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Immune dysfunctionality of replicative senescent mesenchymal stromal cells is corrected by IFNγ priming
Author(s) -
Raghavan Chinnadurai,
Devi Rajan,
Spencer Ng,
Kenneth C. McCullough,
Dalia Arafat,
Edmund K. Waller,
Larry J. Anderson,
Greg Gibson,
Jacques Galipeau
Publication year - 2017
Publication title -
blood advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.685
H-Index - 39
eISSN - 2473-9537
pISSN - 2473-9529
DOI - 10.1182/bloodadvances.2017006205
Subject(s) - mesenchymal stem cell , immune system , senescence , stromal cell , priming (agriculture) , human bone , bone marrow , biology , immunology , microbiology and biotechnology , bystander effect , cancer research , genetics , in vitro , botany , germination
Industrial-scale expansion of mesenchymal stromal cells (MSCs) is often used in clinical trials, and the effect of replicative senescence on MSC functionality is of mechanistic interest. Senescent MSCs exhibit cell-cycle arrest, cellular hypertrophy, and express the senescent marker β-galactosidase. Although both fit and senescent MSCs display intact lung-homing properties in vivo, senescent MSCs acquire a significant defect in inhibiting T-cell proliferation and cytokine secretion in vitro. IFNγ does not upregulate HLA-DR on senescent MSCs, whereas its silencing did not reverse fit MSCs' immunosuppressive properties. Secretome analysis of MSC and activated peripheral blood mononuclear cell coculture demonstrate that senescent MSCs are significantly defective in up (vascular endothelial growth factor [VEGF], granulocyte colony-stimulating factor [GCSF], CXCL10, CCL2) or down (IL-1ra, IFNγ, IL-2r, CCL4, tumor necrosis factor-α, IL-5) regulating cytokines/chemokines. Unlike indoleamine 2,3 dioxygenase (IDO), silencing of CXCL9, CXCL10, CXCL11, GCSF, CCL2, and exogenous addition of VEGF, fibroblast growth factor-basic do not modulate MSCs' immunosuppressive properties. Kynurenine levels were downregulated in senescent MSC cocultures compared with fit MSC counterparts, and exogenous addition of kynurenine inhibits T-cell proliferation in the presence of senescent MSCs. IFNγ prelicensing activated several immunomodulatory genes including IDO in fit and senescent MSCs at comparable levels and significantly enhanced senescent MSCs' immunosuppressive effect on T-cell proliferation. Our results define immune functional defects acquired by senescent MSCs, which are reversible by IFNγ prelicensing.

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