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Allergoid–mannan conjugates reprogram monocytes into tolerogenic dendritic cells via epigenetic and metabolic rewiring - 05/01/22

Doi : 10.1016/j.jaci.2021.06.012 
Cristina Benito-Villalvilla, BSc a, Mario Pérez-Diego, BSc a, Alba Angelina, PhD a, Kai Kisand, PhD b, Ana Rebane, PhD b, José Luis Subiza, MD, PhD c, Oscar Palomares, PhD a, ⁎
a Department of Biochemistry and Molecular Biology, School of Chemistry, Complutense University, Madrid, Spain 
b Institute of Biomedicine and Translational Medicine, University of Tartu, Tartu, Estonia 
c Inmunotek, Alcalá de Henares, Madrid, Spain 

∗Corresponding author: Oscar Palomares, PhD, Department of Biochemistry and Molecular Biology, School of Chemistry, Complutense University of Madrid, Avenida Complutense s/n, 28040 Madrid, Spain.Department of Biochemistry and Molecular BiologySchool of ChemistryComplutense University of MadridAvenida Complutense s/nMadrid28040Spain

Abstract

Background

Allergoid–mannan conjugates are novel vaccines for allergen-specific immunotherapy being currently assayed in phase 2 clinical trials. Allergoid–mannan conjugates target dendritic cells (DCs) and generate functional forkhead box P3 (FOXP3)-positive Treg cells, but their capacity to reprogram monocyte differentiation remains unknown.

Objective

We studied whether allergoid–mannan conjugates could reprogram monocyte differentiation into tolerogenic DCs and the underlying molecular mechanisms.

Methods

Monocytes from nonatopic and allergic subjects were differentiated into DCs under conventional protocols in the absence or presence of allergoid–mannan conjugates. ELISA, real-time quantitative PCR, coculture, flow cytometry, and suppression assay were performed. Metabolic and epigenetic techniques were also used.

Results

Monocyte differentiation from nonatopic and allergic subjects into DCs in the presence of allergoid–mannan conjugates yields stable tolerogenic DCs. Lipopolysaccharide-stimulated mannan-tolDCs show a significantly lower cytokine production, lower TNF-α/IL-10 ratio, and higher expression of the tolerogenic molecules PDL1, IDO, SOCS1, SOCS3, and IL10; and they induce higher numbers of functional FOXP3+ Treg cells than conventional DC counterparts. Mannan-tolDCs shift glucose metabolism from Warburg effect and lactate production to mitochondrial oxidative phosphorylation. They also display epigenetic reprogramming involving specific histone marks within tolerogenic loci and lower expression levels of histone deacetylase genes. Mannan-tolDCs significantly increase the expression of the anti-inflammatory miRNA-146a/b and decrease proinflammatory miRNA-155.

Conclusions

Allergoid–mannan conjugates reprogram monocyte differentiation into stable tolerogenic DCs via epigenetic and metabolic reprogramming. Our findings shed light on the novel mechanisms by which allergoid–mannan conjugates might contribute to allergen tolerance induction during allergen-specific immunotherapy.

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Graphical abstract




Il testo completo di questo articolo è disponibile in PDF.

Key words : Allergen-specific immunotherapy, allergoid–mannan conjugates, monocytes, tolerogenic dendritic cells, regulatory T cells, metabolism, epigenetics

Abbreviations used : AIT, ChIP, DC, DC-SIGN, FOXP3, H3K27ac, H3K27me3, H3K4me3, HDAC, hmoDC, IDO, LNA, LPS, Mannan-tolDC, miRNA, mRNA, MTA, NADH, OXPHOS, PD-L1, ROS, SOCS


Mappa


 This work was supported by grants SAF-2017-84978-R to O.P. from MINECO, Spain, and by grants IDI-20110410 and IDI-20141131 to Inmunotek SL from CDTI and MINECO. C.B.-V. and M.P.-D. are recipients of FPU and FPI fellowships (SAF-2017-84978-R), respectively, from MINECO. A.R. is funded by European Union through the European Regional Development Fund (Project no. 2014-2020.4.01.15-0012) and K.K. by Estonian Research Council grant PRG1117.
 Disclosure of potential conflict of interest: O. Palomares has received fees for lectures and/or participation in Advisory Boards from Allergy Therapeutics, Amgen, AstraZeneca, Diater, GSK, Inmunotek SL, Novartis, Sanofi-Genezyme, Regeneron, and Stallergenes; and has received research grants from Inmunotek SL and Novartis SL. J. L. Subiza is the founder and CEO of Inmunotek SL. The rest of the authors declare that they have no relevant conflicts of interest.


© 2021  The Authors. Pubblicato da Elsevier Masson SAS. Tutti i diritti riservati.
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