Sun Jiefang, Wang Zixuan, Yang Ling, He Yi, Liu Rui, Ran Wei, Wang Zhanhui, Shao Bing
Beijing Key Laboratory of Diagnostic and Traceability Technologies for Food Poisoning, Beijing Center for Disease Prevention and Control, Beijing 100013, China.
Department of Food and Bioengineering, Beijing Vocational College of Agriculture, Beijing 102445, China.
Toxics. 2022 Oct 12;10(10):605. doi: 10.3390/toxics10100605.
Improving the signal-to-noise ratio (SNR) by amplifying the outputting signal or reducing nonspecific binding (NSB) are the key techniques in multiple immunoassay. Aiming at these issues, this paper presents an improved multiple indirect competitive immune surface-enhanced Raman scattering (ci-SERS) assay for the rapid screening of highly toxic rodenticides in food and biological samples, which ensured remarkable accuracy, ultra-sensitivity and reproducibility. The non-fouling polymer brush grafted magnetic beads (the MB@P-CyM) were prepared as multiple competitive recognition substrates after conjugating triplex haptens (the MB@P-CyM-hap). It was demonstrated that the particular 3D hair-like structures of P-CyM not only facilitate conjugate high-density hapten but reduce the steric hindrance from SERS probes recognition, thus enhancing SNB. On the other hand, Au nanoflowers (AuNFs) of high SERS activity were synthesized using a simple one-pot hydrazine reduction. For simultaneously detecting three highly toxic rodenticides, i.e., diphacinone (DPN), bromadiolone (BRD) and tetramine (TET), the obtained AuNFs were fabricated as a SERS-encoded nanoprobe cocktail after successively labeling mono-antibodies/Raman probes. By integrating the MB@P-CyM-hap with the SERS-encoded cocktail, a highly sensitive multiple SERS assay was achieved in less than 2 h with a limit of detection of 0.62 ng mL for BRD, 0.42 ng mL for TET and 1.37 ng mL for DPN, respectively. The recoveries of these rodenticides in spiked food and biological samples were determined and ranged from 72 to 123%. Above all, the proposed modifications show remarkable improvements for high efficient multiple chemical toxin immunoassay.
通过放大输出信号或减少非特异性结合(NSB)来提高信噪比(SNR)是多重免疫分析中的关键技术。针对这些问题,本文提出了一种改进的多重间接竞争免疫表面增强拉曼散射(ci-SERS)分析方法,用于快速筛查食品和生物样品中的高毒灭鼠剂,该方法具有显著的准确性、超灵敏度和重现性。制备了接枝有非污损聚合物刷的磁珠(MB@P-CyM),在偶联三联体半抗原后作为多重竞争识别底物(MB@P-CyM-hap)。结果表明,P-CyM特殊的三维毛发状结构不仅有助于高密度偶联半抗原,还减少了SERS探针识别的空间位阻,从而提高了信噪比。另一方面,采用简单的一锅肼还原法合成了具有高SERS活性的金纳米花(AuNFs)。为了同时检测三种高毒灭鼠剂,即敌鼠酮(DPN)、溴敌隆(BRD)和毒鼠强(TET),将获得的AuNFs在依次标记单克隆抗体/拉曼探针后制备成SERS编码纳米探针混合物。通过将MB@P-CyM-hap与SERS编码混合物相结合,在不到2小时内实现了高灵敏度的多重SERS分析,BRD、TET和DPN的检测限分别为0.62 ng/mL、0.42 ng/mL和1.37 ng/mL。测定了这些灭鼠剂在加标食品和生物样品中的回收率,回收率在72%至123%之间。最重要的是,所提出的改进措施在高效多重化学毒素免疫分析方面显示出显著的进步。