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Novel and Selective Rhipicephalus microplus Triosephosphate Isomerase Inhibitors with Acaricidal Activity

The cattle tick Rhipicephalus microplus is one of the most important ectoparasites causing significant economic losses for the cattle industry. The major tool of control is reducing the number of ticks, applying acaricides in cattle. However, overuse has led to selection of resistant populations of...

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Autores principales: Saramago, Luiz, Gomes, Helga, Aguilera, Elena, Cerecetto, Hugo, González, Mercedes, Cabrera, Mauricio, Alzugaray, Maria Fernanda, da Silva Vaz Junior, Itabajara, Nunes da Fonseca, Rodrigo, Aguirre-López, Beatriz, Cabrera, Nallely, Pérez-Montfort, Ruy, Merlino, Alicia, Moraes, Jorge, Álvarez, Guzmán
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6163981/
https://www.ncbi.nlm.nih.gov/pubmed/30142944
http://dx.doi.org/10.3390/vetsci5030074
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author Saramago, Luiz
Gomes, Helga
Aguilera, Elena
Cerecetto, Hugo
González, Mercedes
Cabrera, Mauricio
Alzugaray, Maria Fernanda
da Silva Vaz Junior, Itabajara
Nunes da Fonseca, Rodrigo
Aguirre-López, Beatriz
Cabrera, Nallely
Pérez-Montfort, Ruy
Merlino, Alicia
Moraes, Jorge
Álvarez, Guzmán
author_facet Saramago, Luiz
Gomes, Helga
Aguilera, Elena
Cerecetto, Hugo
González, Mercedes
Cabrera, Mauricio
Alzugaray, Maria Fernanda
da Silva Vaz Junior, Itabajara
Nunes da Fonseca, Rodrigo
Aguirre-López, Beatriz
Cabrera, Nallely
Pérez-Montfort, Ruy
Merlino, Alicia
Moraes, Jorge
Álvarez, Guzmán
author_sort Saramago, Luiz
collection PubMed
description The cattle tick Rhipicephalus microplus is one of the most important ectoparasites causing significant economic losses for the cattle industry. The major tool of control is reducing the number of ticks, applying acaricides in cattle. However, overuse has led to selection of resistant populations of R. microplus to most of these products, some even to more than one active principle. Thus, exploration for new molecules with acaricidal activity in R. microplus has become necessary. Triosephosphate isomerase (TIM) is an essential enzyme in R. microplus metabolism and could be an interesting target for the development of new methods for tick control. In this work, we screened 227 compounds, from our in-house chemo-library, against TIM from R. microplus. Four compounds (50, 98, 14, and 161) selectively inhibited this enzyme with IC(50) values between 25 and 50 μM. They were also able to diminish cellular viability of BME26 embryonic cells by more than 50% at 50 μM. A molecular docking study showed that the compounds bind in different regions of the protein; compound 14 interacts with the dimer interface. Furthermore, compound 14 affected the survival of partially engorged females, fed artificially, using the capillary technique. This molecule is simple, easy to produce, and important biological data—including toxicological information—are available for it. Our results imply a promising role for compound 14 as a prototype for development of a new acaricidal involving selective TIM inhibition.
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spelling pubmed-61639812018-10-16 Novel and Selective Rhipicephalus microplus Triosephosphate Isomerase Inhibitors with Acaricidal Activity Saramago, Luiz Gomes, Helga Aguilera, Elena Cerecetto, Hugo González, Mercedes Cabrera, Mauricio Alzugaray, Maria Fernanda da Silva Vaz Junior, Itabajara Nunes da Fonseca, Rodrigo Aguirre-López, Beatriz Cabrera, Nallely Pérez-Montfort, Ruy Merlino, Alicia Moraes, Jorge Álvarez, Guzmán Vet Sci Article The cattle tick Rhipicephalus microplus is one of the most important ectoparasites causing significant economic losses for the cattle industry. The major tool of control is reducing the number of ticks, applying acaricides in cattle. However, overuse has led to selection of resistant populations of R. microplus to most of these products, some even to more than one active principle. Thus, exploration for new molecules with acaricidal activity in R. microplus has become necessary. Triosephosphate isomerase (TIM) is an essential enzyme in R. microplus metabolism and could be an interesting target for the development of new methods for tick control. In this work, we screened 227 compounds, from our in-house chemo-library, against TIM from R. microplus. Four compounds (50, 98, 14, and 161) selectively inhibited this enzyme with IC(50) values between 25 and 50 μM. They were also able to diminish cellular viability of BME26 embryonic cells by more than 50% at 50 μM. A molecular docking study showed that the compounds bind in different regions of the protein; compound 14 interacts with the dimer interface. Furthermore, compound 14 affected the survival of partially engorged females, fed artificially, using the capillary technique. This molecule is simple, easy to produce, and important biological data—including toxicological information—are available for it. Our results imply a promising role for compound 14 as a prototype for development of a new acaricidal involving selective TIM inhibition. MDPI 2018-08-23 /pmc/articles/PMC6163981/ /pubmed/30142944 http://dx.doi.org/10.3390/vetsci5030074 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Saramago, Luiz
Gomes, Helga
Aguilera, Elena
Cerecetto, Hugo
González, Mercedes
Cabrera, Mauricio
Alzugaray, Maria Fernanda
da Silva Vaz Junior, Itabajara
Nunes da Fonseca, Rodrigo
Aguirre-López, Beatriz
Cabrera, Nallely
Pérez-Montfort, Ruy
Merlino, Alicia
Moraes, Jorge
Álvarez, Guzmán
Novel and Selective Rhipicephalus microplus Triosephosphate Isomerase Inhibitors with Acaricidal Activity
title Novel and Selective Rhipicephalus microplus Triosephosphate Isomerase Inhibitors with Acaricidal Activity
title_full Novel and Selective Rhipicephalus microplus Triosephosphate Isomerase Inhibitors with Acaricidal Activity
title_fullStr Novel and Selective Rhipicephalus microplus Triosephosphate Isomerase Inhibitors with Acaricidal Activity
title_full_unstemmed Novel and Selective Rhipicephalus microplus Triosephosphate Isomerase Inhibitors with Acaricidal Activity
title_short Novel and Selective Rhipicephalus microplus Triosephosphate Isomerase Inhibitors with Acaricidal Activity
title_sort novel and selective rhipicephalus microplus triosephosphate isomerase inhibitors with acaricidal activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6163981/
https://www.ncbi.nlm.nih.gov/pubmed/30142944
http://dx.doi.org/10.3390/vetsci5030074
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