Single and combined effect of retinoic acid and rapamycin modulate the generation, activity and homing potential of induced human regulatory T cells
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Candia, Enzo
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Single and combined effect of retinoic acid and rapamycin modulate the generation, activity and homing potential of induced human regulatory T cells
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Abstract
Adoptive transfer of CD4+CD25+FOXP3+ regulatory T cells (Treg cells) has been successfully
utilized to treat graft versus host disease and represents a promising strategy for the
treatment of autoimmune diseases and transplant rejection. The aim of this study was to
evaluate the effects of all-trans retinoic acid (atRA) and rapamycin (RAPA) on the number,
phenotype, homing markers expression, DNA methylation, and function of induced human
Treg cells in short-term cultures. Naive T cells were polyclonally stimulated and cultured for
five days in the presence of different combinations of IL-2, TGF-β1, atRA and RAPA. The
resulting cells were characterized by the expression of FOXP3, activation, surface and homing
markers. Methylation of the Conserved Non-coding Sequence 2 was also evaluated.
Functional comparison of the different culture conditions was performed by suppression
assays in vitro. Culturing naive human T cells with IL-2/TGFβ1 resulted in the generation of
54.2% of Treg cells (CD4+CD25+FOXP3+) whereas the addition of 100 nM atRA increased
the yield of Treg cells to 66% (p = 0.0088). The addition of RAPA did not increase the number
of Treg cells in any of these settings. Treg cells generated in the presence of atRA had
an increased expression of the β7 integrin to nearly 100% of the generated Treg cells, while
RAPA treated cells showed enhanced expression of CXCR4. The differential expression of
homing molecules highlights the possibility of inducing Treg cells with differential organ-specific
homing properties. Neither atRA nor RAPA had an effect on the highly methylated
CNS2 sites, supporting reports that their contribution to the lineage stability of Treg cells is
not mediated by methylation changes in this locus. Treg cells generated in the presence of
RAPA show the most potent suppression effect on the proliferation of effector cells.
Patrocinador
Fondecyt
1120731, Conicyt Proyecto basal PFB-16,
Direccion Academica Clinica Las Condes 2011,
Julio Krauss Rotter.
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URI: https://repositorio.uchile.cl/handle/2250/149092
DOI: https://doi.org/ 10.1371/journal.pone.0182009
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Plos One 12(7): e0182009
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