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A Novel Anti-Microbial Peptide from Pseudomonas, REDLK Induced Growth Inhibition of Leishmania tarentolae Promastigote In Vitro

Leishmaniasis is a prevalent cause of death and animal morbidity in underdeveloped countries of endemic area. However, there is few vaccine and effective drugs. Antimicrobial peptides are involved in the innate immune response in many organisms and are being developed as novel drugs against parasiti...

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Autores principales: Yu, Yanhui, Zhao, Panpan, Cao, Lili, Gong, Pengtao, Yuan, Shuxian, Yao, Xinhua, Guo, Yanbing, Dong, Hang, Jiang, Weina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Society for Parasitology and Tropical Medicine 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7231825/
https://www.ncbi.nlm.nih.gov/pubmed/32418386
http://dx.doi.org/10.3347/kjp.2020.58.2.173
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author Yu, Yanhui
Zhao, Panpan
Cao, Lili
Gong, Pengtao
Yuan, Shuxian
Yao, Xinhua
Guo, Yanbing
Dong, Hang
Jiang, Weina
author_facet Yu, Yanhui
Zhao, Panpan
Cao, Lili
Gong, Pengtao
Yuan, Shuxian
Yao, Xinhua
Guo, Yanbing
Dong, Hang
Jiang, Weina
author_sort Yu, Yanhui
collection PubMed
description Leishmaniasis is a prevalent cause of death and animal morbidity in underdeveloped countries of endemic area. However, there is few vaccine and effective drugs. Antimicrobial peptides are involved in the innate immune response in many organisms and are being developed as novel drugs against parasitic infections. In the present study, we synthesized a 5-amino acid peptide REDLK, which mutated the C-terminus of Pseudomonas exotoxin, to identify its effect on the Leishmania tarentolae. Promastigotes were incubated with different concentration of REDLK peptide, and the viability of parasite was assessed using MTT and Trypan blue dye. Morphologic damage of Leishmania was analyzed by light and electron microscopy. Cellular apoptosis was observed using the annexin V-FITC/PI apoptosis detection kit, mitochondrial membrane potential assay kit and flow cytometry. Our results showed that Leishmania tarentolae was susceptible to REDLK in a dose-dependent manner, disrupt the surface membrane integrity and caused parasite apoptosis. In our study, we demonstrated the leishmanicidal activity of an antimicrobial peptide REDLK from Pseudomonas aeruginosa against Leishmania tarentolae in vitro and present a foundation for further research of anti-leishmanial drugs.
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spelling pubmed-72318252020-05-29 A Novel Anti-Microbial Peptide from Pseudomonas, REDLK Induced Growth Inhibition of Leishmania tarentolae Promastigote In Vitro Yu, Yanhui Zhao, Panpan Cao, Lili Gong, Pengtao Yuan, Shuxian Yao, Xinhua Guo, Yanbing Dong, Hang Jiang, Weina Korean J Parasitol Brief Communication Leishmaniasis is a prevalent cause of death and animal morbidity in underdeveloped countries of endemic area. However, there is few vaccine and effective drugs. Antimicrobial peptides are involved in the innate immune response in many organisms and are being developed as novel drugs against parasitic infections. In the present study, we synthesized a 5-amino acid peptide REDLK, which mutated the C-terminus of Pseudomonas exotoxin, to identify its effect on the Leishmania tarentolae. Promastigotes were incubated with different concentration of REDLK peptide, and the viability of parasite was assessed using MTT and Trypan blue dye. Morphologic damage of Leishmania was analyzed by light and electron microscopy. Cellular apoptosis was observed using the annexin V-FITC/PI apoptosis detection kit, mitochondrial membrane potential assay kit and flow cytometry. Our results showed that Leishmania tarentolae was susceptible to REDLK in a dose-dependent manner, disrupt the surface membrane integrity and caused parasite apoptosis. In our study, we demonstrated the leishmanicidal activity of an antimicrobial peptide REDLK from Pseudomonas aeruginosa against Leishmania tarentolae in vitro and present a foundation for further research of anti-leishmanial drugs. The Korean Society for Parasitology and Tropical Medicine 2020-04 2020-04-30 /pmc/articles/PMC7231825/ /pubmed/32418386 http://dx.doi.org/10.3347/kjp.2020.58.2.173 Text en Copyright © 2020 by The Korean Society for Parasitology and Tropical Medicine This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (https://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Brief Communication
Yu, Yanhui
Zhao, Panpan
Cao, Lili
Gong, Pengtao
Yuan, Shuxian
Yao, Xinhua
Guo, Yanbing
Dong, Hang
Jiang, Weina
A Novel Anti-Microbial Peptide from Pseudomonas, REDLK Induced Growth Inhibition of Leishmania tarentolae Promastigote In Vitro
title A Novel Anti-Microbial Peptide from Pseudomonas, REDLK Induced Growth Inhibition of Leishmania tarentolae Promastigote In Vitro
title_full A Novel Anti-Microbial Peptide from Pseudomonas, REDLK Induced Growth Inhibition of Leishmania tarentolae Promastigote In Vitro
title_fullStr A Novel Anti-Microbial Peptide from Pseudomonas, REDLK Induced Growth Inhibition of Leishmania tarentolae Promastigote In Vitro
title_full_unstemmed A Novel Anti-Microbial Peptide from Pseudomonas, REDLK Induced Growth Inhibition of Leishmania tarentolae Promastigote In Vitro
title_short A Novel Anti-Microbial Peptide from Pseudomonas, REDLK Induced Growth Inhibition of Leishmania tarentolae Promastigote In Vitro
title_sort novel anti-microbial peptide from pseudomonas, redlk induced growth inhibition of leishmania tarentolae promastigote in vitro
topic Brief Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7231825/
https://www.ncbi.nlm.nih.gov/pubmed/32418386
http://dx.doi.org/10.3347/kjp.2020.58.2.173
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