The isolation of VCAM-1+ endothelial cell-derived extracellular vesicles using microfluidics.

Extracellular vesicles and circulating nucleic acids Pub Date : 2024-02-08 eCollection Date: 2024-01-01 DOI:10.20517/evcna.2023.51
Naveed Akbar, Evelyn Grace Luciani, Raheel Ahmad, Dasol Lee, Sara Veiga, Daniel Christopher Rabe, Shannon Leigh Stott
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Abstract

Background: Vascular cell adhesion molecule-1 (VCAM-1+) endothelial cell-derived extracellular vesicles (EC-EVs) are augmented in cardiovascular disease, where they can signal the deployment of immune cells from the splenic reserve. Endothelial cells in culture activated with pro-inflammatory tumor necrosis factor-α (TNF-a) also release VCAM-1+ EC-EVs. However, isolating VCAM-1+ EC-EVs from conditioned cell culture media for subsequent in-depth analysis remains challenging. Aim: We utilized the extracellular vesicles (EV) microfluidics herringbone chip (EVHB-Chip), coated with anti-VCAM-1 antibodies, for selective capture of VCAM-1+ cells and EC-EVs. Methods and Results: Engineered EA.hy926 endothelial cells overexpressing VCAM-1 (P < 0.001 versus control) showed increased binding to the VCAM-1- EVHB-Chip versus an IgG device. TNF-α-stimulated human umbilical cord vein endothelial cells (HUVECs) exhibited elevated VCAM-1 protein levels (P < 0.001) and preferential binding to the VCAM-1- EVHB-Chip versus the IgG device. HUVECs stimulated with TNF-α showed differential gene expression of intercellular adhesion molecule-1 (ICAM-1) (P < 0.001) and VCAM-1 (P < 0.001) by digital droplet PCR versus control cells. HUVEC-derived EC-EVs were positive for CD9, CD63, HSP70, and ALIX and had a modal size of 83.5 nm. Control and TNF-α-stimulated HUVEC-derived EC-EV cultures were captured on the VCAM-1- EVHB-Chip, demonstrating selective capture. VCAM-1+ EC-EV were significantly enriched for ICAM-1 (P < 0.001) mRNA transcripts. Conclusion: This study presents a novel approach using the EVHB-Chip, coated with anti-VCAM-1 antibodies and digital droplet PCR for the study of VCAM-1+ EC-EVs. Isolation of VCAM-1+ EC-EV from heterogeneous sources such as conditioned cell culture media holds promise for subsequent detailed characterization, and may facilitate the study of VCAM-1+ EC-EVs in cardiovascular and metabolic diseases, for disease monitoring and therapeutic insights.

微流体技术分离VCAM-1+内皮细胞来源的细胞外囊泡。
背景:血管细胞粘附分子-1 (VCAM-1+)内皮细胞来源的细胞外囊泡(ec - ev)在心血管疾病中增加,它们可以发出脾储备免疫细胞部署的信号。被促炎肿瘤坏死因子-α (TNF-a)激活的内皮细胞也释放VCAM-1+ ec - ev。然而,从条件细胞培养基中分离VCAM-1+ ec - ev进行后续深入分析仍然具有挑战性。目的:利用包被抗VCAM-1抗体的细胞外囊泡(EV)微流控人字芯片(EVHB-Chip)对VCAM-1+细胞和ec -EV进行选择性捕获。方法和结果:与IgG装置相比,过表达VCAM-1的工程EA.hy926内皮细胞与VCAM-1- EVHB-Chip的结合增加(P < 0.001)。TNF-α刺激的人脐静脉内皮细胞(HUVECs)表现出VCAM-1蛋白水平升高(P < 0.001),与IgG装置相比,更倾向于与VCAM-1- EVHB-Chip结合。数字液滴PCR结果显示,TNF-α刺激的HUVECs细胞间粘附分子-1 (ICAM-1)和VCAM-1基因表达与对照细胞差异显著(P < 0.001)。huvec衍生的ec - ev阳性表达CD9、CD63、HSP70和ALIX,模态尺寸为83.5 nm。在VCAM-1- EVHB-Chip上捕获对照和TNF-α刺激的huvec衍生的EC-EV培养物,显示出选择性捕获。VCAM-1+ EC-EV显著富集ICAM-1 mRNA转录本(P < 0.001)。结论:利用EVHB-Chip包被抗VCAM-1抗体和数字液滴PCR技术研究VCAM-1+ ec - ev的新方法。从异质来源(如条件细胞培养基)中分离VCAM-1+ EC-EV有望进行后续的详细表征,并可能促进VCAM-1+ EC-EV在心血管和代谢疾病中的研究,从而获得疾病监测和治疗见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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