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本文引用的文献

1
Effect of Bubble Concentration on the in Vitro and in Vivo Performance of Highly Stable Lipid Shell-Stabilized Micro- and Nanoscale Ultrasound Contrast Agents.气泡浓度对高稳定性脂质壳稳定的微纳米级超声造影剂的体外和体内性能的影响。
Langmuir. 2019 Aug 6;35(31):10192-10202. doi: 10.1021/acs.langmuir.9b00462. Epub 2019 Apr 9.
2
Molecular Effects of Glycerol on Lipid Monolayers at the Gas-Liquid Interface: Impact on Microbubble Physical and Mechanical Properties.甘油在气液界面脂质单层中的分子效应:对微泡物理和机械性能的影响。
Langmuir. 2019 Aug 6;35(31):10097-10105. doi: 10.1021/acs.langmuir.8b04130. Epub 2019 Apr 5.
3
Sink or float? Characterization of shell-stabilized bulk nanobubbles using a resonant mass measurement technique.沉或浮?使用共振质量测量技术对壳稳定的体纳米气泡进行特性描述。
Nanoscale. 2019 Jan 17;11(3):851-855. doi: 10.1039/c8nr08763f.
4
Cold plasma gas loaded microbubbles as a novel ultrasound contrast agent.载冷等离子体气体微泡作为一种新型超声造影剂。
Nanoscale. 2019 Jan 17;11(3):1123-1130. doi: 10.1039/c8nr08451c.
5
In Vivo Molecular Imaging Using Low-Boiling-Point Phase-Change Contrast Agents: A Proof of Concept Study.使用低沸点相变造影剂的体内分子成像:概念验证研究
Ultrasound Med Biol. 2019 Jan;45(1):177-191. doi: 10.1016/j.ultrasmedbio.2018.08.004. Epub 2018 Oct 11.
6
Optimization of Phase-Change Contrast Agents for Targeting MDA-MB-231 Breast Cancer Cells.用于靶向MDA-MB-231乳腺癌细胞的相变造影剂的优化
Ultrasound Med Biol. 2018 Dec;44(12):2728-2738. doi: 10.1016/j.ultrasmedbio.2018.08.003. Epub 2018 Sep 15.
7
Perfluorocarbon-loaded polydopamine nanoparticles as ultrasound contrast agents.载全氟碳的聚多巴胺纳米颗粒作为超声造影剂。
Nanoscale. 2018 Jul 9;10(26):12813-12819. doi: 10.1039/c8nr02605j.
8
Glycerol Solvates DPPC Headgroups and Localizes in the Interfacial Regions of Model Pulmonary Interfaces Altering Bilayer Structure.甘油溶剂化 DPPC 头部基团并定位于模型肺界面的界面区域,改变双层结构。
Langmuir. 2018 Jun 12;34(23):6941-6954. doi: 10.1021/acs.langmuir.8b00866. Epub 2018 May 30.
9
Role of Surface Tension in Gas Nanobubble Stability Under Ultrasound.表面张力在超声下气体纳米气泡稳定性中的作用。
ACS Appl Mater Interfaces. 2018 Mar 28;10(12):9949-9956. doi: 10.1021/acsami.7b19755. Epub 2018 Mar 15.
10
In Vivo Assessment of the Potential for Renal Bio-Effects from the Vaporization of Perfluorocarbon Phase-Change Contrast Agents.全氟碳相变造影剂汽化对肾脏生物效应潜力的体内评估。
Ultrasound Med Biol. 2018 Feb;44(2):368-376. doi: 10.1016/j.ultrasmedbio.2017.10.016. Epub 2017 Dec 15.

通过受自然启发的超稳定回声纳米气泡进行对比增强超声成像。

Contrast enhanced ultrasound imaging by nature-inspired ultrastable echogenic nanobubbles.

作者信息

de Leon Al, Perera Reshani, Hernandez Christopher, Cooley Michaela, Jung Olive, Jeganathan Selva, Abenojar Eric, Fishbein Grace, Sojahrood Amin Jafari, Emerson Corey C, Stewart Phoebe L, Kolios Michael C, Exner Agata A

机构信息

Department of Radiology, Case Western Reserve University, Cleveland, OH 44106, USA.

Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH 44106, USA.

出版信息

Nanoscale. 2019 Sep 7;11(33):15647-15658. doi: 10.1039/c9nr04828f. Epub 2019 Aug 13.

DOI:10.1039/c9nr04828f
PMID:31408083
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6716144/
Abstract

Advancement of ultrasound molecular imaging applications requires not only a reduction in size of the ultrasound contrast agents (UCAs) but also a significant improvement in the in vivo stability of the shell-stabilized gas bubble. The transition from first generation to second generation UCAs was marked by an advancement in stability as air was replaced by a hydrophobic gas, such as perfluoropropane and sulfur hexafluoride. Further improvement can be realized by focusing on how well the UCAs shell can retain the encapsulated gas under extreme mechanical deformations. Here we report the next generation of UCAs for which we engineered the shell structure to impart much better stability under repeated prolonged oscillation due to ultrasound, and large changes in shear and turbulence as it circulates within the body. By adapting an architecture with two layers of contrasting elastic properties similar to bacterial cell envelopes, our ultrastable nanobubbles (NBs) withstand continuous in vitro exposure to ultrasound with minimal signal decay and have a significant delay on the onset of in vivo signal decay in kidney, liver, and tumor. Development of ultrastable NBs can potentially expand the role of ultrasound in molecular imaging, theranostics, and drug delivery.

摘要

超声分子成像应用的发展不仅需要减小超声造影剂(UCAs)的尺寸,还需要显著提高壳层稳定气泡在体内的稳定性。第一代到第二代UCAs的转变以稳定性的提高为标志,因为空气被疏水性气体如全氟丙烷和六氟化硫所取代。通过关注UCAs壳层在极端机械变形下保留封装气体的能力,可以实现进一步的改进。在这里,我们报告了下一代UCAs,我们对其壳层结构进行了设计,使其在由于超声引起的反复长时间振荡以及在体内循环时剪切力和湍流的大幅变化下具有更好的稳定性。通过采用类似于细菌细胞膜的具有两层不同弹性特性的结构,我们的超稳定纳米气泡(NBs)在体外连续暴露于超声下时信号衰减最小,并且在肾脏、肝脏和肿瘤的体内信号衰减开始时间上有显著延迟。超稳定NBs的开发可能会扩大超声在分子成像、诊疗一体化和药物递送中的作用。