Bu Tong, Bai Feier, Zhao Shuang, Sun Xinyu, Jia Pei, He Kunyi, Wang Ying, Li Qing, Wang Li
College of Food Science and Engineering, Northwest A&F University, Yangling 712100, Shaanxi, China.
Shenzhen Research Institute Northwest A&F University, Shenzhen 518000, Guangdong, China.
Anal Chem. 2022 Apr 12;94(14):5546-5554. doi: 10.1021/acs.analchem.1c04721. Epub 2022 Mar 29.
The rapid detection of toxins is of great significance to food security and human health. In this work, a dual-modality immunochromatographic test (DICT) mediated by (SA)-biosynthesized polymer dots (SABPDs) was constructed for sensitive monitoring of zearalenone (ZEN) in agro products. The SABPDs as potent microorganism nanoscaffolds with excellent solubility, brightness, and stability were ingeniously fabricated employing hydroquinone and SA as precursors in the Schiff base reaction and a self-assembly technique. Thanks to the fact that they not only preserved an intact microsphere for loading Fc regions of monoclonal antibodies (mAbs) and the affinity of their labeled mAbs to antigen but also generated superb colorimetric-fluorescent dual signals, the versatile SABPDs manifested unique possibilities as the new carriers for dual-readout ICT with remarkable enhancement in sensitivity in ZEN screening (limit of detection = 0.036 ng/mL, which was 31-fold lower than that of traditional gold nanoparticle-based ICT). Ultimately, the proposed immunosensor performed well in millet and corn samples with satisfactory recoveries, demonstrating its potential for point-of-care testing. This work offers a bio-friendly strategy for biosynthesizing cell-based PD vehicles with bimodal signals for food safety analysis.
毒素的快速检测对食品安全和人类健康具有重要意义。在这项工作中,构建了一种由(SA)生物合成的聚合物点(SABPDs)介导的双模态免疫层析测试(DICT),用于灵敏监测农产品中的玉米赤霉烯酮(ZEN)。以对苯二酚和SA为前体,通过席夫碱反应和自组装技术巧妙制备了具有优异溶解性、亮度和稳定性的强效微生物纳米支架SABPDs。由于它们不仅保留了完整的微球用于负载单克隆抗体(mAb)的Fc区域及其标记的mAb与抗原的亲和力,还产生了出色的比色-荧光双信号,多功能的SABPDs作为双读出免疫层析的新型载体表现出独特的潜力,在ZEN筛选中灵敏度显著提高(检测限 = 0.036 ng/mL,比传统基于金纳米颗粒的免疫层析低31倍)。最终,所提出的免疫传感器在小米和玉米样品中表现良好,回收率令人满意,证明了其即时检测的潜力。这项工作为生物合成具有双峰信号的基于细胞的PD载体用于食品安全分析提供了一种生物友好策略。