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Noninvasive and localized blood–brain barrier disruption using focused ultrasound can be achieved at short pulse lengths and low pulse repetition frequencies

机译:使用聚焦超声可以在短脉冲长度和低脉冲重复频率下实现无创性和局部性血脑屏障破坏

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摘要

Ultrasound methods in conjunction with microbubbles have been used for brain drug delivery, treatment of stroke, and imaging of cerebral blood flow. Despite advances in these areas, questions remain regarding the range of ultrasound parameters that disrupt the blood–brain barrier (BBB). In this study, several conditions were investigated to either enhance or reduce the likelihood of BBB disruption. Pulsed focused ultrasound (frequency: 1.5 MHz, pressure: 0.46 MPa, pulse repetition frequency (PRF): 0.1 to 25 Hz, pulse length (PL): 0.03 to 30 milliseconds) was noninvasively and locally administered to a predetermined region in the left hemisphere in the presence of circulating preformed microbubbles (Definity, Lantheus Medical Imaging, N. Billerica, MA, USA; 0.01, 0.05, 0.25 μL/g). Trans-BBB delivery of 3-kDa dextran was observed at PRFs as low as 1 Hz, whereas consistent delivery was observed at 5 Hz and above. Delivery was demonstrated at a PL as low as 33 microseconds. Although the delivered dextran concentration increased with the PL, this also increased the heterogeneity of the resulting distribution. In conclusion, key parameters that disrupt the BBB were identified out of a wide range of conditions. Reducing the total number of emitted acoustic cycles by shortening the PL, or decreasing the PRF, was also found to facilitate a more spatially uniform distribution of delivered dextran.
机译:结合微泡的超声方法已用于脑部药物输送,中风治疗和脑血流成像。尽管在这些领域取得了进展,但是关于破坏血脑屏障(BBB)的超声参数范围仍然存在疑问。在这项研究中,研究了几种条件,以增强或降低血脑屏障破坏的可能性。脉冲聚焦超声(频率:1.5 MHz,压力:0.46 MPa,脉冲重复频率(PRF):0.1至25 Hz,脉冲长度(PL):0.03至30毫秒)无创地局部施用于左半球的预定区域在循环的预制微气泡存在下(Definity,Lantheus Medical Imaging,N. Billerica,MA,USA; 0.01、0.05、0.25μL / g)。在低至1 Hz的PRF处观察到3-kDa葡聚糖的反式BBB递送,而在5 Hz及更高​​的频率下观察到一致的递送。在低至33微微秒的PL下证明了交付。尽管所输送的右旋糖酐浓度随PL的增加而增加,但这也增加了所得分布的异质性。总之,在广泛的条件下确定了破坏血脑屏障的关键参数。还发现通过缩短PL或减小PRF来减少发出的声波周期的总数,可以促进所输送的右旋糖酐在空间上更均匀地分布。

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