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人诱导多能干细胞来源的内皮细胞的流动诱导转录组重塑

Flow-Induced Transcriptomic Remodeling of Endothelial Cells Derived From Human Induced Pluripotent Stem Cells.

作者信息

Helle Emmi, Ampuja Minna, Antola Laura, Kivelä Riikka

机构信息

Stem Cells and Metabolism Research Program, Faculty of Medicine, University of Helsinki, Helsinki, Finland.

New Children's Hospital, and Pediatric Research Center Helsinki University Hospital, Helsinki, Finland.

出版信息

Front Physiol. 2020 Oct 15;11:591450. doi: 10.3389/fphys.2020.591450. eCollection 2020.

Abstract

The vascular system is essential for the development and function of all organs and tissues in our body. The molecular signature and phenotype of endothelial cells (EC) are greatly affected by blood flow-induced shear stress, which is a vital component of vascular development and homeostasis. Recent advances in differentiation of ECs from human induced pluripotent stem cells (hiPSC) have enabled development of experimental models of the vasculature containing cells from healthy individuals or from patients harboring genetic variants or diseases of interest. Here we have used hiPSC-derived ECs and bulk- and single-cell RNA sequencing to study the effect of flow on the transcriptomic landscape of hiPSC-ECs and their heterogeneity. We demonstrate that hiPS-ECs are plastic and they adapt to flow by expressing known flow-induced genes. Single-cell RNA sequencing showed that flow induced a more homogenous and homeostatically more stable EC population compared to static cultures, as genes related to cell polarization, barrier formation and glucose and fatty acid transport were induced. The hiPS-ECs increased both arterial and venous markers when exposed to flow. Interestingly, while in general there was a greater increase in the venous markers, one cluster with more arterial-like hiPS-ECs was detected. Single-cell RNA sequencing revealed that not all hiPS-ECs are similar even after sorting, but exposing them to flow increases their homogeneity. Since hiPS-ECs resemble immature ECs and demonstrate high plasticity in response to flow, they provide an excellent model to study vascular development.

摘要

血管系统对于我们身体中所有器官和组织的发育及功能至关重要。内皮细胞(EC)的分子特征和表型受到血流诱导的剪切应力的极大影响,而剪切应力是血管发育和体内平衡的重要组成部分。从人类诱导多能干细胞(hiPSC)分化内皮细胞的最新进展使得能够建立包含来自健康个体或携带感兴趣的基因变异或疾病患者细胞的血管实验模型。在这里,我们使用hiPSC衍生的内皮细胞以及批量和单细胞RNA测序来研究血流对hiPSC-EC转录组图谱及其异质性的影响。我们证明hiPS-EC具有可塑性,它们通过表达已知的血流诱导基因来适应血流。单细胞RNA测序表明,与静态培养相比,血流诱导出一个更均匀且体内平衡更稳定的内皮细胞群体,因为与细胞极化、屏障形成以及葡萄糖和脂肪酸转运相关的基因被诱导。hiPS-EC在暴露于血流时,动脉和静脉标志物均增加。有趣的是,虽然总体上静脉标志物的增加更大,但检测到一个具有更多动脉样hiPS-EC的细胞簇。单细胞RNA测序显示,即使经过分选,并非所有hiPS-EC都是相似的,但将它们暴露于血流会增加其同质性。由于hiPS-EC类似于未成熟的内皮细胞,并且在对血流的反应中表现出高可塑性,它们为研究血管发育提供了一个极好的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/329d/7593792/6e56b2a2d846/fphys-11-591450-g001.jpg

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