Hexane extract from Spiranthera odoratissima A. St.-hil. leaves: chemical composition and its bioactive potential against Candida pathogenic species, Leishmania amazonensis and Xylella fastidiosa
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R. H. Pires | C. Martins | L. Magalhães | P. Pereira | M. Miranda | T. M. Vieira | C. Fernandes | A. Candido | Géssica Andrade | A. Crotti | A. D. Souza
[1] C. Martins,et al. Chemical composition and biological activities of essential oil from flowers of Psidium guajava (Myrtaceae). , 2020, Brazilian journal of biology = Revista brasleira de biologia.
[2] C. Martins,et al. Phytochemical screening of extracts from Spiranthera odoratissima A. St.-Hil. (Rutaceae) leaves and their in vitro antioxidant and anti-Listeria monocytogenes activities , 2020 .
[3] L. Magalhães,et al. In vitro antileishmanial and antioxidant activities of essential oils from different parts of Murraya paniculata (L.) Jack: a species of Rutaceae that occur in the Cerrado biome in Brazil , 2020 .
[4] C. Martins,et al. In vitro antimicrobial activity of Spiranthera odoratissima A. St. Hil. essential oils against foodborne pathogens and food spoilage bacteria , 2020 .
[5] S. M. Morais,et al. Atividade Antifúngica e Efeito Sinérgico contra Trichophyton rubrum e Candida spp. do Óleo Essencial das Partes Aéreas de Lippia alba , 2020 .
[6] Patrícia Silva Costa,et al. Antifungal Activity and Synergistic Effect of Essential oil from Lippia alba Against Trichophyton rubrum and Candida spp. , 2020, Revista Virtual de Química.
[7] C. Martins,et al. Bioactivities of essential oils from different parts of Spiranthera odoratissima (Rutaceae) , 2020 .
[8] R. H. Pires,et al. In Vitro and In Vivo Anti-Candida spp. Activity of Plant-Derived Products , 2019, Plants.
[9] A. Cruaud,et al. Xylella fastidiosa: climate suitability of European continent , 2019, Scientific Reports.
[10] S. Morais,et al. Essential Oils from Croton Species: Chemical Composition, in vitro and in silico Antileishmanial Evaluation, Antioxidant and Cytotoxicity Activities , 2019, Journal of the Brazilian Chemical Society.
[11] A. Crotti,et al. Chemical Constituents of Essential Oils Extracted from the Leaves and Flowers of Spiranthera odoratissima A. St. Hil. (Rutaceae) , 2018, Records of Natural Products.
[12] C. Martins,et al. In vitro evaluation of essential oils for potential antibacterial effects against Xylella fastidiosa , 2018, Journal of Phytopathology.
[13] J. R. Paula,et al. Chemical composition and seasonality variability of the Spiranthera odoratissima volatile oils leaves , 2018 .
[14] L. Magalhães,et al. Chemical composition and in vitro antileishmanial and cytotoxic activities of the essential oils of Ocotea dispersa (Nees) Mez and Ocotea odorifera (Vell) Rohwer (Lauraceae) , 2018, Natural product research.
[15] Zhen-Yu Li,et al. Phylogenetic Relationships and Evolution of the Androecia in Ruteae (Rutaceae) , 2015, PloS one.
[16] C. Carollo,et al. In vitro anti-Leishmania infantum activity of essential oil from Piper angustifolium , 2015 .
[17] G. Buchbauer,et al. A review on recent research results (2008–2010) on essential oils as antimicrobials and antifungals. A review. , 2012 .
[18] David W Williams,et al. Candida biofilms and oral candidosis: treatment and prevention. , 2011, Periodontology 2000.
[19] Gudrun Lang,et al. Essential oils as antimicrobials and antifungals , 2010 .
[20] O. Bueno,et al. Activities of extracts and compounds from Spiranthera odoratissima St. Hil. (Rutaceae) in leaf-cutting ants and their symbiotic fungus , 2010 .
[21] C. Nakamura,et al. Screening of some plants used in the Brazilian folk medicine for the treatment of infectious diseases. , 2002, Memorias do Instituto Oswaldo Cruz.