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Updated: May 29, 2025

Isolation of Murine Peritoneal Macrophages to Carry Out Gene Expression Analysis Upon Toll-like Receptors Stimulation
Published on: April 29, 2015
Protection acquired upon intraperitoneal group a Streptococcus immunization is independent of concurrent adaptive
Shiva Emami1, Elsa Westerlund1, Thiago Rojas Converso1
1Department of Experimental Medical Science, Lund University, Lund, Sweden.
Abstract:
Group A Streptococcus (GAS; Streptococcus pyogenes) is an important bacterial pathogen causing over 700 million superficial infections and around 500.000 deaths due to invasive disease or severe post-infection sequelae yearly. In spite of this major impact on society, there is currently no vaccine available against this bacterium. GAS strains can be separated into >250 distinct emm (M)-types, and protective immunity against GAS is believed to in part be dependent on type-specific antibodies. Here, we analyse the nature of protective immunity generated against GAS in a model of intraperitoneal immunization in mice. We demonstrate that multiple immunizations are required for the ability to survive a subsequent lethal challenge, and although significant levels of GAS-specific antibodies are produced, these are redundant for protection. Instead, our data show that the immunization-dependent protection in this model is induced in the absence of B and T cells and is accompanied by the induction of an altered acute cytokine profile upon subsequent infection, noticeable e.g. by the absence of classical pro-inflammatory cytokines and increased IFN-γ production. Further, the ability of immunized mice to survive a lethal infection is dependent on macrophages and the macrophage-activating cytokine IFN-γ. To our knowledge these findings are the first to suggest that GAS may have the ability to induce forms of trained innate immunity. Taken together, the current study proposes a novel role for the innate immune system in response to GAS infections that potentially could be leveraged for future development of effective vaccines.
Insights
Group A Streptococcus (GAS) infections cause millions of deaths yearly. This study reveals that innate immunity, not antibodies, protects against GAS, suggesting new vaccine strategies.
Area of Science:
- Immunology
- Infectious Diseases
- Microbiology
Background:
- Group A Streptococcus (GAS), or Streptococcus pyogenes, causes significant global morbidity and mortality.
- Despite its impact, no vaccine is currently available for GAS.
- Immunity to GAS is traditionally thought to rely on type-specific antibodies.
Purpose of the Study:
- To investigate the mechanisms of protective immunity against GAS following immunization in a mouse model.
- To determine the role of adaptive immune cells (B and T cells) and antibodies in GAS protection.
- To explore the potential involvement of innate immune responses in GAS resistance.
Main Methods:
- Intraperitoneal immunization of mice with GAS.
- Assessment of survival rates following lethal GAS challenge.
- Analysis of B and T cell involvement using knockout models.
- Measurement of GAS-specific antibody levels.
- Evaluation of cytokine profiles and immune cell populations (macrophages) post-infection.
Main Results:
- Multiple immunizations were necessary for protection against lethal GAS challenge.
- Protection was achieved independently of B and T cells, and antibodies were found to be redundant.
- Immunization induced an altered cytokine profile upon infection, characterized by reduced pro-inflammatory cytokines and increased IFN-γ.
- Protection was dependent on macrophages and IFN-γ.
Conclusions:
- GAS infection can induce a form of trained innate immunity.
- The innate immune system, particularly macrophages and IFN-γ, plays a crucial role in protection against GAS.
- These findings suggest novel avenues for developing effective GAS vaccines targeting innate immunity.
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