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Modulation of FOXO3a Nuclear Localization by Linagliptin (BI-1356) reveals a new therapeutic target in chronic
Abdulaziz Saad Alshahrani1, Sameh Saber2, Ohoud Shafi Alruwaili3
1Department of Internal Medicine, Medicine and Gastroenterologist Consultant, Najran University Hospital, Najran University, Saudi Arabia.
Abstract:
Globally, the incidence and prevalence rates of ulcerative colitis (UC) show a rising pattern. The limited efficacy and significant adverse effects associated with current treatment options underscore the need for novel therapeutic approaches. It has been found that linagliptin, a dipeptidyl peptidase-4 inhibitor, activates AMPK in different disease conditions. The main objective of the present work was to elucidate the potential implications of the AMPK/FOXO3a mediated by linagliptin in rats with chronic colitis. The findings of the current report revealed the first robust in-vivo evidence advocating the coloprotective effect of linagliptin against dextran sodium sulfate-induced chronic UC in rats. It has demonstrated potential beyond its antidiabetic effects by modulating FOXO3a localization. By shifting FOXO3a from the cytosol to the nucleus, linagliptin enhanced the transcription of genes involved in attenuation of pro-inflammatory events and restoration of redox homeostasis. Nuclear FOXO3a also impacted NFκB activity, reducing inflammation. This conclusion was fundamentally supported by the documented improvements in histopathological changes evidenced by reduced inflammation, edema, crypt atrophy, and submucosal fibrosis. Moreover, decreased colon weight/length ratio, as well as reduced scores of disease activity and macroscopic damage indices, were observed. Furthermore, it corrected body weight loss during the time frame of the experiment. These findings underscore the anti-inflammatory potential of therapies that promote the nuclear localization of FOXO3a in inflammatory conditions. Linagliptin's ability to modulate FOXO3a localization might be particularly useful for diabetic patients suffering from inflammatory bowel diseases. However, further molecular investigations are required to validate the findings and to assess the clinical application of this approach as a valid tool for alleviating UC.
Insights
Linagliptin, a diabetes drug, shows promise in protecting against ulcerative colitis (UC) in rats by reducing inflammation and restoring gut health through AMPK/FOXO3a pathway modulation.
Area of Science:
- Gastroenterology
- Pharmacology
- Molecular Biology
Background:
- Ulcerative colitis (UC) incidence is rising globally, with current treatments having limited efficacy and significant side effects.
- Novel therapeutic strategies are urgently needed for effective UC management.
- Linagliptin, a dipeptidyl peptidase-4 inhibitor, activates AMPK, suggesting potential therapeutic roles beyond diabetes.
Purpose of the Study:
- To investigate the role of linagliptin in modulating the AMPK/FOXO3a pathway in a rat model of chronic colitis.
- To elucidate the coloprotective mechanisms of linagliptin in dextran sodium sulfate (DSS)-induced UC.
Main Methods:
- Induction of chronic colitis in rats using dextran sodium sulfate (DSS).
- Administration of linagliptin to assess its effects on UC parameters.
- Evaluation of FOXO3a localization (cytosolic vs. nuclear) and its impact on gene transcription.
- Assessment of inflammatory markers, histopathological changes, and disease activity indices.
Main Results:
- Linagliptin demonstrated significant coloprotective effects against DSS-induced chronic UC in rats.
- Linagliptin treatment promoted the nuclear translocation of FOXO3a, enhancing anti-inflammatory gene expression and restoring redox homeostasis.
- Nuclear FOXO3a modulated NFκB activity, leading to reduced inflammation.
- Histopathological analysis revealed decreased inflammation, edema, crypt atrophy, and fibrosis. Disease activity and macroscopic damage scores were reduced, and body weight loss was corrected.
Conclusions:
- Linagliptin exhibits a protective effect in chronic colitis, acting via AMPK/FOXO3a pathway modulation.
- Promoting nuclear localization of FOXO3a is a potential therapeutic strategy for inflammatory conditions like UC.
- Linagliptin's ability to influence FOXO3a localization may offer benefits for diabetic patients with IBD, warranting further clinical investigation.
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