| Literature DB >> 31065272 |
Changming Xie1,2, Liu Ouyang2, Jie Chen3, Huanji Zhang1, Pei Luo4, Jingfeng Wang2, Hui Huang1,2.
Abstract
Vascular calcification (VC), characterized by hydroxyapatite crystal depositing in the vessel wall, is a common pathological condition shared by many chronic diseases and an independent risk factor for cardiovascular events. Recently, VC is regarded as an active, dynamic cell-mediated process, during which calcifying cell transition is critical. Mesenchymal stem cells (MSCs), with a multidirectional differentiation ability and great potential for clinical application, play a duplex role in the VC process. MSCs facilitate VC mainly through osteogenic transformation and apoptosis. Meanwhile, several studies have reported the protective role of MSCs. Anti-inflammation, blockade of the BMP2 signal, downregulation of the Wnt signal, and antiapoptosis through paracrine signaling are possible mechanisms. This review displays the evidence both on the facilitating role and on the protective role of MSCs, then discusses the key factors determining this divergence.Entities:
Year: 2019 PMID: 31065272 PMCID: PMC6466855 DOI: 10.1155/2019/2875189
Source DB: PubMed Journal: Stem Cells Int Impact factor: 5.443
Chemokines of MSCs.
| Factors | Main characters | Reference |
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| TGF- | (1) TGF- | [ |
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| PDGF-BB | (1) PDGF has the highest effect among other cytokines (SDF-1a, CXCL16, MIP, etc.), and PDGF-BB is the most strong one among PDGF isoforms in vitro | [ |
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| PDGF-AA | (1) PDGF-AA's chemotaxis effect is lower than that of PDGF-BB, but stronger in recruiting osteogenic differentiated progenitor cells | [ |
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| SDF-1 | (1) SDF-1 can be released by the endothelium and ischemic myocardium in myocardial infarction, inflammatory cardiomyopathy, and vascular injury. This cytokine also correlated with the severity of calcification | [ |
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| BMP2/4/7 | It has only been proven in vitro | [ |
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| FGF | In vivo researches of FGF chemotaxis mainly focus on pulmonary fibrosis | [ |
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| VEGF | (1) Chemotactic activity of VEGF has been proven in vitro. And VEGF can be released by multiple myeloma and glioma cells to improve vascularization | [ |
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| G-CSF | (1) In vivo chemotactic activity of G-CSF is controversial | [ |
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| TNF- | These cytokines are associated with inflammation and work through the NF- | [ |
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| IGF-1 | Chemotactic activity of IGF-1 is not so assuring. Pretreatment seems more reliable | [ |
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| PTH | PTH can improve osteoporosis in mice and men and spine injuries | [ |
The table shows chemokines of MSCs with a brief introduction of their characters. TGF: transforming growth factor; PDGF: platelet-derived growth factor; SDF: stromal cell-derived factor; BMP: bone morphogenetic protein; FGF: fibroblast growth factor; VEGF: vascular endothelial growth factor; G-CSF: granulocyte colony-stimulating factor; TNF: tumor necrosis factor; IL: interleukin; IGF: insulin-like growth factor; PTH: parathyroid hormone.
Figure 1A brief illustration of MSCs and VC and alternation of the microenvironment. In the damaged vessel under the calcification process, SDF-1, PDGF, and TGF-β are released to recruit MSCs from bone marrow and circulation. (a) In this microenvironment, damage of the vessel wall is slight and the effect of oxidative stress and inflammation is very minimal. In addition, fewer VSMCs have been induced to osteoblasts. MSCs are viable and inhibit VSMC osteogenesis differentiation by a paracrine mechanism. (b) In this microenvironment, the vessel is damaged a lot by heavy oxidative stress and inflammation. Several phenotypic transformations of VSMCs have taken place. MSCs tend to undergo apoptosis and differentiate into osteoblast-like cells, which facilitate the VC progress.
Figure 2How the MSCs propel the calcification process: in the calcification microenvironment, MSCs are induced to differentiate into osteoblast-like cells, which synthesize the osteogenesis matrix. On the other hand, under adverse condition, MSC apoptosis or necrosis happens. Then, the fragments serve as a core of calcification deposit. Meanwhile, less MSCs differentiate into VSMCs and ECs, which creates a vicious cycle.