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Published on: November 16, 2016
Murine model of recurrent group G streptococcal cellulitis: no evidence of protective immunity
1Miami VA Medical Center, Florida 33125, USA. ABISNO@MEDNET.MED.MIAMI.EDU
Abstract:
Despite the well-known tendency of cellulitis due to beta-hemolytic streptococci to recur, little is known regarding the mechanisms of human immunity to this infection. We established cellulitis in mice by using a strain of group G streptococcus (1750) originally isolated from the bloodstream of a patient with acute cellulitis. This strain, which has been studied extensively in our laboratory, expresses M protein structurally and functionally analogous to that of group A streptococci, and we have cloned and sequenced the gene encoding this protein (emmMG1). Mice injected with 5 x 10(7) CFU of strain 1750 developed nonlethal necrotic skin and soft tissue infections that healed spontaneously after 14 to 16 days. After healing, the mice were repetitively reinoculated three times with the same challenge dose of 1750. Lesion size did not decrease in severity, size, or time to healing after repetitive challenge. The maximum lesion size and tissue concentration of microorganisms increased between the first and fourth challenges. Pretreatment of 1750 cells with opsonic antisera to MG1 diminished neither the maximum lesion size nor the time course of evolution of the lesions. Thus, in the mouse model used here, there was no evidence of acquired protective immunity to experimentally induced cellulitis.
Insights
This study investigated immunity to cellulitis caused by Group G Streptococcus in mice. Researchers found no evidence of acquired protective immunity after repeated infections, suggesting a need for further research into effective treatments.
Area of Science:
- Microbiology
- Immunology
- Infectious Diseases
Background:
- Cellulitis caused by beta-hemolytic streptococci is known for recurrence.
- Mechanisms of human immunity to streptococcal cellulitis are poorly understood.
Purpose of the Study:
- To investigate acquired protective immunity to experimentally induced cellulitis in a mouse model.
- To understand the immune response to Group G Streptococcus (GGS) infection.
Main Methods:
- Induced cellulitis in mice using a specific strain of Group G Streptococcus (1750) expressing M protein.
- Assessed lesion development and healing after initial infection and subsequent challenges.
- Evaluated the effect of opsonic antisera on infection severity.
Main Results:
- Mice developed nonlethal skin and soft tissue infections that healed spontaneously.
- Repetitive GGS challenges did not reduce lesion severity, size, or healing time.
- Maximum lesion size and bacterial concentration increased with repeated infections.
- Opsonic antisera did not diminish lesion size or alter the infection's course.
Conclusions:
- The mouse model showed no evidence of acquired protective immunity to experimentally induced cellulitis.
- Further research is needed to elucidate mechanisms of immunity and develop effective interventions for recurrent cellulitis.

