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Gantier, M.

Publications and source records attributed to Gantier, M..

2 recordsLinked to original sources

Cryopreserved cGMP-compliant human pluripotent stem cells-derived immature hepatic progenitors rescue mice from acute liver failure

Liver transplantation remains the only curative treatment for end-stage liver diseases. Unfortunately, there is a drastic organ donor shortage. Hepatocyte transplantation emerged as a viable alternative to liver transplantation. In light of their unique expansion capabilities and their potency to be driven towards a chosen cell fate, pluripotent stem cells (PSC) are extensively studied as an unlimited cell source of hepatocytes for cell therapy. It has been previously shown that freshly prepared hepatocyte-like cells can cure mice from acute and chronic liver failures and restore liver functions. In this study, we generated human PSC-derived immature hepatic progenitors (GStemHep) using current good manufacturing practice (cGMP) compliant conditions from PSC amplification, hepatic differentiation to cell cryopreservation. These GStemHep cells present an immature hepatic phenotype (alpha-fetoprotein positive, albumin negative), secrete hepatocyte growth factor (HGF) and do not express MHC type I or II. The therapeutic potential of GStemHep was assessed in two clinically relevant models of acute liver failure. A single dose of thawed GStemHep rescue mice from sudden death caused by acetaminophen and thioacetamide-induced acute live failure, both in immunodeficient and immunocompetent animals in absence of immunosuppression. The mode of action was studied by several analytical methods including unbiased proteomic analyses. The swiftness of the therapeutic effect suggests a paracrine mechanism of action of GStemHep leading to a rapid reduction of inflammation and a rapid cytoprotective effect. Therapeutic biological effects were observed as soon as 3 hours post-cell transplantation with reduction in serum transaminases and in liver necrosis. Mode of action of GStemHep relies on alleviation of inhibition factors of liver regeneration, increase in proliferationpromoting factors and decrease liver inflammation. In conclusion, we generated cGMP-compliant human PSC-derived immature hepatic progenitors that were highly effective in treating acute liver failure. This is also the first report highlighting that human allogeneic cells could be used as cryopreserved cells and in absence of immunosuppression for a human PSC-based regenerative medicine of acute liver injuries.

cell biology↗

CD4+ and CD8+ regulatory T cells characterization in the rat using a unique transgenic Foxp3-EGFP model.

BackgroundCD4+ and CD8+ regulatory T cells (Treg) in diverse species include different subsets from different origins. In all species, CD8+ Treg have been poorly characterized. CD4+ and CD8+ Treg in rats have only partially been characterized and there is no rat model in which FOXP3+ Treg are genetically tagged. ResultsWe generated a rat transgenic line using the CRISPR/Cas9 system in which EGFP was inserted in frame on the 3 end of the Foxp3 gene using a 2A self-cleaving peptide. EGFP was exclusively expressed by CD4+ and CD8+ T cells in similar proportion as observed with anti-FOXP3 antibodies. CD4+EGFP+ Treg were 5-10 times more frequent than CD8+EGFP+ Treg. CD4+ and CD8+ EGFP+ Treg expressed both the CD25highCD127lowCD45RClow/- markers. The suppressive activity of CD4+ and CD8+ Treg was largely confined to EGFP+ cells. RNAseq analyses showed similarities but also differences among CD4+ and CD8+ EGFP+ cells and provided the first description of the natural FOXP3+ CD8+ Treg transcriptome. In vitro culture of CD4+ and CD8+ EGFP- cells with TGFbeta and IL-2 resulted in the induction of EGFP+ Treg. Preferential expansion of CD4+ and CD8+ EGFP+ Treg could be detected upon in vivo administration of a low dose of IL-2. ConclusionsThis new and unique Foxp3-EGFP rat line constitutes a useful model to identify and isolate viable natural and induced CD4+ and CD8+ Treg. Additionally, it allows to identify new molecules expressed in CD8+ Treg that may allow to better define their phenotype and function not only in rats but also in other species.

immunology↗