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Experimental and Therapeutic Medicine
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Print ISSN: 1792-0981 Online ISSN: 1792-1015
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February-2017 Volume 13 Issue 2

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International Journal of Molecular Medicine

International Journal of Molecular Medicine

International Journal of Molecular Medicine is an international journal devoted to molecular mechanisms of human disease.

International Journal of Oncology

International Journal of Oncology

International Journal of Oncology is an international journal devoted to oncology research and cancer treatment.

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Molecular Medicine Reports

Covers molecular medicine topics such as pharmacology, pathology, genetics, neuroscience, infectious diseases, molecular cardiology, and molecular surgery.

Oncology Reports

Oncology Reports

Oncology Reports is an international journal devoted to fundamental and applied research in Oncology.

Experimental and Therapeutic Medicine

Experimental and Therapeutic Medicine

Experimental and Therapeutic Medicine is an international journal devoted to laboratory and clinical medicine.

Oncology Letters

Oncology Letters

Oncology Letters is an international journal devoted to Experimental and Clinical Oncology.

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Explores a wide range of biological and medical fields, including pharmacology, genetics, microbiology, neuroscience, and molecular cardiology.

Molecular and Clinical Oncology

Molecular and Clinical Oncology

International journal addressing all aspects of oncology research, from tumorigenesis and oncogenes to chemotherapy and metastasis.

World Academy of Sciences Journal

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Multidisciplinary open-access journal spanning biochemistry, genetics, neuroscience, environmental health, and synthetic biology.

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International Journal of Functional Nutrition

Open-access journal combining biochemistry, pharmacology, immunology, and genetics to advance health through functional nutrition.

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International Journal of Epigenetics

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VEGF treatment promotes bone marrow‑derived CXCR4+ mesenchymal stromal stem cell differentiation into vessel endothelial cells

  • Authors:
    • Qiming Li
    • Shudong Xia
    • Hanyun Fang
    • Jiansheng Pan
    • Yinfeng Jia
    • Gang Deng
  • View Affiliations / Copyright

    Affiliations: Department of Cardiology, The Fourth Affiliated Hospital of Zhejiang University School of Medicine, Yiwu, Zhejiang 322000, P.R. China, Department of Cardiology, The Second People's Hospital of Yueqing, Yueqing, Zhejiang 325608, P.R. China, The Ningbo Central Blood Station, Ningbo, Zhejiang 315040, P.R. China
    Copyright: © Li et al. This is an open access article distributed under the terms of Creative Commons Attribution License.
  • Pages: 449-454
    |
    Published online on: January 2, 2017
       https://doi.org/10.3892/etm.2017.4019
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Abstract

Stem/progenitor cells serve an important role in the process of blood vessel repair. However, the mechanism of vascular repair mediated by C‑X‑C chemokine receptor type 4‑positive (CXCR4+) bone marrow‑derived mesenchymal stem cells (BMSCs) following myocardial infarction remains unclear. The aim of the present study was to investigate the effects of vascular endothelial growth factor (VEGF) on vessel endothelial differentiation from BMSCs. CXCR4+ BMSCs were isolated from the femoral bone marrow of 2‑month‑old mice and the cells were treated with VEGF. Expression of endothelial cell markers and the functional properties were assessed by reverse transcription‑quantitative polymerase chain reaction, flow cytometry and vascular formation analyses. The results indicated that the CXCR4+ BMSCs from femoral bone marrow cells expressed putative cell surface markers of mesenchymal stem cells. Treatment with VEGF induced platelet/endothelial cell adhesion molecule‑1 (PECAM‑1) and von Willebrand factor (vWF) expression at the transcriptional and translational levels, compared with untreated controls. Moreover, VEGF treatment induced CXCR4+ BMSCs to form hollow tube‑like structures on Matrigel, suggesting that the differentiated endothelial cells had the functional properties of blood vessels. The results demonstrate that the CXCR4+ BMSCs were able to differentiate into vessel endothelial cells following VEGF treatment. For cell transplantation in vascular disease, it may be concluded that CXCR4+ BMSCs are a novel source of endothelial progenitor cells with high potential for application in vascular repair.

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Copy and paste a formatted citation
Spandidos Publications style
Li Q, Xia S, Fang H, Pan J, Jia Y and Deng G: VEGF treatment promotes bone marrow‑derived CXCR4+ mesenchymal stromal stem cell differentiation into vessel endothelial cells. Exp Ther Med 13: 449-454, 2017.
APA
Li, Q., Xia, S., Fang, H., Pan, J., Jia, Y., & Deng, G. (2017). VEGF treatment promotes bone marrow‑derived CXCR4+ mesenchymal stromal stem cell differentiation into vessel endothelial cells. Experimental and Therapeutic Medicine, 13, 449-454. https://doi.org/10.3892/etm.2017.4019
MLA
Li, Q., Xia, S., Fang, H., Pan, J., Jia, Y., Deng, G."VEGF treatment promotes bone marrow‑derived CXCR4+ mesenchymal stromal stem cell differentiation into vessel endothelial cells". Experimental and Therapeutic Medicine 13.2 (2017): 449-454.
Chicago
Li, Q., Xia, S., Fang, H., Pan, J., Jia, Y., Deng, G."VEGF treatment promotes bone marrow‑derived CXCR4+ mesenchymal stromal stem cell differentiation into vessel endothelial cells". Experimental and Therapeutic Medicine 13, no. 2 (2017): 449-454. https://doi.org/10.3892/etm.2017.4019
Copy and paste a formatted citation
x
Spandidos Publications style
Li Q, Xia S, Fang H, Pan J, Jia Y and Deng G: VEGF treatment promotes bone marrow‑derived CXCR4+ mesenchymal stromal stem cell differentiation into vessel endothelial cells. Exp Ther Med 13: 449-454, 2017.
APA
Li, Q., Xia, S., Fang, H., Pan, J., Jia, Y., & Deng, G. (2017). VEGF treatment promotes bone marrow‑derived CXCR4+ mesenchymal stromal stem cell differentiation into vessel endothelial cells. Experimental and Therapeutic Medicine, 13, 449-454. https://doi.org/10.3892/etm.2017.4019
MLA
Li, Q., Xia, S., Fang, H., Pan, J., Jia, Y., Deng, G."VEGF treatment promotes bone marrow‑derived CXCR4+ mesenchymal stromal stem cell differentiation into vessel endothelial cells". Experimental and Therapeutic Medicine 13.2 (2017): 449-454.
Chicago
Li, Q., Xia, S., Fang, H., Pan, J., Jia, Y., Deng, G."VEGF treatment promotes bone marrow‑derived CXCR4+ mesenchymal stromal stem cell differentiation into vessel endothelial cells". Experimental and Therapeutic Medicine 13, no. 2 (2017): 449-454. https://doi.org/10.3892/etm.2017.4019
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