Singampalli Kavya L, Neal-Harris Camille, Yee Cassian, Lin Jamie S, Lillehoj Peter B
Department of Bioengineering, Rice University, Houston, TX, 77030, USA.
Medical Scientist Training Program, Baylor College of Medicine, Houston, TX, 77030, USA.
Adv Sens Res. 2024 Sep;3(9). doi: 10.1002/adsr.202400004. Epub 2024 Apr 22.
The detection and quantification of protein biomarkers in bodily fluids is important for many clinical applications, including disease diagnosis and health monitoring. Current techniques for ultrasensitive protein detection, such as enzyme-linked immunosorbent assay (ELISA) and electrochemical sensing, involve long incubation times (1.5-3 hr) and rely on single-use sensing electrodes which can be costly and generate excessive waste. This work demonstrates a reusable electrochemical immunosensor employing magnetic nanoparticles (MNPs) and dually labeled gold nanoparticles (AuNPs) for ultrasensitive measurements of protein biomarkers. As proof of concept, this platform was used to detect C-X-C motif chemokine ligand 9 (CXCL9), a biomarker associated with kidney transplant rejection, immune nephritis from checkpoint inhibitor therapy, and drug-associated acute interstitial nephritis, in human urine. The sensor successfully detected CXCL9 at concentrations as low as 27 pg/mL within ~1 hr. This immunosensor was also adapted onto a handheld smartphone-based diagnostic device and used for measurements of CXCL9, which exhibited a lower limit of detection of 65 pg/mL. Lastly, we demonstrate that the sensing electrodes can be reused for at least 100 measurements with a negligible loss in analytical performance, reducing the costs and waste associated with electrochemical sensing.
体液中蛋白质生物标志物的检测和定量对于许多临床应用都很重要,包括疾病诊断和健康监测。当前用于超灵敏蛋白质检测的技术,如酶联免疫吸附测定(ELISA)和电化学传感,需要较长的孵育时间(1.5 - 3小时),并且依赖一次性传感电极,这可能成本高昂且产生过多废物。这项工作展示了一种可重复使用的电化学免疫传感器,该传感器采用磁性纳米颗粒(MNP)和双标记金纳米颗粒(AuNP)用于蛋白质生物标志物的超灵敏测量。作为概念验证,该平台用于检测人尿液中的C-X-C基序趋化因子配体9(CXCL9),CXCL9是一种与肾移植排斥、检查点抑制剂治疗引起的免疫性肾炎以及药物相关的急性间质性肾炎相关的生物标志物。该传感器在约1小时内成功检测到低至27 pg/mL浓度的CXCL9。这种免疫传感器还被适配到基于手持智能手机的诊断设备上,用于测量CXCL9,其检测下限为65 pg/mL。最后,我们证明传感电极可以重复使用至少100次,分析性能损失可忽略不计,从而降低了与电化学传感相关的成本和废物。