Husna Raudhatul, Kurup Chitra Padmakumari, Ansari Mohd Afaque, Mohd-Naim Noor Faizah, Ahmed Minhaz Uddin
Biosensors and Nanobiotechnology Laboratory, Integrated Science Building, Faculty of Science, Universiti Brunei Darussalam Jalan Tungku Link Gadong BE 1410 Brunei Darussalam
PAPRSB Institute of Health Sciences, Universiti Brunei Darussalam Jalan Tungku Link Gadong BE 1410 Brunei Darussalam.
RSC Adv. 2023 Jan 26;13(6):3890-3898. doi: 10.1039/d2ra06600a. eCollection 2023 Jan 24.
For early detection and diagnosis of cancer, it is essential to develop an electrochemical biosensor that is quick, accurate, and sensitive. Here, we use gold nanorod (AuNR) and gold nanowire (AuNW) nanocomposites (AuNR/AuNW/CS) as electrode modifiers on a glassy carbon electrode (GCE) to construct a sensitive label-free electrochemical aptasensor to detect ApoA1. The thiolated ApoA1-specific aptamers were immobilized onto the modified electrode surface through self-assembled monolayers. Electrochemical techniques, such as cyclic voltammetry (CV) and differential pulse voltammetry (DPV), were used to analyze the fabrication steps. The concentration of ApoA1 was measured with DPV on the aptasensor, with a linear range of 0.1 to 1000 pg mL and a detection limit of 0.04 pg mL. When compared to results from ELISA tests (which have a detection limit of 80 pg mL), the results achieved here were over 2000 times better. The aptasensor's performance was successfully evaluated using human serum spiked with ApoA1, suggesting that it has great potential for practical application. The electrochemical apatsensor additionally demonstrated outstanding selectivity responses and strong stability toward the target analyte.
为实现癌症的早期检测与诊断,开发一种快速、准确且灵敏的电化学生物传感器至关重要。在此,我们将金纳米棒(AuNR)和金纳米线(AuNW)纳米复合材料(AuNR/AuNW/CS)用作玻碳电极(GCE)上的电极修饰剂,以构建一种灵敏的无标记电化学适体传感器来检测载脂蛋白A1(ApoA1)。通过自组装单分子层将硫醇化的ApoA1特异性适体固定在修饰电极表面。采用循环伏安法(CV)和差分脉冲伏安法(DPV)等电化学技术来分析制备步骤。在该适体传感器上利用DPV测定ApoA1的浓度,线性范围为0.1至1000 pg/mL,检测限为0.04 pg/mL。与酶联免疫吸附测定(ELISA)测试结果(检测限为80 pg/mL)相比,此处获得的结果要好2000多倍。使用添加了ApoA1的人血清成功评估了该适体传感器的性能,这表明其具有巨大的实际应用潜力。此外,该电化学适体传感器对目标分析物表现出出色的选择性响应和强大的稳定性。