Castillo-González Julia, González-Rey Elena
Institute of Parasitology and Biomedicine Lopez-Neyra (IPBLN), CSIC, PT Salud, Granada, Spain.
Neural Regen Res. 2025 Jul 1;20(7):1944-1956. doi: 10.4103/NRR.NRR-D-24-00392. Epub 2024 Jul 29.
The blood-brain barrier constitutes a dynamic and interactive boundary separating the central nervous system and the peripheral circulation. It tightly modulates the ion transport and nutrient influx, while restricting the entry of harmful factors, and selectively limiting the migration of immune cells, thereby maintaining brain homeostasis. Despite the well-established association between blood-brain barrier disruption and most neurodegenerative/neuroinflammatory diseases, much remains unknown about the factors influencing its physiology and the mechanisms underlying its breakdown. Moreover, the role of blood-brain barrier breakdown in the translational failure underlying therapies for brain disorders is just starting to be understood. This review aims to revisit this concept of "blood-brain barrier breakdown," delving into the most controversial aspects, prevalent challenges, and knowledge gaps concerning the lack of blood-brain barrier integrity. By moving beyond the oversimplistic dichotomy of an "open"/"bad" or a "closed"/"good" barrier, our objective is to provide a more comprehensive insight into blood-brain barrier dynamics, to identify novel targets and/or therapeutic approaches aimed at mitigating blood-brain barrier dysfunction. Furthermore, in this review, we advocate for considering the diverse time- and location-dependent alterations in the blood-brain barrier, which go beyond tight-junction disruption or brain endothelial cell breakdown, illustrated through the dynamics of ischemic stroke as a case study. Through this exploration, we seek to underscore the complexity of blood-brain barrier dysfunction and its implications for the pathogenesis and therapy of brain diseases.
血脑屏障构成了一个动态且相互作用的边界,将中枢神经系统与外周循环分隔开来。它严格调控离子转运和营养物质的流入,同时限制有害因素的进入,并选择性地限制免疫细胞的迁移,从而维持大脑内环境的稳定。尽管血脑屏障破坏与大多数神经退行性/神经炎症性疾病之间的关联已得到充分证实,但关于影响其生理功能的因素及其破坏机制仍有许多未知之处。此外,血脑屏障破坏在脑部疾病治疗转化失败中所起的作用才刚刚开始被理解。本综述旨在重新审视“血脑屏障破坏”这一概念,深入探讨最具争议的方面、普遍存在的挑战以及关于血脑屏障完整性缺失的知识空白。通过超越“开放”/“有害”或“封闭”/“有益”屏障这种过于简单的二分法,我们的目标是更全面地洞察血脑屏障的动态变化,确定旨在减轻血脑屏障功能障碍的新靶点和/或治疗方法。此外,在本综述中,我们主张考虑血脑屏障中依赖时间和位置的多种变化,这些变化不仅仅局限于紧密连接破坏或脑内皮细胞破裂,以缺血性中风的动态变化为例进行说明。通过这一探索,我们试图强调血脑屏障功能障碍的复杂性及其对脑部疾病发病机制和治疗的影响。