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Published on: October 15, 2019
Human HLA prolongs the host inflammatory response in Streptococcus suis serotype 2 infection compared to mouse H2
Chengpei Ni1, Yi Han1, Yajing Wang1
1The Affiliated Wuxi Center for Disease Control and Prevention of Nanjing Medical University, Wuxi Center for Disease Control and Prevention, Wuxi, China.
Abstract:
Streptococcus suis (S. suis) is widely acknowledged as a significant zoonotic pathogen in Southeast Asia and China, which has led to a substantial number of fatalities in both swine and humans. Despite the prevalent use of mice as the primary animal model to study S. suis pathogenesis, the substantial differences in the major histocompatibility complex (MHC) between humans and mice underscore the ongoing exploration for a more suitable and effective animal model. In this study, humanized transgenic HLA-A11/DR1 genotypes mice were used to evaluate the differences between humanized HLA and murine H2 in S. suis infection. Following intravenous administration of S. suis suspensions, we investigated bacterial load, cytokine profiles, pathological alterations, and immune cell recruitment in both Wild-type (WT) and humanized mice across different post-infection time points. Relative to WT mice, humanized mice exhibited heightened pro-inflammatory cytokines, exacerbated tissue damage, increased granulocyte recruitment with impaired resolution, notably more pronounced during the late infection stage. Additionally, our examination of bacterial clearance rates suggests that HLA-A11/DR1 primarily influences cell recruitment and mitochondrial reactive oxygen species (ROS) production, which affects the bacterial killing capacity of macrophages in the late stage of infection. The reduced IL-10 production and lower levels of regulatory T cells in humanized mice could underlie their compromised resolution ability. Intervention with IL-10 promotes bacterial clearance and inflammatory regression in the late stages of infection in transgenic mice. Our findings underscore the heightened sensitivity of HLA-A11/DR1 mice with impaired resolution to S. suis infection, effectively mirroring the immune response seen in humans during infection. The humanized HLA-A11/DR1 mice could serve as an optimal animal model for investigating the pathogenic and therapeutic mechanisms associated with sepsis and other infectious diseases.
Insights
Humanized mice with HLA-A11/DR1 show heightened inflammation and impaired resolution during Streptococcus suis infection, highlighting their potential as a better model for human disease. This study suggests IL-10 intervention can improve outcomes.
Area of Science:
- Immunology
- Infectious Diseases
- Animal Models
Background:
- Streptococcus suis is a significant zoonotic pathogen causing severe illness and fatalities in swine and humans.
- Existing mouse models have limitations due to major histocompatibility complex (MHC) differences with humans, necessitating better models for S. suis pathogenesis studies.
Purpose of the Study:
- To evaluate humanized transgenic HLA-A11/DR1 mice as a model for Streptococcus suis infection.
- To compare the immune response in humanized mice versus wild-type (WT) mice following S. suis infection.
Main Methods:
- Humanized HLA-A11/DR1 transgenic mice and WT mice were infected intravenously with S. suis.
- Bacterial load, cytokine profiles, pathological changes, and immune cell recruitment were analyzed at various time points.
- Bacterial clearance rates, reactive oxygen species (ROS) production, and IL-10 levels were assessed.
Main Results:
- Humanized mice exhibited increased pro-inflammatory cytokines, exacerbated tissue damage, and impaired granulocyte recruitment and resolution compared to WT mice.
- HLA-A11/DR1 influenced cell recruitment and ROS production, impacting macrophage bacterial killing capacity.
- Reduced IL-10 and regulatory T cells in humanized mice correlated with compromised resolution; IL-10 intervention improved outcomes.
Conclusions:
- Humanized HLA-A11/DR1 mice demonstrate heightened sensitivity and impaired resolution to S. suis infection, closely mirroring human immune responses.
- These mice represent an optimal model for studying pathogenic and therapeutic mechanisms in sepsis and other infectious diseases.

