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Updated: Jul 25, 2025

A Murine Model of Group B Streptococcus Vaginal Colonization
Published on: November 16, 2016
The impact of nutritional immunity on Group B streptococcal pathogenesis during wound infection
Madeline S Akbari1, Rebecca A Keogh1, Jana N Radin2
1Department of Immunology and Microbiology, University of Colorado School of Medicine, Anschutz Medical Campus , Aurora, Colorado, USA.
Insights
Diabetic wound infections allow Group B Streptococcus (GBS) to persist because the host immune system, specifically calprotectin, is less effective. This contrasts with non-diabetic wounds where GBS is controlled.
Area of Science:
- Microbiology and Immunology
- Diabetic Complications
- Wound Infections
Background:
- Group B Streptococcus (GBS) is a pathobiont causing severe outcomes in neonates and adults.
- GBS frequently infects diabetic wounds but is rare in non-diabetic wounds, suggesting a role for diabetic host factors.
- Previous studies indicated increased neutrophil factors and bacterial metal transport genes in diabetic wound infections.
Purpose of the Study:
- To investigate the pathogenesis of GBS in a Streptozotocin-induced diabetic wound model.
- To evaluate the role of host metal chelators and bacterial metal transporters in GBS diabetic wound infections.
Main Methods:
- Development of a Streptozotocin-induced diabetic mouse wound model.
- Quantification of metal chelators (calprotectin, lipocalin-2) in diabetic and non-diabetic wounds.
- Assessment of GBS survival using wild-type and metal transporter mutant strains in both wound types.
Main Results:
- Diabetic wounds showed increased levels of calprotectin and lipocalin-2 compared to non-diabetic wounds.
- Calprotectin inhibited GBS survival in non-diabetic wounds but not in diabetic wounds.
- GBS metal transporters (Zn, Mn, Ni) were dispensable for diabetic wound infection but aided persistence in non-diabetic wounds.
Conclusions:
- Functional nutritional immunity via calprotectin effectively mitigates GBS in non-diabetic wounds.
- In diabetic wounds, calprotectin is insufficient to control GBS persistence, indicating impaired host immunity.
- Altered host immunity in diabetes contributes to the success and persistence of GBS in diabetic wound infections.
Abstract:
Group B Streptococcus (GBS) is a Gram-positive pathobiont that can cause adverse health outcomes in neonates and vulnerable adult populations. GBS is one of the most frequently isolated bacteria from diabetic (Db) wound infections but is rarely found in the non-diabetic (nDb) wound environment. Previously, RNA sequencing of wound tissue from Db wound infections in leprdb diabetic mice showed increased expression of neutrophil factors, and genes involved in GBS metal transport such as the zinc (Zn), manganese (Mn), and putative nickel (Ni) import systems. Here, we develop a Streptozotocin-induced diabetic wound model to evaluate the pathogenesis of two invasive strains of GBS, serotypes Ia and V. We observe an increase in metal chelators such as calprotectin (CP) and lipocalin-2 during diabetic wound infections compared to nDb. We find that CP limits GBS survival in wounds of non-diabetic mice but does not impact survival in diabetic wounds. Additionally, we utilize GBS metal transporter mutants and determine that the Zn, Mn, and putative Ni transporters in GBS are dispensable in diabetic wound infection but contributed to bacterial persistence in non-diabetic animals. Collectively, these data suggest that in non-diabetic mice, functional nutritional immunity mediated by CP is effective at mitigating GBS infection, whereas in diabetic mice, the presence of CP is not sufficient to control GBS wound persistence. IMPORTANCE Diabetic wound infections are difficult to treat and often become chronic due to an impaired immune response as well as the presence of bacterial species that establish persistent infections. Group B Streptococcus (GBS) is one of the most frequently isolated bacterial species in diabetic wound infections and, as a result, is one of the leading causes of death from skin and subcutaneous infection. However, GBS is notoriously absent in non-diabetic wounds, and little is known about why this species thrives in diabetic infection. The work herein investigates how alterations in diabetic host immunity may contribute to GBS success during diabetic wound infection.
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