Sphingosine-1-Phosphate Improves the Biological Features of Mouse Bone Marrow-Derived EPCs Partially through PI3K/AKT/eNOS/NO Pathway

Sphingosine-1-phosphate (S1P), a bioactive sphingolipid, is recognized as a critical regulator in physiological and pathophysiological processes of atherosclerosis (AS). However, the underlying mechanism remains unclear. As the precursor cells of endothelial cells (ECs), endothelial progenitor cells...

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Main Authors: Xia Wang, Enxin Zhan, Guohua Lu, Qingjie Mu, Tianliang Zhang, Nana Yang
Format: Article
Language:English
Published: MDPI AG 2019-06-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/24/13/2404
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spelling doaj-597fdde2ac3c422382d1b0f316990af72020-11-25T00:42:41ZengMDPI AGMolecules1420-30492019-06-012413240410.3390/molecules24132404molecules24132404Sphingosine-1-Phosphate Improves the Biological Features of Mouse Bone Marrow-Derived EPCs Partially through PI3K/AKT/eNOS/NO PathwayXia Wang0Enxin Zhan1Guohua Lu2Qingjie Mu3Tianliang Zhang4Nana Yang5School of Public Health and Management, Weifang Medical University, Weifang 261053, ChinaInstitute of Preschool Education, Jinan Preschool Education College, Jinan 250307, ChinaDepartment of Psychology, Weifang Medical University, Weifang 261053, ChinaSchool of Clinical Medicine, Weifang Medical University, Weifang 261053, ChinaExperimental Center for Medical Research, Weifang Medical University, Weifang 261053, ChinaExperimental Center for Medical Research, Weifang Medical University, Weifang 261053, ChinaSphingosine-1-phosphate (S1P), a bioactive sphingolipid, is recognized as a critical regulator in physiological and pathophysiological processes of atherosclerosis (AS). However, the underlying mechanism remains unclear. As the precursor cells of endothelial cells (ECs), endothelial progenitor cells (EPCs) can prevent AS development through repairing endothelial monolayer impaired by proatherogenic factors. The present study investigated the effects of S1P on the biological features of mouse bone marrow-derived EPCs and the underlying mechanism. The results showed that S1P improved cell viability, adhesion, and nitric oxide (NO) release of EPCs in a bell-shaped manner, and migration and tube formation dose-dependently. The aforementioned beneficial effects of S1P on EPCs could be inhibited by the phosphatidylinositol 3-kinase (PI3K) inhibitor of LY294002 and nitric oxide synthase (NOS) inhibitor of <i>N</i>&#8217;-nitro-L-arginine-methyl ester hydrochloride (L-NAME). The inhibitor of LY294002 inhibited S1P-stimulated activation of phosphorylated protein kinase B (AKT) (p-AKT) and endothelial nitric oxide synthase (eNOS) (p-eNOS), and down-regulated the level of eNOS significantly. The results suggest that S1P improves the biological features of EPCs partially through PI3K/AKT/eNOS/NO signaling pathway.https://www.mdpi.com/1420-3049/24/13/2404sphingosine-1-phosphateendothelial progenitor cellsatherosclerosis
collection DOAJ
language English
format Article
sources DOAJ
author Xia Wang
Enxin Zhan
Guohua Lu
Qingjie Mu
Tianliang Zhang
Nana Yang
spellingShingle Xia Wang
Enxin Zhan
Guohua Lu
Qingjie Mu
Tianliang Zhang
Nana Yang
Sphingosine-1-Phosphate Improves the Biological Features of Mouse Bone Marrow-Derived EPCs Partially through PI3K/AKT/eNOS/NO Pathway
Molecules
sphingosine-1-phosphate
endothelial progenitor cells
atherosclerosis
author_facet Xia Wang
Enxin Zhan
Guohua Lu
Qingjie Mu
Tianliang Zhang
Nana Yang
author_sort Xia Wang
title Sphingosine-1-Phosphate Improves the Biological Features of Mouse Bone Marrow-Derived EPCs Partially through PI3K/AKT/eNOS/NO Pathway
title_short Sphingosine-1-Phosphate Improves the Biological Features of Mouse Bone Marrow-Derived EPCs Partially through PI3K/AKT/eNOS/NO Pathway
title_full Sphingosine-1-Phosphate Improves the Biological Features of Mouse Bone Marrow-Derived EPCs Partially through PI3K/AKT/eNOS/NO Pathway
title_fullStr Sphingosine-1-Phosphate Improves the Biological Features of Mouse Bone Marrow-Derived EPCs Partially through PI3K/AKT/eNOS/NO Pathway
title_full_unstemmed Sphingosine-1-Phosphate Improves the Biological Features of Mouse Bone Marrow-Derived EPCs Partially through PI3K/AKT/eNOS/NO Pathway
title_sort sphingosine-1-phosphate improves the biological features of mouse bone marrow-derived epcs partially through pi3k/akt/enos/no pathway
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2019-06-01
description Sphingosine-1-phosphate (S1P), a bioactive sphingolipid, is recognized as a critical regulator in physiological and pathophysiological processes of atherosclerosis (AS). However, the underlying mechanism remains unclear. As the precursor cells of endothelial cells (ECs), endothelial progenitor cells (EPCs) can prevent AS development through repairing endothelial monolayer impaired by proatherogenic factors. The present study investigated the effects of S1P on the biological features of mouse bone marrow-derived EPCs and the underlying mechanism. The results showed that S1P improved cell viability, adhesion, and nitric oxide (NO) release of EPCs in a bell-shaped manner, and migration and tube formation dose-dependently. The aforementioned beneficial effects of S1P on EPCs could be inhibited by the phosphatidylinositol 3-kinase (PI3K) inhibitor of LY294002 and nitric oxide synthase (NOS) inhibitor of <i>N</i>&#8217;-nitro-L-arginine-methyl ester hydrochloride (L-NAME). The inhibitor of LY294002 inhibited S1P-stimulated activation of phosphorylated protein kinase B (AKT) (p-AKT) and endothelial nitric oxide synthase (eNOS) (p-eNOS), and down-regulated the level of eNOS significantly. The results suggest that S1P improves the biological features of EPCs partially through PI3K/AKT/eNOS/NO signaling pathway.
topic sphingosine-1-phosphate
endothelial progenitor cells
atherosclerosis
url https://www.mdpi.com/1420-3049/24/13/2404
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