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Flexible nanoporous tunable electrical double layer biosensors for sweat diagnostics

机译:用于汗液诊断的柔性纳米多孔可调双电层生物传感器

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摘要

An ultra-sensitive and highly specific electrical double layer (EDL) modulated biosensor, using nanoporous flexible substrates for wearable diagnostics is demonstrated with the detection of the stress biomarker cortisol in synthetic and human sweat. Zinc oxide thin film was used as active region in contact with the liquid i.e. synthetic and human sweat containing the biomolecules. Cortisol detection in sweat was accomplished by measuring and quantifying impedance changes due to modulation of the double layer capacitance within the electrical double layer through the application of a low orthogonally directed alternating current (AC) electric field. The EDL formed at the liquid-semiconductor interface was amplified in the presence of the nanoporous flexible substrate allowing for measuring the changes in the alternating current impedance signal due to the antibody-hormone interactions at diagnostically relevant concentrations. High sensitivity of detection of 1 pg/mL or 2.75 pmol cortisol in synthetic sweat and 1 ng/mL in human sweat is demonstrated with these novel biosensors. Specificity in synthetic sweat was demonstrated using a cytokine IL-1β. Cortisol detection in human sweat was demonstrated over a concentration range from 10–200 ng/mL.
机译:通过检测合成和人类汗液中的压力生物标记皮质醇,证明了使用纳米多孔柔性基材进行可穿戴式诊断的超灵敏,高特异性双电层(EDL)调制生物传感器。氧化锌薄膜用作与液体,即含有生物分子的合成和人类汗液接触的活性区域。汗液中的皮质醇检测是通过测量和量化由于双电层内双层电容调制引起的阻抗变化而实现的,该阻抗变化是通过施加低正交正交交流(AC)电场实现的。在纳米多孔柔性基板的存在下,在液体-半导体界面形成的EDL得以扩增,从而可以测量由于诊断相关浓度下的抗体-激素相互作用而导致的交流阻抗信号的变化。这些新型生物传感器证明了合成汗液中1 pg / mL或2.75 pmol皮质醇和人汗液中1 ng / mL的高检测灵敏度。使用细胞因子IL-1β证明了合成汗液的特异性。在人类汗液中检测出皮质醇的浓度范围为10–200 ng / mL。

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