Platelets, Macrophages, and Thromboinflammation in Chagas Disease

Subhadip Choudhuri1, Nisha J Garg1

  • 1Department of Microbiology and Immunology, Institute for Human Infections and Immunity, University of Texas Medical Branch, Galveston, TX, USA.

Insights

Chagas disease involves parasite persistence and oxidative stress. Platelet and immune cell interactions may drive hypercoagulability and thromboinflammation in chronic Chagas disease.

Area of Science:

  • Immunology
  • Parasitology
  • Cardiovascular Medicine

Background:

  • Chagas disease (CD) is caused by *Trypanosoma cruzi* and presents significant health challenges globally.
  • Oxidative stress, inflammation, and endothelial dysfunction are key pathogenic factors in CD.
  • Thrombosis and thromboembolic events, including stroke, are observed in early CD stages, even before cardiac symptoms manifest.

Purpose of the Study:

  • To review current literature on platelet (PLT) and immune cell interactions in Chagas disease.
  • To explore how *T. cruzi* infection influences the systemic microenvironment affecting these interactions.
  • To elucidate mechanisms sustaining hypercoagulability and thromboinflammation in chronic CD.

Main Methods:

  • Literature review and synthesis of existing research.
  • Extrapolation of mechanistic pathways.
  • Focus on interactions between platelets, monocytes, and macrophages.

Main Results:

  • *T. cruzi* infection induces endothelial dysfunction, PLT, and immune-cell activation.
  • Host and parasite factors contribute to hypercoagulability and stroke risk in early CD.
  • The precise roles of PLTs and immune cells in CD pathogenesis, particularly in shaping inflammation, require further investigation.

Conclusions:

  • Platelet and innate immune cell interactions, especially with monocytes and macrophages, are implicated in sustaining hypercoagulability and thromboinflammation in chronic Chagas disease.
  • Understanding these complex interactions is crucial for developing targeted therapies.
  • Further research is needed to fully unravel the mechanisms involved.