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Stable Encapsulation of Air in Mesoporous Silica Nanoparticles: Fluorocarbon-Free Nanoscale Ultrasound Contrast Agents

机译:介孔二氧化硅纳米颗粒中空气的稳定包封:无氟碳纳米级超声造影剂

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摘要

While gas-filled micrometer-sized ultrasound contrast agents vastly improve signal-to-noise ratios, microbubbles have short circulation lifetimes and poor extravasation from the blood. Previously reported fluorocarbon-based nanoscale contrast agents are more stable but their contrast is generally lower owing to their size and dispersity. The contrast agents reported here are composed of silica nanoparticles of ≈100 nm diameter that are filled with ≈3 nm columnar mesopores. Functionalization of the silica surface with octyl groups and resuspension with Pluronic F127 create particles with pores that remain filled with air but are stable in buffer and serum. Administration of high intensity focused ultrasound (HIFU) allows sensitive imaging of the silica nanoparticles down to 10 10 particles mL −1, with continuous imaging for at least 20 min. Control experiments with different silica particles supported the hypothesis that entrapped air could be pulled into bubble nuclei, which can then in turn act as acoustic scatterers. This process results in very little hemolysis in whole blood, indicating potential for nontoxic blood pool imaging. Finally, the particles are lyophilized and reconstituted or stored in PBS (phosphate-buffered saline, at least for four months) with no loss in contrast, indicating stability to storage and reformulation.
机译:充气的微米级超声造影剂可极大地改善信噪比,而微气泡的循环寿命很短,而且从血液中渗出的情况也很差。先前报道的基于碳氟化合物的纳米级造影剂更稳定,但由于其尺寸和分散性,其对比度通常较低。此处报道的造影剂由直径约100 nm的二氧化硅纳米粒子组成,并填充有约3 nm的圆柱状中孔。用辛基对二氧化硅表面进行功能化,并用Pluronic F127重悬浮,可形成具有孔的颗粒,这些孔仍充满空气,但在缓冲液和血清中稳定。高强度聚焦超声(HIFU)的使用可对低至10 10 mL mL -1 的二氧化硅纳米颗粒进行敏感成像,并连续成像至少20分钟。使用不同二氧化硅颗粒的对照实验支持以下假设:夹带的空气可能被拉入气泡核,然后气泡又可以充当声散射体。此过程导致全血很少溶血,表明无毒血池成像的潜力。最后,将颗粒冻干并重构或在PBS(磷酸盐缓冲盐水,至少四个月)中储存,而没有损失,表明其在储存和重新配制方面的稳定性。

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