Ma Tongtong, Duan Hong, Zhang Wenjing, Shao Yanna, Hao Liangwen, Chen Xirui, Leng Yuankui, Huang Xiaolin, Xiong Yonghua
State Key Laboratory of Food Science and Technology, Nanchang University Nanchang 330047 P. R. China
Jiangxi-OAI Joint Research Institute, Nanchang University Nanchang 330047 P. R. China.
RSC Adv. 2019 Nov 11;9(63):36670-36679. doi: 10.1039/c9ra06690j.
An amphiphilic ligand-capped gold nanoflower (AuNF) was proposed as a novel lateral flow immunoassay (LFA) reporter for zearalenone (ZEN) detection in distillers dried grains solubles (DDGS). The amphiphilic ligand consists of a thiol-terminated hydrophobic alkane chain, a tetra (ethylene glycol) unit, and a terminal carboxyl group. The novel AuNF probe (N-AuNF-Abs) was prepared by coupling the amino group of anti-ZEN antibodies with the AuNF carboxyl group an amido covalent linkage. For comparison, a traditional AuNF probe (Tr-AuNF-Abs) was prepared by labeling antibodies on the surface of citrate capped AuNFs an electrostatic adsorption method. The detection performance of the two probes in LFA was systematically investigated, including the half maximal inhibitory concentration (IC), robustness and reproducibility for ZEN quantitative detection in DDGS samples, and shelf life. The N-AuNF-Ab based LFA (N-LFA) had a lower IC value (15.97 ng mL) for ZEN detection in phosphate buffered saline than that of the Tr-AuNF-mAb based LFA (Tr-LFA, 31.06 ng mL). The IC value of N-LFA in DDGS extract was 17.46 ng mL, whereas the Tr-LFA showed poor robustness and reproducibility in DDGS samples, resulting in a failed determination. The intra- and inter-assays of N-LFA for ZEN-spiked DDGS samples indicated that the average recoveries ranged from 93.0% to 125.9%, with coefficients of variation ranging from 2.8% to 21.9%. These results indicated that the N-LFA strip exhibits good robustness and an acceptable accuracy for ZEN quantitative detection in complex DDGS samples. In accelerated aging studies, N-LFA showed a longer shelf life (5 years) than that of Tr-LFA (1 year). In summary, the proposed method provided a novel strategy to prepare a super-stable probe for enhancing the detection performance of LFA for small molecular detection in complex sample matrices such as DDGS.
一种两亲性配体包覆的金纳米花(AuNF)被提议作为一种新型的侧向流动免疫分析(LFA)报告物,用于检测酒糟蛋白饲料(DDGS)中的玉米赤霉烯酮(ZEN)。两亲性配体由硫醇封端的疏水烷烃链、四(乙二醇)单元和末端羧基组成。通过将抗ZEN抗体的氨基与AuNF羧基以酰胺共价键连接,制备了新型AuNF探针(N-AuNF-Abs)。作为对比,通过用静电吸附法在柠檬酸盐包覆的AuNF表面标记抗体,制备了传统AuNF探针(Tr-AuNF-Abs)。系统研究了两种探针在LFA中的检测性能,包括半数抑制浓度(IC)、在DDGS样品中对ZEN进行定量检测的稳健性和重现性以及保质期。基于N-AuNF-Ab的LFA(N-LFA)在磷酸盐缓冲盐水中检测ZEN的IC值较低(15.97 ng/mL),低于基于Tr-AuNF-mAb的LFA(Tr-LFA,31.06 ng/mL)。N-LFA在DDGS提取物中的IC值为17.46 ng/mL,而Tr-LFA在DDGS样品中显示出较差的稳健性和重现性,导致检测失败。对添加ZEN的DDGS样品进行的N-LFA批内和批间分析表明,平均回收率在93.0%至125.9%之间,变异系数在2.8%至21.9%之间。这些结果表明,N-LFA试纸条在复杂的DDGS样品中对ZEN定量检测具有良好的稳健性和可接受的准确性。在加速老化研究中,N-LFA的保质期(5年)比Tr-LFA(1年)更长。总之,所提出的方法提供了一种制备超稳定探针的新策略,以提高LFA在复杂样品基质(如DDGS)中对小分子检测的性能。