IEEE Trans Biomed Eng. 2022 Jun;69(6):1880-1888. doi: 10.1109/TBME.2021.3130164. Epub 2022 May 19.
Non-invasive methods to enhance drug delivery and efficacy in the brain have been pursued for decades. Focused ultrasound hyperthermia (HT) combined with thermosensitive therapeutics have been demonstrated promising in enhancing local drug delivery to solid tumors. We hypothesized that the presence of microbubbles (MBs) combined with transcranial MR-guided focused ultrasound (MRgFUS) could be used to reduce the ultrasound power required for HT while simultaneously increasing drug delivery by locally opening the blood-brain barrier (BBB).
Transcranial HT (42 °C, 10 min) was performed in wild-type mice using a small animal MRgFUS system incorporated into a 9.4T Bruker MR scanner, with infusions of saline or Definity MBs with doses of 20 or 100 µl/kg/min (denoted as MB-20 and MB-100). MR thermometry data was continuously acquired as feedback for the ultrasound controller during the procedure.
Spatiotemporally precise transcranial HT was achieved in both saline and MB groups. A significant ultrasound power reduction (-45.7%, p = 0.006) was observed in the MB-20 group compared to saline. Localized BBB opening was achieved in MB groups confirmed by CE-T1w MR images. There were no structural abnormalities, edema, hemorrhage, or acutemicroglial activation in all groups, confirmed by T2w MR imaging and histology.
Our investigations showed that it is feasible and safe to achieve spatiotemporally precise brain HT at significantly reduced power and simultaneous localized BBB opening via transcranial MRgFUS and MBs.
This study provides a new synergistic brain drug delivery method with clinical translation potential.
几十年来,人们一直致力于寻找非侵入性方法来提高脑部的药物输送和疗效。聚焦超声热疗(HT)联合热敏治疗已被证明在增强实体瘤局部药物输送方面具有广阔的前景。我们假设,微泡(MBs)联合经颅磁共振引导聚焦超声(MRgFUS)的存在可以用于降低 HT 所需的超声功率,同时通过局部打开血脑屏障(BBB)来增加药物输送。
使用整合到 9.4T Bruker MR 扫描仪中的小动物 MRgFUS 系统,在野生型小鼠中进行经颅 HT(42°C,10 分钟),同时输注生理盐水或 Definity MBs,剂量为 20 或 100µl/kg/min(分别表示为 MB-20 和 MB-100)。在整个过程中,连续采集 MR 测温数据作为超声控制器的反馈。
在生理盐水和 MB 组中均实现了时空精确的经颅 HT。与生理盐水组相比,MB-20 组的超声功率显著降低(-45.7%,p=0.006)。MB 组的 CE-T1w MR 图像证实了局部 BBB 开放。所有组均通过 T2w MR 成像和组织学证实无结构异常、水肿、出血或急性小胶质细胞激活。
我们的研究表明,通过经颅 MRgFUS 和 MB 实现时空精确的脑 HT 并同时局部打开 BBB 是可行且安全的,且可显著降低功率。
这项研究提供了一种具有临床转化潜力的新协同脑药物输送方法。