Thombre Rasika, Mess Griffin, Kempski Leadingham Kelley M, Kapoor Shivani, Hersh Andrew, Acord Molly, Kaovasia Tarana, Theodore Nicholas, Tyler Betty, Manbachi Amir
Department of Neurosurgery, Johns Hopkins University School of Medicine, Baltimore, MD, United States.
Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, United States.
Front Oncol. 2023 Feb 16;12:1072780. doi: 10.3389/fonc.2022.1072780. eCollection 2022.
Glioblastoma multiforme (GBM) is a deadly and aggressive malignant brain cancer that is highly resistant to treatments. A particular challenge of treatment is caused by the blood-brain barrier (BBB), the relatively impermeable vasculature of the brain. The BBB prevents large molecules from entering the brain parenchyma. This protective characteristic of the BBB, however, also limits the delivery of therapeutic drugs for the treatment of brain tumors. To address this limitation, focused ultrasound (FUS) has been safely utilized to create transient openings in the BBB, allowing various high molecular weight drugs access to the brain. We performed a systematic review summarizing current research on treatment of GBMs using FUS-mediated BBB openings in mouse and rat models. The studies gathered here highlight how the treatment paradigm can allow for increased brain and tumor perfusion of drugs including chemotherapeutics, immunotherapeutics, gene therapeutics, nanoparticles, and more. Given the promising results detailed here, the aim of this review is to detail the commonly used parameters for FUS to open the BBB in rodent GBM models.
多形性胶质母细胞瘤(GBM)是一种致命且侵袭性强的恶性脑癌,对治疗具有高度抗性。血脑屏障(BBB),即大脑相对不可渗透的脉管系统,给治疗带来了特殊挑战。血脑屏障会阻止大分子进入脑实质。然而,血脑屏障的这种保护特性也限制了治疗脑肿瘤的治疗药物的递送。为解决这一限制,聚焦超声(FUS)已被安全地用于在血脑屏障中创建瞬时开口,使各种高分子量药物能够进入大脑。我们进行了一项系统综述,总结了在小鼠和大鼠模型中使用FUS介导的血脑屏障开口治疗GBM的当前研究。这里收集的研究突出了这种治疗模式如何能够增加包括化疗药物、免疫治疗药物、基因治疗药物、纳米颗粒等在内的药物在大脑和肿瘤中的灌注。鉴于此处详述的有前景的结果,本综述的目的是详细介绍在啮齿动物GBM模型中使用FUS打开血脑屏障的常用参数。