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Lingua G, Chaves AG, Aguilar JJ, Martinez F, Gomez TI, Rucci KA, Torres LE, Ancín-Azpilicueta C, Esparza I, Jiménez-Moreno N, Contigiani M, Nuñez Montoya S, Konigheim BS. Antiviral Potential and Chemical Composition of Wild Baccharis crispa Spreng. Populations (Asteraceae) from Córdoba, Argentina: Perspective on Population Variability. PLANTS (BASEL, SWITZERLAND) 2024; 13:3077. [PMID: 39519995 PMCID: PMC11548641 DOI: 10.3390/plants13213077] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Figures] [Subscribe] [Scholar Register] [Received: 09/30/2024] [Revised: 10/22/2024] [Accepted: 10/31/2024] [Indexed: 11/16/2024]
Abstract
Medicinal plants have been explored worldwide as potential alternatives for the prevention and treatment of different diseases, including viral infections. Baccharis crispa Spreng. (Asteraceae) is a native medicinal species widely used in South America. Given the influence of genetic and environmental factors on secondary metabolites biosynthesis and accumulation, this study aimed to evaluate the in vitro antiviral activity of four wild populations of B. crispa from Córdoba, Argentina, and assess the variability in their bioactivity and chemical composition. The cytotoxicity of chloroform, ethanol, and aqueous extracts from aerial parts was evaluated by the neutral red uptake method. Antiviral and virucidal activity against herpes simplex virus type 1 (HSV-1) and chikungunya virus (CHIKV) were assessed via plaque-forming unit (PFU) reduction assay. Phytochemical analyses of the extracts were conducted using HPLC-ESI- MS/MS. The Puesto Pedernera population showed the strongest antiviral activity, with inhibition rates of 82% for CHIKV and 79% against HSV-1, as well as potent virucidal effects, reducing PFU formation by up to 5 logarithms for both viruses. Remarkably, ethanol extract exhibited the least toxicity and strongest inhibitory activity. Villa del Parque population was inactive. We identified 38 secondary metabolites, predominantly phenolic acids (12) and flavonoids (18), in varying proportions. Delphinidin and delphinidin-3-glucoside are described for the first time in the species. Differences in phytochemical profiles were observed among extract types and populations. Key phenolic compounds showed moderate positive correlations with the evaluated bioactivities, emphasizing the complexity of phytochemical properties and interactions. These results highlight the therapeutic potential of B. crispa extracts against viral infections and underscore the importance of considering the geographical source of plant material in bioactivity evaluations.
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Affiliation(s)
- Giuliana Lingua
- Instituto de Virología “Dr. J. M. Vanella”-Argentina, Facultad de Ciencias Médicas, Universidad Nacional de Córdoba, Enfermera Gordillo S/N, Ciudad Universitaria, Córdoba X5000HUA, Argentina; (G.L.); (J.J.A.); (F.M.); (K.A.R.); (M.C.)
- Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Godoy Cruz 2290, Cuidad Autónoma de Buenos Aires C1425FQB, Argentina
| | - Ana Guadalupe Chaves
- Cátedra de Genética, Facultad de Ciencias Agropecuarias, Universidad Nacional de Córdoba, Av. Valparaíso S/N Ciudad Universitaria, Córdoba X5000HUA, Argentina; (A.G.C.); (L.E.T.)
| | - Juan Javier Aguilar
- Instituto de Virología “Dr. J. M. Vanella”-Argentina, Facultad de Ciencias Médicas, Universidad Nacional de Córdoba, Enfermera Gordillo S/N, Ciudad Universitaria, Córdoba X5000HUA, Argentina; (G.L.); (J.J.A.); (F.M.); (K.A.R.); (M.C.)
| | - Florencia Martinez
- Instituto de Virología “Dr. J. M. Vanella”-Argentina, Facultad de Ciencias Médicas, Universidad Nacional de Córdoba, Enfermera Gordillo S/N, Ciudad Universitaria, Córdoba X5000HUA, Argentina; (G.L.); (J.J.A.); (F.M.); (K.A.R.); (M.C.)
- Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Godoy Cruz 2290, Cuidad Autónoma de Buenos Aires C1425FQB, Argentina
| | - Tomás Isaac Gomez
- Dpto. de Ciencias Farmacéuticas, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Edificio de Ciencias 2, Ciudad Universitaria, Córdoba X5000HUA, Argentina; (T.I.G.); (S.N.M.)
- Unidad de Investigación y Desarrollo en Tecnología Farmacéutica (UNITEFA-CONICET), Ciudad Universitaria, Córdoba X5000HUA, Argentina
| | - Kevin Alen Rucci
- Instituto de Virología “Dr. J. M. Vanella”-Argentina, Facultad de Ciencias Médicas, Universidad Nacional de Córdoba, Enfermera Gordillo S/N, Ciudad Universitaria, Córdoba X5000HUA, Argentina; (G.L.); (J.J.A.); (F.M.); (K.A.R.); (M.C.)
- Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Godoy Cruz 2290, Cuidad Autónoma de Buenos Aires C1425FQB, Argentina
| | - Lorena E. Torres
- Cátedra de Genética, Facultad de Ciencias Agropecuarias, Universidad Nacional de Córdoba, Av. Valparaíso S/N Ciudad Universitaria, Córdoba X5000HUA, Argentina; (A.G.C.); (L.E.T.)
| | - Carmen Ancín-Azpilicueta
- Department of Sciences, Universidad Pública de Navarra, Campus Arrosadía s/n, 31006 Pamplona, Spain; (C.A.-A.); (I.E.); (N.J.-M.)
- Institute for Advanced Materials (INAMAT2), Universidad Pública de Navarra, 31006 Pamplona, Spain
| | - Irene Esparza
- Department of Sciences, Universidad Pública de Navarra, Campus Arrosadía s/n, 31006 Pamplona, Spain; (C.A.-A.); (I.E.); (N.J.-M.)
- Institute for Advanced Materials (INAMAT2), Universidad Pública de Navarra, 31006 Pamplona, Spain
| | - Nerea Jiménez-Moreno
- Department of Sciences, Universidad Pública de Navarra, Campus Arrosadía s/n, 31006 Pamplona, Spain; (C.A.-A.); (I.E.); (N.J.-M.)
- Institute for Advanced Materials (INAMAT2), Universidad Pública de Navarra, 31006 Pamplona, Spain
| | - Marta Contigiani
- Instituto de Virología “Dr. J. M. Vanella”-Argentina, Facultad de Ciencias Médicas, Universidad Nacional de Córdoba, Enfermera Gordillo S/N, Ciudad Universitaria, Córdoba X5000HUA, Argentina; (G.L.); (J.J.A.); (F.M.); (K.A.R.); (M.C.)
| | - Susana Nuñez Montoya
- Dpto. de Ciencias Farmacéuticas, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Edificio de Ciencias 2, Ciudad Universitaria, Córdoba X5000HUA, Argentina; (T.I.G.); (S.N.M.)
- Unidad de Investigación y Desarrollo en Tecnología Farmacéutica (UNITEFA-CONICET), Ciudad Universitaria, Córdoba X5000HUA, Argentina
| | - Brenda S. Konigheim
- Instituto de Virología “Dr. J. M. Vanella”-Argentina, Facultad de Ciencias Médicas, Universidad Nacional de Córdoba, Enfermera Gordillo S/N, Ciudad Universitaria, Córdoba X5000HUA, Argentina; (G.L.); (J.J.A.); (F.M.); (K.A.R.); (M.C.)
- Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Godoy Cruz 2290, Cuidad Autónoma de Buenos Aires C1425FQB, Argentina
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2
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García Méndez MDC, Encarnación-Guevara S, Martínez Batallar ÁG, Gómez-Caudillo L, Bru-Martínez R, Martínez Márquez A, Selles Marchart S, Tovar-Sánchez E, Álvarez-Berber L, Marquina Bahena S, Perea-Arango I, Arellano-García JDJ. High variability of perezone content in rhizomes of Acourtia cordata wild plants, environmental factors related, and proteomic analysis. PeerJ 2023; 11:e16136. [PMID: 38025722 PMCID: PMC10656900 DOI: 10.7717/peerj.16136] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/06/2022] [Accepted: 08/29/2023] [Indexed: 12/01/2023] Open
Abstract
With the aim of exploring the source of the high variability observed in the production of perezone, in Acourtia cordata wild plants, we analyze the influence of soil parameters and phenotypic characteristics on its perezone content. Perezone is a sesquiterpene quinone responsible for several pharmacological effects and the A. cordata plants are the natural source of this metabolite. The chemistry of perezone has been widely studied, however, no studies exist related to its production under natural conditions, nor to its biosynthesis and the environmental factors that affect the yield of this compound in wild plants. We also used a proteomic approach to detect differentially expressed proteins in wild plant rhizomes and compare the profiles of high vs. low perezone-producing plants. Our results show that in perezone-producing rhizomes, the presence of high concentrations of this compound could result from a positive response to the effects of some edaphic factors, such as total phosphorus (Pt), total nitrogen (Nt), ammonium (NH4), and organic matter (O. M.), but could also be due to a negative response to the soil pH value. Additionally, we identified 616 differentially expressed proteins between high and low perezone producers. According to the functional annotation of this comparison, the upregulated proteins were grouped in valine biosynthesis, breakdown of leucine and isoleucine, and secondary metabolism such as terpenoid biosynthesis. Downregulated proteins were grouped in basal metabolism processes, such as pyruvate and purine metabolism and glycolysis/gluconeogenesis. Our results suggest that soil parameters can impact the content of perezone in wild plants. Furthermore, we used proteomic resources to obtain data on the pathways expressed when A. cordata plants produce high and low concentrations of perezone. These data may be useful to further explore the possible relationship between perezone production and abiotic or biotic factors and the molecular mechanisms related to high and low perezone production.
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Affiliation(s)
- Ma del Carmen García Méndez
- Centro de Investigación en Biotecnología, Universidad Autónoma del Estado de Morelos, Cuernavaca, Morelos, México
| | | | | | - Leopoldo Gómez-Caudillo
- Centro de Ciencias Genómicas, Universidad Nacional Autónoma de México, Cuernavaca, Morelos, México
| | - Roque Bru-Martínez
- Departamento de Agroquímica y Bioquímica, Facultad de Ciencias, Universidad de Alicante, Alicante, Spain
- Instituto de Investigación Sanitaria y Biomédica de Alicante, Instituto de Investigación Sanitaria y Biomédica de Alicante, Alicante, Spain
| | - Ascensión Martínez Márquez
- Departamento de Agroquímica y Bioquímica, Facultad de Ciencias, Universidad de Alicante, Alicante, Spain
| | - Susana Selles Marchart
- Departamento de Agroquímica y Bioquímica, Facultad de Ciencias, Universidad de Alicante, Alicante, Spain
| | - Efraín Tovar-Sánchez
- Centro de Investigación en Biodiversidad y Conservación, Universidad Autónoma del Estado de Morelos, Cuernavaca, Morelos, Mexico
| | - Laura Álvarez-Berber
- Centro de Investigaciones Químicas, Universidad Autónoma del Estado de Morelos, Cuernavaca, Morelos, Mexico
| | - Silvia Marquina Bahena
- Centro de Investigaciones Químicas, Universidad Autónoma del Estado de Morelos, Cuernavaca, Morelos, Mexico
| | - Irene Perea-Arango
- Centro de Investigación en Biotecnología, Universidad Autónoma del Estado de Morelos, Cuernavaca, Morelos, México
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Bezerra SR, Bezerra AH, de Sousa Silveira Z, Macedo NS, Dos Santos Barbosa CR, Muniz DF, Sampaio Dos Santos JF, Melo Coutinho HD, Bezerra da Cunha FA. Antibacterial activity of eugenol on the IS-58 strain of Staphylococcus aureus resistant to tetracycline and toxicity in Drosophila melanogaster. Microb Pathog 2022; 164:105456. [PMID: 35217181 DOI: 10.1016/j.micpath.2022.105456] [Citation(s) in RCA: 6] [Impact Index Per Article: 3.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/19/2021] [Revised: 01/03/2022] [Accepted: 02/21/2022] [Indexed: 10/19/2022]
Abstract
The indiscriminate use of antibiotics contributes significantly to the selection of bacteria resistant to several antibiotics. Among the resistance mechanisms are the Efflux Pumps which are responsible for extruding solutes from the cell cytoplasm through proteins in the cell membrane. Because of this, new strategies are needed to control multidrug-resistant pathogenic strains. In this way, the objective of this study was to evaluate the antibacterial activity of eugenol by inhibition of TetK Efflux Pump in strains of Staphylococcus aureus resistant to Tetracycline, in addition to evaluating its toxicity in Drosophila melanogaster. To determine the Minimum Inhibitory Concentration (MIC), the broth microdilution method was used. The modulated effect of antibiotic and Ethidium Bromide associated with eugenol in subinhibitory concentrations (MIC/8) was evaluated. To evaluate the toxic effect of eugenol on D. melanogaster, fumigation tests were used, in which the parameters of mortality and damage to the locomotor system were evaluated. The results showed that eugenol has no direct activity in S. aureus, with an MIC ≥1024 μg/mL. However, it demonstrated that the synergistic potential when associated with Tetracycline, reducing the MIC of the antibiotic, already associated with Ethidium Bromide, had an antagonistic effect. When the toxicity in D. melanogaster was evaluated, eugenol demonstrated a non-toxic profile, since it presented EC50: 2036 μL/mL in 48 h of exposure. In conclusion, eugenol had no relevant direct effect against S. aureus, however, it potentialized the action of the antibiotic by decreasing its MIC.
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Affiliation(s)
- Suieny Rodrigues Bezerra
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil
| | - Antonio Henrique Bezerra
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil
| | - Zildene de Sousa Silveira
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Biological Sciences Pos Graduate Program - PPGCB, Federal University of Pernambuco - UFPE, Recife, 50670-901, PE, Brazil
| | - Nair Silva Macedo
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Biological Sciences Pos Graduate Program - PPGCB, Federal University of Pernambuco - UFPE, Recife, 50670-901, PE, Brazil
| | - Cristina Rodrigues Dos Santos Barbosa
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Biological Chemistry Pos Graduate Program, Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil
| | - Debora Feitosa Muniz
- Laboratory of Microbiology and Molecular Biology (LMBM), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil
| | - Joycy Francely Sampaio Dos Santos
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Biological Chemistry Pos Graduate Program, Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil
| | - Henrique Douglas Melo Coutinho
- Biological Chemistry Pos Graduate Program, Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Laboratory of Microbiology and Molecular Biology (LMBM), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil.
| | - Francisco Assis Bezerra da Cunha
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Biological Chemistry Pos Graduate Program, Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil
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4
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Moreira X, Granjel RR, de la Fuente M, Fernández-Conradi P, Pasch V, Soengas P, Turlings TCJ, Vázquez-González C, Abdala-Roberts L, Rasmann S. Apparent inhibition of induced plant volatiles by a fungal pathogen prevents airborne communication between potato plants. PLANT, CELL & ENVIRONMENT 2021; 44:1192-1201. [PMID: 33244762 DOI: 10.1111/pce.13961] [Citation(s) in RCA: 11] [Impact Index Per Article: 3.7] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 08/19/2020] [Revised: 11/24/2020] [Accepted: 11/24/2020] [Indexed: 06/11/2023]
Abstract
Plant communication in response to insect herbivory has been increasingly studied, whereas that involving pathogen attack has received much less attention. We tested for communication between potato (Solanum tuberosum) plants in response to leaf infection by the fungal pathogen Sclerotinia sclerotiorum. To this end, we measured the total amount and composition of volatile organic compounds (VOCs) produced by control and infected emitter plants, as well as tested for induced resistance of receiver plants exposed to VOCs from emitters. We further tested for changes in the expression of defensive genes due to pathogen infection. Fungal infection did not significantly affect the total amount or composition of VOCs produced by emitter plants. Correspondingly, we found no evidence of higher resistance to the pathogen in receiver plants exposed to VOCs from infected emitters relative to control emitters. Molecular analyses indicated that pathogen infection drove a down-regulation of genes coding for VOC precursors, potentially explaining the absence of pathogen effects on VOC emissions and thus of communication. Overall, these results indicate no evidence of airborne communication between potato plants in response to fungal infection and point at pathogen inhibition of VOC emissions as a likely explanation for this result.
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Affiliation(s)
| | - Rodrigo R Granjel
- Departamento de Biología Vegetal y Ecología, Universidad de Sevilla, Seville, Spain
| | | | | | - Viviana Pasch
- Faculty of Biology, Ludwig-Maximilians-Universität München, Munich, Germany
| | - Pilar Soengas
- Misión Biológica de Galicia (MBG-CSIC), Pontevedra, Spain
| | - Ted C J Turlings
- Institute of Biology, University of Neuchâtel, Neuchâtel, Switzerland
| | | | - Luis Abdala-Roberts
- Departamento de Ecología Tropical, Campus de Ciencias Biológicas y Agropecuarias, Universidad Autónoma de Yucatán, Mérida, Mexico
| | - Sergio Rasmann
- Institute of Biology, University of Neuchâtel, Neuchâtel, Switzerland
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Scherf JR, Barbosa Dos Santos CR, Sampaio de Freitas T, Rocha JE, Macêdo NS, Mascarenhas Lima JN, Melo Coutinho HD, Bezerra da Cunha FA. Effect of terpinolene against the resistant Staphylococcus aureus strain, carrier of the efflux pump QacC and β-lactamase gene, and its toxicity in the Drosophila melanogaster model. Microb Pathog 2020; 149:104528. [PMID: 33002597 DOI: 10.1016/j.micpath.2020.104528] [Citation(s) in RCA: 6] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/11/2020] [Revised: 09/17/2020] [Accepted: 09/17/2020] [Indexed: 11/26/2022]
Abstract
Efflux pumps and β-lactamases are mechanisms of bacterial resistance that exist in Staphylococcus aureus, where both mechanisms are expressed simultaneously in the SA K4100 strain, with its efflux pump being characterized as QacC (Quaternary Ammonium Compounds C). The search for inhibitors of these mechanisms has grown gradually, with research on isolated compounds, including terpenes, which have innumerable biological activities, being common. This study sought to evaluate the antibacterial activity of Terpinolene against the S. aureus K4100 strain, carrying a QacC efflux pump and β-lactamase, as well as to evaluate its toxicity in the Drosophila melanogaster arthropod model. Determination of the Minimum Inhibitory Concentration (MIC) was performed by broth microdilution. Efflux pump inhibition was evaluated by the MIC reduction of Oxacillin and Ethidium Bromide (EtBr). β-Lactamase inhibition was analyzed by the MIC reduction of Ampicillin with Sulbactam. Toxicity was verified by mortality parameters and locomotor assays in D. melanogaster. The results demonstrated that Terpinolene did not present a direct antibacterial activity (MIC ≥ 1024 μg/mL). However, a reduction in MIC was observed when Terpinolene was associated with Oxacillin (161.26-71.83 μg/mL) and EtBr (45.25-32 μg/mL), possibly by a β-lactamase and efflux pump inhibition, thus evidencing a modulatory activity. Terpinolene presented D. melanogaster mortality with an EC50 of 34.6 μL/L within 12 h of exposure. Additionally, Terpinolene presented damage to the locomotor system after the second hour of exposure, with the effect increasing in a concentration-dependent manner. In conclusion, new tests should be carried out to investigate the Terpinolene reinforcement of antibiotic activity and toxic activity mechanisms of action.
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Affiliation(s)
- Jackelyne Roberta Scherf
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Biological Chemistry Pos Graduate Program, Brazil.
| | - Cristina Rodrigues Barbosa Dos Santos
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Biological Chemistry Pos Graduate Program, Brazil.
| | - Thiago Sampaio de Freitas
- Laboratory of Simulations and Molecular Spectroscopy, Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Biological Chemistry Pos Graduate Program, Brazil.
| | - Janaína Esmeraldo Rocha
- Laboratory of Microbiology and Molecular Biology (LMBM), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Biological Chemistry Pos Graduate Program, Brazil.
| | - Nair Silva Macêdo
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil; Biological Sciences Pos Graduate Program - PPGCB, Federal University of Pernambuco - UFPE, Recife, 50670-901, PE, Brazil.
| | - Jessyca Nayara Mascarenhas Lima
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil.
| | - Henrique Douglas Melo Coutinho
- Laboratory of Microbiology and Molecular Biology (LMBM), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil
| | - Francisco Assis Bezerra da Cunha
- Laboratory of Bioprospecting in the Semi-Arid and Alternative Methods (LABSEMA), Regional University of Cariri - URCA, Crato, 63105-000, CE, Brazil.
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6
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de Sousa Silveira Z, Macêdo NS, Sampaio dos Santos JF, Sampaio de Freitas T, Rodrigues dos Santos Barbosa C, Júnior DLDS, Muniz DF, Castro de Oliveira LC, Júnior JPS, da Cunha FAB, Melo Coutinho HD, Balbino VQ, Martins N. Evaluation of the Antibacterial Activity and Efflux Pump Reversal of Thymol and Carvacrol against Staphylococcus aureus and Their Toxicity in Drosophila melanogaster. Molecules 2020; 25:E2103. [PMID: 32365898 PMCID: PMC7249103 DOI: 10.3390/molecules25092103] [Citation(s) in RCA: 19] [Impact Index Per Article: 4.8] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/09/2020] [Revised: 04/26/2020] [Accepted: 04/27/2020] [Indexed: 11/16/2022] Open
Abstract
The antibacterial activity and efflux pump reversal of thymol and carvacrol were investigated against the Staphylococcus aureus IS-58 strain in this study, as well as their toxicity against Drosophila melanogaster. The minimum inhibitory concentration (MIC) was determined using the broth microdilution method, while efflux pump inhibition was assessed by reduction of the antibiotic and ethidium bromide (EtBr) MICs. D. melanogaster toxicity was tested using the fumigation method. Both thymol and carvacrol presented antibacterial activities with MICs of 72 and 256 µg/mL, respectively. The association between thymol and tetracycline demonstrated synergism, while the association between carvacrol and tetracycline presented antagonism. The compound and EtBr combinations did not differ from controls. Thymol and carvacrol toxicity against D. melanogaster were evidenced with EC50 values of 17.96 and 16.97 µg/mL, respectively, with 48 h of exposure. In conclusion, the compounds presented promising antibacterial activity against the tested strain, although no efficacy was observed in terms of efflux pump inhibition.
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Affiliation(s)
- Zildene de Sousa Silveira
- Laboratory of Semi-Arid Bioprospecting (LABSEMA), Regional University of Cariri-URCA, Crato 63105-000, CE, Brazil; (Z.d.S.S.); (N.S.M.); (J.F.S.d.S.); (D.L.d.S.J.); (L.C.C.d.O.); (F.A.B.d.C.)
- Graduate Program in Biological Sciences-PPGCB, Federal University of Pernambuco-UFPE, Recife 50670-901, PE, Brazil;
| | - Nair Silva Macêdo
- Laboratory of Semi-Arid Bioprospecting (LABSEMA), Regional University of Cariri-URCA, Crato 63105-000, CE, Brazil; (Z.d.S.S.); (N.S.M.); (J.F.S.d.S.); (D.L.d.S.J.); (L.C.C.d.O.); (F.A.B.d.C.)
- Graduate Program in Biological Sciences-PPGCB, Federal University of Pernambuco-UFPE, Recife 50670-901, PE, Brazil;
| | - Joycy Francely Sampaio dos Santos
- Laboratory of Semi-Arid Bioprospecting (LABSEMA), Regional University of Cariri-URCA, Crato 63105-000, CE, Brazil; (Z.d.S.S.); (N.S.M.); (J.F.S.d.S.); (D.L.d.S.J.); (L.C.C.d.O.); (F.A.B.d.C.)
| | - Thiago Sampaio de Freitas
- Laboratory of Microbiology and Molecular Biology (LMBM), Regional University of Cariri-URCA, Crato 63105-000, CE, Brazil; (T.S.d.F.); (C.R.d.S.B.); (D.F.M.)
| | - Cristina Rodrigues dos Santos Barbosa
- Laboratory of Microbiology and Molecular Biology (LMBM), Regional University of Cariri-URCA, Crato 63105-000, CE, Brazil; (T.S.d.F.); (C.R.d.S.B.); (D.F.M.)
| | - Dárcio Luiz de Sousa Júnior
- Laboratory of Semi-Arid Bioprospecting (LABSEMA), Regional University of Cariri-URCA, Crato 63105-000, CE, Brazil; (Z.d.S.S.); (N.S.M.); (J.F.S.d.S.); (D.L.d.S.J.); (L.C.C.d.O.); (F.A.B.d.C.)
| | - Débora Feitosa Muniz
- Laboratory of Microbiology and Molecular Biology (LMBM), Regional University of Cariri-URCA, Crato 63105-000, CE, Brazil; (T.S.d.F.); (C.R.d.S.B.); (D.F.M.)
| | - Lígia Claudia Castro de Oliveira
- Laboratory of Semi-Arid Bioprospecting (LABSEMA), Regional University of Cariri-URCA, Crato 63105-000, CE, Brazil; (Z.d.S.S.); (N.S.M.); (J.F.S.d.S.); (D.L.d.S.J.); (L.C.C.d.O.); (F.A.B.d.C.)
| | - José Pinto Siqueira Júnior
- Laboratory of Microorganism Genetics (LGM), Federal University of Paraiba-UFPB, João Pessoa 58051-900, PB, Brazil;
| | - Francisco Assis Bezerra da Cunha
- Laboratory of Semi-Arid Bioprospecting (LABSEMA), Regional University of Cariri-URCA, Crato 63105-000, CE, Brazil; (Z.d.S.S.); (N.S.M.); (J.F.S.d.S.); (D.L.d.S.J.); (L.C.C.d.O.); (F.A.B.d.C.)
| | - Henrique Douglas Melo Coutinho
- Laboratory of Microbiology and Molecular Biology (LMBM), Regional University of Cariri-URCA, Crato 63105-000, CE, Brazil; (T.S.d.F.); (C.R.d.S.B.); (D.F.M.)
| | - Valdir Queiroz Balbino
- Graduate Program in Biological Sciences-PPGCB, Federal University of Pernambuco-UFPE, Recife 50670-901, PE, Brazil;
| | - Natália Martins
- Faculty of Medicine, University of Porto, Alameda Prof. Hernâni Monteiro, 4200-319 Porto, Portugal
- Institute for Research and Innovation in Health (i3S), University of Porto, 4200-135 Porto, Portugal
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