Faradaic Impedimetric Immunosensor for Label-Free Point-of-Care Detection of COVID-19 Antibodies Using Gold-Interdigitated Electrode Array

被引:2
作者
Shoute, Lian C. T. [1 ]
Charlton, Carmen L. [2 ,3 ,4 ]
Kanji, Jamil N. [2 ,3 ,5 ,6 ]
Babiuk, Shawn [7 ,8 ]
Babiuk, Lorne [9 ]
Chen, Jie [1 ,10 ]
机构
[1] Univ Alberta, Dept Elect & Comp Engn, Edmonton, AB T6G 1H9, Canada
[2] Univ Alberta, Dept Lab Med & Pathol, Edmonton, AB T6G 1C9, Canada
[3] Alberta Precis Labs, Publ Hlth Lab, Calgary, AB T2N 1M7, Canada
[4] Univ Alberta, Li Ka Shing Inst Virol, Edmonton, AB T6G 2E1, Canada
[5] Univ Calgary, Cumming Sch Med, Dept Med, Div Infect Dis, Calgary, AB T2N 4N1, Canada
[6] Univ Calgary, Cumming Sch Med, Dept Pathol & Lab Med, Calgary, AB T2N 4N1, Canada
[7] Natl Ctr Foreign Anim Dis, Canadian Food Inspection Agcy, Winnipeg, MB R3E 3M4, Canada
[8] Univ Manitoba, Dept Immunol, Winnipeg, MB R3E 0T5, Canada
[9] Univ Alberta, Vaccine & Infect Dis Org, Edmonton, AB T6G 2G3, Canada
[10] Univ Alberta, Dept Biomed Engn, Edmonton, AB T6G 1H9, Canada
来源
BIOSENSORS-BASEL | 2024年 / 14卷 / 01期
关键词
Faradaic detection; pinholes; baseline drift; label-free; interdigitated electrode microelectrode array; COVID-19 antibody detection; SELF-ASSEMBLED MONOLAYERS; IMPEDANCE SPECTROSCOPY; ALKANETHIOL MONOLAYERS; CYCLIC VOLTAMMETRY; THIOL MONOLAYERS; CHARGE-TRANSFER; AU(111); STABILITY; DESORPTION; DEFECTS;
D O I
10.3390/bios14010006
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Label-free electrochemical biosensors have many desirable characteristics in terms of miniaturization, scalability, digitization, and other attributes associated with point-of-care (POC) applications. In the era of COVID-19 and pandemic preparedness, further development of such biosensors will be immensely beneficial for rapid testing and disease management. Label-free electrochemical biosensors often employ [Fe(CN)(6)](-3/4) redox probes to detect low-concentration target analytes as they dramatically enhance sensitivity. However, such Faradaic-based sensors are reported to experience baseline signal drift, which compromises the performance of these devices. Here, we describe the use of a mecaptohexanoic (MHA) self-assembled monolayer (SAM) modified Au-interdigitated electrode arrays (IDA) to investigate the origin of the baseline signal drift, developed a protocol to resolve the issue, and presented insights into the underlying mechanism on the working of label-free electrochemical biosensors. Using this protocol, we demonstrate the application of MHA SAM-modified Au-IDA for POC analysis of human serum samples. We describe the use of a label-free electrochemical biosensor based on covalently conjugated SARS-CoV-2 spike protein for POC detection of COVID-19 antibodies. The test requires a short incubation time (10 min), and has a sensitivity of 35.4/decade (35.4%/10 ng mL(-1)) and LOD of 21 ng/mL. Negligible cross reactivity to seasonal human coronavirus or other endogenous antibodies was observed. Our studies also show that Faradaic biosensors are similar to 17 times more sensitive than non-Faradaic biosensors. We believe the work presented here contributes to the fundamental understanding of the underlying mechanisms of baseline signal drift and will be applicable to future development of electrochemical biosensors for POC applications.
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页数:19
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