Cargando…
The Low Variability of Tc24 in Trypanosoma cruzi TcI as an Advantage for Chagas Disease Prophylaxis and Diagnosis in Mexico
(1) Background: Chagas disease is the main neglected tropical disease in America. It is estimated that around 6 million people are currently infected with the parasite in Latin America, and 25 million live in endemic areas with active transmission. The disease causes an estimated economic loss of US...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10057631/ https://www.ncbi.nlm.nih.gov/pubmed/36986290 http://dx.doi.org/10.3390/pathogens12030368 |
_version_ | 1785016416752107520 |
---|---|
author | Becker, Ingeborg Miranda-Ortiz, Haydee Fernández-Figueroa, Edith A. Sánchez-Montes, Sokani Colunga-Salas, Pablo Grostieta, Estefanía Juárez-Gabriel, Javier Lozano-Sardaneta, Yokomi N. Arce-Fonseca, Minerva Rodríguez-Morales, Olivia Meneses-Ruíz, Gabriela Pastén-Sánchez, Sergio López Martínez, Irma González-Guzmán, Saúl Paredes-Cervantes, Vladimir Moreira, Otacilio C. Finamore-Araujo, Paula Canseco-Méndez, Julio C. Coquis-Navarrete, Uriel Rengifo-Correa, Laura González-Salazar, Constantino Alfaro-Cortés, Myrna M. Falcón-Lezama, Jorge A. Tapia-Conyer, Roberto Stephens, Christopher R. |
author_facet | Becker, Ingeborg Miranda-Ortiz, Haydee Fernández-Figueroa, Edith A. Sánchez-Montes, Sokani Colunga-Salas, Pablo Grostieta, Estefanía Juárez-Gabriel, Javier Lozano-Sardaneta, Yokomi N. Arce-Fonseca, Minerva Rodríguez-Morales, Olivia Meneses-Ruíz, Gabriela Pastén-Sánchez, Sergio López Martínez, Irma González-Guzmán, Saúl Paredes-Cervantes, Vladimir Moreira, Otacilio C. Finamore-Araujo, Paula Canseco-Méndez, Julio C. Coquis-Navarrete, Uriel Rengifo-Correa, Laura González-Salazar, Constantino Alfaro-Cortés, Myrna M. Falcón-Lezama, Jorge A. Tapia-Conyer, Roberto Stephens, Christopher R. |
author_sort | Becker, Ingeborg |
collection | PubMed |
description | (1) Background: Chagas disease is the main neglected tropical disease in America. It is estimated that around 6 million people are currently infected with the parasite in Latin America, and 25 million live in endemic areas with active transmission. The disease causes an estimated economic loss of USD 24 billion dollars annually, with a loss of 75,200 working years per year of life; it is responsible for around ~12,000 deaths annually. Although Mexico is an endemic country that recorded 10,186 new cases of Chagas disease during the period of 1990–2017, few studies have evaluated the genetic diversity of genes that could be involved in the prophylaxis and/or diagnosis of the parasite. One of the possible candidates proposed as a vaccine target is the 24 kDa trypomastigote excretory–secretory protein, Tc24, whose protection is linked to the stimulation of T. cruzi-specific CD8(+) immune responses. (2) Methods: The aim of the present study was to evaluate the fine-scale genetic diversity and structure of Tc24 in T. cruzi isolates from Mexico, and to compare them with other populations reported in the Americas with the aim to reconsider the potential role of Tc24 as a key candidate for the prophylaxis and improvement of the diagnosis of Chagas disease in Mexico. (3) Results: Of the 25 Mexican isolates analysed, 48% (12) were recovered from humans and 24% (6) recovered from Triatoma barberi and Triatoma dimidiata. Phylogenetic inferences revealed a polytomy in the T. cruzi clade with two defined subgroups, one formed by all sequences of the DTU I and the other formed by DTU II–VI; both subgroups had high branch support. Genetic population analysis detected a single (monomorphic) haplotype of TcI throughout the entire distribution across both Mexico and South America. This information was supported by Nei’s pairwise distances, where the sequences of TcI showed no genetic differences. (4) Conclusions: Given that both previous studies and the findings of the present work confirmed that TcI is the only genotype detected from human isolates obtained from various states of Mexico, and that there is no significant genetic variability in any of them, it is possible to propose the development of in silico strategies for the production of antigens that optimise the diagnosis of Chagas disease, such as quantitative ELISA methods that use this region of Tc24. |
format | Online Article Text |
id | pubmed-10057631 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-100576312023-03-30 The Low Variability of Tc24 in Trypanosoma cruzi TcI as an Advantage for Chagas Disease Prophylaxis and Diagnosis in Mexico Becker, Ingeborg Miranda-Ortiz, Haydee Fernández-Figueroa, Edith A. Sánchez-Montes, Sokani Colunga-Salas, Pablo Grostieta, Estefanía Juárez-Gabriel, Javier Lozano-Sardaneta, Yokomi N. Arce-Fonseca, Minerva Rodríguez-Morales, Olivia Meneses-Ruíz, Gabriela Pastén-Sánchez, Sergio López Martínez, Irma González-Guzmán, Saúl Paredes-Cervantes, Vladimir Moreira, Otacilio C. Finamore-Araujo, Paula Canseco-Méndez, Julio C. Coquis-Navarrete, Uriel Rengifo-Correa, Laura González-Salazar, Constantino Alfaro-Cortés, Myrna M. Falcón-Lezama, Jorge A. Tapia-Conyer, Roberto Stephens, Christopher R. Pathogens Article (1) Background: Chagas disease is the main neglected tropical disease in America. It is estimated that around 6 million people are currently infected with the parasite in Latin America, and 25 million live in endemic areas with active transmission. The disease causes an estimated economic loss of USD 24 billion dollars annually, with a loss of 75,200 working years per year of life; it is responsible for around ~12,000 deaths annually. Although Mexico is an endemic country that recorded 10,186 new cases of Chagas disease during the period of 1990–2017, few studies have evaluated the genetic diversity of genes that could be involved in the prophylaxis and/or diagnosis of the parasite. One of the possible candidates proposed as a vaccine target is the 24 kDa trypomastigote excretory–secretory protein, Tc24, whose protection is linked to the stimulation of T. cruzi-specific CD8(+) immune responses. (2) Methods: The aim of the present study was to evaluate the fine-scale genetic diversity and structure of Tc24 in T. cruzi isolates from Mexico, and to compare them with other populations reported in the Americas with the aim to reconsider the potential role of Tc24 as a key candidate for the prophylaxis and improvement of the diagnosis of Chagas disease in Mexico. (3) Results: Of the 25 Mexican isolates analysed, 48% (12) were recovered from humans and 24% (6) recovered from Triatoma barberi and Triatoma dimidiata. Phylogenetic inferences revealed a polytomy in the T. cruzi clade with two defined subgroups, one formed by all sequences of the DTU I and the other formed by DTU II–VI; both subgroups had high branch support. Genetic population analysis detected a single (monomorphic) haplotype of TcI throughout the entire distribution across both Mexico and South America. This information was supported by Nei’s pairwise distances, where the sequences of TcI showed no genetic differences. (4) Conclusions: Given that both previous studies and the findings of the present work confirmed that TcI is the only genotype detected from human isolates obtained from various states of Mexico, and that there is no significant genetic variability in any of them, it is possible to propose the development of in silico strategies for the production of antigens that optimise the diagnosis of Chagas disease, such as quantitative ELISA methods that use this region of Tc24. MDPI 2023-02-23 /pmc/articles/PMC10057631/ /pubmed/36986290 http://dx.doi.org/10.3390/pathogens12030368 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Becker, Ingeborg Miranda-Ortiz, Haydee Fernández-Figueroa, Edith A. Sánchez-Montes, Sokani Colunga-Salas, Pablo Grostieta, Estefanía Juárez-Gabriel, Javier Lozano-Sardaneta, Yokomi N. Arce-Fonseca, Minerva Rodríguez-Morales, Olivia Meneses-Ruíz, Gabriela Pastén-Sánchez, Sergio López Martínez, Irma González-Guzmán, Saúl Paredes-Cervantes, Vladimir Moreira, Otacilio C. Finamore-Araujo, Paula Canseco-Méndez, Julio C. Coquis-Navarrete, Uriel Rengifo-Correa, Laura González-Salazar, Constantino Alfaro-Cortés, Myrna M. Falcón-Lezama, Jorge A. Tapia-Conyer, Roberto Stephens, Christopher R. The Low Variability of Tc24 in Trypanosoma cruzi TcI as an Advantage for Chagas Disease Prophylaxis and Diagnosis in Mexico |
title | The Low Variability of Tc24 in Trypanosoma cruzi TcI as an Advantage for Chagas Disease Prophylaxis and Diagnosis in Mexico |
title_full | The Low Variability of Tc24 in Trypanosoma cruzi TcI as an Advantage for Chagas Disease Prophylaxis and Diagnosis in Mexico |
title_fullStr | The Low Variability of Tc24 in Trypanosoma cruzi TcI as an Advantage for Chagas Disease Prophylaxis and Diagnosis in Mexico |
title_full_unstemmed | The Low Variability of Tc24 in Trypanosoma cruzi TcI as an Advantage for Chagas Disease Prophylaxis and Diagnosis in Mexico |
title_short | The Low Variability of Tc24 in Trypanosoma cruzi TcI as an Advantage for Chagas Disease Prophylaxis and Diagnosis in Mexico |
title_sort | low variability of tc24 in trypanosoma cruzi tci as an advantage for chagas disease prophylaxis and diagnosis in mexico |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10057631/ https://www.ncbi.nlm.nih.gov/pubmed/36986290 http://dx.doi.org/10.3390/pathogens12030368 |
work_keys_str_mv | AT beckeringeborg thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT mirandaortizhaydee thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT fernandezfigueroaeditha thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT sanchezmontessokani thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT colungasalaspablo thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT grostietaestefania thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT juarezgabrieljavier thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT lozanosardanetayokomin thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT arcefonsecaminerva thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT rodriguezmoralesolivia thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT menesesruizgabriela thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT pastensanchezsergio thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT lopezmartinezirma thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT gonzalezguzmansaul thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT paredescervantesvladimir thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT moreiraotacilioc thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT finamorearaujopaula thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT cansecomendezjulioc thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT coquisnavarreteuriel thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT rengifocorrealaura thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT gonzalezsalazarconstantino thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT alfarocortesmyrnam thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT falconlezamajorgea thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT tapiaconyerroberto thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT stephenschristopherr thelowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT beckeringeborg lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT mirandaortizhaydee lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT fernandezfigueroaeditha lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT sanchezmontessokani lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT colungasalaspablo lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT grostietaestefania lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT juarezgabrieljavier lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT lozanosardanetayokomin lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT arcefonsecaminerva lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT rodriguezmoralesolivia lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT menesesruizgabriela lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT pastensanchezsergio lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT lopezmartinezirma lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT gonzalezguzmansaul lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT paredescervantesvladimir lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT moreiraotacilioc lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT finamorearaujopaula lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT cansecomendezjulioc lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT coquisnavarreteuriel lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT rengifocorrealaura lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT gonzalezsalazarconstantino lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT alfarocortesmyrnam lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT falconlezamajorgea lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT tapiaconyerroberto lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico AT stephenschristopherr lowvariabilityoftc24intrypanosomacruzitciasanadvantageforchagasdiseaseprophylaxisanddiagnosisinmexico |