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ABX464 (Obefazimod) Upregulates miR-124 to Reduce Proinflammatory Markers in Inflammatory Bowel Diseases
Cécile Apolit1, Noëlie Campos1, Audrey Vautrin1
1Abivax, Montpellier, France.
Abstract:
Advanced therapies have transformed the treatment of inflammatory bowel disease; however, many patients fail to respond, highlighting the need for therapies tailored to the underlying cell and molecular disease drivers. The first-in-class oral molecule ABX464 (obefazimod), which selectively upregulates miR-124, has demonstrated its ability to be a well-tolerated treatment with rapid and sustained efficacy in patients with ulcerative colitis (UC). Here, we provide evidence that ABX464 affects the immune system in vitro , in the murine model of inflammatory bowel disease, and in patients with UC. In vitro , ABX464 treatment upregulated miR-124 and led to decreases in proinflammatory cytokines including interleukin (IL) 17 and IL6, and in the chemokine CCL2. Consistently, miR-124 expression was upregulated in the rectal biopsies and blood samples of patients with UC, and a parallel reduction in Th17 cells and IL17a levels was observed in serum samples. In a mouse model of induced intestinal inflammation with dextran sulfate sodium, ABX464 reversed the increases in multiple proinflammatory cytokines in the colon and the upregulation of IL17a secretion in the mesenteric lymph nodes. By upregulating miR-124, ABX464 acts as "a physiological brake" of inflammation, which may explain the efficacy of ABX464 with a favorable tolerability and safety profile in patients with UC.
Insights
ABX464 (obefazimod) is a novel oral therapy that upregulates miR-124, reducing inflammation in ulcerative colitis. This mechanism explains its rapid, sustained efficacy and favorable safety profile in patients.
Area of Science:
- Gastroenterology
- Immunology
- Molecular Biology
Background:
- Advanced therapies for inflammatory bowel disease (IBD) show limitations, as many patients do not respond.
- Tailored therapies targeting specific molecular drivers are needed for conditions like ulcerative colitis (UC).
Purpose of the Study:
- To investigate the immunomodulatory effects of ABX464 (obefazimod) in vitro, in a mouse model of IBD, and in patients with UC.
- To explore the mechanism of action of ABX464, focusing on its selective upregulation of miR-124.
Main Methods:
- In vitro cell culture experiments assessing cytokine and chemokine levels.
- Murine model of induced intestinal inflammation using dextran sulfate sodium.
- Analysis of miR-124 expression, Th17 cell counts, and IL17a levels in patient biopsies and serum samples.
Main Results:
- ABX464 upregulated miR-124, decreasing proinflammatory cytokines (IL-17, IL-6, CCL2) in vitro.
- Increased miR-124 expression and reduced Th17 cells/IL-17a were observed in UC patients treated with ABX464.
- ABX464 reversed proinflammatory cytokine increases in a mouse model of colitis.
Conclusions:
- ABX464 effectively modulates the immune system by upregulating miR-124, acting as a "physiological brake" on inflammation.
- The findings support ABX464's potential as a well-tolerated, effective treatment for ulcerative colitis.
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