Institute of Biopharmaceutical and Healthcare Engineering, Shenzhen International Graduate School, Tsinghua University, Shenzhen, 518055, China.
Mikrochim Acta. 2022 Oct 6;189(11):407. doi: 10.1007/s00604-022-05507-y.
Uniform and monodisperse quantum dot (QD)-encoded magnetic microbeads with Janus structure were produced in a microfluidic device via photopolymerization. UV light through a microscope objective was used to solidify the microbeads which showed sharp interfaces and excellent magnetic responses. QDs with different emission peaks (450 nm for blue and 640 nm for red) were mixed at different ratios to provide three spectral codes. The QD-encoded microbeads can be distinguished by analyzing their fluorescent images in HSV color space. After hydrolysis of the anhydride group in alkaline solution, protein was immobilized on microbeads via activation of carboxyl groups using (1-ethyl-3(3-dimethylaminoprophyl) carbodiimide/N-hydroxysuccinimide (EDC/NHS). A microhole array in polydimethylsiloxane (PDMS) substrates with a specific size was fabricated to trap individual microbeads in a single microhole. The combination of Janus-structured QD-encoded magnetic microbeads and microhole arrays facilitates both flexibility, binding kinetics, sensitivity for suspension assay, and fluorescence mapping analysis for conventional biochips, thus providing a novel platform for multiplex bioanalysis. The capability of this integration for multiplex immunoassays was verified using three kinds of IgG and their corresponding anti-IgG. A detection limit of 0.07 ng/mL was achieved for human IgG, indicating practical applications in various fields.
通过光聚合在微流控装置中生产具有各向同性和单分散性的量子点 (QD) 编码的具有 Janus 结构的磁性微珠。使用显微镜物镜中的紫外光来固化微珠,其显示出锐利的界面和优异的磁响应。将不同发射峰的 QD(蓝色为 450nm,红色为 640nm)以不同比例混合以提供三种光谱编码。通过在 HSV 颜色空间中分析它们的荧光图像,可以区分 QD 编码的微珠。在碱性溶液中水解酸酐基团后,通过使用(1-乙基-3(3-二甲基氨基丙基)碳二亚胺/N-羟基琥珀酰亚胺(EDC/NHS)激活羧基基团将蛋白质固定在微珠上。在聚二甲基硅氧烷 (PDMS) 基板上制造具有特定尺寸的微孔阵列,以将单个微珠困在单个微孔中。Janus 结构的 QD 编码磁性微珠和微孔阵列的组合既具有灵活性,又具有结合动力学,对悬浮液分析的灵敏度,以及对传统生物芯片的荧光绘图分析,从而为多重生物分析提供了新的平台。使用三种 IgG 及其相应的抗 IgG 验证了这种集成用于多重免疫分析的能力。人 IgG 的检测限达到 0.07ng/mL,表明在各个领域具有实际应用。