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超声空化增强了溶瘤病毒在体外模型中的递送和治疗效果。

Ultrasound-induced cavitation enhances the delivery and therapeutic efficacy of an oncolytic virus in an in vitro model.

机构信息

Institute of Biomedical Engineering, Department of Engineering Science, Old Road Campus Research Building, University of Oxford, Headington, Oxford OX3 7DQ, United Kingdom.

出版信息

J Control Release. 2012 Jan 30;157(2):235-42. doi: 10.1016/j.jconrel.2011.09.086. Epub 2011 Oct 1.

DOI:10.1016/j.jconrel.2011.09.086
PMID:21982902
Abstract

We investigated whether ultrasound-induced cavitation at 0.5 MHz could improve the extravasation and distribution of a potent breast cancer-selective oncolytic adenovirus, AdEHE2F-Luc, to tumour regions that are remote from blood vessels. We developed a novel tumour-mimicking model consisting of a gel matrix containing human breast cancer cells traversed by a fluid channel simulating a tumour blood vessel, through which the virus and microbubbles could be made to flow. Ultrasonic pressures were chosen to maximize either broadband emissions, associated with inertial cavitation, or ultraharmonic emissions, associated with stable cavitation, while varying duty cycle to keep the total acoustic energy delivered constant for comparison across exposures. None of the exposure conditions tested affected cell viability in the absence of the adenovirus. When AdEHE2F-Luc was delivered via the vessel, inertial cavitation increased transgene expression in tumour cells by up to 200 times. This increase was not observed in the absence of Coxsackie and Adenovirus Receptor cell expression, discounting sonoporation as the mechanism of action. In the presence of inertial cavitation, AdEHE2F-Luc distribution was greatly improved in the matrix surrounding the vessel, particularly in the direction of the ultrasound beam; this enabled AdEHE2F-Luc to kill up to 80% of cancer cells within the ultrasound focal volume in the gel 24 hours after delivery, compared to 0% in the absence of cavitation.

摘要

我们研究了 0.5MHz 的超声空化是否能提高一种有效的乳腺癌选择性溶瘤腺病毒(AdEHE2F-Luc)向远离血管的肿瘤区域的外渗和分布。我们开发了一种新的肿瘤模拟模型,该模型由一个包含人乳腺癌细胞的凝胶基质组成,其中有一个模拟肿瘤血管的流体通道,病毒和微泡可以在其中流动。超声压力的选择旨在最大限度地提高宽带发射,与惯性空化有关,或超谐波发射,与稳定空化有关,同时改变占空比,使输送的总声能在不同暴露条件下保持恒定。在没有腺病毒的情况下,所有测试的暴露条件都不会影响细胞活力。当 AdEHE2F-Luc 通过血管传递时,惯性空化使肿瘤细胞中的转基因表达增加了高达 200 倍。在没有 Coxsackie 和 Adenovirus Receptor 细胞表达的情况下,没有观察到这种增加,排除了声孔作用作为作用机制。在惯性空化的存在下,AdEHE2F-Luc 在血管周围的基质中的分布得到了极大的改善,特别是在超声束的方向上;这使得 AdEHE2F-Luc 在凝胶中能在 24 小时内杀死高达 80%的超声焦体积内的癌细胞,而在没有空化的情况下,这一比例为 0%。

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