Mesenchymal stem cells reduce inflammation while enhancing bacterial clearance and improving survival in sepsis
Shirley H J Mei1, Jack J Haitsma, Claudia C Dos Santos
1The Ottawa Hospital Research Institute, University of Ottawa, Ottawa, Ontario, Canada, K1H 8L6.
Rationale:
Sepsis refers to the clinical syndrome of severe systemic inflammation precipitated by infection. Despite appropriate antimicrobial therapy, sepsis-related morbidity and mortality remain intractable problems in critically ill patients. Moreover, there is no specific treatment strategy for the syndrome of sepsis-induced multiple organ dysfunction.
Objectives:
We hypothesized that mesenchymal stem cells (MSCs), which have been shown to have immunomodulatory properties, would reduce sepsis-induced inflammation and improve survival in a polymicrobial model of sepsis.
Methods:
Sepsis was induced in C57Bl/6J mice by cecal ligation and puncture (CLP), followed 6 hours later by an intravenous injection of MSCs or saline. Twenty-eight hours after CLP, plasma, bronchoalveolar lavage fluid and tissues were collected for analyses. Longer-term studies were performed with antibiotic coadministration to assess the effect of MSCs on survival.
Measurements And Main Results:
MSC treatment significantly reduced mortality in septic mice receiving appropriate antimicrobial therapy. MSCs alone reduced systemic and pulmonary cytokine levels in mice with CLP-induced sepsis, preventing acute lung injury and organ dysfunction, despite the low levels of cell persistence. Microarray data highlighted an overall down-regulation of inflammation and inflammation-related genes (such as IL-10, IL-6) and a shift toward up-regulation of genes involved in promoting phagocytosis and bacterial killing. Finally, bacterial clearance was significantly greater in MSC-treated mice, in part due to enhanced phagocytotic activity of the host immune cells.
Conclusions:
These data demonstrate that MSCs have beneficial effects on experimental sepsis, possibly by paracrine mechanisms, and suggest that immunomodulatory cell therapy may be an effective adjunctive treatment to reduce sepsis-related morbidity and mortality.
Insights
Mesenchymal stem cells (MSCs) reduce sepsis-induced inflammation and improve survival in mice. MSC therapy enhances bacterial clearance and immune cell activity, offering a potential adjunctive treatment for sepsis.
Area of Science:
- Immunology
- Regenerative Medicine
- Critical Care Medicine
Background:
- Sepsis is a life-threatening condition characterized by severe systemic inflammation and high mortality.
- Current treatments for sepsis-induced multiple organ dysfunction are limited.
- Antimicrobial therapy alone does not fully resolve sepsis-related complications.
Purpose of the Study:
- To investigate the efficacy of mesenchymal stem cells (MSCs) in mitigating sepsis-induced inflammation and improving survival.
- To test the hypothesis that MSCs' immunomodulatory properties can counteract sepsis pathology.
- To evaluate MSCs in a polymicrobial sepsis model.
Main Methods:
- Sepsis was induced in mice using cecal ligation and puncture (CLP).
- Mesenchymal stem cells (MSCs) or saline were administered intravenously 6 hours post-CLP.
- Plasma, bronchoalveolar lavage fluid, and tissues were analyzed; survival studies included antibiotic coadministration.
Main Results:
- MSC treatment significantly reduced mortality in septic mice receiving antibiotics.
- MSCs decreased systemic and pulmonary cytokine levels, preventing acute lung injury and organ dysfunction.
- Gene expression analysis revealed down-regulation of inflammatory genes and up-regulation of genes involved in bacterial clearance and phagocytosis.
- MSC-treated mice showed enhanced bacterial clearance due to improved immune cell phagocytic activity.
Conclusions:
- Mesenchymal stem cells (MSCs) demonstrate beneficial effects in experimental sepsis.
- MSC therapy may act through paracrine mechanisms to reduce inflammation and improve outcomes.
- Immunomodulatory cell therapy with MSCs presents a promising adjunctive strategy for sepsis treatment.
Related Concept Videos
Mesenchymal Stem Cells
Inflammation
Clinical Significance of Antibiotic Resistance
Regulation of Hematopoietic Stem Cells
Acute Inflammation III: Local and Systemic Effects
