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Resonant Cavity Imaging: A Means Toward High-Throughput Label-Free Protein Detection

机译:共振腔成像:一种实现高通量无标签蛋白质检测的方法

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摘要

The resonant cavity imaging biosensor (RCIB) is an optical technique for detecting molecular binding interactions label free at many locations in parallel that employs an optical resonant cavity for high sensitivity. Near-infrared light centered at 1512.5 nm couples resonantly through a Fabry–Perot cavity constructed from dielectric reflectors ($hbox{Si/SiO}_{2}$), one of which serves as the binding surface. As the wavelength is swept using a tunable laser, a near-infrared digital camera monitors cavity transmittance at each pixel. A wavelength shift in the local resonant response of the optical cavity indicates binding. Positioning the sensing surface with respect to the standing wave pattern of the electric field within the cavity controls the sensitivity with which the presence of bound molecules is detected. Transmitted intensity at thousands of pixel locations is recorded simultaneously in a 10 s, 5 nm scan. An initial proof-of-principle setup has been constructed. A test sample was fabricated with 25, 100-$mu$m wide square features, each with a different density of 1-$mu$m square depressions etched 12 nm into the $hbox{SiO}_{2}$ surface. The average depth of each etched region was found with 0.05 nm rms precision. In a second test, avidin, bound selectively to biotin conjugated bovine serum albumin, was detected.
机译:共振腔成像生物传感器(RCIB)是一种光学技术,用于检测在许多平行位置无标记的分子结合相互作用,该技术采用了光学共振腔以实现高灵敏度。中心波长为1512.5 nm的近红外光通过由电介质反射器($ hbox {Si / SiO} _ {2} $)构成的Fabry-Perot腔共振耦合,其中之一用作粘合表面。当使用可调激光器扫描波长时,近红外数码相机会监视每个像素处的腔体透射率。光腔的局部共振响应中的波长偏移指示结合。相对于腔内电场的驻波图放置感测表面可控制检测结合分子存在的灵敏度。在10 s,5 nm扫描中同时记录了数千个像素位置处的透射强度。初始的原理证明设置已构建。制作了具有25个100-μm宽正方形特征的测试样品,每个特征具有在hbox {SiO} _ {2} $表面中蚀刻12 nm的不同密度的1-μm正方形凹陷。发现每个蚀刻区域的平均深度具有0.05 nm rms精度。在第二项测试中,检测到与生物素偶联的牛血清白蛋白选择性结合的抗生物素蛋白。

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