论文标题

高产,壳稳定的,窄尺寸的C3F8纳米泡具有不同的壳特性,对声激发的响应准确可控制:实验观测和数值模拟

High yield, shell-stabilized, narrow-sized C3F8 nanobubbles with different shell properties and precisely controllable response to acoustic excitations: experimental observations and numerical simulations

论文作者

Sojahrood, Amin Jafari, de Leon, Al, Lee, Richard, Cooley, Michaela, Abenojar, Eric, Kolios, Michael C., Exner, Agata A.

论文摘要

了解超声激发磷脂(PL)稳定的NB的非线性行为的压力依赖性对于优化美国暴露参数以实现对比度增强超声,对分子成像至关重要。壳的粘弹性可以通过引入膜添加剂的引入,例如丙烯乙二醇作为膜软化剂或甘油作为膜加劲耐加速器。我们首次报告具有狭窄分散性和不同壳特性的高产量NB的产生。通过对大小和壳结构的精确控制,我们展示了这些壳体成分如何与磷脂膜相互作用,改变其结构,影响其粘弹性特性,从而改变其声学响应。通过对极性敏感的荧光染料C-Laurdan的两光子显微镜技术,用于获得膜添加剂对膜结构的影响的见解。我们报告了NBS的壳体刚度如何影响NBS散射的声学信号中突然扩增的压力阈值(PT)。对于平均尺寸为200 nm的狭窄尺寸NB,我们发现PT在使用C-Laurdan的NB的NBs中为123-245 kPa,使用C-Laurdan评估了465-588 kPa的NBS,具有中间刚度的NBS和588-710 kPa的NBS,NBS的NBS对于刚性膜的NBS。 NB动力学的数值模拟与确认声学反应对壳特性的依赖性的实验观测非常吻合,从而进一步证实了工程UCAS的壳的发展。可以利用粘弹性依赖性阈值行为来显着,有选择地增强有效窄尺寸NB的诊断和治疗性超声应用。

Understanding the pressure dependence of the nonlinear behavior of ultrasonically excited phospholipid (PL)-stabilized NBs is important for optimizing US exposure parameters for implementations of contrast enhanced ultrasound, critical to molecular imaging. The viscoelastic properties of the shell can be controlled by introduction of membrane additives, such as propylene glycol as a membrane softener or glycerol as a membrane stiffener. We report for the first time, the production of high yield NBs with narrow dispersity and different shell properties. Through precise control over size and shell structure, we show how these shell components interact with the phospholipid membrane, change its structure, affect their viscoelastic properties, and consequently change their acoustic response. A two-photon microscopy technique through a polarity-sensitive fluorescent dye, C-laurdan, was utilized to gain insights on the effect of membrane additives to the membrane structure. We report how the shell stiffness of NBs affects the pressure threshold (Pt) for the sudden amplification in the scattered acoustic signal from NBs. For narrow size NBs with 200 nm mean size, we find Pt to be between 123-245 kPa for the NBs with the most flexible membrane as assessed using C-Laurdan, 465-588 kPa for the NBs with intermediate stiffness and 588-710 kPa for the NBs with stiff membranes. Numerical simulations of the NB dynamics are in good agreement with the experimental observations confirming the dependence of acoustic response to shell properties, thereby substantiating further the development in engineering the shell of UCAs. The viscoelastic dependent threshold behavior can be utilized for significantly and selectively enhancing the diagnostic and therapeutic ultrasound applications of potent narrow size NBs.

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