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A Metabolomic Investigation of the Effect of Eosin B on Game-tocyte of Plasmodium falciparum Using 1HNMR Spectroscopy

BACKGROUND: Recently eosin B was shown to have an effect on the asexual stage of Plasmodium falciparum and in this study, its activity against gametocytes and changes in the culture medium metabolites were investigated using an(1)HNMR-based metabolomics approach. METHODS: In the Biochemistry Departm...

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Autores principales: SADEGHI TAFRESHI, Alireza, ZAMANI, Zahra, SABBAGHIAN, Marjan, KHAVARI-NEJAD, Ramezan Ali, ARJMAND, Mohammad, SADEGHI, Sedigheh, MOHAMMADI, Maryam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Tehran University of Medical Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7028228/
https://www.ncbi.nlm.nih.gov/pubmed/32099562
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author SADEGHI TAFRESHI, Alireza
ZAMANI, Zahra
SABBAGHIAN, Marjan
KHAVARI-NEJAD, Ramezan Ali
ARJMAND, Mohammad
SADEGHI, Sedigheh
MOHAMMADI, Maryam
author_facet SADEGHI TAFRESHI, Alireza
ZAMANI, Zahra
SABBAGHIAN, Marjan
KHAVARI-NEJAD, Ramezan Ali
ARJMAND, Mohammad
SADEGHI, Sedigheh
MOHAMMADI, Maryam
author_sort SADEGHI TAFRESHI, Alireza
collection PubMed
description BACKGROUND: Recently eosin B was shown to have an effect on the asexual stage of Plasmodium falciparum and in this study, its activity against gametocytes and changes in the culture medium metabolites were investigated using an(1)HNMR-based metabolomics approach. METHODS: In the Biochemistry Department of Pasteur Institute of Iran in 2017, parasites were cultured and gametocytogenesis induced by heparin and 5% hematocrit. Sexual stage parasites were tested by eosin B in 90 well plates and IC(50) determined using Lactate Dehydrogenase assay. Gametocytes were treated by IC(50) dose of eosin B and the medium collected in the two groups: with eosin B and controls and sent for (1)HNMR spectroscopy. The spectra were analyzed on MATLAB interface and the altered metabolites in the culture medium and eosin-affected biochemical pathways were identified by Human Metabolome Database and Metabo-analyst website. RESULTS: The results revealed eosin B had an effective gametocytocidal activity against P. falciparum. The significant metabolites changed in the medium were thia-mine, Asp, Asn, Tyr, Lys, Ala, Phenylpyruvic acid, NAD(+) and lipids. The main pathways identified were aminoacyl-tRNA biosynthesis, Phenylalanine, tyrosine and tryptophan biosynthesis, Alanine, aspartate and glutamate metabolism, Phenylala-nine metabolism, Nicotinate and nicotinamide metabolism, and lysine degradation. CONCLUSION: Eosin B exhibited substantial gametocytocidal activity and affected important drug targets in the Plasmodium.
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spelling pubmed-70282282020-02-25 A Metabolomic Investigation of the Effect of Eosin B on Game-tocyte of Plasmodium falciparum Using 1HNMR Spectroscopy SADEGHI TAFRESHI, Alireza ZAMANI, Zahra SABBAGHIAN, Marjan KHAVARI-NEJAD, Ramezan Ali ARJMAND, Mohammad SADEGHI, Sedigheh MOHAMMADI, Maryam Iran J Parasitol Original Article BACKGROUND: Recently eosin B was shown to have an effect on the asexual stage of Plasmodium falciparum and in this study, its activity against gametocytes and changes in the culture medium metabolites were investigated using an(1)HNMR-based metabolomics approach. METHODS: In the Biochemistry Department of Pasteur Institute of Iran in 2017, parasites were cultured and gametocytogenesis induced by heparin and 5% hematocrit. Sexual stage parasites were tested by eosin B in 90 well plates and IC(50) determined using Lactate Dehydrogenase assay. Gametocytes were treated by IC(50) dose of eosin B and the medium collected in the two groups: with eosin B and controls and sent for (1)HNMR spectroscopy. The spectra were analyzed on MATLAB interface and the altered metabolites in the culture medium and eosin-affected biochemical pathways were identified by Human Metabolome Database and Metabo-analyst website. RESULTS: The results revealed eosin B had an effective gametocytocidal activity against P. falciparum. The significant metabolites changed in the medium were thia-mine, Asp, Asn, Tyr, Lys, Ala, Phenylpyruvic acid, NAD(+) and lipids. The main pathways identified were aminoacyl-tRNA biosynthesis, Phenylalanine, tyrosine and tryptophan biosynthesis, Alanine, aspartate and glutamate metabolism, Phenylala-nine metabolism, Nicotinate and nicotinamide metabolism, and lysine degradation. CONCLUSION: Eosin B exhibited substantial gametocytocidal activity and affected important drug targets in the Plasmodium. Tehran University of Medical Sciences 2019 /pmc/articles/PMC7028228/ /pubmed/32099562 Text en Copyright© Iranian Society of Parasitology & Tehran University of Medical Sciences http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
SADEGHI TAFRESHI, Alireza
ZAMANI, Zahra
SABBAGHIAN, Marjan
KHAVARI-NEJAD, Ramezan Ali
ARJMAND, Mohammad
SADEGHI, Sedigheh
MOHAMMADI, Maryam
A Metabolomic Investigation of the Effect of Eosin B on Game-tocyte of Plasmodium falciparum Using 1HNMR Spectroscopy
title A Metabolomic Investigation of the Effect of Eosin B on Game-tocyte of Plasmodium falciparum Using 1HNMR Spectroscopy
title_full A Metabolomic Investigation of the Effect of Eosin B on Game-tocyte of Plasmodium falciparum Using 1HNMR Spectroscopy
title_fullStr A Metabolomic Investigation of the Effect of Eosin B on Game-tocyte of Plasmodium falciparum Using 1HNMR Spectroscopy
title_full_unstemmed A Metabolomic Investigation of the Effect of Eosin B on Game-tocyte of Plasmodium falciparum Using 1HNMR Spectroscopy
title_short A Metabolomic Investigation of the Effect of Eosin B on Game-tocyte of Plasmodium falciparum Using 1HNMR Spectroscopy
title_sort metabolomic investigation of the effect of eosin b on game-tocyte of plasmodium falciparum using 1hnmr spectroscopy
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7028228/
https://www.ncbi.nlm.nih.gov/pubmed/32099562
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