Tobias Charlie, López-Puertollano Daniel, Abad-Somovilla Antonio, Mercader Josep V, Abad-Fuentes Antonio, Rurack Knut
Chemical and Optical Sensing Division, Bundesanstalt für Materialforschung und -prüfung (BAM), Richard-Willstätter-Str. 11, Berlin D-12489, Germany.
Department of Organic Chemistry, University of Valencia, Doctor Moliner 50, Burjassot, Valencia 46100, Spain.
ACS Meas Sci Au. 2024 Sep 17;4(6):678-688. doi: 10.1021/acsmeasuresciau.4c00038. eCollection 2024 Dec 18.
Flow cytometry-based immunoassays are valuable in biomedical research and clinical applications due to their high throughput and multianalyte capability, but their adoption in areas such as food safety and environmental monitoring is limited by long assay times and complex workflows. Rapid, simplified bead-based cytometric immunoassays are needed to make these methods viable for point-of-need applications, especially with the increasing accessibility of miniaturized cytometers. This work introduces superparamagnetic hybrid polystyrene-silica core-shell microparticles as promising alternatives to conventional polymer beads in competitive cytometric immunoassays. These beads, featuring high specificity, sensitivity, and excellent handling capabilities via magnetic separation, were evaluated with three different antibodies and binding methods, showing variations in signal intensity based on the antibody and its attachment method. The optimal performance was achieved through a secondary antibody binding approach, providing strong and consistent signals with minimal uncertainty. The optimized protocol made it possible to achieve a detection limit of 0.025 nM in a total assay time of only 15 min and was successfully used to detect ochratoxin A (OTA) in raw flour samples. This work highlights the potential of these beads as versatile tools for flow cytometry-based immunoassays, with significant implications for food safety, animal health, environmental monitoring, and clinical diagnostics.
基于流式细胞术的免疫测定因其高通量和多分析物能力在生物医学研究和临床应用中具有重要价值,但它们在食品安全和环境监测等领域的应用受到检测时间长和工作流程复杂的限制。需要快速、简化的基于微珠的细胞免疫测定方法,以使这些方法适用于即时检测应用,特别是随着小型化细胞仪的普及。这项工作引入了超顺磁性聚苯乙烯-二氧化硅核壳复合微粒,作为竞争性细胞免疫测定中传统聚合物微珠的有前途的替代品。这些微珠具有高特异性、灵敏度,并通过磁分离具有出色的处理能力,用三种不同的抗体和结合方法进行了评估,结果显示信号强度因抗体及其附着方法而异。通过二抗结合方法实现了最佳性能,提供了强而一致的信号,不确定性最小。优化后的方案能够在仅15分钟的总检测时间内实现0.025 nM的检测限,并成功用于检测生面粉样品中的赭曲霉毒素A(OTA)。这项工作突出了这些微珠作为基于流式细胞术免疫测定的通用工具的潜力,对食品安全、动物健康、环境监测和临床诊断具有重要意义。