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聚焦超声血脑屏障开放介导 MRI 可见白蛋白纳米簇递送至大鼠脑内用于具有时间控制的局部药物递送。

Focused ultrasound blood brain barrier opening mediated delivery of MRI-visible albumin nanoclusters to the rat brain for localized drug delivery with temporal control.

机构信息

Department of Neurobiology, University of Alabama at Birmingham, Birmingham, AL 35294, USA.

Department of Chemical and Biological Engineering, University of Alabama at Tuscaloosa, Tuscaloosa, AL 35487, USA.

出版信息

J Control Release. 2020 Aug 10;324:172-180. doi: 10.1016/j.jconrel.2020.04.054. Epub 2020 May 5.

Abstract

There is an ongoing need for noninvasive tools to manipulate brain activity with molecular, spatial and temporal specificity. Here we have investigated the use of MRI-visible, albumin-based nanoclusters for noninvasive, localized and temporally specific drug delivery to the rat brain. We demonstrated that IV injected nanoclusters could be deposited into target brain regions via focused ultrasound facilitated blood brain barrier opening. We showed that nanocluster location could be confirmed in vivo with MRI. Additionally, following confirmation of nanocluster delivery, release of the nanocluster payload into brain tissue can be triggered by a second focused ultrasound treatment performed without circulating microbubbles. Release of glutamate from nanoclusters in vivo caused enhanced c-Fos expression, indicating that the loading capacity of the nanoclusters is sufficient to induce neuronal activation. This novel technique for noninvasive stereotactic drug delivery to the brain with temporal specificity could provide a new way to study brain circuits in vivo preclinically with high relevance for clinical translation.

摘要

目前,人们迫切需要非侵入性工具,以具有分子、空间和时间特异性的方式来操控大脑活动。在这里,我们研究了使用 MRI 可见的基于白蛋白的纳米团簇来进行非侵入性、局部和时间特异性的药物递送到大鼠大脑。我们证明,通过聚焦超声辅助血脑屏障打开,可以将静脉内注射的纳米团簇递送到靶脑区域。我们表明,可以通过 MRI 在体内确认纳米团簇的位置。此外,在确认纳米团簇的递送后,可以通过在没有循环微泡的情况下进行第二次聚焦超声处理来触发纳米团簇有效负载向脑组织中的释放。纳米团簇在体内释放谷氨酸会引起 c-Fos 表达的增强,这表明纳米团簇的载药能力足以诱导神经元激活。这种用于具有时间特异性的非侵入性立体定向脑内药物递送的新技术可能为临床转化提供一种新的方法,用于在临床前体内研究大脑回路,具有很高的相关性。

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