Mora-Sanz Verónica, Saa Laura, Pavlov Valeri, Cortajarena Aitziber L, Ibarlucea Bergoi, Briz Nerea
TECNALIA, Basque Research and Technology Alliance (BRTA), Mikeletegi Pasealekua 2, 20009, Donostia-San Sebastian, Spain.
Center for Cooperative Research in Biomaterials (CIC biomaGUNE), Basque Research and Technology Alliance (BRTA), Paseo de Miramón 194, 20014, Donostia-San Sebastián, Spain.
Nanoscale Horiz. 2025 Jul 21;10(8):1674-1683. doi: 10.1039/d5nh00045a.
Paper-based assays such as dot-blot show high promise to develop point-of-care testing devices fulfilling the ASSURED requirements suggested by the World Health Organization (affordable, sensitive, specific, user-friendly, rapid and robust, equipment-free, and deliverable). In this technique, natural enzymes are conventionally employed tags to provide bioreceptors such as antibodies with catalytic activity for quantitative assessment. Nonetheless, their inherent biomolecular limitations pose significant challenges, including cost and storage constraints. We propose an alternative conjugation for antibodies based on catalytic bimetallic nanoclusters and their integration in such simple colorimetric paper-based immunoassay. The nanoclusters are composed of gold and platinum and they are embedded in the structure of an anti-rabbit antibody, integrating in a single component the biorecognition and transduction elements required for biosensing. The detection is based on the catalytic properties of the NCs to oxidize an insoluble chromogenic substrate, generating a visible signal on the surface of the paper that can be further analysed for quantitative results. We demonstrate the detection of antibodies against the inflammation biomarker interleukin-6 with a limit of detection of 200 ng mL. Experimental results reveal improvements in terms of stability compared to the natural enzyme horseradish peroxidase, retaining most of its activity after a storage equivalent to 6 months at 4 °C. Additionally, incorporating the NCs within the antibody structure instead of attaching them a covalent bond provides an enhanced sensitivity of 69.7%. This assay could be transferred to other specific antibodies to detect and quantify other analytes of interest.
诸如斑点印迹法之类的基于纸质的检测方法,在开发符合世界卫生组织提出的ASSURED要求(可负担、灵敏、特异、用户友好、快速且稳定、无需设备、可交付)的即时检测设备方面显示出巨大潜力。在这项技术中,传统上使用天然酶作为标签,为诸如抗体之类的生物受体提供催化活性以进行定量评估。然而,它们固有的生物分子局限性带来了重大挑战,包括成本和储存限制。我们提出了一种基于催化双金属纳米簇的抗体替代偶联方法,并将其整合到这种简单的比色纸质免疫分析中。这些纳米簇由金和铂组成,它们嵌入抗兔抗体的结构中,将生物传感所需的生物识别和转导元件整合在单个组件中。检测基于纳米簇氧化不溶性显色底物的催化特性,在纸张表面产生可见信号,可进一步分析以获得定量结果。我们展示了对炎症生物标志物白细胞介素-6抗体的检测,检测限为200 ng/mL。实验结果表明,与天然酶辣根过氧化物酶相比,稳定性有所提高,在4°C下储存相当于6个月后仍保留其大部分活性。此外,将纳米簇整合到抗体结构中而不是通过共价键连接它们,可将灵敏度提高69.7%。该检测方法可转移到其他特异性抗体上,以检测和定量其他感兴趣的分析物。