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Engineering a single-chain antibody against Trypanosoma cruzi metacyclic trypomastigotes to block cell invasion

Trypanosoma cruzi is a flagellate protozoan pathogen that causes Chagas disease. Currently there is no preventive treatment and the efficiency of the two drugs available is limited to the acute phase. Therefore, there is an unmet need for innovative tools to block transmission in endemic areas. In t...

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Autores principales: Demeu, Lara Maria Kalempa, Soares, Rodrigo Jahn, Miranda, Juliana Severo, Pacheco-Lugo, Lisandro A., Oliveira, Kelin Gonçalves, Cortez Plaza, Cristian Andrés, Billiald, Philippe, Ferreira de Moura, Juliana, Yoshida, Nobuko, Alvarenga, Larissa Magalhães, DaRocha, Wanderson Duarte
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6795462/
https://www.ncbi.nlm.nih.gov/pubmed/31618282
http://dx.doi.org/10.1371/journal.pone.0223773
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author Demeu, Lara Maria Kalempa
Soares, Rodrigo Jahn
Miranda, Juliana Severo
Pacheco-Lugo, Lisandro A.
Oliveira, Kelin Gonçalves
Cortez Plaza, Cristian Andrés
Billiald, Philippe
Ferreira de Moura, Juliana
Yoshida, Nobuko
Alvarenga, Larissa Magalhães
DaRocha, Wanderson Duarte
author_facet Demeu, Lara Maria Kalempa
Soares, Rodrigo Jahn
Miranda, Juliana Severo
Pacheco-Lugo, Lisandro A.
Oliveira, Kelin Gonçalves
Cortez Plaza, Cristian Andrés
Billiald, Philippe
Ferreira de Moura, Juliana
Yoshida, Nobuko
Alvarenga, Larissa Magalhães
DaRocha, Wanderson Duarte
author_sort Demeu, Lara Maria Kalempa
collection PubMed
description Trypanosoma cruzi is a flagellate protozoan pathogen that causes Chagas disease. Currently there is no preventive treatment and the efficiency of the two drugs available is limited to the acute phase. Therefore, there is an unmet need for innovative tools to block transmission in endemic areas. In this study, we engineered a novel recombinant molecule able to adhere to the T. cruzi surface, termed scFv-10D8, that consists of a single-chain variable fragment (scFv) derived from mAb-10D8 that targets gp35/50. The synthetic gene encoding scFv-10D8 was cloned and fused to a 6×His tag and expressed in a prokaryotic expression system. Total periplasmic or 6xHis tag affinity-purified fractions of scFv-10D8 retained the capacity to bind to gp35/50, as shown by Western blot analyses. Pre-incubation of metacyclic trypomastigotes with scFv-10D8 showed a remarkable reduction in cell invasion capacity. Our results suggest that scFv-10D8 can be used in a paratransgenic approach to target parasites in insect vectors, avoiding dissemination of infective forms. Such advances in the development of this functional molecule will surely prompt the improvement of alternative strategies to control Chagas disease by targeting mammalian host stages.
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spelling pubmed-67954622019-10-20 Engineering a single-chain antibody against Trypanosoma cruzi metacyclic trypomastigotes to block cell invasion Demeu, Lara Maria Kalempa Soares, Rodrigo Jahn Miranda, Juliana Severo Pacheco-Lugo, Lisandro A. Oliveira, Kelin Gonçalves Cortez Plaza, Cristian Andrés Billiald, Philippe Ferreira de Moura, Juliana Yoshida, Nobuko Alvarenga, Larissa Magalhães DaRocha, Wanderson Duarte PLoS One Research Article Trypanosoma cruzi is a flagellate protozoan pathogen that causes Chagas disease. Currently there is no preventive treatment and the efficiency of the two drugs available is limited to the acute phase. Therefore, there is an unmet need for innovative tools to block transmission in endemic areas. In this study, we engineered a novel recombinant molecule able to adhere to the T. cruzi surface, termed scFv-10D8, that consists of a single-chain variable fragment (scFv) derived from mAb-10D8 that targets gp35/50. The synthetic gene encoding scFv-10D8 was cloned and fused to a 6×His tag and expressed in a prokaryotic expression system. Total periplasmic or 6xHis tag affinity-purified fractions of scFv-10D8 retained the capacity to bind to gp35/50, as shown by Western blot analyses. Pre-incubation of metacyclic trypomastigotes with scFv-10D8 showed a remarkable reduction in cell invasion capacity. Our results suggest that scFv-10D8 can be used in a paratransgenic approach to target parasites in insect vectors, avoiding dissemination of infective forms. Such advances in the development of this functional molecule will surely prompt the improvement of alternative strategies to control Chagas disease by targeting mammalian host stages. Public Library of Science 2019-10-16 /pmc/articles/PMC6795462/ /pubmed/31618282 http://dx.doi.org/10.1371/journal.pone.0223773 Text en © 2019 Demeu et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Demeu, Lara Maria Kalempa
Soares, Rodrigo Jahn
Miranda, Juliana Severo
Pacheco-Lugo, Lisandro A.
Oliveira, Kelin Gonçalves
Cortez Plaza, Cristian Andrés
Billiald, Philippe
Ferreira de Moura, Juliana
Yoshida, Nobuko
Alvarenga, Larissa Magalhães
DaRocha, Wanderson Duarte
Engineering a single-chain antibody against Trypanosoma cruzi metacyclic trypomastigotes to block cell invasion
title Engineering a single-chain antibody against Trypanosoma cruzi metacyclic trypomastigotes to block cell invasion
title_full Engineering a single-chain antibody against Trypanosoma cruzi metacyclic trypomastigotes to block cell invasion
title_fullStr Engineering a single-chain antibody against Trypanosoma cruzi metacyclic trypomastigotes to block cell invasion
title_full_unstemmed Engineering a single-chain antibody against Trypanosoma cruzi metacyclic trypomastigotes to block cell invasion
title_short Engineering a single-chain antibody against Trypanosoma cruzi metacyclic trypomastigotes to block cell invasion
title_sort engineering a single-chain antibody against trypanosoma cruzi metacyclic trypomastigotes to block cell invasion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6795462/
https://www.ncbi.nlm.nih.gov/pubmed/31618282
http://dx.doi.org/10.1371/journal.pone.0223773
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