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Counteracting tryptophan metabolism alterations as a new therapeutic strategy for rheumatoid arthritis
David Moulin1, Marie Millard1, Mahdia Taïeb1
1UMR 7365 IMoPA, Université de Lorraine, Nancy, Grand Est, France.
Objectives:
Alterations in tryptophan (Trp) metabolism have been reported in inflammatory diseases, including rheumatoid arthritis (RA). However, understanding whether these alterations participate in RA development and can be considered putative therapeutic targets remains undetermined.In this study, we combined quantitative Trp metabolomics in the serum from patients with RA and corrective administration of a recombinant enzyme in experimental arthritis to address this question.
Methods:
Targeted quantitative Trp metabolomics was performed on the serum from 574 previously untreated patients with RA from the ESPOIR (Etude et Suivi des POlyarthrites Indifférenciées Récentes) cohort and 98 healthy subjects. A validation cohort involved 69 established patients with RA. Dosages were also done on the serum of collagen-induced arthritis (CIA) and collagen antibody-induced arthritis (CAIA) mice and controls. A proof-of-concept study evaluating the therapeutic potency of targeting the kynurenine pathway was performed in the CAIA model.
Results:
Differential analysis revealed dramatic changes in Trp metabolite levels in patients with RA compared with healthy controls. Decreased levels of kynurenic (KYNA) and xanthurenic (XANA) acids and indole derivatives, as well as an increased level of quinolinic acid (QUIN), were found in the serum of patients with RA. They correlated positively with disease severity (assessed by both circulating biomarkers and disease activity scores) and negatively with quality-of-life scores. Similar profiles of kynurenine pathway metabolites were observed in the CAIA and CIA models. From a mechanistic perspective, we demonstrated that QUIN favours human fibroblast-like synoviocyte proliferation and affected their cellular metabolism, through inducing both mitochondrial respiration and glycolysis. Finally, systemic administration of the recombinant enzyme aminoadipate aminotransferase, responsible for the generation of XANA and KYNA, was protective in the CAIA model.
Conclusions:
Altogether, our preclinical and clinical data indicate that alterations in the Trp metabolism play an active role in the pathogenesis of RA and could be considered as a new therapeutic avenue.
Insights
Tryptophan (Trp) metabolism alterations are linked to rheumatoid arthritis (RA) severity. Restoring specific Trp metabolites with a recombinant enzyme showed protective effects in experimental arthritis, suggesting a new therapeutic target for RA.
Area of Science:
- Immunology
- Metabolomics
- Rheumatology
Background:
- Tryptophan (Trp) metabolism is altered in inflammatory diseases like rheumatoid arthritis (RA).
- The role of these alterations in RA pathogenesis and their potential as therapeutic targets are not fully understood.
Purpose of the Study:
- To investigate tryptophan (Trp) metabolism alterations in rheumatoid arthritis (RA) patients.
- To evaluate the therapeutic potential of targeting the kynurenine pathway in experimental arthritis models.
Main Methods:
- Quantitative Trp metabolomics on serum from 574 RA patients and 98 healthy controls, validated in 69 RA patients.
- Metabolomic analysis in collagen-induced arthritis (CIA) and collagen antibody-induced arthritis (CAIA) mouse models.
- Proof-of-concept therapeutic study using a recombinant enzyme in the CAIA model.
Main Results:
- RA patients exhibited decreased kynurenic acid (KYNA) and xanthurenic acid (XANA), and increased quinolinic acid (QUIN) levels.
- QUIN promoted fibroblast-like synoviocyte proliferation and altered cellular metabolism.
- Recombinant aminoadipate aminotransferase administration was protective in the CAIA model.
Conclusions:
- Altered Trp metabolism actively contributes to RA pathogenesis.
- Targeting the Trp metabolism represents a promising new therapeutic strategy for RA.
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