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High-precision non-invasive anti-microvascular approach via concurrent ultrasound and laser irradiation

机译:通过同时进行的超声和激光照射实现高精度无创的抗微血管方法

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摘要

Antivascular therapy represents a proven strategy to treat angiogenesis. By applying synchronized ultrasound bursts and nanosecond laser irradiation, we developed a novel, selective, non-invasive, localized antivascular method, termed photo-mediated ultrasound therapy (PUT). PUT takes advantage of the high native optical contrast among biological tissues and can treat microvessels without causing collateral damage to the surrounding tissue. In a chicken yolk sac membrane model, under the same ultrasound parameters (1 MHz at 0.45 MPa and 10 Hz with 10% duty cycle), PUT with 4 mJ/cm2 and 6 mJ/cm2 laser fluence induced 51% (p = 0.001) and 37% (p = 0.018) vessel diameter reductions respectively. With 8 mJ/cm2 laser fluence, PUT would yield vessel disruption (90%, p < 0.01). Selectivity of PUT was demonstrated by utilizing laser wavelengths at 578 nm or 650 nm, where PUT selectively shrank veins or occluded arteries. In a rabbit ear model, PUT induced a 68.5% reduction in blood perfusion after 7 days (p < 0.001) without damaging the surrounding cells. In vitro experiments in human blood suggested that cavitation may play a role in PUT. In conclusion, PUT holds significant promise as a novel non-invasive antivascular method with the capability to precisely target blood vessels.
机译:抗血管治疗代表了一种成熟的治疗血管生成的策略。通过应用同步超声脉冲和纳秒激光照射,我们开发了一种新颖的,选择性的,非侵入性的局部抗血管方法,称为光介导的超声治疗(PUT)。 PUT利用了生物组织之间的高天然光学对比度,可以治疗微血管而不会对周围组织造成附带损害。在鸡卵囊膜模型中,在相同的超声参数下(0.45 MPa时为1 MHz,10%占空比为10 Hz),PUT为4 mJ / cm 2 和6 mJ / cm 2 激光注量分别导致血管直径减少51%(p = 0.001)和37%(p = 0.018)。在8 mJ / cm 2 激光注量下,PUT会引起血管破裂(90%,p <0.01)。通过使用578 nm或650 nm的激光波长证明了PUT的选择性,其中PUT选择性地收缩了静脉或动脉闭塞。在兔耳模型中,PUT诱导7天后血液灌注减少68.5%(p <0.001),而不会损坏周围的细胞。在人体血液中进行的体外实验表明,空化可能在PUT中起作用。总之,PUT作为一种能够精确靶向血管的新型非侵入性抗血管方法具有广阔的前景。

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