Cell Senescence Abrogates the Therapeutic Potential of Human Mesenchymal Stem Cells in the Lethal Endotoxemia Model

Author:

Carlos Sepúlveda Juan1,Tomé María1,Eugenia Fernández María2,Delgado Mario3,Campisi Judith4,Bernad Antonio15,González Manuel A.1

Affiliation:

1. Department of Cardiovascular Development and Repair Centro Nacional de Investigaciones Cardiovasculares Carlos III (CNIC), Madrid, Spain

2. Instituto de Investigación Sanitaria Gregorio Marañón, Madrid, Spain

3. Institute for Parasitology and Biomedicine IPBLN-CSIC, Granada, Spain

4. Buck Institute for Research on Aging, Novato, California, USA

5. Department of Immunology and Oncology Centro Nacional de Biotecnología (CNB-CSIC), Madrid, Spain

Abstract

Abstract Mesenchymal stem cells (MSCs) possess unique paracrine and immunosuppressive properties, which make them useful candidates for cellular therapy. Here, we address how cellular senescence influences the therapeutic potential of human MSCs (hMSCs). Senescence was induced in bone marrow-derived hMSC cultures with gamma irradiation. Control and senescent cells were tested for their immunoregulatory activity in vitro and in vivo, and an extensive molecular characterization of the phenotypic changes induced by senescence was performed. We also compared the gene expression profiles of senescent hMSCs with a collection of hMSCs used in an ongoing clinical study of Graft Versus Host disease (GVHD). Our results show that senescence induces extensive phenotypic changes in hMSCs and abrogates their protective activity in a murine model of LPS-induced lethal endotoxemia. Although senescent hMSCs retain an ability to regulate the inflammatory response on macrophages in vitro, and, in part retain their capacity to significantly inhibit lymphocyte proliferation, they have a severely impaired migratory capacity in response to proinflammatory signals, which is associated with an inhibition of the AP-1 pathway. Additionally, expression analysis identified PLEC, C8orf48, TRPC4, and ZNF14, as differentially regulated genes in senescent hMSCs that were similarly regulated in those hMSCs which failed to produce a therapeutic effect in a GVHD trial. All the observed phenotypic alterations were confirmed in replicative-senescent hMSCs. In conclusion, this study highlights important changes in the immunomodulatory phenotype of senescent hMSCs and provides candidate gene signatures which may be useful to evaluate the therapeutic potential of hMSCs used in future clinical studies. Stem Cells  2014;32:1865–1877

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

Reference60 articles.

1. Mesenchymal stromal cells;Bernardo;Ann N Y Acad Sci,2009

2. The immunomodulatory capacity of mesenchymal stem cells;Gebler;Trends Mol Med,2012

3. IFN-gamma activation of mesenchymal stem cells for treatment and prevention of graft versus host disease;Polchert;Eur J Immunol,2008

4. Interferon-gamma-stimulated marrow stromal cells: A new type of nonhematopoietic antigen-presenting cell;Stagg;Blood,2006

5. Paracrine mechanisms of mesenchymal stem cell-based therapy: Current status and perspectives;Liang;Cell Transplant,2013

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