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Enhanced Optical Collection of Micro- and Nanovesicles in the Presence of Gold Nanoparticles

机译:金纳米粒子存在下微和纳米囊泡的增强光学收集

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We describe a process for collecting micro- and nanovesicles on a glass substrate using the optical pressure of a laser beam. The laser beam was focused on a glass substrate that sandwiched a solution containing vesicles prepared using a phospholipid. The optical pressure generated at the surface of the vesicles pulled them into the center of the beam where they formed an aggregate on the glass surface. The vesicles prepared with a buffer solution were successfully collected via adsorption onto the glass surface, whereas the vesicles prepared with pure water exhibited no such tendency. The time required to collect a certain amount of vesicles was inversely proportional to their concentration. To enhance the collection efficiency, we added gold nanoparticles to the vesicle solution. The addition of gold nanoparticles into the solution reduced the collection time to one-tenth of that without it, and this was attributed to thermal mixing promoted by the heat generated by the absorption from the gold nanoparticles in the solution, as well as to an enhancement of light scattering induced by the gold nanoparticles. The optical collection of vesicles coupled with gold nanoparticles shows a promise for the collection of trace amounts of extracellular vesicles in biological fluids.
机译:我们描述了一种利用激光束的光学压力在玻璃基板上收集微囊泡和纳米囊泡的方法。将激光束聚焦在玻璃基板上,该玻璃基板将包含使用磷脂制备的囊泡的溶液夹在中间。在囊泡表面产生的光学压力将它们拉入光束的中心,在此处它们在玻璃表面上形成聚集体。通过缓冲溶液制备的囊泡通过吸附成功地收集到玻璃表面上,而用纯水制备的囊泡则没有这种趋势。收集一定量的囊泡所需的时间与它们的浓度成反比。为了提高收集效率,我们在囊泡溶液中添加了金纳米颗粒。将金纳米颗粒添加到溶液中可以将收集时间减少到不使用金纳米颗粒的时间的十分之一,这归因于溶液中金纳米颗粒吸收产生的热量促进了热混合。金纳米粒子引起的光散射结合金纳米颗粒的囊泡的光学收集显示了在生物流体中收集痕量细胞外囊泡的希望。

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