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X 盒结合蛋白 1 作为“修复内皮细胞”的关键调节因子,促进 MCAO 后血管生成的新型 EC 表型。

X-box binding protein 1 as a key modulator in "healing endothelial cells", a novel EC phenotype promoting angiogenesis after MCAO.

机构信息

Department of Neurology, Xiangya Hospital, Central South University, 87 Xiangya Road, Changsha, 410008, China.

Xiangya School of Medicine, Central South University, Changsha, 410013, China.

出版信息

Cell Mol Biol Lett. 2022 Nov 8;27(1):97. doi: 10.1186/s11658-022-00399-5.

Abstract

BACKGROUND

Endothelial cells (ECs) play an important role in angiogenesis and vascular reconstruction in the pathophysiology of ischemic stroke. Previous investigations have provided a profound cerebral vascular atlas under physiological conditions, but have failed to identify new disease-related cell subtypes. We aimed to identify new EC subtypes and determine the key modulator genes.

METHODS

Two datasets GSE174574 and GSE137482 were included in the study. Seurat was utilized as the standard quality-control pipeline. UCell was used to calculate single-cell scores to validate cellular identity. Monocle3 and CytoTRACE were utilized in aid of pseudo-time differentiation analysis. CellChat was utilized to infer the intercellular communication pathways. The angiogenesis ability of ECs was validated by MTS, Transwell, tube formation, flow cytometry, and immunofluorescence assays in vitro and in vivo. A synchrotron radiation-based propagation contrast imaging was introduced to comprehensively portray cerebral vasculature.

RESULTS

We successfully identified a novel subtype of EC named "healing EC" that highly expressed pan-EC marker and pro-angiogenic genes but lowly expressed all the arteriovenous markers identified in the vascular single-cell atlas. Further analyses showed its high stemness to differentiate into other EC subtypes and potential to modulate inflammation and angiogenesis via excretion of signal molecules. We therefore identified X-box binding protein 1 (Xbp1) as a key modulator in the healing EC phenotype. In vitro and in vivo experiments confirmed its pro-angiogenic roles under both physiological and pathological conditions. Synchrotron radiation-based propagation contrast imaging further proved that Xbp1 could promote angiogenesis and recover normal vasculature conformation, especially in the corpus striatum and prefrontal cortex under middle cerebral artery occlusion (MCAO) condition.

CONCLUSIONS

Our study identified a novel disease-related EC subtype that showed high stemness to differentiate into other EC subtypes. The predicted molecule Xbp1 was thus confirmed as a key modulator that can promote angiogenesis and recover normal vasculature conformation.

摘要

背景

内皮细胞(ECs)在缺血性中风的病理生理学中发挥着重要作用,可促进血管生成和血管重建。此前的研究已经在生理条件下提供了深刻的脑血管图谱,但未能识别与疾病相关的新细胞亚型。本研究旨在鉴定新的 EC 亚型并确定关键调节基因。

方法

本研究纳入了两个数据集 GSE174574 和 GSE137482。使用 Seurat 作为标准质量控制流程。UCell 用于计算单细胞评分以验证细胞身份。Monocle3 和 CytoTRACE 辅助假性时间分化分析。CellChat 用于推断细胞间通讯途径。通过 MTS、Transwell、管形成、流式细胞术和免疫荧光检测,在体外和体内验证 EC 的血管生成能力。引入基于同步辐射的传播对比成像技术,全面描绘脑血管。

结果

我们成功鉴定了一种新型 EC 亚型,命名为“愈合 EC”,其高表达泛 EC 标志物和促血管生成基因,但低表达血管单细胞图谱中鉴定的所有动静脉标志物。进一步分析表明,其具有高度的干性,可分化为其他 EC 亚型,并通过分泌信号分子调节炎症和血管生成。因此,我们鉴定出 X 盒结合蛋白 1(Xbp1)是愈合 EC 表型的关键调节因子。在体外和体内实验证实,在生理和病理条件下,它均具有促血管生成作用。基于同步辐射的传播对比成像进一步证明,Xbp1 可促进血管生成并恢复正常血管形态,尤其是在大脑中动脉闭塞(MCAO)条件下的纹状体和前额叶皮层。

结论

本研究鉴定了一种新型与疾病相关的 EC 亚型,其具有高度的干性,可分化为其他 EC 亚型。预测分子 Xbp1 被确认为促进血管生成和恢复正常血管形态的关键调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77a1/9644469/e5f74d9e5567/11658_2022_399_Fig1_HTML.jpg

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