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Developing enhanced magnetoimmunosensors based on low-cost screen-printed electrode devices

机译:开发基于低成本丝网印刷电极设备的增强型磁免疫传感器

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摘要

Electrochemical magnetoimmunosensors combine a number of issues that guarantee extremely high performance and also compatibility with the study of complex sample matrices. First, analyte immunocapture exploits the high affinity and specificity of antibodies. Second, magnetic particles (MP) provide faster and more efficient immunocapture than binding on two-dimensional structures, separation from nontarget sample components, and concentration of the target analyte. Finally, electrochemical detection supplies sensitivity and fast signal generation using robust and potentially miniaturized measurement equipment and transducers. On the contrary, MP handling is slightly more complex for end-users and more difficult to integrate in point-of-care devices than the manipulation of a classical biosensor. Attempts have been made to automate immunomagnetic binding, and the first robotized systems and platforms for the fluorescent and spectrophotometric detection of magnetoimmunoassays have already reached the market. Among the different types of electrodes available, screen-printed electrodes (SPE) stand out because of their low production cost and yet acceptable performance and interdevice reproducibility, which make them an excellent choice for analytical applications. In addition, each SPE entails a whole electrochemical cell stamped on a planar physical substrate, which makes it possible detection in small volumes and is especially favorable for the magnetic confinement of MP and the integration of microfluidic structures. In this article, we discuss the advantages obtained by using SPE and MP for the production of electrochemical magnetoimmunosensors and the clues for the successful development of such devices. We then revise some of the most outstanding works published in the literature.
机译:电化学磁免疫传感器结合了许多问题,这些问题保证了极高的性能,并且与复杂样品基质的研究兼容。首先,分析物免疫捕获利用抗体的高亲和力和特异性。其次,磁性颗粒(MP)提供的免疫捕获比二维结构上的结合,与非目标样品组分的分离以及目标分析物的浓度更快,更有效。最后,电化学检测可使用强大且潜在小型化的测量设备和传感器来提供灵敏度和快速的信号生成。相反,与传统的生物传感器相比,对于最终用户而言,MP的处理稍微复杂些,并且更难以集成到即时医疗设备中。已经进行了使免疫磁性结合自动化的尝试,并且用于磁免疫测定的荧光和分光光度检测的第一批机器人化系统和平台已经投放市场。在可用的不同类型的电极中,丝网印刷电极(SPE)因其低廉的生产成本,可接受的性能和设备间的可重复性而脱颖而出,这使其成为分析应用的绝佳选择。此外,每个SPE都需要将整个电化学电池压印在平面物理基板上,这使得可以进行小体积检测,并且特别适用于MP的磁性限制和微流体结构的集成。在本文中,我们讨论了使用SPE和MP生产电化学磁免疫传感器所获得的优势,以及成功开发此类设备的线索。然后,我们修改一些文献中最杰出的作品。

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