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Microcavity single virus detection and sizing with molecular sensitivity

机译:微腔单病毒检测和分子敏感性检测

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We report the label-free detection and sizing of the smallest individual RNA virus, MS2 by a spherical microcavity. Mass of this virus is -6 ag and produces a theoretical resonance shift ~0.25 fm upon adsorbing an individual virus at the equator of the bare microcavity, which is well below the r.m.s background noise of 2 fm. However, detection was accomplished with ease (S/N - 8, Q = 4×10~5) using a single dipole stimulated plasmonic-nanoshell as a microcavity wavelength shift enhancer. Analytical expressions based on the "reactive sensing principle" are developed to extract the radius of the virus from the measured signals. Estimated limit of detection for these experiments was ~0.4 ag or 240 kDa below the size of all known viruses, largest globular and elongated proteins [Phosphofructokinase (345 kDa) and Fibrinogen (390 kDa), respectively].
机译:我们报告了球形微腔对最小的单个RNA病毒MS2的无标记检测和大小确定。该病毒的质量为-6 ag,当在裸露的微腔的赤道处吸附单个病毒时,其理论共振位移约为0.25 fm,远低于2 fm的r.m.s背景噪声。然而,使用单个偶极子激发的等离激元纳米壳作为微腔波长偏移增强剂,可以轻松完成检测(S / N-8,Q = 4×10〜5)。开发了基于“反应感应原理”的分析表达式,以从测量的信号中提取病毒的半径。这些实验的估计检出限比所有已知病毒,最大的球形和细长蛋白(分别为磷酸果糖激酶(345 kDa)和纤维蛋白原(390 kDa))小约0.4 ag或240 kDa。

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