Tianjin Institute Environmental and Operational Medicine, Tianjin 300050, China; Hebei University of Science & Technology, Shijiazhuang, Hebei 050018, China.
Tianjin Institute Environmental and Operational Medicine, Tianjin 300050, China.
Sci Total Environ. 2020 Dec 15;748:142330. doi: 10.1016/j.scitotenv.2020.142330. Epub 2020 Sep 9.
Monitoring of low-level analytes are typical examples for analytical challenges. Salbutamol (SAL), a phenol-β2-agonist, has a very low residual content in the environment. Here, we present an ultrasensitive complete antigen-bridged PCR assay for detecting salbutamol (SAL). These DNA probes modified SAL complete antigens target recognition SAL antibodies and agglutinate synthetic DNA conjugates, thus enabling ligation of DNA probes to form a full-length DNA amplicon that contained a recognition site for cleavage endonuclease and subsequent quantification by qPCR. Moreover, SAL antibodies were modified with magnetic beads which were used to reduce the background noise and sample matrix effect, and the DNA signals were isothermally amplified by strand displacement amplification technology. Some key parameters which influence assay performance were optimized: the length of the bridge oligonucleotide, the concentration of immunomagnetic beads, SAL probes, and initiation chain, etc. Under the optimum conditions, the signal amplification of proposed Immuno-PCR assay for the detection of SAL was exponential, resulting in high potential sensitivity(~1 fg/mL) and a broad detection dynamic range (> 10 fold). Using this proposed method, we detected SAL in spiked tap water and urine samples with acceptable recoveries ranging from 88.1 to 103.3%. Theoretically, the method developed here has broad applicability and practical utility in immunoassays of a wide variety of analytes.
低水平分析物的监测是分析挑战的典型例子。沙丁胺醇(SAL)是一种酚-β2-激动剂,在环境中的残留含量非常低。在这里,我们提出了一种用于检测沙丁胺醇(SAL)的超灵敏完全抗原桥接 PCR 检测方法。这些修饰的 SAL 完全抗原的 DNA 探针靶向识别 SAL 抗体并聚集合成的 DNA 缀合物,从而能够将 DNA 探针连接形成包含切割内切酶识别位点的全长 DNA 扩增子,并通过 qPCR 进行后续定量。此外,SAL 抗体被修饰为磁性珠,用于减少背景噪声和样品基质效应,并且 DNA 信号通过链置换扩增技术进行等温扩增。优化了影响测定性能的一些关键参数:桥接寡核苷酸的长度、免疫磁珠、SAL 探针和起始链的浓度等。在最佳条件下,所提出的免疫 PCR 检测 SAL 的信号放大呈指数增长,从而具有高潜在灵敏度(~1 fg/mL)和宽检测动态范围(> 10 倍)。使用该方法,我们在加标自来水和尿液样品中检测到 SAL,回收率在 88.1%至 103.3%之间。从理论上讲,这里开发的方法在各种分析物的免疫分析中具有广泛的适用性和实际用途。