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Frequency-selective electrokinetic enrichment of biomolecules in physiological media based on electrical double-layer polarization

机译:基于双电层极化的生理介质中生物分子的频率选择性电动富集

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摘要

Proteomic biomarkers of interest to the early diagnosis of diseases and infections are present at trace levels versus interfering species. Hence, their selective enrichment is needed within bio-assays for speeding binding kinetics with receptors and for reducing signal interferences. While DC fields can separate biomolecules based on their electrokinetic mobilities, they are unable to selectively enrich biomarkers versus interfering species, which may possess like-charges. We present the utilization of AC electrokinetics to enable frequency-selective enrichment of nanocolloidal biomolecules, based on the characteristic time constant for polarization of their electrical double-layer, since surface conduction in their ion cloud depends on colloidal size, shape and surface charge. In this manner, using DC-offset AC fields, differences in frequency dispersion for negative dielectrophoresis are balanced against electrophoresis in a nanoslit channel to enable the selective enrichment of prostate specific antigen (PSA) versus anti-mouse immunoglobulin antibodies that cause signal interferences to immunoassays. Through coupling enrichment to capture by receptors on graphene-modified surfaces, we demonstrate the elimination of false positives caused by anti-mouse immunoglobulin antibodies to the PSA immunoassay.
机译:与干扰物种相比,痕量水平的蛋白质和蛋白质组生物标记物对疾病和感染的早期诊断具有重要意义。因此,在生物测定中需要它们的选择性富集,以加快与受体的结合动力学并减少信号干扰。尽管DC场可以根据它们的电动迁移率来分离生物分子,但它们无法选择性地富集生物标记物和可能具有类似电荷的干扰物种。由于其离子云的表面传导取决于胶体的大小,形状和表面电荷,因此我们基于其双电层极化的特征时间常数,利用交流电动力学来实现纳米胶体生物分子的频率选择性富集。通过这种方式,使用直流偏移交流场,负介电电泳的频散差异与纳缝通道中的电泳相平衡,从而能够选择性富集前列腺特异性抗原(PSA)和抗小鼠免疫球蛋白抗体,从而对免疫测定产生信号干扰。通过偶联富集以捕获石墨烯修饰表面上的受体,我们证明了消除针对PSA免疫测定的抗小鼠免疫球蛋白抗体引起的假阳性。

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