Role of myeloid-derived suppressor cells during Trypanosoma cruzi infection
Eliana Borgna1, Estefanía Prochetto1, Juan Cruz Gamba1
1Laboratorio de Tecnología Inmunológica, Facultad de Bioquímica y Ciencias Biológicas, Universidad Nacional del Litoral, Santa Fe, Argentina.
Insights
Myeloid-derived suppressor cells (MDSCs) are crucial in Chagas disease (CD) acute infection, suppressing the immune response. Understanding MDSC interactions is key to developing new CD treatments.
Area of Science:
- Immunology
- Parasitology
- Tropical Diseases
Background:
- Chagas disease (CD), caused by Trypanosoma cruzi, is a significant global health burden, particularly in Latin America.
- International migration has led to CD becoming an emerging health issue in nonendemic regions.
- Current research has not yet yielded a vaccine for Chagas disease due to the parasite's complex life cycle and immune evasion strategies.
Conclusions:
- MDSCs play a pivotal role in the immune response during the acute phase of Chagas disease.
- The complex interactions of MDSCs with effector and regulatory immune cells shape the disease's outcome.
- Further understanding of MDSC functions and crosstalk is essential for developing effective interventions against Chagas disease.
Abstract:
Chagas disease (CD), caused by the protozoan parasite Trypanosoma cruzi, is the third largest parasitic disease burden globally. Currently, more than 6 million people are infected, mainly in Latin America, but international migration has turned CD into an emerging health problem in many nonendemic countries. Despite intense research, a vaccine is still not available. A complex parasite life cycle, together with numerous immune system manipulation strategies, may account for the lack of a prophylactic or therapeutic vaccine. There is substantial experimental evidence supporting that T. cruzi acute infection generates a strong immunosuppression state that involves numerous immune populations with regulatory/suppressive capacity. Myeloid-derived suppressor cells (MDSCs), Foxp3+ regulatory T cells (Tregs), regulatory dendritic cells and B regulatory cells are some of the regulatory populations that have been involved in the acute immune response elicited by the parasite. The fact that, during acute infection, MDSCs increase notably in several organs, such as spleen, liver and heart, together with the observation that depletion of those cells can decrease mouse survival to 0%, strongly suggests that MDSCs play a major role during acute T. cruzi infection. Accumulating evidence gained in different settings supports the capacity of MDSCs to interact with cells from both the effector and the regulatory arms of the immune system, shaping the outcome of the response in a very wide range of scenarios that include pathological and physiological processes. In this sense, the aim of the present review is to describe the main knowledge about MDSCs acquired so far, including several crosstalk with other immune populations, which could be useful to gain insight into their role during T. cruzi infection.
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