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香烟与电子烟气溶胶条件培养基对微流控心血管模型主动脉内皮细胞的影响。

Impact of cigarette versus electronic cigarette aerosol conditioned media on aortic endothelial cells in a microfluidic cardiovascular model.

机构信息

Department of Internal Medicine, Section On Molecular Medicine, Wake Forest School of Medicine, Winston-Salem, NC, 27157, USA.

Covance Laboratories Ltd, Genetic and Molecular Toxicology, Harrogate, UK.

出版信息

Sci Rep. 2021 Feb 26;11(1):4747. doi: 10.1038/s41598-021-83511-7.

Abstract

Atherosclerosis is a complex process involving progressive pathological events, including monocyte adhesion to the luminal endothelial surface. We have developed a functional in vitro adhesion assay using BioFlux microfluidic technology to investigate THP-1 (human acute monocytic leukaemia cell) monocyte adhesion to human aortic endothelial cells (HAECs). The effect of whole smoke conditioned media (WSCM) generated from University of Kentucky reference cigarette 3R4F, electronic cigarette vapour conditioned media (eVCM) from an electronic nicotine delivery system (ENDS) product (Vype ePen) and nicotine on monocyte adhesion to HAECs was evaluated. Endothelial monolayers were grown in microfluidic channels and exposed to 0-1500 ng/mL nicotine or nicotine equivalence of WSCM or eVCM for 24 h. Activated THP-1 cells were perfused through the channels and a perfusion, adhesion period and wash cycle performed four times with increasing adhesion period lengths (10, 20, 30 and 40 min). THP-1 cell adhesion was quantified by counting adherent cells. WSCM induced dose-dependent increases in monocyte adhesion compared to vehicle control. No such increases were observed for eVCM or nicotine. Adhesion regulation was linked to increased ICAM-1 protein expression. Staining of ICAM-1 in HAECs and CD11b (MAC-1) in THP-1 cells demonstrated adhesion molecule co-localisation in BioFlux plates. The ICAM-1 adhesion response to WSCM was downregulated by transfecting HAECs with ICAM-1 siRNA. We conclude that the BioFlux system is able to model human monocyte adhesion to primary human endothelial cells in vitro and WSCM drives the greatest increase in monocyte adhesion via a mechanism involving endothelial ICAM-1 expression.

摘要

动脉粥样硬化是一个涉及渐进性病理事件的复杂过程,包括单核细胞黏附在内皮腔表面。我们使用 BioFlux 微流控技术开发了一种功能性体外黏附测定法,以研究 THP-1(人急性单核细胞白血病细胞)单核细胞黏附到人主动脉内皮细胞(HAEC)。评估了来自肯塔基大学参考香烟 3R4F 的全烟雾条件培养基(WSCM)、来自电子尼古丁输送系统(ENDS)产品(Vype ePen)的电子烟蒸气条件培养基(eVCM)和尼古丁对 HAEC 上单核细胞黏附的影响。内皮单层在微流控通道中生长,并暴露于 0-1500ng/mL 尼古丁或 WSCM 或 eVCM 的尼古丁当量 24 小时。激活的 THP-1 细胞通过通道灌注,在增加的黏附期长度(10、20、30 和 40 分钟)下进行四次灌注、黏附期和洗涤循环。通过计数黏附细胞来定量 THP-1 细胞黏附。与载体对照相比,WSCM 诱导单核细胞黏附呈剂量依赖性增加。未观察到 eVCM 或尼古丁有这种增加。黏附调节与 ICAM-1 蛋白表达增加有关。HAECs 中 ICAM-1 的染色和 THP-1 细胞中的 CD11b(MAC-1)表明黏附分子在 BioFlux 板中共定位。用 ICAM-1 siRNA 转染 HAEC 可下调 WSCM 对 ICAM-1 的黏附反应。我们得出结论,BioFlux 系统能够在体外模拟人单核细胞黏附到原代人内皮细胞,并且 WSCM 通过涉及内皮细胞 ICAM-1 表达的机制驱动单核细胞黏附的最大增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2589/7910588/45138880288a/41598_2021_83511_Fig1_HTML.jpg

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