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多功能 Fe₃O₄ 核/Ni-Al 层状双氢氧化物壳纳米球作为亚群 J 禽白血病病毒超灵敏电化学免疫分析的标记物。

Multifunctional Fe₃O₄ core/Ni-Al layered double hydroxides shell nanospheres as labels for ultrasensitive electrochemical immunoassay of subgroup J of avian leukosis virus.

机构信息

College of Chemistry and Material Science, Shandong Agricultural University, Taian, Shandong 271018, PR China.

出版信息

Biosens Bioelectron. 2012 Aug-Sep;37(1):107-11. doi: 10.1016/j.bios.2012.04.035. Epub 2012 Apr 30.

Abstract

A novel electrochemical immunosensor for ultrasensitive detection of subgroup J of avian leukosis virus (ALVs-J) was designed by using graphene sheets (GS)-layered double hydroxides (LDHs) composites modified electrode with multifunctional Fe(3)O(4) core/Ni-Al LDHs shell (LDHs@Fe(3)O(4)) nanospheres as labels. At first, the GS-LDHs were used for the immunosensor platform for improving the electronic transmission rate as well as increasing the surface area to capture a large amount of primary antibodies (Ab(1)). After that, ferrocene (Fc), secondary antibodies (Ab(2)) and horseradish peroxidase (HRP) multifunctional LDHs@Fe(3)O(4) nanospheres were used as labels with high load amount and good biological activity. Subsequently, in presence of H(2)O(2), amplified signals were obtained by an electrochemical sandwich immunoassay protocol. To embody the signal amplification property of the protocol, the analytical properties of various immunosensor platform and labels were compared in detail. Under optimal conditions, the reduction peak currents of the electrochemical immunosensor were proportional to the ALVs-J concentration over the range from 10(2.32) to 10(5.50) TCID(50)/mL with a low detection limit (180 TCID(50)/mL, S/N=3). The resulting immunosensor also displayed a good selectivity, reproducibility and stability.

摘要

一种用于亚群 J 禽白血病病毒 (ALVs-J) 超灵敏检测的新型电化学免疫传感器,是通过使用具有多功能 Fe(3)O(4)核/Ni-Al LDHs 壳 (LDHs@Fe(3)O(4)) 纳米球的石墨烯片 (GS)-层状双氢氧化物 (LDHs) 复合材料修饰电极来设计的。首先,GS-LDHs 被用于免疫传感器平台,以提高电子传输率并增加表面积,从而捕获大量的初级抗体 (Ab(1))。之后,将二茂铁 (Fc)、二级抗体 (Ab(2)) 和辣根过氧化物酶 (HRP) 多功能 LDHs@Fe(3)O(4)纳米球用作标签,具有高负载量和良好的生物活性。随后,在 H(2)O(2) 的存在下,通过电化学三明治免疫测定方案获得放大信号。为了体现该方案的信号放大特性,详细比较了各种免疫传感器平台和标签的分析性能。在最佳条件下,电化学免疫传感器的还原峰电流与 ALVs-J 浓度在 10(2.32)至 10(5.50)TCID(50)/mL 范围内呈正比,检测下限低至 180TCID(50)/mL(S/N=3)。所得免疫传感器还表现出良好的选择性、重现性和稳定性。

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