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Mouse Flk-1(+) Sca-1(-) Mesenchymal Stem Cells: Functional Plasticity In Vitro and Immunoregulation In Vivo

Publication ,  Journal Article
Zhu, XS; Yu, HJ; He, BX; Zhou, XN; Jiang, N; Zhang, HM; Wang, XL; Ren, J
Published in: Transplantation
2014

Objectives Mesenchymal stem cells (MSCs) represent a powerful tool in regenerative medicine because of their differentiation and migration capacities. Moreover, the immunomodulatory ability of MSCs may be used to develop therapies for the treatment of autoimmune diseases. Methods In this study, we isolated Flk-1(+)Sca-1(-) MSCs from bone marrow (bMSCs). Next, we studied their biological characteristics and immunologic functions. We also investigated their effects on graft-versus-host disease (GVHD) associated with allogeneic bone marrow transplantation in mice. Results Flk-1(+)Sca-1(-) bMSCs were able to differentiate into fat and cartilage cells, indicating that the isolated cells had stem cell properties. They could also suppress alloantigen-induced T cell proliferation in vitro in a dose-dependent manner. Infusion of bMSCs into allogeneic bone marrow-transplanted mice alleviated the lethal GVHD that occurred in control recipient mice. There was significantly lower mortality among the recipients of the Flk-1(+)Sca-1(-) bMSCs that also ameliorated the clinical symptoms and GVHD histopathology. Beneficial effects on GVHD by Flk-1(+)Sca-1(-) bMSCs were also observed when MSCs were engineered to express anti-inflammatory cytokines IL-4 and IL-10 and decrease expression of proinflammatory cytokines IFN-, TNF-, and IL-2. Conclusion Flk-1(+)Sca-1(-) bMSCs have stem cell properties and can efficiently ameliorate the GVHD associated with allogeneic bone marrow transplantation in mice.

Duke Scholars

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Published In

Transplantation

DOI

ISSN

0041-1337

Publication Date

2014

Volume

97

Start / End Page

509 / 517

Related Subject Headings

  • Surgery
  • 11 Medical and Health Sciences
 

Citation

APA
Chicago
ICMJE
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Zhu, X. S., Yu, H. J., He, B. X., Zhou, X. N., Jiang, N., Zhang, H. M., … Ren, J. (2014). Mouse Flk-1(+) Sca-1(-) Mesenchymal Stem Cells: Functional Plasticity In Vitro and Immunoregulation In Vivo. Transplantation, 97, 509–517. https://doi.org/10.1097/01.tp.0000442775.46133.38
Zhu, X. S., H. J. Yu, B. X. He, X. N. Zhou, N. Jiang, H. M. Zhang, X. L. Wang, and J. Ren. “Mouse Flk-1(+) Sca-1(-) Mesenchymal Stem Cells: Functional Plasticity In Vitro and Immunoregulation In Vivo.” Transplantation 97 (2014): 509–17. https://doi.org/10.1097/01.tp.0000442775.46133.38.
Zhu XS, Yu HJ, He BX, Zhou XN, Jiang N, Zhang HM, et al. Mouse Flk-1(+) Sca-1(-) Mesenchymal Stem Cells: Functional Plasticity In Vitro and Immunoregulation In Vivo. Transplantation. 2014;97:509–17.
Zhu, X. S., et al. “Mouse Flk-1(+) Sca-1(-) Mesenchymal Stem Cells: Functional Plasticity In Vitro and Immunoregulation In Vivo.” Transplantation, vol. 97, 2014, pp. 509–17. Manual, doi:10.1097/01.tp.0000442775.46133.38.
Zhu XS, Yu HJ, He BX, Zhou XN, Jiang N, Zhang HM, Wang XL, Ren J. Mouse Flk-1(+) Sca-1(-) Mesenchymal Stem Cells: Functional Plasticity In Vitro and Immunoregulation In Vivo. Transplantation. 2014;97:509–517.

Published In

Transplantation

DOI

ISSN

0041-1337

Publication Date

2014

Volume

97

Start / End Page

509 / 517

Related Subject Headings

  • Surgery
  • 11 Medical and Health Sciences