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基于光谱编码超顺磁微球的多重免疫分析检测罗非鱼中的持久性有机污染物:成像流式细胞术和流动式细胞术检测平台的比较。

Multiplex immunoassay for persistent organic pollutants in tilapia: comparison of imaging- and flow cytometry-based platforms using spectrally encoded paramagnetic microspheres.

机构信息

RIKILT-Institute of Food Safety, Wageningen University and Research Center, Wageningen, The Netherlands.

出版信息

Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2013;30(5):843-52. doi: 10.1080/19440049.2013.769138. Epub 2013 May 8.

Abstract

Recent developments in spectrally encoded microspheres (SEMs)-based technologies provide high multiplexing possibilities. Most SEMs-based assays require a flow cytometer with sophisticated fluidics and optics. A new imaging super-paramagnetic SEMs-based alternative platform transports SEMs with considerably less fluid volume into a measuring chamber. Once there SEMs are held in a monolayer by a magnet. Light-emitting diodes (LEDs) are focused on the chamber to illuminate the SEMs - instead of lasers and they are imaged by a charge-coupled device (CCD) detector, offering a more compact sized, transportable and affordable system. The feasibility of utilising this system to develop a 3-plex SEMs-based imaging immunoassay (IMIA) for the screening of persistent organic pollutants (POPs) was studied. Moreover the performance characteristics of 3-plex IMIA were critically compared with the conventional 3-plex flow cytometric immunoassay (FCIA). Both SEM technologies have potential for the multiplex analysis of polychlorinated biphenyls (PCBs), polybrominated diphenyl ethers (PBDEs) and polycyclic aromatic hydrocarbons (PAHs) in buffer and fish extract with insignificant differences in assay sensitivities. Furthermore, we developed a faster and simpler, modified QuEChERS-like generic POPs extraction from tilapia fillet using sodium hydrogen carbonate as one of the salt additives and dispersive solid-phase extraction (dSPE) as a clean-up. Finally, a preliminary in-house validation using 40 different blank and spiked tilapia fillet samples was performed in both systems and the results obtained were critically compared. The lower-cost imaging SEMs-based system performed similarly to the original flow cytometer and, in combination with the new quicker QuEChERS-like extraction, it has high potential for future rapid screening of POPs in several other sample matrices such as other fish species, vegetable refined oils and environmental samples.

摘要

基于光谱编码微球(SEMs)的技术的最新发展提供了高多重化的可能性。大多数基于 SEMs 的测定需要具有复杂的流体和光学的流式细胞仪。一种新的基于成像超顺磁 SEMs 的替代平台,用少得多的流体体积将 SEMs 输送到测量室中。一旦进入,SEM 就会被磁铁保持在单层中。发光二极管(LED)聚焦在腔室上以照亮 SEMs-而不是激光,并且它们由电荷耦合器件(CCD)检测器成像,提供了更紧凑、可运输和更经济实惠的系统。研究了利用该系统开发用于筛选持久性有机污染物(POPs)的基于 SEMs 的 3 重成像免疫分析(IMIA)的可行性。此外,还对 3 重 IMIA 的性能特征与传统的 3 重流式细胞免疫分析(FCIA)进行了严格比较。这两种 SEM 技术都有可能用于缓冲液和鱼提取物中多氯联苯(PCBs)、多溴联苯醚(PBDEs)和多环芳烃(PAHs)的多重分析,在测定灵敏度方面没有明显差异。此外,我们开发了一种更快、更简单的改良型 QuEChERS 样通用 POPs 提取方法,使用碳酸氢钠作为盐添加剂之一,并使用分散固相萃取(dSPE)进行净化。最后,在两个系统中对 40 个不同的空白和加标罗非鱼片样本进行了初步的内部验证,并对获得的结果进行了严格比较。成本较低的基于成像 SEMs 的系统与原始流式细胞仪表现相似,并且与新的更快的 QuEChERS 样提取方法结合使用,它具有在其他几种样品基质(如其他鱼类、植物油和环境样品)中快速筛选 POPs 的巨大潜力。

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