Composición química y actividad antimicrobiana del extracto hexánico de las hojas y tallos de Croton micradenus (Euphorbiaceae)
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Se determinó por primera vez la composición química del extracto hexánico de las hojas y tallos de la especie endémica cubana potencialmente medicinal Croton micradenus Urb. mediante Cromatografía Gaseosa-Espectrometría de Masas (CG-EM). Se reportó la actividad antimicrobiana frente a cepas de referencia de Escherichia coli (Migula) Castellani & Chalmers (ATCC 10536), Staphylococcus aureus Rosenbach (ATCC 6538), Candida albicans (Robin) Berkhout (ATCC 10231) and Pseudomonas aeruginosa (Schoroeter) Migula (ATCC 9027).
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Payo Hil, A. L., Marrero Delange, D., Spengler Salabarría, I., & Echemendía Arana, O. A. (2023). Composición química y actividad antimicrobiana del extracto hexánico de las hojas y tallos de Croton micradenus (Euphorbiaceae). Acta Botánica Cubana, 222, https://cu-id.com/2402/v222e04. Recuperado a partir de https://revistasgeotech.com/index.php/abc/article/view/472
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Barbosa PR, Fascio M, Martins D, Roque NF. 2004. Benzoyl-methylpolyols from Croton species (Euphorbiaceae). Arkivoc. 6: 95-102.
Catalán CAN, Heluani CS, Kotowicz C, Gedris TE, Herz W. 2003. A linear sesterterpene, two squalene derivatives and two peptide derivatives from Croton hieronymi. Phytochemistry. 64: 625-632.
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Dambatta MB, Ndukwe GL, Amupitan AO. 2017. Stigmasterol as antimicrobial agents from root extracts of Cola millenii. International Journal of Science for Global Sustainability. 4: 47-53. Dos Santos Pereira A, Fernandes do Amaral AC, Barnes RA, Cardoso Jarí N, De Aquino Neto FR. 1999. Identification of isoquinoline alkaloids in crude extracts by high temperature gas chromatography-mass spectrometry. Phytochemistry Anales. 10: 254-258.
Dos Santos Pereira A, Albero Carbonell S, De Aquino Neto FR, Fernandes do Amaral AC, Barnes RA. 2002. High-temperature gas chromatography-mass spectrometry with glass capillary columns for the screening of natural products. Journal of Chromatography. A. 947: 255-265.
Greinge M, Ahmed S. 1988. Handbook of Plants with Pest- Control Properties. John Wiley & Sons, New York.
Greuter W, Rankin R. 2022. Vascular Plants of Cuba A Checklist. Third, updated edition of The Spermatophyta of Cuba. Botanischer Garten und Botanisches Museum Berlin. https://doi.org/10. 3372/cubalist.2022.1.
Heng YW, Ban JJ, Khoo KS, Sit NW. 2020. Biological activities and phytochemical content of the rhizome hairs of Cibotium barometz (L.) J.Sm. (Cibotiaceae). Industrial Crops & Products. 153. https://doi.org/10.1016/j.indcrop.2020.112612.
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Maciel MAM, Pinto AC, Arruda AC, Pamplona SGSR, Vanderlinde FA, Lapa AJ, et al. 2000. Ethnopharmacology, phytochemistry and pharmacology: a successful combination in the study of Croton cajucara. Journal of Ethnopharmacology. 70: 5541-5543.
Matias EFF, Santos KKA, Costa JGMH, Coutinho DM. 2010. Light enhanced antibiotic activity of Brazilian medical plants (Croton campestris A., Ocimum gratissimum L. and Cordia verbenaceae DC.. Asian Biomedicine. 4: 183-186.
Marrero D, Cora M, Laguna A, González VL. 2013. Caracterización espectroscópica del D-003 obtenido de la cera de caña de azúcar (Saccharum officinarum L.). Revista Cubana de Farmacia. 47: 389-399.
Marrero D, Rodríguez EA, González VL, Morales CL. 2013. Determinación de esteroles en la fracción insaponificable del aceite de los frutos de la palma real cubana (Roystonea regia). Revista Cubana de Farmacia. 47: 110-116.
Mukherjee R, Axt EM. 1984. Cyclitols from Croton celtidifolius. Phytochemistry. 23: 2682-2684.
Murillo RM, Jakupovic J, Rivera V, Castro VH. 2001. Diterpenes and other constituents from Croton draco (Euphorbiaceae). Revista de Biología Tropical. 49: 259-264.
Mustapha N, Abubakar, Majinda RRT. 2016. GC-MS Analysis and Preliminary Antimicrobial Activity of Albizia adianthifolia (Schumach) and Pterocarpus angolensis (DC). Medicines. 3, 3. DOI: 10.3390/medicines3010003.
Napralert Database. 2013. University of Illinois: Chicago. Disponible en: http://stneasy.cas.org (consultado 15 de marzo de 2013).
Peres MTLP, Delle Monache F, Bella Cruz A, Pizzolatti MG, Yunes RA. 1997. Chemical composition and antimicrobial activity of Croton urucurana Baillon (Euphorbiaceae). Journal of Ethnopharmacology. 56: 223. DOI: 10.1016/ s0378-8741(97)00039-1.
Peres MTLP, Delle Monache F, Pizzolatti MG, Santos ARS, Beirith A, Calixto JB, et al. 1998. Analgesic compounds of Croton urucurana Baillon. Pharmaco-chemical criteria used in their isolation. Phytotherapy Research. 12: 209-211.
Sarojini DN, Mani J, Venkata RRR. 2011. In vitro antimicrobial activity and phytochemical constituents of Croton scabiosus Bedd. International Journal of Pharmaceutical Sciences and Research. 3: 149-154.
Saxton JE. 1979. Review of the literature Published between July 1977 and June 1978. The Royal Society of Chemistry. Burlington House, London.
Sengupta S, Nandi I, Bhattacharyya DK, Ghosh M. 2018. Anti-Oxidant and anti-bacterial properties of 1-octacosanol isolated from rice bran wax. Journal Plant Biochemistry Physiology. 6: 1-8.
Wayne P. 2000. Methods for dilution antimicrobial susceptibility tests for bacteria that grow aerobically. National Committee for Clinical Laboratory Standards. Pennsylvania.
Barbosa PR, Fascio M, Martins D, Roque NF. 2004. Benzoyl-methylpolyols from Croton species (Euphorbiaceae). Arkivoc. 6: 95-102.
Catalán CAN, Heluani CS, Kotowicz C, Gedris TE, Herz W. 2003. A linear sesterterpene, two squalene derivatives and two peptide derivatives from Croton hieronymi. Phytochemistry. 64: 625-632.
CITMA (Ministerio de Ciencia Tecnología y Medio Ambiente de la República de Cuba). 2014. V Informe Nacional al Convenio sobre la Diversidad Biológica. La Habana.
Dambatta MB, Ndukwe GL, Amupitan AO. 2017. Stigmasterol as antimicrobial agents from root extracts of Cola millenii. International Journal of Science for Global Sustainability. 4: 47-53. Dos Santos Pereira A, Fernandes do Amaral AC, Barnes RA, Cardoso Jarí N, De Aquino Neto FR. 1999. Identification of isoquinoline alkaloids in crude extracts by high temperature gas chromatography-mass spectrometry. Phytochemistry Anales. 10: 254-258.
Dos Santos Pereira A, Albero Carbonell S, De Aquino Neto FR, Fernandes do Amaral AC, Barnes RA. 2002. High-temperature gas chromatography-mass spectrometry with glass capillary columns for the screening of natural products. Journal of Chromatography. A. 947: 255-265.
Greinge M, Ahmed S. 1988. Handbook of Plants with Pest- Control Properties. John Wiley & Sons, New York.
Greuter W, Rankin R. 2022. Vascular Plants of Cuba A Checklist. Third, updated edition of The Spermatophyta of Cuba. Botanischer Garten und Botanisches Museum Berlin. https://doi.org/10. 3372/cubalist.2022.1.
Heng YW, Ban JJ, Khoo KS, Sit NW. 2020. Biological activities and phytochemical content of the rhizome hairs of Cibotium barometz (L.) J.Sm. (Cibotiaceae). Industrial Crops & Products. 153. https://doi.org/10.1016/j.indcrop.2020.112612.
Jimenez LC, Bernal HY. 1992. “El Inchi”. Especies Vegetales Promisorias de los Países del Convenio Andrés Bello (Programa de Recursos Vegetales del Convenio Andrés Bello: PREVECAB). SECAB, Santa Fé de Bogotá. Maciel MAM, Pinto AC, Brabo SN, Silva MN. 1998. Terpenoids from Croton cajucara. Phytochemistry. 49, 823-828.
Maciel MAM, Pinto AC, Arruda AC, Pamplona SGSR, Vanderlinde FA, Lapa AJ, et al. 2000. Ethnopharmacology, phytochemistry and pharmacology: a successful combination in the study of Croton cajucara. Journal of Ethnopharmacology. 70: 5541-5543.
Matias EFF, Santos KKA, Costa JGMH, Coutinho DM. 2010. Light enhanced antibiotic activity of Brazilian medical plants (Croton campestris A., Ocimum gratissimum L. and Cordia verbenaceae DC.. Asian Biomedicine. 4: 183-186.
Marrero D, Cora M, Laguna A, González VL. 2013. Caracterización espectroscópica del D-003 obtenido de la cera de caña de azúcar (Saccharum officinarum L.). Revista Cubana de Farmacia. 47: 389-399.
Marrero D, Rodríguez EA, González VL, Morales CL. 2013. Determinación de esteroles en la fracción insaponificable del aceite de los frutos de la palma real cubana (Roystonea regia). Revista Cubana de Farmacia. 47: 110-116.
Mukherjee R, Axt EM. 1984. Cyclitols from Croton celtidifolius. Phytochemistry. 23: 2682-2684.
Murillo RM, Jakupovic J, Rivera V, Castro VH. 2001. Diterpenes and other constituents from Croton draco (Euphorbiaceae). Revista de Biología Tropical. 49: 259-264.
Mustapha N, Abubakar, Majinda RRT. 2016. GC-MS Analysis and Preliminary Antimicrobial Activity of Albizia adianthifolia (Schumach) and Pterocarpus angolensis (DC). Medicines. 3, 3. DOI: 10.3390/medicines3010003.
Napralert Database. 2013. University of Illinois: Chicago. Disponible en: http://stneasy.cas.org (consultado 15 de marzo de 2013).
Peres MTLP, Delle Monache F, Bella Cruz A, Pizzolatti MG, Yunes RA. 1997. Chemical composition and antimicrobial activity of Croton urucurana Baillon (Euphorbiaceae). Journal of Ethnopharmacology. 56: 223. DOI: 10.1016/ s0378-8741(97)00039-1.
Peres MTLP, Delle Monache F, Pizzolatti MG, Santos ARS, Beirith A, Calixto JB, et al. 1998. Analgesic compounds of Croton urucurana Baillon. Pharmaco-chemical criteria used in their isolation. Phytotherapy Research. 12: 209-211.
Sarojini DN, Mani J, Venkata RRR. 2011. In vitro antimicrobial activity and phytochemical constituents of Croton scabiosus Bedd. International Journal of Pharmaceutical Sciences and Research. 3: 149-154.
Saxton JE. 1979. Review of the literature Published between July 1977 and June 1978. The Royal Society of Chemistry. Burlington House, London.
Sengupta S, Nandi I, Bhattacharyya DK, Ghosh M. 2018. Anti-Oxidant and anti-bacterial properties of 1-octacosanol isolated from rice bran wax. Journal Plant Biochemistry Physiology. 6: 1-8.
Wayne P. 2000. Methods for dilution antimicrobial susceptibility tests for bacteria that grow aerobically. National Committee for Clinical Laboratory Standards. Pennsylvania.