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Rapid short-pulse (RaSP) sequences improve the distribution of drug delivery to the brain in vivo

机译:快速短脉冲(RaSP)序列可改善体内向大脑的药物输送分布

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Focused ultrasound and microbubbles have been shown to locally and noninvasively open the blood-brain barrier. Despite encouraging results in human patients, several performance and safety features, such as poor drug distribution, high drug accumulation along vessels and small sites of red blood cell extravasation, have been unavoidable. We have recently developed a new ultrasound sequence - rapid short-pulse (RaSP) sequence - designed to suppress these adverse features by promoting safer modes of cavitation activity throughout capillaries. In our RaSP sequences, low-pressure short ultrasonic pulses are emitted at kHz pulse repetition frequencies (PRF) and grouped into bursts. We have shown in vitro that RaSP sequences prolong microbubble lifetime and increase their mobility, enhancing the distribution of acoustic cavitation activity. Here we evaluate the ability of RaSP sequences to improve the in vivo performance and safety of ultrasound-mediated drug delivery to the brain.
机译:聚焦超声波和微泡已经显示在局部和非血液脑屏障中。尽管人类患者的令人鼓舞的结果,但药物分布差,沿血管和红细胞外渗的小部位等差的性能和安全特征,也是不可避免的。我们最近开发了一种新的超声序列 - 快速的短脉冲(RASP)序列 - 旨在通过促进整个毛细管内的空化活动模式来抑制这些不利特征。在我们的锉刀序列中,低压短超声波脉冲在KHz脉冲重复频率(PRF)上发射并分组成突发。我们在体外显示锉刀序列延长微泡寿命并增加其移动性,增强了声学活性的分布。在这里,我们评估锉刀序列以改善脑内超声介导的药物递送的体内性能和安全性的能力。

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