Departments of 1 Neurosurgery and.
Radiology, Stanford University Medical Center, Stanford, California.
Neurosurg Focus. 2018 Feb;44(2):E10. doi: 10.3171/2017.11.FOCUS17620.
Magnetic resonance-guided focused ultrasound (MRgFUS) has been used extensively to ablate brain tissue in movement disorders, such as essential tremor. At a lower energy, MRgFUS can disrupt the blood-brain barrier (BBB) to allow passage of drugs. This focal disruption of the BBB can target systemic medications to specific portions of the brain, such as for brain tumors. Current methods to bypass the BBB are invasive, as the BBB is relatively impermeable to systemically delivered antineoplastic agents. Multiple healthy and brain tumor animal models have suggested that MRgFUS disrupts the BBB and focally increases the concentration of systemically delivered antitumor chemotherapy, immunotherapy, and gene therapy. In animal tumor models, combining MRgFUS with systemic drug delivery increases median survival times and delays tumor progression. Liposomes, modified microbubbles, and magnetic nanoparticles, combined with MRgFUS, more effectively deliver chemotherapy to brain tumors. MRgFUS has great potential to enhance brain tumor drug delivery, while limiting treatment toxicity to the healthy brain.
磁共振引导聚焦超声(MRgFUS)已广泛应用于运动障碍(如原发性震颤)的脑组织消融。在较低能量下,MRgFUS 可以破坏血脑屏障(BBB)以允许药物通过。这种 BBB 的局灶性破坏可以将全身药物靶向到大脑的特定部位,例如脑肿瘤。目前绕过 BBB 的方法是侵入性的,因为 BBB 对全身给予的抗肿瘤药物相对不可渗透。多项健康和脑肿瘤动物模型表明,MRgFUS 破坏 BBB,并局部增加全身给予的抗肿瘤化疗、免疫治疗和基因治疗的浓度。在动物肿瘤模型中,将 MRgFUS 与全身药物递送相结合可延长中位生存时间并延缓肿瘤进展。脂质体、修饰的微泡和磁性纳米颗粒与 MRgFUS 结合可更有效地将化疗药物递送到脑肿瘤中。MRgFUS 具有增强脑肿瘤药物递送的巨大潜力,同时将治疗毒性限制在健康大脑内。