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Quantitative 3D Imaging of Trypanosoma cruzi-Infected Cells, Dormant Amastigotes, and T Cells in Intact Clarified Organs
Published on: June 23, 2022
Trypanosoma cruzi infection induces a global host cell response in cardiomyocytes
Patricio A Manque1, Christian M Probst, Christian Probst
1Department of Microbiology, Virginia Commonwealth University, Richmond, VA, USA.
Insights
Trypanosoma cruzi infection triggers significant changes in host cell genes, impacting immune response and cell functions. This research offers insights into parasite survival and disease progression in Chagas disease.
Area of Science:
- Molecular Biology
- Parasitology
- Immunology
Background:
- Chagas' disease, caused by Trypanosoma cruzi, affects millions, with chronic chagasic cardiomyopathy being a severe complication.
- The parasite's interaction with cardiomyocytes is crucial for disease development.
Purpose of the Study:
- To investigate the host cell's molecular response to Trypanosoma cruzi invasion.
- To identify genes differentially expressed during early infection stages.
Main Methods:
- Utilized murine microarrays to analyze gene expression in primary murine cardiomyocytes infected with T. cruzi trypomastigotes.
- Focused on early stages of parasite invasion and cellular infection.
Main Results:
- Identified 353 differentially expressed murine genes during T. cruzi cardiomyocyte invasion.
- Observed modulation of genes involved in immune response, inflammation, cytoskeleton, cell interactions, apoptosis, cell cycle, and oxidative stress.
Conclusions:
- Trypanosoma cruzi broadly modulates host cell machinery upon invasion.
- These modulations provide insights into parasite persistence, replication, and the clinical outcomes of Chagas disease.
Abstract:
Chagas' disease, caused by the hemoflagellate protozoan Trypanosoma cruzi, affects millions of people in South and Central America. Chronic chagasic cardiomyopathy, the most devastating manifestation of this disease, occurs in approximately one-third of infected individuals. Events associated with the parasite's tropism for and invasion of cardiomyocytes have been the focus of intense investigation in recent years. In the present study, we use murine microarrays to investigate the cellular response caused by invasion of primary murine cardiomyocytes by T. cruzi trypomastigotes. These studies identified 353 murine genes that were differentially expressed during the early stages of invasion and infection of these cells. Genes associated with the immune response, inflammation, cytoskeleton organization, cell-cell and cell-matrix interactions, apoptosis, cell cycle, and oxidative stress are among those affected during the infection. Our data indicate that T. cruzi induces broad modulations of the host cell machinery in ways that provide insight into how the parasite survives, replicates, and persists in the infected host and ultimately defines the clinical outcome of the infection.
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