Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5685020 | Translational Research | 2017 | 24 Pages |
Abstract
Vascular precursor cells include stem cells and progenitor cells giving rise to all mature cell types in the wall of blood vessels. When tissue injury occurs, local hypoxia and inflammation result in the generation of vasculogenic mediators which orchestrate migration of vascular precursor cells from their niche environment to the site of tissue injury. The intricate crosstalk among signaling pathways coordinates vascular precursor cell proliferation and differentiation during neovascularization. Establishment of normal blood perfusion plays an essential role in the effective repair of the injured tissue. In recent years, studies on molecular mechanisms underlying the regulation of vascular precursor cell function have achieved substantial progress, which promotes exploration of vascular precursor cell-based approaches to treat chronic wounds and ischemic diseases in vital organ systems. Verification of safety and establishment of specific guidelines for the clinical application of vascular precursor cell-based therapy remain major challenges in the field.
Keywords
PI3KHSCIL-6PBMCEPCCCRSMCCACCPMSPCGFPeGFPbFGFDAMPICAM-1SDF-1FGFMSCvWFMMP-9HUVECPGE2MCP-1MMP-2eNOSIL-1βIL-10IGF-1PAMPPKCNG2S1PSCA1GM-CSFPRRSCFc-kitPcGHIFIL-1αRAMP1receptor activity-modifying protein 1VEGFR-2PDGFHLA-DRCXCL12VEGFR-1Oct4HREIL-1RIL-6RIL-18IL-8LRP1IFNγECFCPGFCarboxypeptidase MVCAM-1PEDFTIE2KGFM-CSFCXCL16PDGFRCLFαSMATβRCXCRIL-3Flt3LPKDPLC-γKDRFms-like tyrosine kinase-1DR37AAD7-aminoactinomycin DNotch1TNFSF15SmPCCEACAM1JMJD6RGS5BCRP1CSPG4lacZVascular endothelial growth inhibitorCXC ReceptorFLK1Carcinoembryonic antigen-related cell adhesion molecule 1SMembTNFTGF-βNAP-2C1Ppigment epithelium–derived factorUlex europaeus agglutinin-1ERK1/2MAPKCEPalpha smooth muscle actinALKSTATStem Cell Antigen-1neural/glial antigen 2Angiotensin IIangiopoietinAktSphingosine-1-phosphateinsulin-like growth factor-1HAECAnginterferon-gammaInterleukin-8Interleukin-10Interleukin-18interleukin-6interleukin-1 alphaInterleukin-1 betaInterleukin-3β-galactosidasetransforming growth factor-betatransforming growth factor beta receptorSide populationESCLineageClusters of DifferentiationAng IICeramide-1-phosphatehuman aortic endothelial cellHuman umbilical vein endothelial cellStem/progenitor cellHematopoietic stem cellEndothelial colony-forming cellPeripheral blood mononuclear cellSmooth muscle cellEmbryonic stem cellMesenchymal stem cellEndothelial progenitor cellMIFplacenta growth factorstem cell growth factorKeratinocyte growth factorhypoxia-inducible transcription factorVon Willebrand factorMacrophage migration inhibitory factorgranulocyte-macrophage colony-stimulating factorsmooth muscle Hypoxia-response elementstromal cell-derived factor-1granulocyte colony-stimulating factorVascular endothelial growth factorVascular Endothelial Growth Factor (VEGF)platelet-derived growth factorfibroblast growth factorbasic fibroblast growth factoroctamer-binding transcription factor 4G-CSFtumor necrosis factorphosphatidylinositol-3 kinaseSystemic lupus erythematosusSLELinFlt3 ligandkit ligandCARVEGImacrophage colony-stimulating factorSignal transducer and activator of transcriptionintercellular adhesion molecule-1vascular cell adhesion molecule-1nitric oxide synthasegreen-fluorescent proteinmonocyte chemoattractant protein-1enhanced green fluorescent proteinprotein kinase Bprotein kinase DProtein kinase Cmitogen-activated protein kinaseProstaglandin E2Keratinocyte chemoattractantchondroitin sulfate proteoglycan 4Kitlkinase insert domain receptoractivin receptor-like kinaseGrovascular endothelial growth factor receptor-1Vascular endothelial growth factor receptor-2Interleukin-6 receptorinterleukin-1 receptorplatelet-derived growth factor receptorpattern recognition receptors
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Authors
Xin Shi, Weihong Zhang, Liya Yin, William M. Chilian, Jessica Krieger, Ping Zhang,