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首页> 外文期刊>Sensors and Actuators >Label-free detection of the IL-6 and IL-8 interleukines through monolithic silicon photonic chips and simultaneous dual polarization optics
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Label-free detection of the IL-6 and IL-8 interleukines through monolithic silicon photonic chips and simultaneous dual polarization optics

机译:通过单片硅光子芯片和同时双偏振光学元件对IL-6和IL-8白介素进行无标记检测

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HighlightsA Si microphotonic chip with ten monolithically integrated broad-band Mach-Zehnder interferometers and an equal number of light sources.The Si microphotonic chip is employed for the label-free and multiplexed detection of biomarkers.The concentration of two proteins of the cytokine family, the IL-6 and the IL-8 interleukins, was determined.The refractive index of the two interleukins is measured to be 1.38±0.01 by employing the dual polarization feature of the microphotonic chip.AbstractA silicon microphotonic chip with ten monolithically integrated interferometers and an equal number of light sources is employed for the label-free and multiplexed detection of two proteins of the cytokine family. The chip implements broad-band Mach-Zehnder interferometry and is used for the detection of the IL-6 and IL-8 interleukins. The silicon transducer is made through mainstream silicon technology and integrates avalanche diode based white light LEDs and monomodal waveguides forming Mach-Zehnder interferometers. The light spectrum is modulated through the interferometer and the spectrally resolved interference fringes are monitored by a digital spectrometer. Biomolecular built-up on the sensing arm causes pattern shifts that are evaluated through Fourier Transform. The microsystem level set-up includes microfluidic components, direct contacting of the chip contact pads through spring loaded pins and alignment guides and a spectrometer. The dual polarization optics allows the simultaneous derivation of the TE and TM sensitivity plots and the calculation of the refractive indices of either protein.
机译: 突出显示 < ce:list-item id = “ lsti0005 ”> 具有十个硅微光子芯片单片集成宽带Mach-Zehnder干涉仪和相等数量的光源。 Si微光子芯片用于生物标记的无标记和多重检测。 < / ce:列表项> 摘要

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