Department of Pharmacology, University of Arizona, Tucson, Arizona, USA.
AAPS J. 2017 Jul;19(4):910-920. doi: 10.1208/s12248-017-0076-6. Epub 2017 Mar 28.
A functional blood-brain barrier (BBB) is necessary to maintain central nervous system (CNS) homeostasis. Many diseases affecting the CNS, however, alter the functional integrity of the BBB. It has been shown that various diseases and physiological stressors can impact the BBB's ability to selectively restrict passage of substances from the blood to the brain. Modifications of the BBB's permeability properties can potentially contribute to the pathophysiology of CNS diseases and result in altered brain delivery of therapeutic agents. Hypoxia and/or inflammation are central components of a number of diseases affecting the CNS. A number of studies indicate hypoxia or inflammatory pain increase BBB paracellular permeability, induce changes in the expression and/or localization of tight junction proteins, and affect CNS drug uptake. In this review, we look at what is currently known with regard to BBB disruption following a hypoxic or inflammatory insult in vivo. Potential mechanisms involved in altering tight junction components at the BBB are also discussed. A more detailed understanding of the mediators involved in changing BBB functional integrity in response to hypoxia or inflammatory pain could potentially lead to new treatments for CNS diseases with hypoxic or inflammatory components. Additionally, greater insight into the mechanisms involved in TJ rearrangement at the BBB may lead to novel strategies to pharmacologically increase delivery of drugs to the CNS.
一个功能正常的血脑屏障(BBB)对于维持中枢神经系统(CNS)的内环境稳定是必要的。然而,许多影响中枢神经系统的疾病会改变 BBB 的功能完整性。已经表明,各种疾病和生理应激源会影响 BBB 选择性限制物质从血液进入大脑的能力。BBB 通透性的改变可能有助于中枢神经系统疾病的病理生理学,并导致治疗药物在大脑中的递送发生改变。缺氧和/或炎症是影响中枢神经系统的许多疾病的核心组成部分。许多研究表明,缺氧或炎性疼痛会增加 BBB 的细胞旁通透性,诱导紧密连接蛋白的表达和/或定位发生变化,并影响中枢神经系统药物的摄取。在这篇综述中,我们回顾了目前已知的关于缺氧或炎症刺激体内 BBB 破坏的情况。还讨论了参与改变 BBB 紧密连接成分的潜在机制。更详细地了解缺氧或炎性疼痛引起 BBB 功能完整性改变的介质,可能会为具有缺氧或炎性成分的中枢神经系统疾病提供新的治疗方法。此外,更深入地了解 BBB 紧密连接重排所涉及的机制,可能会为增加药物向中枢神经系统递送的药理学策略提供新的思路。