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在高产量下通过流聚焦形成的单分散磷脂包覆微泡的稳定性。

Stability of Monodisperse Phospholipid-Coated Microbubbles Formed by Flow-Focusing at High Production Rates.

机构信息

Physics of Fluids Group, MESA+ Institute for Nanotechnology, and MIRA Institute for Biomedical Technology and Technical Medicine, University of Twente , P. O. Box 217, 7500 AE Enschede, The Netherlands.

Department of Biomedical Engineering, Thoraxcenter, Erasmus MC , Wyternaweg 80 EE 2302, 3015 CN Rotterdam, The Netherlands.

出版信息

Langmuir. 2016 Apr 26;32(16):3937-44. doi: 10.1021/acs.langmuir.6b00616. Epub 2016 Apr 14.

Abstract

Monodisperse microbubble ultrasound contrast agents may dramatically increase the sensitivity and efficiency in ultrasound imaging and therapy. They can be produced directly in a microfluidic flow-focusing device, but questions remain as to the interfacial chemistry, such as the formation and development of the phospholipid monolayer coating over time. Here, we demonstrate the synthesis of monodisperse bubbles with radii of 2-10 μm at production rates ranging from 10(4) to 10(6) bubbles/s. All bubbles were found to dissolve to a stable final radius 2.55 times smaller than their initial radius, independent of the nozzle size and shear rate, indicating that the monolayer self-assembles prior to leaving the nozzle. The corresponding decrease in surface area by a factor 6.6 reveals that lipid molecules are adsorbed to the gas-liquid interface in the disordered expanded state, and they become mechanically compressed by Laplace pressure-driven bubble dissolution to a more ordered condensed state with near zero surface tension. Acoustic characterization of the stabilized microbubbles revealed that their shell stiffness gradually increased from 0.8 to 2.5 N/m with increasing number of insonations through the selective loss of the more soluble lipopolymer molecules. This work therefore demonstrates high-throughput production of clinically relevant monodisperse contrast microbubbles with excellent control over phospholipid monolayer elasticity and microbubble resonance.

摘要

单分散微泡超声造影剂可以显著提高超声成像和治疗的灵敏度和效率。它们可以直接在微流控流聚焦装置中产生,但界面化学问题仍然存在,例如磷脂单层涂层的形成和随时间的发展。在这里,我们展示了在生产速率为 10^4 到 10^6 个/秒的范围内,半径为 2-10μm 的单分散气泡的合成。所有气泡都被发现溶解到一个稳定的最终半径,比它们的初始半径小 2.55 倍,与喷嘴尺寸和剪切率无关,这表明单层在离开喷嘴之前就自行组装。表面积相应地减少了 6.6 倍,表明脂质分子在无序膨胀状态下被吸附到气液界面,并且它们通过由 Laplace 压力驱动的气泡溶解而被机械压缩成具有接近零表面张力的更有序的凝聚状态。稳定微泡的声学特性表明,随着通过选择性损失更易溶的脂蛋白分子的超声次数的增加,其壳刚度逐渐从 0.8 增加到 2.5N/m。因此,这项工作展示了具有优异的磷脂单层弹性和微泡共振控制的高通量生产临床相关的单分散对比微泡。

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