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Nano-Bio-Optomechanics: Nanoaperture Tweezers Probe Single Nanoparticles, Proteins, and their Interactions

机译:纳米生物光机械:纳米曲线镊子探针单纳米粒子,蛋白质及其相互作用

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Nanoparticles in the single digit nanometer range can be easily isolated and studied with low optical powers using nanoaperture tweezers. We have studied individual proteins and their interactions with small molecules, DNA and antibodies. Recently, using the fluctuations of the trapped object, we have pioneered a new way to "listen" to the vibrations of nanoparticles in the 100 GHz - 1 THz range; the approach is called extraordinary acoustic Raman (EAR). EAR gives unprecedented low frequency spectra of individual proteins in solution, allowing for identification and analysis, as well as probing their role in biological functions. We have also used EAR to study the elastic properties, shape and size of various individual nanoparticles.
机译:单位数纳米纳米纳米液中的纳米颗粒可以容易地分离,并使用纳米腔镊子用低光功率研究。我们研究了单个蛋白质及其与小分子,DNA和抗体的相互作用。最近,利用被困物体的波动,我们已经开创了一种新的方式,以“听”到100GHz - 1至16六茨范围内的纳米颗粒的振动;该方法称为非凡的声学拉曼(耳朵)。耳朵在溶液中赋予个体蛋白质的前所未有的低频光谱,允许鉴定和分析,以及探测它们在生物功能中的作用。我们还使用耳朵来研究各种纳米颗粒的弹性性质,形状和尺寸。

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