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鞘氨醇-1-磷酸通过 AMPK 依赖的机制促进人微血管内皮细胞的屏障稳定作用。

Sphingosine-1-phosphate promotes barrier-stabilizing effects in human microvascular endothelial cells via AMPK-dependent mechanisms.

机构信息

Department of Anaesthesiology and Intensive Care Medicine, Jena University Hospital, Jena, Germany; Septomics Research Centre, Jena University Hospital, Jena, Germany; Center for Sepsis Control and Care, Jena University Hospital, Jena, Germany.

Department of Anaesthesiology and Intensive Care Medicine, Jena University Hospital, Jena, Germany; Septomics Research Centre, Jena University Hospital, Jena, Germany.

出版信息

Biochim Biophys Acta Mol Basis Dis. 2019 Apr 1;1865(4):774-781. doi: 10.1016/j.bbadis.2018.12.022. Epub 2019 Jan 17.

Abstract

Breakdown of the endothelial barrier is a critical step in the development of organ failure in severe inflammatory conditions such as sepsis. Endothelial cells from different tissues show phenotypic variations which are often neglected in endothelial research. Sphingosine-1-phosphate (S1P) and AMP-dependent kinase (AMPK) have been shown to protect the endothelium and phosphorylation of AMPK by S1P was shown in several cell types. However, the role of the S1P-AMPK interrelationship for endothelial barrier stabilization has not been investigated. To assess the role of the S1P-AMPK signalling axis in this context, we established an in vitro model allowing real-time monitoring of endothelial barrier function in human microvascular endothelial cells (HMEC-1) and murine glomerular endothelial cells (GENCs) with the electric cell-substrate impedance sensing (ECIS™) system. Following the disruption of the cell barrier by co-administration of LPS, TNF-α, IL-1ß, IFN-γ, and IL-6, we demonstrated self-recovery of the disrupted barrier in HMEC-1, while the barrier remained compromised in GENCs. Under physiological conditions we observed a rapid phosphorylation of AMPK in HMEC-1 stimulated with S1P, but not in GENCs. Consistently, S1P enhanced the basal endothelial barrier in HMEC-1 exclusively. siRNA-mediated knockdown of AMPK in HMEC-1 led to a less pronounced barrier enhancement. Thus we present evidence for a functional role of AMPK in S1P-mediated barrier stabilization in HMEC-1 and we provide insight into cell-type specific differences of the S1P-AMPK-interrelationship, which might influence the development of interventional strategies targeting endothelial barrier dysfunction.

摘要

内皮屏障的破坏是严重炎症情况下器官衰竭发展的关键步骤,如败血症。不同组织的内皮细胞表现出表型变异,而这些变异在内皮研究中经常被忽视。已显示鞘氨醇-1-磷酸 (S1P) 和 AMP 依赖性激酶 (AMPK) 可保护内皮,并且 S1P 可使几种细胞类型中的 AMPK 磷酸化。然而,S1P-AMPK 相互关系对于内皮屏障稳定的作用尚未得到研究。为了评估 S1P-AMPK 信号轴在这种情况下的作用,我们建立了一种体外模型,允许使用电细胞-底物阻抗感应 (ECIS™) 系统实时监测人微血管内皮细胞 (HMEC-1) 和鼠肾小球内皮细胞 (GENCs) 的内皮屏障功能。在用 LPS、TNF-α、IL-1β、IFN-γ 和 IL-6 共同给药破坏细胞屏障后,我们证明了 HMEC-1 中受损屏障的自我恢复,而 GENCs 中的屏障仍然受损。在生理条件下,我们观察到 S1P 刺激的 HMEC-1 中 AMPK 的快速磷酸化,但在 GENCs 中则没有。一致地,S1P 仅增强 HMEC-1 中的基础内皮屏障。在 HMEC-1 中通过 siRNA 介导的 AMPK 敲低导致屏障增强不那么明显。因此,我们为 AMPK 在 S1P 介导的 HMEC-1 中屏障稳定中的功能作用提供了证据,并深入了解 S1P-AMPK 相互关系的细胞类型特异性差异,这可能影响针对内皮屏障功能障碍的干预策略的发展。

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