Institute of Hydrochemistry and Chair for Analytical Chemistry, Technische Universität München, Marchioninistrasse 17, D-81377 München, Germany.
Analyst. 2009 Jul;134(7):1433-9. doi: 10.1039/b817836d. Epub 2009 Mar 31.
Access to high-quality and safe food is a basic need in our community and, consequently, the European Union has defined maximum residue levels (MRLs) for a number of antibacterial compounds. However, despite the obvious demand for quantitative multi-residue detection methods that can be carried out on a routine basis, there is currently a lack in the development of such systems. In particular, an automated multianalyte detection instrument is needed that is capable of quantifying several antibiotics simultaneously within minutes. The newly developed hapten microarrays are designed for the parallel analysis of 13 different antibiotics in milk within six minutes by applying an indirect competitive chemiluminescence microarray immunoassay (CL-MIA). To allow multiple analyses, a regenerable microarray chip was developed based on epoxy-activated PEG chip surfaces, onto which microspotted antibiotic derivatives like sulfonamides, beta-lactams, aminoglycosides, fluorquinolones and polyketides are coupled directly without further use of linking agents. Using the chip reader platform MCR 3, this antigen solid phase is stable for at least 50 consecutive analyses.
获得高质量和安全的食物是我们社区的基本需求,因此欧盟已经为许多抗菌化合物规定了最大残留限量 (MRL)。然而,尽管明显需要能够进行常规定量多残留检测的方法,但目前缺乏此类系统的开发。特别是需要一种能够在几分钟内同时定量几种抗生素的自动化多分析物检测仪器。新开发的半抗原微阵列设计用于通过应用间接竞争化学发光微阵列免疫分析 (CL-MIA) 在六分钟内平行分析牛奶中的 13 种不同抗生素。为了允许进行多次分析,开发了一种基于环氧激活的 PEG 芯片表面的可再生微阵列芯片,直接在其上偶联抗生素衍生物,如磺胺类、β-内酰胺类、氨基糖苷类、氟喹诺酮类和聚酮类,而无需进一步使用连接剂。使用芯片读取器平台 MCR 3,这种抗原固相至少稳定 50 次连续分析。