Related Experiment Video
Updated: Oct 8, 2025

Introducing a Gene Knockout Directly Into the Amastigote Stage of Trypanosoma cruzi Using the CRISPR/Cas9 System
Published on: July 31, 2019
Is It Possible to Intervene in the Capacity of Trypanosoma cruzi to Elicit and Evade the Complement System?
Galia Ramírez-Toloza1, Lorena Aguilar-Guzmán2, Carolina Valck3
1Department of Preventive Veterinary Medicine, Faculty of Veterinary Medicine and Livestock Sciences, University of Chile, Santiago, Chile.
Insights
Chagas disease, caused by Trypanosoma cruzi, spreads via insects and mother-to-child. Trypanosoma cruzi uses surface molecules like calreticulin to evade immune responses, offering a potential therapeutic target.
Area of Science:
- Parasitology
- Immunology
- Tropical Medicine
Background:
- Chagas' disease affects over 6 million people, primarily in Latin America.
- Trypanosoma cruzi is transmitted by triatomine insects and via transplacental routes, contributing to global spread.
- Infection leads to asymptomatic immunity in 70% of cases, while 30% develop chronic pathologies.
Purpose of the Study:
- To review immunogenic and protective Trypanosoma cruzi surface molecules.
- To discuss parasite strategies for evading host complement-mediated immune responses.
- To explore the role of Trypanosoma cruzi calreticulin in immune evasion and its therapeutic potential.
Main Methods:
- Review of experimental data on Trypanosoma cruzi surface molecules.
- Analysis of parasite strategies for evading complement system.
- Investigation of calreticulin translocation to the parasite surface.
Main Results:
- Several Trypanosoma cruzi surface molecules are immunogenic and protective in experimental models.
- Trypanosoma cruzi employs strategies to evade complement-mediated immunity.
- Translocation of calreticulin to the trypomastigote surface inhibits complement activation.
Conclusions:
- Trypanosoma cruzi surface molecules, including calreticulin, play crucial roles in immune evasion.
- Targeting the interaction of calreticulin and other molecules with the complement system may inhibit parasite infectivity.
- Intervention strategies could offer new therapeutic avenues for Chagas' disease.
Abstract:
Chagas' disease is a zoonotic parasitic ailment now affecting more than 6 million people, mainly in Latin America. Its agent, the protozoan Trypanosoma cruzi, is primarily transmitted by endemic hematophagous triatomine insects. Transplacental transmission is also important and a main source for the emerging global expansion of this disease. In the host, the parasite undergoes intra (amastigotes) and extracellular infective (trypomastigotes) stages, both eliciting complex immune responses that, in about 70% of the cases, culminate in permanent immunity, concomitant with the asymptomatic presence of the parasite. The remaining 30% of those infected individuals will develop a syndrome, with variable pathological effects on the circulatory, nervous, and digestive systems. Herein, we review an important number of T. cruzi molecules, mainly located on its surface, that have been characterized as immunogenic and protective in various experimental setups. We also discuss a variety of parasite strategies to evade the complement system - mediated immune responses. Within this context, we also discuss the capacity of the T. cruzi infective trypomastigote to translocate the ER-resident chaperone calreticulin to its surface as a key evasive strategy. Herein, it is described that T. cruzi calreticulin inhibits the initial stages of activation of the host complement system, with obvious benefits for the parasite. Finally, we speculate on the possibility to experimentally intervene in the interaction of calreticulin and other T. cruzi molecules that interact with the complement system; thus resulting in significant inhibition of T. cruzi infectivity.
Related Concept Videos
Complement System
Cytotoxic T Cells-mediated Immune Response
Immunological surveillance is the ability of immune cells to monitor and eliminate infected cells with intracellular pathogens, neoplastically transformed cells, and cells with non-self antigens. Cytotoxic T cells and NK...

