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The mechanism of interaction between focused ultrasound and microbubbles in blood-brain barrier opening in mice

机译:聚焦超声与小鼠血脑屏障开放中微气泡相互作用的机制

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The activation of bubbles by an acoustic field has been shown to temporarily open the blood-brain barrier (BBB), but the trigger cause responsible for the physiological effects involved in the process of BBB opening remains unknown. Here, the trigger cause (i.e., physical mechanism) of the focused ultrasound-induced BBB opening with monodispersed microbubbles is identified. Sixty-seven mice were injected intravenously with bubbles of 1-2, 4-5, or 6-8 m in diameter and the concentration of 10 ~7 numbers/ml. The right hippocampus of each mouse was then sonicated using focused ultrasound (1.5 MHz frequency, 100 cycles pulse length, 10 Hz pulse repetition frequency, 1 min duration). Peak-rarefactional pressures of 0.15, 0.30, 0.45, or 0.60 MPa were applied to identify the threshold of BBB opening and inertial cavitation (IC). Our results suggest that the BBB opens with nonlinear bubble oscillation when the bubble diameter is similar to the capillary diameter and with inertial cavitation when it is not. The bubble may thus have to be in contact with the capillary wall to induce BBB opening without IC. BBB opening was shown capable of being induced safely with nonlinear bubble oscillation at the pressure threshold and its volume was highly dependent on both the acoustic pressure and bubble diameter.
机译:业已显示,通过声场激活气泡可以暂时打开血脑屏障(BBB),但导致BBB打开过程中涉及的生理效应的触发原因仍然未知。在此,确定了具有单分散的微气泡的聚焦超声诱导的BBB开口的触发原因(即,物理机制)。对67只小鼠静脉注射直径1-2、4-5或6-8 m的气泡,浓度为10〜7个数字/毫升。然后使用聚焦超声(1.5 MHz频率,100个周期的脉冲长度,10 Hz脉冲重复频率,1分钟的持续时间)对每只小鼠的右海马进行超声处理。施加0.15、0.30、0.45或0.60 MPa的峰值反射压力来确定BBB开启和惯性空化(IC)的阈值。我们的结果表明,当气泡直径与毛细管直径相似时,BBB会以非线性气泡振荡打开,而在气泡直径与毛细管直径不相同时会出现惯性空化。因此,气泡可能必须与毛细管壁接触,以在没有IC的情况下引起BBB打开。已显示在压力阈值处能够通过非线性气泡振荡安全地诱发BBB开口,并且其体积高度依赖于声压和气泡直径。

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