Muñoz-San Martín Cristina, Gamella Maria, Pedrero María, Montero-Calle Ana, Pérez-Ginés Víctor, Camps Jordi, Arenas Meritxell, Barderas Rodrigo, Pingarrón José M, Campuzano Susana
Departamento de Química Analítica, Facultad de CC. Químicas, Universidad Complutense de Madrid, 28040, Madrid, Spain.
UFIEC, Instituto de Salud Carlos III, 28220, Majadahonda, Madrid, Spain.
Anal Bioanal Chem. 2022 Jan;414(1):399-412. doi: 10.1007/s00216-021-03240-8. Epub 2021 Feb 26.
Metastasis is responsible for about 90% of cancer-associated deaths. In the context of solid tumors, the low oxygen concentration in the tumor microenvironment (hypoxia) is one of the key factors contributing to metastasis. Tumor cells adapt to these conditions by overexpressing certain proteins such as programmed death ligand 1 (PD-L1) and hypoxia-inducible factor 1 alpha (HIF-1α). However, the determination of these tumor hypoxia markers that can be used to follow-up tumor progression and improve the efficiency of therapies has been scarcely addressed using electrochemical biosensors. In this work, we report the first electrochemical bioplatform for the determination of PD-L1 as well as the first one allowing its simultaneous determination with HIF-1α. The target proteins were captured and enzymatically labeled on magnetic microbeads and amperometric detection was undertaken on the surface of screen-printed dual carbon electrodes using the hydrogen peroxide/peroxidase/hydroquinone system. Sandwich immunoassays were implemented for both the HIF-1α and PD-L1 sensors and the analytical characteristics were evaluated providing LOD values of 86 and 279 pg mL for the amperometric determination of PD-L1 and HIF-1α standards, respectively. The developed electrochemical immunoplatforms are competitive versus the only electrochemical immunosensor reported for the determination of HIF-1α and the "gold standard" ELISA methodology for the single determination of both proteins in terms of assay time, compatibility with the simultaneous determination of both proteins making their use suitable for untrained users at the point of attention. The dual amperometric immunosensor was applied to the simultaneous determination of HIF-1α and PD-L1 in cancer cell lysates. The analyses lasted only 2 h and just 0.5 μg of the sample was required.
转移导致了约90%的癌症相关死亡。在实体瘤的背景下,肿瘤微环境中的低氧浓度(缺氧)是促成转移的关键因素之一。肿瘤细胞通过过度表达某些蛋白质,如程序性死亡配体1(PD-L1)和缺氧诱导因子1α(HIF-1α)来适应这些条件。然而,利用电化学生物传感器来确定这些可用于跟踪肿瘤进展并提高治疗效率的肿瘤缺氧标志物的研究却很少。在这项工作中,我们报告了首个用于测定PD-L1的电化学生物平台,以及首个能够同时测定PD-L1和HIF-1α的平台。目标蛋白在磁性微珠上被捕获并进行酶标记,然后使用过氧化氢/过氧化物酶/对苯二酚系统在丝网印刷双碳电极表面进行安培检测。对HIF-1α和PD-L1传感器都实施了夹心免疫分析,并评估了分析特性,安培法测定PD-L1和HIF-1α标准品的检测限分别为86和279 pg/mL。就检测时间、与同时测定两种蛋白质的兼容性而言,所开发的电化学免疫平台与报道的唯一用于测定HIF-1α的电化学生物传感器以及用于单一测定这两种蛋白质的“金标准”ELISA方法相比具有竞争力,使其适用于在护理点未经培训的用户使用。该双安培免疫传感器被应用于癌细胞裂解物中HIF-1α和PD-L1的同时测定。分析仅持续2小时,仅需0.5μg样品。