Samuel Cota Teixeira , Guilherme de Souza , Joed Pires de Lima Junior , Alessandra Monteiro Rosini , Aryani Felixa Fajardo Martínez , Thales Alves de Melo Fernandes , Sergio Ricardo Ambrósio , Rodrigo Cassio Sola Veneziani , Jairo Kenupp Bastos , Carlos Henrique Gomes Martins , Bellisa Freitas Barbosa , Eloisa Amália Vieira Ferro
{"title":"Copaifera spp. oleoresins and two isolated compounds (ent-kaurenoic and ent-polyalthic acid) inhibit Toxoplasma gondii growth in vitro","authors":"Samuel Cota Teixeira , Guilherme de Souza , Joed Pires de Lima Junior , Alessandra Monteiro Rosini , Aryani Felixa Fajardo Martínez , Thales Alves de Melo Fernandes , Sergio Ricardo Ambrósio , Rodrigo Cassio Sola Veneziani , Jairo Kenupp Bastos , Carlos Henrique Gomes Martins , Bellisa Freitas Barbosa , Eloisa Amália Vieira Ferro","doi":"10.1016/j.exppara.2024.108771","DOIUrl":null,"url":null,"abstract":"<div><p>Toxoplasmosis affects about one-third of the world's population. The disease treatment methods pose several side effects and do not efficiently eliminate the parasite, making the search for new therapeutic approaches necessary. We aimed to assess the anti-<em>Toxoplasma gondii</em> activity of four <em>Copaifera</em> oleoresins (ORs) and two isolated diterpene acids, named <em>ent</em>-kaurenoic and <em>ent</em>-polyalthic acid. We used HeLa cells as an experimental model of toxoplasmosis. Uninfected and infected HeLa cells were submitted to the treatments, and the parasite intracellular proliferation, cytokine levels and ROS production were measured. Also, tachyzoites were pre-treated and the parasite invasion was determined. Finally, an <em>in silico</em> analysis was performed to identify potential parasite targets. Our data show that the non-cytotoxic concentrations of ORs and diterpene acids controlled the invasion and proliferation of <em>T. gondii</em> in HeLa cells, thus highlighting the possible direct action on parasites. In addition, some compounds tested controlled parasite proliferation in an irreversible manner. An additional and non-exclusive mechanism of action involves the modulation of host cell components, by affecting the upregulation of the IL-6. Additionally, molecular docking suggested that <em>ent</em>-polyalthic acid has a high affinity for the active site of the TgCDPK1 protein. <em>Copaifera</em> ORs have great antiparasitic activity against <em>T. gondii</em>, and this effect can be partially explained by the presence of the isolated compounds <em>ent</em>-kaurenoic and <em>ent</em>-polyalthic acid.</p></div>","PeriodicalId":12117,"journal":{"name":"Experimental parasitology","volume":"262 ","pages":"Article 108771"},"PeriodicalIF":1.4000,"publicationDate":"2024-05-07","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Experimental parasitology","FirstCategoryId":"3","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S0014489424000742","RegionNum":4,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"PARASITOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
Toxoplasmosis affects about one-third of the world's population. The disease treatment methods pose several side effects and do not efficiently eliminate the parasite, making the search for new therapeutic approaches necessary. We aimed to assess the anti-Toxoplasma gondii activity of four Copaifera oleoresins (ORs) and two isolated diterpene acids, named ent-kaurenoic and ent-polyalthic acid. We used HeLa cells as an experimental model of toxoplasmosis. Uninfected and infected HeLa cells were submitted to the treatments, and the parasite intracellular proliferation, cytokine levels and ROS production were measured. Also, tachyzoites were pre-treated and the parasite invasion was determined. Finally, an in silico analysis was performed to identify potential parasite targets. Our data show that the non-cytotoxic concentrations of ORs and diterpene acids controlled the invasion and proliferation of T. gondii in HeLa cells, thus highlighting the possible direct action on parasites. In addition, some compounds tested controlled parasite proliferation in an irreversible manner. An additional and non-exclusive mechanism of action involves the modulation of host cell components, by affecting the upregulation of the IL-6. Additionally, molecular docking suggested that ent-polyalthic acid has a high affinity for the active site of the TgCDPK1 protein. Copaifera ORs have great antiparasitic activity against T. gondii, and this effect can be partially explained by the presence of the isolated compounds ent-kaurenoic and ent-polyalthic acid.
期刊介绍:
Experimental Parasitology emphasizes modern approaches to parasitology, including molecular biology and immunology. The journal features original research papers on the physiological, metabolic, immunologic, biochemical, nutritional, and chemotherapeutic aspects of parasites and host-parasite relationships.