Related Experiment Video
Updated: Jun 20, 2026

A Preclinical Model of Sepsis-Induced Myopathy with Disuse in Mice
Published on: June 14, 2024
A systematic review of experimental treatments for mitochondrial dysfunction in sepsis and multiple organ dysfunction
Anna J Dare1, Anthony R J Phillips, Anthony J R Hickey
1Department of Surgery, Faculty of Medical and Health Sciences, University of Auckland, Auckland 1142, New Zealand. anna.dare@gmail.com
Abstract:
Sepsis and multiple organ dysfunction syndrome (MODS) are major causes of morbidity and mortality in the intensive care unit. Recently mitochondrial dysfunction has been proposed as a key early cellular event in critical illness. A growing body of experimental evidence suggests that mitochondrial therapies are effective in sepsis and MODS. The aim of this article is to undertake a systematic review of the current experimental evidence for the use of therapies for mitochondrial dysfunction during sepsis and MODS and to classify these mitochondrial therapies. A search of the MEDLINE and PubMed databases (1950 to July 2009) and a manual review of reference lists were conducted to find experimental studies containing data on the efficacy of mitochondrial therapies in sepsis and sepsis-related MODS. Fifty-one studies were included in this review. Five categories of mitochondrial therapies were defined-substrate provision, cofactor provision, mitochondrial antioxidants, mitochondrial reactive oxygen species scavengers, and membrane stabilizers. Administration of mitochondrial therapies during sepsis was associated with improvements in mitochondrial electron transport system function, oxidative phosphorylation, and ATP production and a reduction in cellular markers of oxidative stress. Amelioration of proinflammatory cytokines, caspase activation, and prevention of the membrane permeability transition were reported. Restoration of mitochondrial bioenergetics was associated with improvements in hemodynamic parameters, organ function, and overall survival. A substantial body of evidence from experimental studies at both the cellular and the organ level suggests a beneficial role for the administration of mitochondrial therapies in sepsis and MODS. We expect that mitochondrial therapies will have an increasingly important role in the management of sepsis and MODS. Clinical trials are now required.
Insights
Mitochondrial therapies show promise in treating sepsis and multiple organ dysfunction syndrome (MODS) by improving cellular energy production and reducing organ damage. Further clinical trials are needed to confirm these benefits in human patients.
Area of Science:
- Critical care medicine
- Mitochondrial biology
- Pharmacology
Background:
- Sepsis and multiple organ dysfunction syndrome (MODS) are leading causes of death in intensive care units.
- Mitochondrial dysfunction is increasingly recognized as a critical early event in critical illness.
- Experimental evidence suggests mitochondrial therapies may be effective in treating sepsis and MODS.
Purpose of the Study:
- To systematically review experimental evidence on mitochondrial therapies for sepsis and MODS.
- To classify existing mitochondrial therapies used in sepsis research.
- To assess the efficacy of these therapies in preclinical models.
Main Methods:
- Systematic review of MEDLINE and PubMed databases (1950-July 2009).
- Manual review of reference lists for relevant experimental studies.
- Inclusion of 51 studies investigating mitochondrial therapies in sepsis and MODS models.
Main Results:
- Five categories of mitochondrial therapies were identified: substrate provision, cofactor provision, antioxidants, ROS scavengers, and membrane stabilizers.
- Therapies improved mitochondrial function, ATP production, and reduced oxidative stress markers.
- Benefits included reduced proinflammatory cytokines, caspase activation, and improved organ function and survival.
Conclusions:
- A significant body of experimental evidence supports the beneficial role of mitochondrial therapies in sepsis and MODS.
- Restoration of mitochondrial bioenergetics is linked to improved clinical outcomes.
- Clinical trials are warranted to translate these findings into patient care.
Related Concept Videos
Electron Transport Chain: Complex I and II
ROS generation is regulated and maintained at moderate levels necessary...
Mitochondrial Membranes

