Mokarram Nassir, Case Ayden, Hossainy Nadia N, Lyon Johnathan G, MacDonald Tobey J, Bellamkonda Ravi
Department of Neurosurgery, Emory University, Atlanta, GA USA.
Trinity College of Arts and Sciences, Duke University, Durham, NC USA.
Commun Mater. 2025;6(1):5. doi: 10.1038/s43246-024-00721-y. Epub 2025 Jan 7.
The blood-brain barrier, essential for protecting the central nervous system, also restricts drug delivery to this region. Thus, delivering drugs across the blood-brain barrier is an active research area in immunology, oncology, and neurology; moreover, novel methods are urgently needed to expand therapeutic options for central nervous system pathologies. While previous strategies have focused on small molecules that modulate blood-brain barrier permeability or penetrate the barrier, there is an increased focus on biomedical devices-external or implanted-for improving drug delivery. Here, we review device-assisted drug delivery across the blood-brain barrier, emphasizing its application in glioblastoma, an aggressively malignant primary brain cancer in which the blood-brain barrier plays a central role. We examine the blood-brain barrier and its features in glioblastoma, emerging models for studying the blood-brain barrier, and device-assisted methods for crossing the blood-brain barrier. We conclude by presenting methods to monitor the blood-brain barrier and paradigms for combined cross-BBB drug delivery.
血脑屏障对于保护中枢神经系统至关重要,但同时也限制了药物向该区域的递送。因此,跨越血脑屏障递送药物是免疫学、肿瘤学和神经学领域的一个活跃研究领域;此外,迫切需要新的方法来扩大中枢神经系统疾病的治疗选择。虽然以前的策略主要集中在调节血脑屏障通透性或穿透屏障的小分子上,但现在越来越关注用于改善药物递送的生物医学设备(外部的或植入的)。在这里,我们综述了通过血脑屏障的设备辅助药物递送,重点强调其在胶质母细胞瘤中的应用,胶质母细胞瘤是一种侵袭性恶性原发性脑癌,血脑屏障在其中起着核心作用。我们研究了胶质母细胞瘤中的血脑屏障及其特征、用于研究血脑屏障的新兴模型以及跨越血脑屏障的设备辅助方法。最后,我们介绍了监测血脑屏障的方法以及联合跨血脑屏障药物递送的范例。