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脑周细胞中 Ephrin-B2 的抑制可减少糖尿病大鼠脑病理性血管新生。

Inhibition of Ephrin-B2 in brain pericytes decreases cerebral pathological neovascularization in diabetic rats.

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, South University, Savannah, Georgia, United States of America.

Biomedical Sciences Department, School of Medicine, Mercer University, Savannah, Georgia, United States of America.

出版信息

PLoS One. 2019 Jan 8;14(1):e0210523. doi: 10.1371/journal.pone.0210523. eCollection 2019.

Abstract

We have previously shown that diabetes causes dysfunctional cerebral neovascularization that increases the risk for cerebrovascular disorders such as stroke and cognitive impairment. Pericytes (PCs) play a pivotal role in the angiogenic process through their interaction with the endothelial cells (EC). Yet, the role of PCs in dysfunctional cerebral neovascularization in diabetes is unclear. In the present study, we tested the hypothesis that the increased proangiogenic Ephrin-B2 signaling in PCs contributes to the dysfunctional cerebral neovascularization in diabetes. Type-II diabetes was induced by a combination of high fat diet and low dose streptozotocin injection in male Wistar rats. Selective in vivo Ephrin-B2 silencing in brain PCs was achieved using the stereotactic injection of adeno-associated virus (AAV) with NG2-promoter that expresses Ephrin-B2 shRNA. Neovascularization was assessed using vascular fluorescent dye stain. Novel object recognition (NOR) test was used to determine cognitive functions. Human brain microvascular pericytes HBMVPCs were grown in high glucose 25 mM and palmitate 200 uM (HG/Pal) to mimic diabetic conditions. Scratch migration and tube formation assays were conducted to evaluate PC/EC interaction and angiogenic functions in PC/EC co-culture. Diabetes increased the expression of Ephrin-B2 in the cerebrovasculature and pericytes. Concomitant increases in cerebral neovascularization parameters including vascular density, tortuosity and branching density in diabetic rats were accompanied by deterioration of cognitive function. Inhibition of Ephrin-B2 expression in PCs significantly restored cerebral vascularization and improved cognitive functions. HG/Pal increased PC/EC angiogenic properties in co-culture. Silencing Ephrin-B2 in PCs significantly reduced PC migration and PC/EC co-culture angiogenic properties. This study emphasizes the significant contribution of PCs to the pathological neovascularization in diabetes. Our findings introduce Ephrin-B2 signaling as a promising therapeutic target to improve cerebrovascular integrity in diabetes.

摘要

我们之前已经表明,糖尿病会导致脑血管功能障碍,从而增加中风和认知障碍等脑血管疾病的风险。周细胞(PCs)通过与内皮细胞(EC)相互作用在血管生成过程中发挥关键作用。然而,PCs 在糖尿病中功能失调的脑血管新生中的作用尚不清楚。在本研究中,我们测试了一个假设,即 PCs 中增加的促血管生成 Ephrin-B2 信号会导致糖尿病中功能失调的脑血管新生。雄性 Wistar 大鼠通过高脂肪饮食和低剂量链脲佐菌素注射联合诱导 II 型糖尿病。使用带有 NG2 启动子的腺相关病毒(AAV)立体定向注射来实现脑中 PCs 的 Ephrin-B2 特异性沉默,该启动子表达 Ephrin-B2 shRNA。使用血管荧光染料染色评估血管新生。使用新物体识别(NOR)测试来确定认知功能。将人脑微血管周细胞(HBMVPCs)在高葡萄糖 25mM 和棕榈酸 200uM(HG/Pal)中培养以模拟糖尿病条件。进行划痕迁移和管形成测定以评估 PC/EC 相互作用和 PC/EC 共培养中的血管生成功能。糖尿病增加了脑血管和周细胞中 Ephrin-B2 的表达。糖尿病大鼠脑血管新生参数(包括血管密度、扭曲度和分支密度)的增加,同时认知功能恶化。PCs 中 Ephrin-B2 表达的抑制显著恢复了脑血管化并改善了认知功能。HG/Pal 增加了共培养中 PC/EC 的血管生成特性。在 PCs 中沉默 Ephrin-B2 显著降低了 PC 迁移和 PC/EC 共培养的血管生成特性。这项研究强调了 PCs 对糖尿病病理性血管新生的重要贡献。我们的研究结果表明 Ephrin-B2 信号作为一种有前途的治疗靶点,可改善糖尿病中的脑血管完整性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5393/6324788/e49ae2c3632d/pone.0210523.g001.jpg

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