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Updated: Nov 29, 2025

Use of Animal Model of Sepsis to Evaluate Novel Herbal Therapies
Published on: April 11, 2012
The Anti-Inflammatory Role of Bilirubin on "Two-Hit" Sepsis Animal Model
Duc Tin Tran1, Yong Yeon Jeong2, Jeong Min Kim3
1Brain Korea 21 Project, Center for Creative Biomedical Scientists, Chonnam National University, Gwangju 61469, Korea.
Introduction:
Bilirubin is a product of the heme catabolism pathway, and it is excreted in bile and removed from the body through the urine. Bilirubin has potent antioxidant properties but also plays a role in anti-inflammation by protecting the body against endotoxin-induced lung inflammation, down-regulating the expression of adhesion molecules, and inhibiting the infiltration of inflammatory cells. Thus, bilirubin is a promising agent that could use in inflammation disease treatment. The application of bilirubin on the "two-hit" sepsis animal model has been, to date, unknown.
Methods:
we used lipopolysaccharide to induce initial insults in C57BL/6 mice. After 24 h, mice underwent cecal ligation and puncture to induce the "two-hit" sepsis model. Next, mice were administered 30 mg/kg bilirubin and we observed an improvement.
Results:
We observed that bilirubin inhibited the expression of pro-inflammatory cytokines, while the levels of anti-inflammatory cytokines were significantly augmented in the lung. Bilirubin improved the survival rate in the sepsis model. Furthermore, we suggest that bilirubin can modulate the accumulation of T-regulatory cells and myeloid-derived suppressor cells. Notably, bilirubin suppressed the activation and functions of T-cells.
Conclusions:
These results clarified that bilirubin might improve tissue injury in sepsis through anti-inflammatory mechanisms.

