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Updated: May 27, 2026

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Trypanosoma cruzi as an effective cancer antigen delivery vector
Caroline Junqueira1, Luara I Santos, Bruno Galvão-Filho
1Departamento de Bioquímica e Imunologia, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, 31270-901, Belo Horizonte, Minas Gerais, Brazil.
Abstract:
One of the main challenges in cancer research is the development of vaccines that induce effective and long-lived protective immunity against tumors. Significant progress has been made in identifying members of the cancer testis antigen family as potential vaccine candidates. However, an ideal form for antigen delivery that induces robust and sustainable antigen-specific T-cell responses, and in particular of CD8(+) T lymphocytes, remains to be developed. Here we report the use of a recombinant nonpathogenic clone of Trypanosoma cruzi as a vaccine vector to induce vigorous and long-term T cell-mediated immunity. The rationale for using the highly attenuated T. cruzi clone was (i) the ability of the parasite to persist in host tissues and therefore to induce a long-term antigen-specific immune response; (ii) the existence of intrinsic parasite agonists for Toll-like receptors and consequent induction of highly polarized T helper cell type 1 responses; and (iii) the parasite replication in the host cell cytoplasm, leading to direct antigen presentation through the endogenous pathway and consequent induction of antigen-specific CD8(+) T cells. Importantly, we found that parasites expressing a cancer testis antigen (NY-ESO-1) were able to elicit human antigen-specific T-cell responses in vitro and solid protection against melanoma in a mouse model. Furthermore, in a therapeutic protocol, the parasites expressing NY-ESO-1 delayed the rate of tumor development in mice. We conclude that the T. cruzi vector is highly efficient in inducing T cell-mediated immunity and protection against cancer cells. More broadly, this strategy could be used to elicit a long-term T cell-mediated immunity and used for prophylaxis or therapy of chronic infectious diseases.
Insights
A novel vaccine vector using a modified Trypanosoma cruzi parasite effectively induces long-term T-cell immunity against cancer. This approach shows promise for developing robust cancer vaccines and treating chronic diseases.
Area of Science:
- Immunology
- Vaccinology
- Parasitology
Background:
- Developing effective cancer vaccines requires robust, long-lived T-cell responses.
- Cancer testis antigens are promising vaccine targets, but optimal delivery remains a challenge.
- CD8(+) T lymphocytes are crucial for anti-tumor immunity.
Purpose of the Study:
- To evaluate a recombinant Trypanosoma cruzi clone as a vaccine vector for cancer immunotherapy.
- To assess the vector's ability to induce sustained antigen-specific T-cell immunity, particularly CD8(+) T cells.
- To investigate the efficacy of the vector in preclinical models of cancer.
Main Methods:
- Utilized a highly attenuated, nonpathogenic clone of Trypanosoma cruzi as a vaccine vector.
- Engineered the vector to express the cancer testis antigen NY-ESO-1.
- Assessed T-cell responses in vitro and anti-tumor protection in a mouse melanoma model.
- Evaluated therapeutic potential in a tumor development delay protocol.
Main Results:
- The T. cruzi vector induced vigorous and long-term antigen-specific T-cell immunity.
- Parasites expressing NY-ESO-1 elicited human antigen-specific T-cell responses in vitro.
- Demonstrated solid protection against melanoma in a mouse model.
- Therapeutic administration of the vector delayed tumor development in mice.
Conclusions:
- The T. cruzi vaccine vector is highly efficient in inducing T-cell-mediated immunity against cancer cells.
- This strategy holds potential for prophylaxis and therapy of cancer and chronic infectious diseases.
- The vector's ability to promote long-term immunity via endogenous antigen presentation is a key advantage.
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