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首页> 外文期刊>Lab on a chip >Size reduction of cosolvent-infused microbubbles to form acoustically responsive monodisperse perfluorocarbon nanodroplets
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Size reduction of cosolvent-infused microbubbles to form acoustically responsive monodisperse perfluorocarbon nanodroplets

机译:减小助溶剂注入的微气泡的尺寸,以形成具有声响响应的单分散全氟化碳纳米液滴

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摘要

Perfluorocarbon (PFC) nanodroplet agents are exciting new biomaterials that can be remotely vapourized by ultrasound or light to change into micron-scale gas bubbles in situ. After PFC nanodroplet vapourization, the micron-scale gas bubble can interact strongly with ultrasound radiation, such that the bubbles can be used for cancer imaging and therapy. For these phase-change agents to be useful, however, PFC nanodroplets must be produced in the range of 100 to 400 nm in diameter with high size control and monodispersity, restrictions that remain a challenge. Here, we address this challenge by taking advantage of the size control offered by microfluidics, in combination with the size reduction provided by cosolvent-infused PFC bubbles through both condensation and cosolvent dissolution. In this approach, PFC bubbles with a high percentage of cosolvent (in this study, diethyl ether, DEE) are produced using microfluidics at a temperature above the boiling point. After synthesis, these bubbles become much smaller through both condensation of the gas into liquid droplets and from dissolution of the DEE into the continuous phase. This approach demonstrates that monodisperse, cosolvent-incorporated PFC bubbles can directly form monodisperse PFC nanodroplets a factor of 24 times smaller than the precursor bubbles. We also demonstrate that these nanoscale droplets can be converted to echogenic microbubbles after exposure to ultrasound, showing that these PFC nanodroplets are viable for the in situ production of ultrasound contrast agents. We show that this system can overcome the minimum droplet size limit of standard microfluidics, and is a powerful new tool for generating monodisperse, PFC phase-change ultrasound contrast agents for treating and imaging cancer.
机译:全氟化碳(PFC)纳米液滴剂是令人兴奋的新型生物材料,可以通过超声或光将其远程蒸发,从而原位转变为微米级气泡。 PFC纳米液滴汽化后,微米级气泡可与超声辐射强烈相互作用,从而可将气泡用于癌症成像和治疗。但是,要使这些相变剂有用,必须在直径100至400 nm的范围内生产PFC纳米液滴,并具有高尺寸控制和单分散性,限制仍然是一个挑战。在这里,我们通过利用微流控技术提供的尺寸控制功能,以及通过缩合和助溶剂溶解同时注入助溶剂的PFC气泡实现的尺寸减小,来应对这一挑战。在这种方法中,使用微流体在高于沸点的温度下产生了具有高百分比助溶剂(在本研究中为二乙醚,DEE)的PFC气泡。合成后,这些气泡通过将气体冷凝成液滴以及将DEE溶解到连续相中而变得更小。这种方法表明,单分散的,掺有助溶剂的PFC气泡可以直接形成单分散的PFC纳米液滴,其大小是前体气泡的24倍。我们还证明了这些纳米级液滴在暴露于超声后可以转化为回声微泡,表明这些PFC纳米液滴对于超声造影剂的原位生产是可行的。我们表明,该系统可以克服标准微流控技术的最小液滴尺寸限制,并且是生成用于治疗和成像癌症的单分散,PFC相变超声造影剂的强大新工具。

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