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Drug-loaded bubbles with matched focused ultrasound excitation for concurrent blood-brain barrier opening and brain-tumor drug delivery

机译:带有匹配聚焦超声激发的载药气泡,可同时打开血脑屏障和脑肿瘤药物

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Focused ultrasound (FUS) with microbubbles has been used to achieve local blood-brain barrier opening (BBB opening) and increase the penetration of therapeutic drugs into brain tumors. However, inertial cavitation of microbubbles during FUS-induced BBB opening causes intracerebral hemorrhaging (ICH), leading to acute and chronic brain injury and limiting the efficiency of drug delivery. Here we investigated whether induction of drug (1,3-bis(2-chloroethyl)-1-nitrosourea, BCNU)-loaded bubbles (BCNU bubbles) to oscillate at their resonant frequency would reduce inertial cavitation during BBB opening, thereby eliminating ICH and enhancing drug delivery in a rat brain model. FUS was tested at I and 10 MHz, over a wide range of pressure (mechanical index ranging from 0.16 to 1.42) in the presence of BCNU bubbles. Excitation of BCNU bubbles by resonance frequency-matched FUS (10 MHz) resulted in predominantly stable cavitation and significantly reduced the occurrence of potential hazards of exposure to biological tissues during the BBB opening process. In addition, the drug release process could be monitored by acoustic emission obtained from ultrasound imaging. In tumor-bearing animals, BCNU bubbles with PUS showed significant control of tumor progression and improved maximum survival from 26 to 35 days. This study provides useful advancements toward the goal of successfully translating FUS theranostic bubble-enhanced brain drug delivery into clinical use. (C) 2015 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:具有微泡的聚焦超声(FUS)已用于实现局部血脑屏障打开(BBB打开)并增加治疗药物对脑肿瘤的渗透。但是,在FUS诱导的BBB开放过程中,微气泡的惯性空化会导致脑出血(ICH),从而导致急性和慢性脑损伤并限制药物输送的效率。在这里,我们研究了诱导药物(1,3-双(2-氯乙基)-1-亚硝基脲,BCNU)的气泡(BCNU气泡)以其共振频率振荡是否会减少BBB开放期间的惯性空化,从而消除ICH和增强大鼠脑模型中的药物递送。在存在BCNU气泡的情况下,在很宽的压力范围(机械指数范围为0.16至1.42)上,在1 MHz和10 MHz下对FUS进行了测试。共振频率匹配的FUS(10 MHz)对BCNU气泡的激发导致稳定的空化,并显着减少了BBB开放过程中暴露于生物组织的潜在危险。另外,可以通过从超声成像获得的声发射来监测药物释放过程。在荷瘤动物中,带有PUS的BCNU气泡显示出对肿瘤进展的显着控制,并提高了26至35天的最大存活率。这项研究为成功地将FUS肿瘤治疗性泡沫增强脑药物递送转化为临床用途的目标提供了有益的进展。 (C)2015 Acta Materialia Inc.,由Elsevier Ltd.发行。保留所有权利。

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