College of Food Science and Engineering, Northwest A&F University, Yangling 712100, Shaanxi, China.
Shenzhen Research Institute, Northwest A&F University, Shenzhen 518000, China.
Anal Chem. 2023 Nov 14;95(45):16585-16592. doi: 10.1021/acs.analchem.3c02718. Epub 2023 Sep 29.
Nanomaterials-based immunochromatographic assays (ICAs) are of great significance in point-of-care testing (POCT), yet it remains challenging to explore low background platforms and high chromogenic intensity probes to improve detection performance. Herein, we reported a low interference and high signal-to-noise ratio fluorescent ICA platform based on ultrabright persistent luminescent nanoparticles (PLNPs) ZnGeO: Mn, which could produce intense photoluminescence at 254 nm excitation to reduce background interference from ICA substrates and samples. The prepared immunosensor was successfully applied in T-2 toxin detection with a remarkable limit of detection of 0.025 ng/mL, which was 22-fold more sensitive compared with that of traditional gold nanoparticles. Ultimately, a portable 3D-printed detection device equipped with a smartphone analyzing application was fabricated for quantitative readout in POCT, achieving favorable recoveries in practical sample detection. This work provides a creative attempt for ultrabright PLNP-based low background ICA, and it also guarantees its feasibility in practical POCT.
基于纳米材料的免疫层析分析(ICA)在即时检测(POCT)中具有重要意义,但探索低背景平台和高显色强度探针以提高检测性能仍然具有挑战性。在此,我们报道了一种基于超亮持久发光纳米粒子(PLNPs)ZnGeO:Mn 的低干扰、高信噪比荧光 ICA 平台,它可以在 254nm 激发下产生强烈的磷光,从而降低 ICA 底物和样品的背景干扰。所制备的免疫传感器成功应用于 T-2 毒素检测,检测限达到 0.025ng/mL,比传统的金纳米粒子敏感 22 倍。最终,我们制作了一个带有智能手机分析应用程序的便携式 3D 打印检测设备,用于 POCT 的定量读数,在实际样品检测中取得了良好的回收率。这项工作为基于超亮 PLNP 的低背景 ICA 提供了一种创造性的尝试,也保证了其在实际 POCT 中的可行性。