosensing of LEP. Furthermore, the practical feasibility of LEP was demonstrated in plasma samples.
机译:近年来,肥胖已成为西方世界的一个主要问题,影响了几乎三分之一的人口。肥胖治疗非常昂贵;因此,“脂肪破坏”激素瘦素(LEP)在过去几年中引起了广泛的兴趣,LEP的免疫抑制在肥胖诊断领域得到了相当大的关注。由于其大表面积,高稳定性,许多活性位点以及良好的生物相容性,双金属氧化物是用于生物传感器应用的重要材料。在该研究中,使用无模板的水热技术合成了铌酸铈/氧化铈(CE_3NBO_7 / CEO_2)中空纳米球。 CE_3NBO_7 / CEO_2表现出高催化活性,大型表面积,多孔性,以及朝向LEP免疫传感器的更活跃点。为了提高电极的电导率,通过电沉积方法(电位范围:-0.4至-0.9V,最佳连续循环为20)。然后使用MPA获得Au / Ce_3nbo_7 / CeO_2,并具有MPa以获得强大的表面。因此,EDC / NHS使-COOH基团激活并牢固地与抗LEP分子结合。在最佳条件下,发育的免疫传感器具有0.5pg / ml至12,000±500pg / ml的良好线性范围,具有0.138pg / ml的低检测限,良好的精度,选择性和稳定性结果LEP的免疫抑制剂。此外,在血浆样品中证明了LEP的实际可行性。

著录项

  • 来源
    《Sensors and Actuators 》 |2021年第8期| 130005.1-130005.14| 共14页
  • 作者单位

    College of Materials Science and Engineering Shenzhen University Shenzhen 518060 China Department of Electrical and Computer Engineering National University of Singapore 117583 Singapore;

    Graduate Institute of Biomedical Materials and Tissue Engineering College of Biomedical Engineering Taipei Medical University Taipei 11031 Taiwan;

    Department of Chemical Engineering and Biotechnology National Taipei University of Technology (Taipei Tech) Taipei 10608 Taiwan;

    Department of Chemical Engineering and Biotechnology National Taipei University of Technology (Taipei Tech) Taipei 10608 Taiwan;

    College of Materials Science and Engineering Shenzhen University Shenzhen 518060 China;

    College of Materials Science and Engineering Shenzhen University Shenzhen 518060 China;

    Research Center of Guangdong Intelligent Charging and System Integration Engineering Technology Shenzhen Winsemi Microelectronics Co. LTD. Shenzhen 518000 China;

    College of Materials Science and Engineering Shenzhen University Shenzhen 518060 China;

    Department of Chemical Engineering and Biotechnology National Taipei University of Technology (Taipei Tech) Taipei 10608 Taiwan Department of Materials Science and Engineering City University of Hong Kong Hong Kong China;

    Department of Chemical Engineering and Biotechnology National Taipei University of Technology (Taipei Tech) Taipei 10608 Taiwan;

    Department of Chemical Engineering and Biotechnology National Taipei University of Technology (Taipei Tech) Taipei 10608 Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ce_3NbO_7/CeO_2; Hollow nanospheres; Template-free; Obese hormone; Leptin; Electrochemical immunosensor;

    机译:ce_3nbo_7 / ceo_2;空心纳米球;无模板;肥胖的激素;瘦素;电化学免疫传感器;

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