Claudin-1通过下调外伤性脑损伤中内皮连接蛋白损害血脑屏障。

IF 4 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
Saiprasad Gowrikumar, Aria Tarudji, Brandon Z McDonald, Sai Sindhura Balusa, Forrest M Kievit, Punita Dhawan
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引用次数: 0

摘要

创伤性脑损伤(TBI)是导致患者死亡和残疾的主要原因。脑微血管内皮细胞形成血脑屏障(BBB),其功能是维持大脑免受系统溶质被动进入的保护屏障。由于脑外伤引起的细胞破坏,血脑屏障受损。血脑屏障内皮中的紧密连接破坏与这种反应有关,但其潜在机制仍未解决。我们利用各种严重到轻度脑外伤的体内模型以及体外暴露的脑内皮细胞(bEND.3)来分析脑外伤后遇到的情况,以获得脑屏障改变的机制。我们发现,在体内和体外,CLDN1在脑内皮中均显著升高。观察到CLDN1表达的增加与CLDN5 (CLDN5)、occludin (OCLN)和occludula (ZO-1)的下调相关,从而通过降低TEER和增加通透性来改变血脑屏障的完整性。在这些致病条件下敲低CLDN1显示内皮连接蛋白的稳定性。表观遗传调节剂沉默信息调节剂家族蛋白1 (SIRT1) (NAD+依赖性蛋白去乙酰化酶的一员)的下降与CLDN1的上调同时发生。事实上,通过NAC处理的氧化应激猝灭能够减少体外损伤诱导的CLDN1上调。从机制上讲,在cldn1调节的条件下,观察到src依赖的酪氨酸磷酸化OCLN和ZO-1。我们的研究结果将为BBB解除管制提供新的见解,并为TBI提供新的可能的治疗机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Claudin-1 impairs blood-brain barrier by downregulating endothelial junctional proteins in traumatic brain injury.

Traumatic brain injury (TBI) is a leading cause of death and disability in patients. Brain microvasculature endothelial cells form the blood-brain barrier (BBB) which functions to maintain a protective barrier for the brain from the passive entry of systemic solutes. As a result of the cellular disruption caused by TBI, the BBB is compromised. Tight junction disruption in the endothelium of the BBB has been implicated in this response, but the underlying mechanisms remain unresolved. We utilized various in vivo models of severe to mild TBI as well as in vitro exposure of brain endothelial cells (bEND.3) to analyze conditions encountered following TBI to gain mechanistic insight into alterations observed at the BBB. We found that claudin-1 (CLDN1), was significantly increased in the brain endothelium both in vivo and in vitro. The observed increase of CLDN1 expression correlated with down-regulation of claudin-5 (CLDN5), occludin (OCLN), and zonula occludens (ZO-1), thereby altering BBB integrity by decreasing TEER and increasing permeability. Knockdown of CLDN1 in these pathogenic conditions showed stability of the endothelial junctional proteins. A decline in the epigenetic regulator silent information regulator family protein 1 (SIRT1), a member of the NAD+ dependent protein deacetylases, coincided with this upregulation of CLDN1. Indeed, the quenching of oxidative stress through NAC treatment was able to reduce injury-induced upregulation of CLDN1 in vitro. Mechanistically, an SRC-dependent tyrosine phosphorylation of OCLN and ZO-1 in CLDN1-modulated conditions was observed. Our findings will provide new insights into BBB deregulation and new possible treatment opportunities for TBI.

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来源期刊
Tissue Barriers
Tissue Barriers MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
6.60
自引率
6.50%
发文量
25
期刊介绍: Tissue Barriers is the first international interdisciplinary journal that focuses on the architecture, biological roles and regulation of tissue barriers and intercellular junctions. We publish high quality peer-reviewed articles that cover a wide range of topics including structure and functions of the diverse and complex tissue barriers that occur across tissue and cell types, including the molecular composition and dynamics of polarized cell junctions and cell-cell interactions during normal homeostasis, injury and disease state. Tissue barrier formation in regenerative medicine and restoration of tissue and organ function is also of interest. Tissue Barriers publishes several categories of articles including: Original Research Papers, Short Communications, Technical Papers, Reviews, Perspectives and Commentaries, Hypothesis and Meeting Reports. Reviews and Perspectives/Commentaries will typically be invited. We also anticipate to publish special issues that are devoted to rapidly developing or controversial areas of research. Suggestions for topics are welcome. Tissue Barriers objectives: Promote interdisciplinary awareness and collaboration between researchers working with epithelial, epidermal and endothelial barriers and to build a broad and cohesive worldwide community of scientists interesting in this exciting field. Comprehend the enormous complexity of tissue barriers and map cross-talks and interactions between their different cellular and non-cellular components. Highlight the roles of tissue barrier dysfunctions in human diseases. Promote understanding and strategies for restoration of tissue barrier formation and function in regenerative medicine. Accelerate a search for pharmacological enhancers of tissue barriers as potential therapeutic agents. Understand and optimize drug delivery across epithelial and endothelial barriers.
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