Guangxi Key Laboratory of Electrochemical and Magneto-chemical Functional Materials, College of Chemistry and Bioengineering, Guilin University of Technology, Guilin, 541004, China.
College of Environmental Science and Engineering, Guilin University of Technology, Guilin, 541004, China.
Anal Chim Acta. 2023 Aug 15;1269:341402. doi: 10.1016/j.aca.2023.341402. Epub 2023 May 23.
Immunochromatographic test strips typically consist of sample pad, conjugate pad, nitrocellulose membrane, and absorbent pad. Even minute variations in the assembly of these components can lead to inconsistent sample-reagent interactions, thereby reducing reproducibility. In addition, the nitrocellulose membrane is susceptible to damage during assembly and handling. To address this issue, we propose to replace the sample pad, conjugate pad, and nitrocellulose membrane with hierarchical dendritic gold nanostructure (HD-nanoAu) films to develop a compact integrated immunochromatographic strip. The strip uses quantum dots as a background fluorescence signal and employs fluorescence quenching to detect C-reactive protein (CRP) in human serum. A 5.9 μm thick HD-nanoAu film was electrodeposited on an ITO conductive glass by the constant potential method. The wicking kinetics of the HD-nanoAu film was thoroughly investigated, and the results indicated that the film exhibited favorable wicking properties, with a wicking coefficient of 0.72 μm ms. The immunochromatographic device was fabricated by etching three interconnected rings on HD-nanoAu/ITO to designate sample/conjugate (S/C), test (T), and control (C) regions. The S/C region was immobilized with mouse anti-human CRP antibody (Ab1) labeled with gold nanoparticles (AuNPs), while the T region was preloaded with polystyrene microspheres decorated with CdSe@ZnS quantum dots (QDs) as background fluorescent material, followed by mouse anti-human CRP antibody (Ab2). The C region was immobilized with goat anti-mouse IgG antibody. After the samples were added to the S/C region, the excellent wicking properties of the HD-nanoAu film facilitated the lateral flow of the CRP-containing sample toward the T and C regions after binding to AuNPs labeled with CRP Ab1. In the T region, CRP-AuNPs-Ab1 formed sandwich immunocomplexes with Ab2, and the fluorescence of QDs was quenched by AuNPs. The ratio of fluorescence intensity in the T region to that in the C region was used to quantify CRP. The T/C fluorescence intensity ratio was negatively correlated with the CRP concentration in the range of 26.67-853.33 ng mL (corresponding to 300-fold diluted human serum), with a correlation coefficient (R) of 0.98. The limit of detection was 15.0 ng mL (corresponding to 300-fold diluted human serum), and the range of relative standard deviation: 4.48-5.31%, with a recovery rate of 98.22-108.33%. Common interfering substances did not cause significant interference, and the range of relative standard deviation: 1.96-5.51%. This device integrates multiple components of conventional immunochromatographic strips onto a single HD-nanoAu film, resulting in a more compact structure that improves the reproducibility and robustness of detection, making it promising for point-of-care testing applications.
免疫层析测试条通常由样品垫、结合垫、硝酸纤维素膜和吸收垫组成。即使这些组件的组装有微小的变化,也会导致样品-试剂相互作用不一致,从而降低重现性。此外,硝酸纤维素膜在组装和处理过程中容易损坏。为了解决这个问题,我们建议用分层树枝状金纳米结构(HD-nanoAu)薄膜代替样品垫、结合垫和硝酸纤维素膜,开发一种紧凑的集成免疫层析条。该条带使用量子点作为背景荧光信号,并采用荧光猝灭法检测人血清中的 C 反应蛋白(CRP)。通过恒电位法在 ITO 导电玻璃上沉积了 5.9μm 厚的 HD-nanoAu 薄膜。彻底研究了 HD-nanoAu 薄膜的吸液动力学,结果表明该薄膜具有良好的吸液性能,吸液系数为 0.72μmms。通过在 HD-nanoAu/ITO 上刻蚀三个相互连接的环,将免疫层析装置制成指定样品/结合(S/C)、测试(T)和对照(C)区域的免疫层析装置。S/C 区域固定有标记有金纳米颗粒(AuNPs)的鼠抗人 CRP 抗体(Ab1),而 T 区域预先加载有聚苯乙烯微球,上面装饰有 CdSe@ZnS 量子点(QDs)作为背景荧光材料,然后是鼠抗人 CRP 抗体(Ab2)。C 区域固定有山羊抗鼠 IgG 抗体。在加入样品到 S/C 区域后,CRP 结合 Ab1 标记的 AuNPs 后,HD-nanoAu 薄膜的优异吸液性能促进了含 CRP 的样品向 T 和 C 区域的横向流动。在 T 区域,CRP-AuNPs-Ab1 与 Ab2 形成夹心免疫复合物,AuNPs 猝灭 QD 的荧光。T 区域的荧光强度与 C 区域的荧光强度之比用于定量 CRP。T/C 荧光强度比与 CRP 浓度呈负相关,在 26.67-853.33ngmL(对应 300 倍稀释的人血清)范围内,相关系数(R)为 0.98。检测限为 15.0ngmL(对应 300 倍稀释的人血清),相对标准偏差范围为 4.48-5.31%,回收率为 98.22-108.33%。常见干扰物质没有造成明显干扰,相对标准偏差范围为 1.96-5.51%。该装置将传统免疫层析条的多个组件集成到单个 HD-nanoAu 薄膜上,形成更紧凑的结构,提高了检测的重现性和稳健性,有望用于即时检测应用。