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Toward understanding the role of leptin and leptin receptor antagonism in preclinical models of rheumatoid arthritis. | LitMetric

AI Article Synopsis

  • Research suggests that targeting the leptin receptor (ObR) could be a new approach to treating rheumatoid arthritis (RA) due to its link with obesity and autoimmune symptoms.
  • Experiments showed that leptin and its agonist can activate a proinflammatory factor, but an ObR antagonist can inhibit this process, potentially reducing RA symptoms.
  • Results indicate that ObR antagonists may be effective in treating early stages of RA, though the effects of leptin vary based on the specific model of the disease used in research.

Article Abstract

A potential link between obesity, circulating leptin levels and autoimmune disease symptoms suggests that targeting the leptin receptor (ObR) might be a viable novel strategy to combat rheumatoid arthritis (RA). However, studies in animal models and evaluation of clinical cases did not provide clear view on leptin's involvement in RA. To validate ObR as RA target, we used our peptide-based ObR agonists and antagonist in different in vitro and in vivo models of the disease. In human peripheral blood mononuclear cells, leptin and its agonist fragment, desI(2)-E1/Aca, moderately induced constitutive activation of a major proinflammatory transcription factor, NF-κB, while the ObR antagonist peptide Allo-aca inhibited the process. Leptin administration itself did not induce arthritis in rats, but worsened the clinical condition of mice given K/BxN serum transfer arthritis. Simultaneous administration of Allo-aca reduced leptin-dependent increase in disease severity by more than 50%, but the antagonist was ineffective when injected with a 3-day delay. In rats inflicted with mild adjuvant-induced arthritis, both leptin and Allo-aca reduced the extent of joint swelling and the number of arthritic joints. In a more aggressive disease stage, Allo-aca decreased the number of arthritic joints in a dose-dependent manner but did not affect other arthritis markers. In summary, leptin exerts diverse effects on RA depending on the experimental model. This might reflect the heterogeneous character of RA, which is differently impacted by leptin and is unmasked by ObR antagonism. Nevertheless, the results suggest that ObR antagonists might become useful therapeutics in leptin-sensitive early stages of RA.

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Source
http://dx.doi.org/10.1016/j.peptides.2011.06.015DOI Listing

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