Department of Chemical Engineering, Indian Institute of Technology, Madras, India.
Analyst. 2021 Jan 4;146(1):244-252. doi: 10.1039/d0an01603a.
This study presents a novel plasmonic fiber optic sandwich immunobiosensor for the detection of chikungunya, an infectious mosquito-borne disease with chronic musculoskeletal pain and acute febrile illness, by exploiting non-structural protein 3 (CHIKV-nsP3) as a biomarker. A plasmonic sandwich immunoassay for CHIKV-nsP3 was realized on the surface of a compact U-bent plastic optical fiber (POF, 0.5 mm core diameter) with gold nanoparticles (AuNPs) as labels. The high evanescent wave absorbance (EWA) sensitivity of the U-bent probes allows the absorption of the light passing through the fiber by the AuNP labels, upon the formation of a sandwich immunocomplex of CHIKV-nsP3 on the core surface of the U-bent probe region. A simple optical set-up with a low-cost green LED and a photodetector on either end of the U-bent probe gave rise to a detection limit of 0.52 ng mL-1 (8.6 pM), and a linear range of 1-104 ng mL-1 with a sensitivity of 0.1043A530 nm/log(CnsP3). In addition, the plasmonic POF biosensor shows strong specificity towards the CHIKV-nsP3 analyte in comparison with Pf-HRP2, HIgG, and dengue whole virus. The results illustrate the potential of plasmonic POF biosensors for direct and sensitive point-of-care detection of the chikungunya viral disease.
本研究提出了一种新型的等离子体光纤夹心免疫生物传感器,用于检测基孔肯雅热,这是一种由蚊子传播的传染病,具有慢性肌肉骨骼疼痛和急性发热疾病的特点,利用非结构蛋白 3(CHIKV-nsP3)作为生物标志物。在紧凑的 U 型弯曲塑料光纤(POF,0.5 毫米芯径)表面上实现了针对 CHIKV-nsP3 的等离子体夹心免疫分析,其中金纳米粒子(AuNPs)作为标记物。U 型弯曲探针的高消逝波吸收(EWA)灵敏度允许通过光纤的光被 AuNP 标记吸收,当 CHIKV-nsP3 在 U 型弯曲探针区域的芯表面上形成夹心免疫复合物时。采用简单的光学设置,在 U 型弯曲探针的两端使用低成本的绿色 LED 和光电探测器,可将检测限降低至 0.52ng/mL(8.6pM),线性范围为 1-104ng/mL,灵敏度为 0.1043A530nm/log(CnsP3)。此外,与 Pf-HRP2、HIgG 和登革热全病毒相比,等离子体 POF 生物传感器对 CHIKV-nsP3 分析物表现出很强的特异性。研究结果表明,等离子体 POF 生物传感器具有直接、灵敏的现场检测基孔肯雅病毒病的潜力。