Novel protocol for the transcriptomic analysis of endothelial extracellular vesicles in atherosclerosis

Goren Saenz-Pipaon , Ana Cenarro , Jon Zazpe , Miriam Goñi-Oloriz , Esther Martinez-Aguilar , Florencio J.D. Machado , Francesco P. Marchese , Josune Orbe , Natalia López-Andrés , Fernando Civeira , Jose A. Paramo , David Lara-Astiaso , Carmen Roncal
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Abstract

Introduction

Despite the key role of the endothelium in atherosclerosis, there are no direct techniques for its analysis. The study of extracellular vesicles of endothelial origin (EEVs), might lead to the identification of molecular signatures and early biomarkers of atherosclerosis. The aim of this work was to set up the methods for EEVs separation and transcriptomic analysis.

Methods

We adapted an antibody-magnetic-bead based immunocapture protocol for plasma EEVs separation from control (G1), subclinical atherosclerosis (G2) and peripheral artery disease subjects (PAD) (G3), and modified an ultra-low input RNASeq method (n = 5/group). By bioinformatics analysis we compared the transcriptome of plasma EEVs with that of human aortic endothelial cells (TeloHAECs), and then, searched for differentially expressed genes (DEG) among EEVs of G1, G2 and G3. From those DEG, UCP2 was selected for further validation in plasma EVs (qPCR), and in vitro, in stimulated TeloHAECs (IL-1β, TNFα, oxLDL and hypoxia).

Results

The RNASeq analysis of plasma EEVs rendered 1667 genes enriched in transcripts expressed by TeloHAECs (NES: 1.93, p adjust = 1.4e−73). One hundred seventy DEGs were identified between G2 vs G1, and 180 between G3 vs G1, of which 17 were similarly expressed in G2 and G3 vs control, including UCP2. IL-1β and TNFα (10 ng/mL, p < 0.05), hypoxia (1% O2, p = 0.05) and oxLDL (100 μg/mL, p = 0.055) reduced UCP2 expression in TeloHAECs.

Conclusions

We set up a protocol for EEVs separation and sequencing that might be useful for the identification of early markers of endothelial dysfunction in atherosclerosis.
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动脉粥样硬化中内皮细胞外囊泡转录组分析的新方案
导言尽管内皮在动脉粥样硬化中起着关键作用,但目前还没有直接分析内皮的技术。研究内皮细胞外囊泡(EEVs)可能会发现动脉粥样硬化的分子特征和早期生物标志物。这项工作的目的是建立 EEVs 分离和转录组分析的方法。方法我们采用了基于抗体-磁珠的免疫捕获方案,从对照组(G1)、亚临床动脉粥样硬化组(G2)和外周动脉疾病组(PAD)(G3)分离血浆 EEVs,并修改了超低输入 RNASeq 方法(n = 5/组)。通过生物信息学分析,我们比较了血浆EEV和人主动脉内皮细胞(TeloHAECs)的转录组,然后在G1、G2和G3的EEV中寻找差异表达基因(DEG)。结果对血浆 EEVs 进行 RNASeq 分析后,发现 TeloHAECs 表达的转录本中富集了 1667 个基因(NES:1.93,p adjust = 1.4e-73)。在 G2 与 G1 之间发现了 170 个 DEGs,在 G3 与 G1 之间发现了 180 个 DEGs,其中 17 个基因在 G2 和 G3 与对照组中表达相似,包括 UCP2。IL-1β和TNFα(10 ng/mL,p < 0.05)、缺氧(1% O2,p = 0.05)和oxLDL(100 μg/mL,p = 0.055)降低了UCP2在TeloHAECs中的表达。
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