Combination therapy with molecular hydrogen and hyperoxia in a murine model of polymicrobial sepsis

Keliang Xie1, Wenzheng Fu, Weibin Xing

  • 1Department of Anesthesiology, General Hospital of Tianjin Medical University, People's Republic of China.

Shock (Augusta, Ga.)
|November 20, 2012
PubMed

Insights

Combination therapy with molecular hydrogen (H2) and hyperoxia significantly improves survival in sepsis models. This enhanced treatment reduces organ damage and inflammation, offering a potent new strategy for sepsis treatment.

Area of Science:

  • Critical care medicine
  • Biomedical research
  • Pharmacology

Background:

  • Sepsis is a leading cause of intensive care unit mortality.
  • Hyperoxia shows potential benefits but carries risks of increased oxidative stress.
  • Molecular hydrogen (H2) exhibits antioxidant properties, reducing oxidative stress.

Purpose of the Study:

  • To investigate the synergistic therapeutic effects of combining H2 and hyperoxia in sepsis.
  • To evaluate the impact of this combination therapy on survival rates and organ damage in a mouse model of sepsis.

Main Methods:

  • Utilized a cecal ligation and puncture (CLP) mouse model to induce sepsis.
  • Administered H2 (2%) or hyperoxia (98%) inhalation, alone and in combination.
  • Assessed survival rates, organ damage markers (enzymatic activity, tissue histology, biochemical parameters), and inflammatory/oxidative stress markers.

Main Results:

  • Both H2 and hyperoxia alone improved survival in moderate sepsis.
  • Combination therapy with H2 and hyperoxia achieved 100% survival in moderate sepsis and 70% in severe sepsis.
  • The combination therapy significantly attenuated lung, liver, and kidney damage compared to monotherapy.
  • Treatment reduced oxidative stress markers and pro-inflammatory cytokines while increasing antioxidant enzymes and anti-inflammatory cytokines.

Conclusions:

  • Combination therapy with H2 and hyperoxia demonstrates enhanced therapeutic efficacy in sepsis.
  • The synergistic effect is attributed to potent antioxidant and anti-inflammatory mechanisms.
  • This approach presents a promising and potentially clinically feasible treatment strategy for sepsis.

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