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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Bubble nucleation in lipid bilayers: A mechanism for low frequency ultrasound disruption
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Bubble nucleation in lipid bilayers: A mechanism for low frequency ultrasound disruption

机译:脂质双层中的气泡成核:低频超声破坏的机制。

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摘要

Recent experiments have shown that low frequency ultrasound (LFUS) induces leakage from lipid vesicles. However, the mechanism by which LFUS disrupts the lipid bilayer structure is not clear. In this paper we develop a theoretical model to test the possibility that gas molecule partitioning from the aqueous media into the lipid bilayer core can lead to the nucleation of microscale gas bubbles. If those can, indeed, form, then their presence in the lipid bilayer and interactions with an ultrasound field can cause bilayer disruption and leakage. The model derived here for the nucleation of stable bubbles accounts for the 'surface tension' that the lipid bilayer exerts on the bubble, a result of the associated disruption of the lipid packing. The model predicts that the probability of bubble nucleation is highly sensitive to the bilayer thickness, and largely insensitive to the bilayer phase. The probability of stable bubble formation is shown to correlate with experimentally measured sensitivity of lipid bilayers to LFUS, suggesting that membrane disruption may be due to embedded bubbles that nucleated in the bilayer. ? 2012 Elsevier B.V. All rights reserved.
机译:最近的实验表明,低频超声(LFUS)会引起脂质囊泡的渗漏。但是,LFUS破坏脂质双层结构的机制尚不清楚。在本文中,我们建立了一个理论模型来测试气体分子从水性介质分配到脂质双层核心中可能导致微尺度气泡成核的可能性。如果确实能够形成,则它们在脂质双层中的存在以及与超声场的相互作用会导致双层破裂和渗漏。这里导出的用于稳定气泡成核的模型解释了脂质双层施加在气泡上的“表面张力”,这是相关的脂质堆积破坏的结果。该模型预测气泡成核的可能性对双层厚度高度敏感,而对双层相高度不敏感。稳定气泡形成的可能性与脂质双层对LFUS的实验测量灵敏度相关,表明膜破裂可能是由于在双层中成核的嵌入式气泡引起的。 ? 2012 Elsevier B.V.保留所有权利。

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