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The Evolving Concept of the Blood Brain Barrier (BBB): From a Single Static Barrier to a Heterogeneous and Dynamic Relay Center

机译:不断发展的血脑屏障(BBB)概念:从单个静态屏障到异构动态中继中心

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摘要

The blood–brain barrier (BBB) helps maintain a tightly regulated microenvironment for optimal central nervous system (CNS) homeostasis and facilitates communications with the peripheral circulation. The brain endothelial cells, lining the brain’s vasculature, maintain close interactions with surrounding brain cells, e.g., astrocytes, pericytes and perivascular macrophages. This function facilitates critical intercellular crosstalk, giving rise to the concept of the neurovascular unit (NVU). The steady and appropriate communication between all components of the NVU is essential for normal CNS homeostasis and function, and dysregulation of one of its constituents can result in disease. Among the different brain regions, and along the vascular tree, the cellular composition of the NVU varies. Therefore, differential cues from the immediate vascular environment can affect BBB phenotype. To support the fluctuating metabolic and functional needs of the underlying neuropil, a specialized vascular heterogeneity is required. This is achieved by variances in barrier function, expression of transporters, receptors, and adhesion molecules. This mini-review will take you on a journey through evolving concepts surrounding the BBB, the NVU and beyond. Exploring classical experiments leading to new approaches will allow us to understand that the BBB is not merely a static separation between the brain and periphery but a closely regulated and interactive entity. We will discuss shifting paradigms, and ultimately aim to address the importance of BBB endothelial heterogeneity with regard to the function of the BBB within the NVU, and touch on its implications for different neuropathologies.
机译:血脑屏障(BBB)有助于维持严格调节的微环境,以实现最佳的中枢神经系统(CNS)动态平衡,并促进与周围循环的沟通。衬在大脑血管内的大脑内皮细胞与周围的脑细胞(如星形胶质细胞,周细胞和血管周巨噬细胞)保持紧密的相互作用。该功能促进了关键的细胞间串扰,从而引发了神经血管单元(NVU)的概念。 NVU所有组件之间的稳定且适当的通讯对于正常的CNS稳态和功能至关重要,其组成之一的调节异常会导致疾病。在不同的大脑区域之间以及沿着血管树,NVU的细胞组成各不相同。因此,来自即时血管环境的不同提示可能会影响BBB表型。为了支持潜在神经纤维的波动性代谢和功能需求,需要专门的血管异质性。这是通过屏障功能,转运蛋白,受体和粘附分子表达的变化实现的。这份迷你评论将带您探索围绕BBB,NVU及其它周围不断发展的概念。探索导致新方法的经典实验将使我们理解BBB不仅是大脑与周围之间的静态分离,而且是受到严格监管和互动的实体。我们将讨论转移的范式,并最终旨在解决在NVU中BBB的功能对BBB内皮异质性的重要性,并探讨其对不同神经病理学的影响。

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