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The antifibrotic potential of IMT504: modulation of GLAST + Wnt1 + bone marrow stromal progenitors and hepatic microenvironment.

Authors :
Borda M
Sierra R
Cantero MJ
Gómez Bustillo S
Fiore EJ
Giardelli G
Martino Garcet M
Rebottaro ML
Bayo Fina JM
Schiavone M
Rubione J
García MG
Montaner A
Mazzolini GD
Aquino JB
Source :
Stem cell research & therapy [Stem Cell Res Ther] 2024 Sep 04; Vol. 15 (1), pp. 278. Date of Electronic Publication: 2024 Sep 04.
Publication Year :
2024

Abstract

Background: The immunomodulatory oligodeoxynucleotide (ODN) IMT504 might harbor antifibrotic properties within the liver.<br />Methods: Fibrosis models were induced in mice through thioacetamide (TAA) administration and bile-duct ligation. Cre-loxP mice were utilized to identify GLAST + Wnt1 + bone marrow stromal progenitors (BMSPs) and to examine their contribution with cells in the liver. In vivo and in vitro assays; flow-cytometry, immunohistochemistry, and qPCR were conducted.<br />Results: IMT504 demonstrated significant inhibition of liver fibrogenesis progression and reversal of established fibrosis. Early responses to IMT504 involved the suppression of profibrogenic and proinflammatory markers, coupled with an augmentation of hepatocyte proliferation. Additionally, this ODN stimulated the proliferation and mobilization of GLAST + Wnt1 + BMSPs, likely amplifying their contribution with endothelial- and hepatocytes-like cells. Moreover, IMT504 significantly modulated the expression levels of Wnt ligands and signaling pathway/target genes specifically within GLAST + Wnt1 + BMSPs, with minimal impact on other BMSPs. Intriguingly, both IMT504 and conditioned media from IMT504-pre-treated GLAST + Wnt1 + BMSPs shifted the phenotype of fibrotic macrophages, hepatic stellate cells, and hepatocytes, consistent with the potent antifibrotic effects observed.<br />Conclusion: In summary, our findings identify IMT504 as a promising candidate molecule with potent antifibrotic properties, operating through both direct and indirect mechanisms, including the activation of GLAST + Wnt1 + BMSPs.<br /> (© 2024. The Author(s).)

Details

Language :
English
ISSN :
1757-6512
Volume :
15
Issue :
1
Database :
MEDLINE
Journal :
Stem cell research & therapy
Publication Type :
Academic Journal
Accession number :
39227908
Full Text :
https://doi.org/10.1186/s13287-024-03896-w