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Nucleus factory on cavitation bubble for amyloid β fibril

机译:核工厂对淀粉样β原纤维空化气泡的影响

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摘要

Structural evolution from monomer to fibril of amyloid β peptide is related to pathogenic mechanism of Alzheimer disease, and its acceleration is a long-running problem in drug development. This study reveals that ultrasonic cavitation bubbles behave as catalysts for nucleation of the peptide: The nucleation reaction is highly dependent on frequency and pressure of acoustic wave, and we discover an optimum acoustical condition, at which the reaction-rate constant for nucleation is increased by three-orders-of magnitudes. A theoretical model is proposed for explaining highly frequency and pressure dependent nucleation reaction, where monomers are captured on the bubble surface during its growth and highly condensed by subsequent bubble collapse, so that they are transiently exposed to high temperatures. Thus, the dual effects of local condensation and local heating contribute to dramatically enhance the nucleation reaction. Our model consistently reproduces the frequency and pressure dependences, supporting its essential applicability.
机译:淀粉样β肽从单体到原纤维的结构演变与阿尔茨海默氏病的致病机制有关,其加速是药物开发中长期存在的问题。这项研究揭示了超声空化气泡是肽成核的催化剂:成核反应高度依赖于声波的频率和压力,我们发现了一种最佳的声学条件,在该条件下,成核的反应速率常数增加三个数量级。提出了一个理论模型来解释与频率和压力有关的成核反应,其中单体在其生长过程中被捕获在气泡表面上,并由于随后的气泡破裂而高度冷凝,因此它们会短暂暴露于高温下。因此,局部冷凝和局部加热的双重作用有助于显着增强成核反应。我们的模型始终如一地再现频率和压力的相关性,从而支持其基本适用性。

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