Somnet Kanpitcha, Wanram Surasak, Chairam Sanoe, Jarujamrus Purim, Nacapricha Duangjai, Lieberzeit Peter A, Amatatongchai Maliwan
Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Ubon Ratchathani University, Ubon Ratchathani, 34190, Thailand.
Biomedical Science Research Unit, College of Medicine and Public Health, Ubon Ratchathani University, Ubon Ratchathani, 34190, Thailand.
Mikrochim Acta. 2025 Jan 29;192(2):112. doi: 10.1007/s00604-025-06975-8.
Carcinoembryonic antigen (CEA) and C-reactive protein (CRP) are biomacromolecules known as cancer and inflammatory markers. Thus, they play a crucial role in early cancer diagnosis, post-treatment recurrence detection, and tumor risk assessment. This paper describes the development of an ultrasensitive and selective imprinted paper-based analytical device (PAD) as impedance sensor for determination of CEA and CRP in serum samples for point-of-care testing (POCT). They combine a core comprising of silica nanospheres decorated with silver nanoparticles (SiO@AgNPs) coated with molecularly imprinted polymers (MIPs) for CEA and CRP as shells. CEA-MIP and CRP-MIP were successful coated on the core via self-assembly of N-acetyl-L-cysteine (NAC) followed by building up recognition sites in iminodiacetic acid/ethylene glycol dimethacrylate (IDA/EGDMA) polymer. We constructed a selective and compact imprinted PAD based on a SiO@AgNPs@MIP-CEA- and SiO@AgNPs@MIP-CRP-modified graphene electrode, a so-called Dual-C sensor. The resulting twin voltammetric cells to detect CEA and CRP use foldable hydrophobic back-up sheets acting as reservoirs. The advantages of this approach include straightforward manufacturing with highly reproducibility, quick assembly, and good physical durability. The Dual-C sensor revealed excellent linear dynamic ranges of 0.0001 to 10 ng mL for both CEA and CRP, which covers on the concentration ranges of clinical interest for both analytes. Furthermore, the system shows high accuracy and precision, with no evidence of interference from serum samples.
癌胚抗原(CEA)和C反应蛋白(CRP)是被称为癌症和炎症标志物的生物大分子。因此,它们在早期癌症诊断、治疗后复发检测和肿瘤风险评估中发挥着关键作用。本文描述了一种超灵敏且选择性的基于印迹纸的分析装置(PAD)的开发,该装置作为阻抗传感器用于即时检测(POCT)血清样本中的CEA和CRP。它们结合了一个核心,该核心由装饰有银纳米颗粒(SiO@AgNPs)的二氧化硅纳米球组成,并用针对CEA和CRP的分子印迹聚合物(MIPs)作为壳层进行包覆。通过N-乙酰-L-半胱氨酸(NAC)的自组装,然后在亚氨基二乙酸/乙二醇二甲基丙烯酸酯(IDA/EGDMA)聚合物中构建识别位点,成功地将CEA-MIP和CRP-MIP包覆在核心上。我们基于SiO@AgNPs@MIP-CEA和SiO@AgNPs@MIP-CRP修饰的石墨烯电极构建了一种选择性且紧凑的印迹PAD,即所谓的双C传感器。用于检测CEA和CRP的所得双伏安电池使用可折叠的疏水备用片作为储液器。这种方法的优点包括制造简单、具有高度可重复性、组装快速以及良好的物理耐久性。双C传感器显示出CEA和CRP的出色线性动态范围均为0.0001至10 ng/mL,这涵盖了两种分析物的临床相关浓度范围。此外,该系统显示出高准确性和精密度,没有血清样本干扰的迹象。