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Introducing a Gene Knockout Directly Into the Amastigote Stage of Trypanosoma cruzi Using the CRISPR/Cas9 System
Published on: July 31, 2019
Genetically attenuated Trypanosoma cruzi parasites as a potential vaccination tool
Cecilia Pérez Brandan1, Miguel Ángel Basombrío
1Instituto de Patología Experimental-CONICET, Universidad Nacional de Salta, Salta, Argentina. cecilia.perezbrandan@conicet.gov.ar
Abstract:
Chagas disease is the clinical manifestation of the infection produced by the parasite Trypanosoma cruzi. Currently there is no vaccine to prevent this disease and the protection attained with vaccines containing non-replicating parasites is limited. Genetically attenuated trypanosomatid parasites can be obtained by deletion of selected genes. Gene deletion takes advantage of the fact that this parasite can undergo homologous recombination between endogenous and foreign DNA sequences artificially introduced in the cells. This approach facilitated the discovery of several unknown gene functions, as well as allowing us to speculate about the potential for genetically attenuated live organisms as experimental immunogens. Vaccination with live attenuated parasites has been used effectively in mice to reduce parasitemia and histological damage, and in dogs, to prevent vector-delivered infection in the field. However, the use of live parasites as immunogens is controversial due to the risk of reversion to a virulent phenotype. Herein, we present our results from experiments on genetic manipulation of two T. cruzi strains to produce parasites with impaired replication and infectivity, and using the mutation of the dhfr-ts gene as a safety device against reversion to virulence.
Insights
Developing a safe vaccine for Chagas disease is crucial. Researchers genetically modified Trypanosoma cruzi parasites, creating attenuated strains with a safety gene to prevent reversion to virulence, offering a promising vaccine candidate.
Area of Science:
- Molecular Biology
- Parasitology
- Vaccinology
Background:
- Chagas disease, caused by Trypanosoma cruzi, lacks an effective vaccine.
- Current vaccines offer limited protection.
- Genetically attenuated parasites show potential as immunogens.
Purpose of the Study:
- To genetically manipulate Trypanosoma cruzi strains.
- To create attenuated parasites with impaired replication and infectivity.
- To incorporate a safety mechanism against reversion to virulence.
Main Methods:
- Gene deletion via homologous recombination in T. cruzi.
- Targeted mutation of the dhfr-ts gene for attenuation.
- Evaluation of replication and infectivity in modified strains.
Main Results:
- Successfully produced genetically modified T. cruzi strains with reduced replication and infectivity.
- The dhfr-ts gene mutation served as a safety feature against virulence reversion.
- Demonstrated the potential of live attenuated parasites as vaccine candidates.
Conclusions:
- Genetically attenuated T. cruzi parasites represent a viable strategy for Chagas disease vaccine development.
- The dhfr-ts gene mutation enhances the safety profile of live attenuated vaccines.
- Further research is warranted to assess the efficacy and safety of these experimental immunogens.

