School of Public Health and Management, Chongqing Medical University, Chongqing 400016, China.
Chongqing International Travel Health Care Center, Chongqing 401120, China.
Biosens Bioelectron. 2018 Aug 15;113:148-156. doi: 10.1016/j.bios.2018.05.010. Epub 2018 May 8.
In this work, hollow nanobox metal-organic framework (HNM) nanocomposites were synthesised and utilised for the first time in a signal decreased electrochemical immunosensor for the ultrasensitive quantitative determination of lymphocyte activation gene-3 (LAG-3) protein, which is a newly discovered biomarker. With the aid of signal materials, namely, SiO-tagged anti-LAG-3 antibody (SiO-Ab) and the biotin-streptavidin system, the sensor can achieve signal amplification. Encapsulation of tin dioxide-functionalised reduced graphene oxide (rGO-SnO) and gold and platinum alloys (AuPt alloys) onto the surface of hollow nanobox metal-organic frameworks (MOFs) was performed to prepare rGO-SnO/hollow nanobox-MOFs/AuPt alloys (rGO-SnO/HNMs/AuPt) as the matrix. SiO-Ab, which is used as the signal-decreased label, can be utilised to enhance the distinction of the electrochemical signal after the specific recognition between antibodies and antigens, owing to its large steric hindrance property. In this sensor, this proposed sandwich immunosensor can achieve a high sensitivity, especially in the presence of low concentrations of the LAG-3 protein. Under optimal conditions, this sandwich-designed immunosensor exhibited a sensitive detection of the LAG-3 protein from concentrations of 0.01 ng mL to 1 μg mL, with a lower detection limit of 1.1 pg mL (based on 3σ). We proposed that this ultrasensitive biosensor can be utilised for the detection of the LAG-3 protein in early clinical tumour diagnosis.
在这项工作中,首次合成了中空纳米盒金属有机骨架(HNM)纳米复合材料,并将其用于超灵敏定量测定淋巴细胞激活基因-3(LAG-3)蛋白的信号降低电化学免疫传感器中,LAG-3 蛋白是一种新发现的生物标志物。借助信号材料,即带标记的抗-LAG-3 抗体(SiO-Ab)和生物素-链霉亲和素系统,该传感器可以实现信号放大。在中空纳米盒金属有机骨架(MOFs)表面进行二氧化锡功能化还原氧化石墨烯(rGO-SnO)和金铂合金(AuPt 合金)的封装,以制备 rGO-SnO/中空纳米盒-MOFs/AuPt 合金(rGO-SnO/HNMs/AuPt)作为基质。带标记的 SiO-Ab 作为信号降低标签,由于其较大的空间位阻特性,在抗体和抗原之间的特异性识别后,可以增强电化学信号的区分。在这个传感器中,这种三明治免疫传感器可以实现高灵敏度,特别是在存在低浓度 LAG-3 蛋白的情况下。在最佳条件下,这种三明治设计的免疫传感器对 LAG-3 蛋白的检测范围从 0.01ng/mL 到 1μg/mL,检测限为 1.1pg/mL(基于 3σ)。我们提出这种超灵敏生物传感器可用于早期临床肿瘤诊断中 LAG-3 蛋白的检测。