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Kv7 通道激活可降低脑内皮细胞通透性,防止红藻氨酸诱导的血脑屏障损伤。

Kv7 channel activation reduces brain endothelial cell permeability and prevents kainic acid-induced blood-brain barrier damage.

机构信息

Department of Neuroscience, Reproductive Sciences and Dentistry, University of Naples Federico II, Naples, Italy.

Interdisciplinary Research Centre on Biomaterials, University of Naples Federico II, Naples, Italy.

出版信息

Am J Physiol Cell Physiol. 2024 Mar 1;326(3):C893-C904. doi: 10.1152/ajpcell.00709.2023. Epub 2024 Jan 29.

Abstract

Ion channels in the blood-brain barrier (BBB) play a main role in controlling the interstitial fluid composition and cerebral blood flow, and their dysfunction contributes to the disruption of the BBB occurring in many neurological diseases such as epilepsy. In this study, using morphological and functional approaches, we evaluated the expression and role in the BBB of Kv7 channels, a family of voltage-gated potassium channels including five members (Kv7.1-5) that play a major role in the regulation of cell excitability and transmembrane flux of potassium ions. Immunofluorescence experiments showed that Kv7.1, Kv7.4, and Kv7.5 were expressed in rat brain microvessels (BMVs), as well as brain primary- and clonal (BEND-3) endothelial cells (ECs). Kv7.5 localized at the cell-to-cell junction sites, whereas Kv7.4 was also found in pericytes. The Kv7 activator retigabine increased transendothelial electrical resistance (TEER) in both primary ECs and BEND-3 cells; moreover, retigabine reduced paracellular dextran flux in BEND-3 cells. These effects were prevented by the selective Kv7 blocker XE-991. Exposure to retigabine also hyperpolarized cell membrane and increased tight junctions (TJs) integrity in BEND-3 cells. BMVs from rats treated with kainic acid (KA) showed a disruption of TJs and a selective reduction of Kv7.5 expression. In BEND-3 cells, retigabine prevented the increase of cell permeability and the reduction of TJs integrity induced by KA. Overall, these findings demonstrate that Kv7 channels are expressed in the BBB, where they modulate barrier properties both in physiological and pathological conditions. This study describes for the first time the expression and the functional role of Kv7 potassium channels in the blood-brain barrier. We show that the opening of Kv7 channels reduces endothelial cell permeability both in physiological and pathological conditions via the hyperpolarization of cell membrane and the sealing of tight junctions. Therefore, activation of endothelial Kv7 channels might be a useful strategy to treat epilepsy and other neurological disorders characterized by blood-brain barrier dysfunction.

摘要

血脑屏障(BBB)中的离子通道在控制细胞外液成分和脑血流方面发挥着重要作用,其功能障碍导致许多神经疾病如癫痫中 BBB 的破坏。在这项研究中,我们使用形态学和功能学方法,评估了 Kv7 通道(一种包括 Kv7.1-5 五个成员的电压门控钾通道家族)在 BBB 中的表达和作用,Kv7 通道在调节细胞兴奋性和钾离子跨膜通量方面发挥着主要作用。免疫荧光实验表明,Kv7.1、Kv7.4 和 Kv7.5 在大鼠脑微血管(BMVs)以及脑原代和克隆(BEND-3)内皮细胞(ECs)中表达。Kv7.5 定位于细胞-细胞连接部位,而 Kv7.4 也存在于周细胞中。Kv7 激活剂瑞替加滨增加了原代 EC 和 BEND-3 细胞的跨内皮电阻(TEER);此外,瑞替加滨减少了 BEND-3 细胞的细胞旁葡聚糖通量。这些作用被选择性 Kv7 阻断剂 XE-991 所阻止。瑞替加滨还使 BEND-3 细胞的细胞膜超极化,并增加紧密连接(TJ)的完整性。用海人酸(KA)处理的大鼠 BMVs 显示 TJ 破坏和 Kv7.5 表达选择性减少。在 BEND-3 细胞中,瑞替加滨阻止了 KA 诱导的细胞通透性增加和 TJ 完整性降低。总之,这些发现表明 Kv7 通道在 BBB 中表达,并在生理和病理条件下调节屏障特性。本研究首次描述了 Kv7 钾通道在血脑屏障中的表达及其功能作用。我们表明,Kv7 通道的开放通过细胞膜的超极化和紧密连接的封闭,减少了生理和病理条件下内皮细胞的通透性。因此,激活内皮 Kv7 通道可能是治疗癫痫和其他以血脑屏障功能障碍为特征的神经疾病的一种有用策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3219/11193483/62397de7c331/c-00709-2023r01.jpg

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