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Modulation of Gut Microbiota Metabolism in Obesity-Related Type 2 Diabetes Reduces Osteomyelitis Severity
Tina I Bui1, Ann Lindley Gill1, Robert A Mooney2,3
1Department of Microbiology and Immunology, University of Rochester School of Medicine and Dentistry, Rochester, New York, USA.
Abstract:
Staphylococcus aureus is an opportunistic pathogen causing osteomyelitis through hematogenous seeding or contamination of implants and open wounds following orthopedic surgeries. The severity of S. aureus-mediated osteomyelitis is enhanced in obesity-related type 2 diabetes (obesity/T2D) due to chronic inflammation impairing both adaptive and innate immunity. Obesity-induced inflammation is linked to gut dysbiosis, with modification of the gut microbiota by high-fiber diets leading to a reduction in the symptoms and complications of obesity/T2D. However, our understanding of the mechanisms by which modifications of the gut microbiota alter host infection responses is limited. To address this gap, we monitored tibial S. aureus infections in obese/T2D mice treated with the inulin-like fructan fiber oligofructose. Treatment with oligofructose significantly decreased S. aureus colonization and lowered proinflammatory signaling postinfection in obese/T2D mice, as observed by decreased circulating inflammatory cytokines (tumor necrosis factor-α [TNF-α]) and chemokines (interferon-γ-induced protein 10 kDa [IP-10], keratinocyte-derived chemokine [KC], monokine induced by interferon-γ [MIG], monocyte chemoattractant protein-1 [MCP-1], and regulated upon activation, normal T cell expressed and presumably secreted [RANTES]), indicating partial reduction in inflammation. Oligofructose markedly shifted diversity in the gut microbiota of obese/T2D mice, with notable increases in the anti-inflammatory bacterium Bifidobacterium pseudolongum. Analysis of the cecum and plasma metabolome suggested that polyamine production was increased, specifically spermine and spermidine. Oral administration of these polyamines to obese/T2D mice resulted in reduced infection severity similar to oligofructose supplementation, suggesting that polyamines can mediate the beneficial effects of fiber on osteomyelitis severity. These results demonstrate the contribution of gut microbiota metabolites to the control of bacterial infections distal to the gut and polyamines as an adjunct therapeutic for osteomyelitis in obesity/T2D. IMPORTANCE Individuals with obesity-related type 2 diabetes (obesity/T2D) are at a five times increased risk for invasive Staphylococcus aureus osteomyelitis (bone infection) following orthopedic surgeries. With increasing antibiotic resistance and limited discoveries of novel antibiotics, it is imperative that we explore other avenues for therapeutics. In this study, we demonstrated that the dietary fiber oligofructose markedly reduced osteomyelitis severity and hyperinflammation following acute prosthetic joint infections in obese/T2D mice. Reduced infection severity was associated with changes in gut microbiota composition and metabolism, as indicated by increased production of natural polyamines in the gut and circulating plasma. This work identifies a novel role for the gut microbiome in mediating control of bacterial infections and polyamines as beneficial metabolites involved in improving the obesity/T2D host response to osteomyelitis. Understanding the impact of polyamines on host immunity and mechanisms behind decreasing susceptibility to severe implant-associated osteomyelitis is crucial to improving treatment strategies for this patient population.
Insights
Dietary fiber oligofructose reduced Staphylococcus aureus bone infections in obese mice by altering gut bacteria and increasing polyamines. This suggests polyamines can help treat osteomyelitis in obesity and type 2 diabetes.
Area of Science:
- Microbiology
- Immunology
- Metabolomics
Background:
- Staphylococcus aureus causes osteomyelitis, a bone infection, particularly severe in obesity/type 2 diabetes (obesity/T2D) due to impaired immunity.
- Gut dysbiosis in obesity/T2D exacerbates inflammation and infection susceptibility.
- Dietary fiber can modify gut microbiota, potentially improving obesity/T2D complications.
Purpose of the Study:
- To investigate if oligofructose, a dietary fiber, can mitigate Staphylococcus aureus osteomyelitis in obese/T2D mice.
- To elucidate the mechanisms by which gut microbiota modulation by oligofructose impacts host immune response and infection severity.
Main Methods:
- Obese/T2D mice with tibial S. aureus infection were treated with oligofructose.
- Changes in bacterial colonization, inflammatory markers (cytokines, chemokines), gut microbiota composition, and cecal/plasma metabolome were analyzed.
- Polyamines (spermine, spermidine) were administered orally to assess their therapeutic effects.
Main Results:
- Oligofructose treatment significantly reduced S. aureus colonization and systemic inflammation (decreased TNF-α, IP-10, KC, MIG, MCP-1, RANTES).
- Oligofructose altered gut microbiota, increasing Bifidobacterium pseudolongum abundance.
- Increased polyamine production (spermine, spermidine) was observed in the gut and plasma.
- Oral polyamine administration mimicked oligofructose's beneficial effects, reducing infection severity.
Conclusions:
- Dietary fiber oligofructose ameliorates osteomyelitis severity and hyperinflammation in obese/T2D mice.
- Gut microbiota metabolites, specifically polyamines, mediate the protective effects of fiber against distal bacterial infections.
- Polyamines represent a potential adjunct therapeutic strategy for osteomyelitis in obesity/T2D patients.

