Proteomics

Dataset Information

0

Pharmacological activation of LRH-1/NR5A2 triggers an anti-inflammatory phenotypic switch in immune cells from individuals with type 1 diabetes and improves human islet engraftment/function


ABSTRACT: The intricate aetiology of type 1 diabetes mellitus (T1DM) implicating a detrimental cross talk between immune cells and insulin producing b-cells leading to their destruction has stumped the development of effective disease modifying therapies. The discovery that the pharmacological activation of LRH-1/NR5A2 can revert hyperglycemia in pre-clinical mouse models of T1DM by attenuating the autoimmune attack coupled to b-cell survival/regeneration, prompt us to investigate whether LRH-1/NR5A2-mediated immune tolerization could be achieved in individuals with T1DM and improve islet survival and function subsequent to xenotransplantation. We found that LRH-1/NR5A2 activation using the agonist BL001 blunted the pro-inflammatory genetic signature and cytokine secretome of both monocyte-derived macrophages (MDM1) and mature dendritic cells (mDCs) from individuals with T1DM. Mechanistically, mitohormesis was induced in MDM1 restricting pro-inflammation propagation while mitochondria turnover was increased in mDCs assisting transit towards a tolerogenic phenotype. BL001 treatment also increased T-regulatory cells within the T-cell subpopulation. BL001-treated MDM1, mDCs or T-cells impeded T-effector cell expansion. Engraftment and function of human islets transplanted into hyperglycemic immunocompetent mice was enhanced by BL001 treatment leading to improved glycemia. Collectively, LRH-1/NR5A2 agonism fosters a coordinated re-programming of T1DM immune cells from a pro- to an anti-inflammatory/tolerizing phenotype empowering them to repress cytotoxic T-cell proliferation and facilitates islet engraftment and function after transplantation. Our finding demonstrate the feasibility of re-establishing human immune tolerance within a pro-inflammatory environment, rather than suppression, opening an unprecedent pharmacological therapeutic venue for T1DM

INSTRUMENT(S): timsTOF SCP

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Dendritic Cell

SUBMITTER: Román González-Prieto  

LAB HEAD: Roman Gonzalez-Prieto

PROVIDER: PXD053517 | Pride | 2025-04-09

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
GP0185_Slot1-10_1_678.d.zip Other
GP0186_Slot1-11_1_679.d.zip Other
GP0187_Slot1-12_1_680.d.zip Other
GP0188_Slot1-13_1_681.d.zip Other
GP0189_Slot1-14_1_682.d.zip Other
Items per page:
1 - 5 of 38

Similar Datasets

2025-04-09 | PXD045222 | Pride
2018-07-04 | GSE116563 | GEO
2015-02-24 | GSE64695 | GEO
2022-10-24 | GSE216392 | GEO
2010-01-22 | E-GEOD-19019 | biostudies-arrayexpress
| PRJNA1017470 | ENA
| PRJEB65863 | ENA
2010-01-22 | GSE19019 | GEO
2022-05-25 | GSE198865 | GEO
2014-02-27 | GSE54891 | GEO