Department of Bioinformatics and Medical Engineering, Asia University, Taichung 41354, Taiwan.
Department of Chemical and Materials Engineering, National Central University, Taoyuan City 32001, Taiwan.
Sensors (Basel). 2023 Jan 5;23(2):625. doi: 10.3390/s23020625.
Interleukin 6 (IL-6) has been regarded as a biomarker that can be applied as a predictor for the severity of COVID-19-infected patients. The IL-6 level also correlates well with respiratory dysfunction and mortality risk. In this work, three silanization approaches and two types of biorecognition elements were used on the silicon nanowire field-effect transistors (SiNW-FETs) to investigate and compare the sensing performance on the detection of IL-6. Experimental data revealed that the mixed-SAMs-modified silica surface could have superior surface morphology to APTES-modified and APS-modified silica surfaces. According to the data on detecting various concentrations of IL-6, the detection range of the aptamer-functionalized SiNW-FET was broader than that of the antibody-functionalized SiNW-FET. In addition, the lowest concentration of valid detection for the aptamer-functionalized SiNW-FET was 2.1 pg/mL, two orders of magnitude lower than the antibody-functionalized SiNW-FET. The detection range of the aptamer-functionalized SiNW-FET covered the concentration of IL-6, which could be used to predict fatal outcomes of COVID-19. The detection results in the buffer showed that the anti-IL-6 aptamer could produce better detection results on the SiNW-FETs, indicating its great opportunity in applications for sensing clinical samples.
白细胞介素 6(IL-6)已被视为一种生物标志物,可作为预测 COVID-19 感染患者严重程度的指标。IL-6 水平也与呼吸功能障碍和死亡风险密切相关。在这项工作中,我们使用了三种硅烷化方法和两种类型的生物识别元件,在硅纳米线场效应晶体管(SiNW-FET)上进行了研究和比较,以检测 IL-6 的传感性能。实验数据表明,混合 SAMs 修饰的二氧化硅表面可能具有优于 APTES 修饰和 APS 修饰的二氧化硅表面的表面形态。根据检测不同浓度 IL-6 的数据,适配体功能化 SiNW-FET 的检测范围比抗体功能化 SiNW-FET 的检测范围更广。此外,适配体功能化 SiNW-FET 的有效检测最低浓度为 2.1 pg/mL,比抗体功能化 SiNW-FET 低两个数量级。适配体功能化 SiNW-FET 的检测范围涵盖了 IL-6 的浓度,可以用于预测 COVID-19 的致命结局。在缓冲液中的检测结果表明,抗 IL-6 适配体在 SiNW-FET 上可以产生更好的检测结果,这表明它在临床样本传感应用中有很大的机会。