Targeting ulcerative colitis by suppressing glucose uptake with ritonavir

Henrika Jodeleit1, Omar Al-Amodi1, Janina Caesar1

  • 1Department of General-, Visceral-, Transplantation- and Vascular Surgery, University Hospital, LMU Munich, Nussbaumstr. 20, 80336 Munich, Germany.

Insights

Ritonavir, an HIV drug, reduces inflammation by inhibiting glucose uptake in activated immune cells. This study shows ritonavir effectively decreased inflammation markers and improved outcomes in a mouse model of ulcerative colitis.

Area of Science:

  • Immunology
  • Metabolic pathways
  • Pharmacology

Background:

  • Glucose is a key energy source for activated inflammatory cells.
  • Glucose transporters (GLUTs) facilitate glucose uptake and are targeted by ritonavir.
  • Inflammation significantly impacts metabolic profiles, including amino acid levels.

Purpose of the Study:

  • To investigate the effects of ritonavir on inflammation in vitro and in vivo.
  • To explore the therapeutic potential of inhibiting glucose uptake in ulcerative colitis.

Main Methods:

  • Peripheral blood mononuclear cells (PBMCs) were activated with anti-CD3 in the presence or absence of ritonavir and analyzed via flow cytometry.
  • A mouse model of ulcerative colitis using immunocompromised mice reconstituted with patient PBMCs was employed.
  • Clinical, histological, cellular, and metabolic parameters were assessed in mice treated with ritonavir.

Main Results:

  • Ritonavir significantly affected frequencies of CD4+ T cell subsets in vitro.
  • Inflammation in the mouse model altered amino acid levels, with significant differences observed between groups.
  • Ritonavir treatment led to decreased colon and histological scores, reduced M2 monocyte frequencies, and lower glutamate levels in mice.

Conclusions:

  • Inhibition of glucose uptake by ritonavir demonstrates therapeutic potential for active ulcerative colitis.
  • Ritonavir effectively reduced inflammation and modulated immune cell populations in a preclinical model.
  • Targeting glucose metabolism represents a promising therapeutic strategy for inflammatory diseases like UC.

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