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Provedor de dados:  J. Venom. Anim. Toxins incl. Trop. Dis.
País:  Brazil
Título:  Ergosterol isolated from the basidiomycete Pleurotus salmoneostramineus affects Trypanosoma cruzi plasma membrane and mitochondria
Autores:  Alexandre,Tatiana Rodrigues
Lima,Marta Lopes
Galuppo,Mariana Kolos
Mesquita,Juliana Tonini
Nascimento,Matilia Ana do
Santos,Augusto Leonardo dos
Sartorelli,Patricia
Pimenta,Daniel Carvalho
Tempone,Andre Gustavo
Data:  2017-01-01
Ano:  2017
Palavras-chave:  Pleurotus salmoneostramineus
Ergosterol
Trypanosoma cruzi
Mechanism of action
Resumo:  Abstract Background Major drawbacks of the available treatment against Chagas disease (American trypanosomiasis) include its toxicity and therapeutic inefficiency in the chronic phase of the infection, which makes it a concern among neglected diseases. Therefore, the discovery of alternative drugs for treating chronic Chagas disease requires immediate action. In this work, we evaluated the mushroom Pleurotus salmoneostramineus in the search for potential antiparasitic compounds. Methods Fruit bodies of the basidiomycete Pleurotus salmoneostramineus were triturated and submitted to organic solvent extraction. After liquid-liquid partition of the crude extract, three fractions were obtained and the bioguided fractionation study was conducted to isolate the active metabolites. The elucidation of the chemical structure was performed using GC-MS and NMR techniques. The biological assays for antiparasitic activity were carried out using trypomastigotes of Trypanosoma cruzi and murine macrophages for mammalian cytotoxicity. The mechanism of action of the isolated compound used different fluorescent probes to evaluate the plasma membrane permeability, the potential of the mitochondrial membrane and the intracellular levels of reactive oxygen species (ROS). Results The most abundant fraction showing the antiparasitic activity was isolated and chemically elucidated, confirming the presence of ergosterol. It showed anti-Trypanosoma cruzi activity against trypomastigotes, with an IC50 value of 51.3 μg/mL. The compound demonstrated no cytotoxicity against mammalian cells to the maximal tested concentration of 200 μg/mL. The mechanism of action of ergosterol in Trypanosoma cruzi trypomastigotes resulted in permeabilization of the plasma membrane, as well as depolarization of mitochondrial membrane potential, leading to parasite death. Nevertheless, no increase in ROS levels could be observed, suggesting damages to plasma membrane rather than an induction of oxidative stress in the parasite. Conclusions The selection of naturally antiparasitic secondary metabolites in basidiomycetes, such as ergosterol, may provide potential scaffolds for drug design studies against neglected diseases.
Tipo:  Info:eu-repo/semantics/article
Idioma:  Inglês
Identificador:  http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1678-91992017000100313
Editor:  Centro de Estudos de Venenos e Animais Peçonhentos
Relação:  10.1186/s40409-017-0120-0
Formato:  text/html
Fonte:  Journal of Venomous Animals and Toxins including Tropical Diseases v.23 2017
Direitos:  info:eu-repo/semantics/openAccess
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