College of Food Science and Engineering, Northwest A&F University, Yangling, Shaanxi 712100, China.
College of Food Science and Technology, Henan Agricultural University, Zhengzhou, Henan 450002, China.
Anal Chem. 2024 Mar 26;96(12):4825-4834. doi: 10.1021/acs.analchem.3c04899. Epub 2024 Feb 16.
Immunochromatographic assays (ICAs) have been widely used in the field detection of mycotoxin contaminants. Nevertheless, the lack of multisignal readout capability and the ability of signaling tags to maintain their biological activity while efficiently loading antibodies remain a great challenge in satisfying diverse testing demands. Herein, we proposed a novel three-in-one multifunctional hollow vanadium nanomicrosphere (high brightness-catalytic-photothermal properties)-mediated triple-readout ICA (VHMS-ICA) for sensitive detection of -2. As the key to this biosensing strategy, vanadium was used as the catalytic-photothermal characterization center, and natural polyphenols were utilized as the bridging ligands for coupling with the antibody while self-assembling with formaldehyde cross-linking into a hollow nanocage-like structure, which offers the possibility of realizing a three-signal readout strategy and improving the coupling efficiency to the antibody while preserving its biological activity. The constructed sensors showed a detection limit (LOD) of 2 pg/mL for -2, which was about 345-fold higher than that of conventional gold nanoparticle-based ICA (0.596 ng/mL). As anticipated, the detection range of VHMS-ICA was extended about 8-fold compared with the colorimetric signal alone. Ultimately, the proposed immunosensor performed well in maize and oat samples, with satisfactory recoveries. Owing to the synergistic and complementary interactions between distinct signaling modes, the establishment of multimodal immunosensors with multifunctional tags is an efficient strategy to satisfy diversified detection demands.
免疫胶体金分析(ICA)已广泛应用于真菌毒素污染物的现场检测。然而,缺乏多信号读出能力以及信号标记物在有效加载抗体的同时保持其生物活性的能力,仍然是满足各种检测需求的巨大挑战。在此,我们提出了一种新型的三合一多功能空心钒纳米微球(高亮度-催化-光热性能)介导的三重读出免疫胶体金分析(VHMS-ICA),用于灵敏检测 -2。作为这种生物传感策略的关键,钒被用作催化-光热特性的中心,并且天然多酚被用作与抗体偶联的桥联配体,同时自组装与甲醛交联成空心纳米笼状结构,这为实现三信号读出策略提供了可能性,并提高了与抗体的偶联效率,同时保持其生物活性。所构建的传感器对 -2 的检测限(LOD)为 2 pg/mL,比传统的基于金纳米粒子的 ICA(0.596 ng/mL)高约 345 倍。正如预期的那样,与单独的比色信号相比,VHMS-ICA 的检测范围扩展了约 8 倍。最终,该免疫传感器在玉米和燕麦样品中的表现良好,回收率令人满意。由于不同信号模式之间的协同和互补相互作用,多功能标记物的多模态免疫传感器的建立是满足多样化检测需求的有效策略。