Key Laboratory of Luminescent and Real-Time Analytical Chemistry, Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University , Chongqing 400715, PR China.
ACS Appl Mater Interfaces. 2016 May 25;8(20):12968-75. doi: 10.1021/acsami.6b00021. Epub 2016 May 13.
In this work, ceria doped ZnO nanomaterials with flower-structure (Ce:ZONFs) were prepared to construct a luminol-based electrochemiluminescence (ECL) immunosensor for amyloid-β protein (Aβ) detection. Herein, carboxyl groups (-COOH) covered Ce:ZONFs were synthesized by a green method with lysine as reductant. After that, Ce:ZONFs-based ECL nanocomposite was prepared by combining the luminophore of luminol and Ce:ZONFs via amidation and physical absorption. Luminol modified on Ce:ZONFs surface could generate a strong ECL signal under the assistance of reactive oxygen species (ROSs) (such as OH(•) and O2(•-)), which were produced by a catalytic reaction between Ce:ZONFs and H2O2. It was worth noticing that a quick Ce(4+) ↔ Ce(3+) reaction in this doped material could increase the rate of electron transfer to realize the signal amplification. Subsequently, the luminol functionalized Ce:ZONFs (Ce:ZONFs-Lum) were covered by secondary antibody (Ab2) and glucose oxidase (GOD), respectively, to construct a novel Ab2 bioconjugate (Ab2-GOD@Ce:ZONFs-Lum). The wire-structured silver-cysteine complex (AgCys NWs) with a large number of -COOH, which was synthesized by AgNO3 and l-cysteine, was used as substrate of the immunosensor to capture the primary antibody (Ab1). Under the optimal conditions, this proposed ECL immunosensor had exhibited high sensitivity for Aβ detection with a wide linear range from 80 fg/mL to 100 ng/mL and an ultralow detection limit of 52 fg/mL. Meanwhile, this biosensor had good specificity for Aβ, indicating that the provided strategy had a promising potential in the detection of Aβ.
在这项工作中,制备了具有花状结构的铈掺杂氧化锌纳米材料(Ce:ZONFs)用于构建基于鲁米诺的电致化学发光(ECL)免疫传感器来检测淀粉样蛋白-β(Aβ)。在此,通过赖氨酸作为还原剂,采用绿色方法合成了具有羧基(-COOH)的 Ce:ZONFs。之后,通过酰胺化和物理吸附将鲁米诺和 Ce:ZONFs 结合制备了基于 Ce:ZONFs 的 ECL 纳米复合材料。在 Ce:ZONFs 和 H2O2 的催化反应产生的活性氧物种(ROSs)(如 OH(•)和 O2(•-))的辅助下,修饰在 Ce:ZONFs 表面的鲁米诺可以产生强的 ECL 信号。值得注意的是,在这种掺杂材料中,Ce(4+) ↔ Ce(3+) 的快速反应可以增加电子转移速率,从而实现信号放大。随后,分别用二次抗体(Ab2)和葡萄糖氧化酶(GOD)覆盖鲁米诺功能化的 Ce:ZONFs(Ce:ZONFs-Lum),构建了新型的 Ab2 生物缀合物(Ab2-GOD@Ce:ZONFs-Lum)。通过 AgNO3 和 l-半胱氨酸合成的具有大量 -COOH 的线结构银-半胱氨酸配合物(AgCys NWs),被用作免疫传感器的基底来捕获一抗(Ab1)。在最佳条件下,该提出的 ECL 免疫传感器对 Aβ 的检测具有高灵敏度,线性范围从 80 fg/mL 到 100 ng/mL,检测限低至 52 fg/mL。同时,该生物传感器对 Aβ 具有良好的特异性,表明所提供的策略在 Aβ 的检测中具有广阔的应用前景。