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First generation of multifunctional peptides derived from latarcin-3a from Lachesana tarabaevi spider toxin

The need for discovering new compounds that can act selectively on pathogens is becoming increasingly evident, given the number of deaths worldwide due to bacterial infections or tumor cells. New multifunctional biotechnological tools are being sought, including compounds present in spider venoms, w...

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Autores principales: de Moraes, Luiz Filipe Ramalho Nunes, Silva, Patrícia Souza e, Pereira, Tábata Camila Pereira Leite, Almeida Rodrigues, Thiago Antônio, Farias Frihling, Breno Emanuel, da Costa, Rosiane Andrade, Torquato, Heron Fernandes Vieira, Lima, Cauê Santos, Paredes-Gamero, Edgar Julian, Migliolo, Ludovico
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9532841/
https://www.ncbi.nlm.nih.gov/pubmed/36212827
http://dx.doi.org/10.3389/fmicb.2022.965621
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author de Moraes, Luiz Filipe Ramalho Nunes
Silva, Patrícia Souza e
Pereira, Tábata Camila Pereira Leite
Almeida Rodrigues, Thiago Antônio
Farias Frihling, Breno Emanuel
da Costa, Rosiane Andrade
Torquato, Heron Fernandes Vieira
Lima, Cauê Santos
Paredes-Gamero, Edgar Julian
Migliolo, Ludovico
author_facet de Moraes, Luiz Filipe Ramalho Nunes
Silva, Patrícia Souza e
Pereira, Tábata Camila Pereira Leite
Almeida Rodrigues, Thiago Antônio
Farias Frihling, Breno Emanuel
da Costa, Rosiane Andrade
Torquato, Heron Fernandes Vieira
Lima, Cauê Santos
Paredes-Gamero, Edgar Julian
Migliolo, Ludovico
author_sort de Moraes, Luiz Filipe Ramalho Nunes
collection PubMed
description The need for discovering new compounds that can act selectively on pathogens is becoming increasingly evident, given the number of deaths worldwide due to bacterial infections or tumor cells. New multifunctional biotechnological tools are being sought, including compounds present in spider venoms, which have high biotechnological potential. The present work aims to perform the rational design and functional evaluation of synthetic peptides derived from Lachesana tarabaevi spider toxin, known as latarcin-3a. The antimicrobial activity was tested against Gram-positive and -negative bacteria, with minimum inhibitory concentrations (MIC) between 4 and 128 μg.ml(−1). Anti-biofilm tests were then performed to obtain MICs, where the peptides demonstrated activity from 4 to 128 μg.ml(−1). In vitro cell cytotoxicity assays were carried out from tumor cell lines, lineages C1498, Kasumi-1, K-562, Jurkat, MOLT4, and Raji. Erythrocyte integrity was evaluated in the presence of synthetic peptides analog, which did not promote hemolysis at 128 μg.ml(−1). The peptide that showed the best antibacterial activity was Lt-MAP3 and the best antitumor was Lt-MAP2. In conclusion, rational design of multifunctional antimicrobial peptides may be promising alternative tools in the treatment of emerging diseases such as bacterial infections and tumor cells.
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spelling pubmed-95328412022-10-06 First generation of multifunctional peptides derived from latarcin-3a from Lachesana tarabaevi spider toxin de Moraes, Luiz Filipe Ramalho Nunes Silva, Patrícia Souza e Pereira, Tábata Camila Pereira Leite Almeida Rodrigues, Thiago Antônio Farias Frihling, Breno Emanuel da Costa, Rosiane Andrade Torquato, Heron Fernandes Vieira Lima, Cauê Santos Paredes-Gamero, Edgar Julian Migliolo, Ludovico Front Microbiol Microbiology The need for discovering new compounds that can act selectively on pathogens is becoming increasingly evident, given the number of deaths worldwide due to bacterial infections or tumor cells. New multifunctional biotechnological tools are being sought, including compounds present in spider venoms, which have high biotechnological potential. The present work aims to perform the rational design and functional evaluation of synthetic peptides derived from Lachesana tarabaevi spider toxin, known as latarcin-3a. The antimicrobial activity was tested against Gram-positive and -negative bacteria, with minimum inhibitory concentrations (MIC) between 4 and 128 μg.ml(−1). Anti-biofilm tests were then performed to obtain MICs, where the peptides demonstrated activity from 4 to 128 μg.ml(−1). In vitro cell cytotoxicity assays were carried out from tumor cell lines, lineages C1498, Kasumi-1, K-562, Jurkat, MOLT4, and Raji. Erythrocyte integrity was evaluated in the presence of synthetic peptides analog, which did not promote hemolysis at 128 μg.ml(−1). The peptide that showed the best antibacterial activity was Lt-MAP3 and the best antitumor was Lt-MAP2. In conclusion, rational design of multifunctional antimicrobial peptides may be promising alternative tools in the treatment of emerging diseases such as bacterial infections and tumor cells. Frontiers Media S.A. 2022-09-21 /pmc/articles/PMC9532841/ /pubmed/36212827 http://dx.doi.org/10.3389/fmicb.2022.965621 Text en Copyright © 2022 de Moraes, Silva, Pereira, Almeida Rodrigues, Farias Frihling, da Costa, Torquato, Lima, Paredes-Gamero and Migliolo. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
de Moraes, Luiz Filipe Ramalho Nunes
Silva, Patrícia Souza e
Pereira, Tábata Camila Pereira Leite
Almeida Rodrigues, Thiago Antônio
Farias Frihling, Breno Emanuel
da Costa, Rosiane Andrade
Torquato, Heron Fernandes Vieira
Lima, Cauê Santos
Paredes-Gamero, Edgar Julian
Migliolo, Ludovico
First generation of multifunctional peptides derived from latarcin-3a from Lachesana tarabaevi spider toxin
title First generation of multifunctional peptides derived from latarcin-3a from Lachesana tarabaevi spider toxin
title_full First generation of multifunctional peptides derived from latarcin-3a from Lachesana tarabaevi spider toxin
title_fullStr First generation of multifunctional peptides derived from latarcin-3a from Lachesana tarabaevi spider toxin
title_full_unstemmed First generation of multifunctional peptides derived from latarcin-3a from Lachesana tarabaevi spider toxin
title_short First generation of multifunctional peptides derived from latarcin-3a from Lachesana tarabaevi spider toxin
title_sort first generation of multifunctional peptides derived from latarcin-3a from lachesana tarabaevi spider toxin
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9532841/
https://www.ncbi.nlm.nih.gov/pubmed/36212827
http://dx.doi.org/10.3389/fmicb.2022.965621
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