Åslund Andreas K O, Snipstad Sofie, Healey Andrew, Kvåle Svein, Torp Sverre H, Sontum Per C, Davies Catharina de Lange, van Wamel Annemieke
Department of Physics, Norwegian University of Science and Technology (NTNU), Trondheim, Norway.
Phoenix Solutions AS, Oslo, Norway.
Theranostics. 2017 Jan 1;7(1):23-30. doi: 10.7150/thno.16577. eCollection 2017.
The blood-brain barrier (BBB) is a major obstacle in drug delivery for diseases of the brain, and today there is no standardized route to surpass it. One technique to locally and transiently disrupt the BBB, is focused ultrasound in combination with gas-filled microbubbles. However, the microbubbles used are typically developed for ultrasound imaging, not BBB disruption. Here we describe efficient opening of the BBB using the promising novel Acoustic Cluster Therapy (ACT), that recently has been used in combination with Abraxane® to successfully treat subcutaneous tumors of human prostate adenocarcinoma in mice. ACT is based on the conjugation of microbubbles to liquid oil microdroplets through electrostatic interactions. Upon activation in an ultrasound field, the microdroplet phase transfers to form a larger bubble that transiently lodges in the microvasculature. Further insonation induces volume oscillations of the activated bubble, which in turn induce biomechanical effects that increase the permeability of the BBB. ACT was able to safely and temporarily permeabilize the BBB, using an acoustic power 5-10 times lower than applied for conventional microbubbles, and successfully deliver small and large molecules into the brain.
血脑屏障(BBB)是脑部疾病药物递送中的一个主要障碍,目前尚无超越它的标准化途径。一种局部和短暂破坏血脑屏障的技术是聚焦超声结合充气微泡。然而,所使用的微泡通常是为超声成像而开发的,并非用于破坏血脑屏障。在此,我们描述了使用有前景的新型声学聚束疗法(ACT)有效打开血脑屏障的方法,该疗法最近已与艾日布林(Abraxane®)联合用于成功治疗小鼠的人前列腺腺癌皮下肿瘤。ACT基于微泡通过静电相互作用与液态油微滴结合。在超声场中激活后,微滴相转移形成一个更大的气泡,该气泡短暂地滞留在微血管中。进一步的超声照射会引起激活气泡的体积振荡,进而产生生物力学效应,增加血脑屏障的通透性。ACT能够以比传统微泡低5至10倍的声功率安全且暂时地使血脑屏障通透,并成功将小分子和大分子递送至脑内。