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Extraction and Characterization of chemical constituents present in Cuphea aequipetala and their properties.

Published online by Cambridge University Press:  30 July 2021

Dhirendra Kumar Tiwari
Affiliation:
CONACYT, Michoacan de Ocampo, Mexico
Ana Velia Coria-Tellez
Affiliation:
Laboratorio de Análisis y Diagnóstico del Patrimonio, El Colegio de Michoacán,, Michoacan de Ocampo, Mexico
Dhananjay Tripathi
Affiliation:
ICMR- National Institute for Research in Environmental Health (NIREH) Bhopal, India, India
María Olimpia Alonso-Perez
Affiliation:
Laboratorio de Análisis y Diagnóstico del Patrimonio, El Colegio de Michoacán, La Piedad, CP. 59370, Michoacán, México, Michoacan de Ocampo, Mexico
Andrea Dubelza Navarro-Pérez
Affiliation:
UNIVERSIDAD AUTÓNOMA DE TAMAULIPAS, Tamaulipas, Mexico

Abstract

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Type
Challenges and Advances in Electron Microscopy Research and Diagnosis of Diseases in Humans, Plants and Animals (FIG associated)
Copyright
Copyright © The Author(s), 2021. Published by Cambridge University Press on behalf of the Microscopy Society of America

References

Márquez, A. C., Lara O, F.., Esquivel, B. Mata, R. y R. E. 1999. Plantas medicinales de México II. Composición, usos y actividad biológica. Universidad Nacional Autónoma de México. México, D. F.Google Scholar
Martínez, M., 1979. Catálogo de nombres vulgares y científicos de plantas mexicanas. Fondo de Cultura Económica. México, D.FGoogle Scholar
Cardenas-Sandoval, B.A., López-Laredo, A.R., Martínez-Bonfil, B.P., Bermúdez-Torres, K. and Trejo-Tapia, G., Advances in the phytochemistry of Cuphea aequipetala, C. aequipetala var. hispida and C. lanceolata: Extraction and quantification of phenolic compounds and antioxidant activity, Rev. Mex. Ing. Quím vol.11 no.3 México dic. 2012Google Scholar
Aguilar-Rodríguez, S., Echeveste-Ramírez, N., López-Villafranco, M.E., Aguilar-Contreras, A., Vega-Ávila, E., Reyes-Chilpa, R. 2012. Boletín Latinoamericano y dell Caribe de Plantas Medicinales y Aromáticas 11 (4): 316-330.Google Scholar
Cos, P., Vlietnick, A.R.,VandenBerghe, D.,Maes, L.,2006. Anti-infective potential of natural products:how to develop a stronger in vito"proof-of concept".J.Eth- nopharmacol. 106,290302.CrossRefGoogle Scholar
González, A.G., Valencia, E., Siverio-Expósito, T., Bermejo-Barrera, J., Gupta, M.P. 1994. Chemical Components of Cuphea Species. Carthagenol: A New Triterpene from C. carthagenensis. Planta Med. Letters 60.Google ScholarPubMed
Harvey, A.L., Edrada-Ebel, R., Quinn, R.J.,2015.There-emergence of natural products for drug Discovery in the genomics era.Nat.Rev.Drug.Discov.14, 111129.CrossRefGoogle ScholarPubMed
Nunes-Oliveira, R., Cordeiro-Mancini, M., Cabral Salles-Oliveira, F., Marques-Passos, T., Quilty, B., Silva Moreira-Thiré, R.M., McGuinness, G.B. 2016. g. Revista Materia V.21, N.03: 767-779.Google Scholar
Sharma, A., Flores-Vallejo, R., Cardoso-Taketa, A., Villarreal, M.L. 2016. Review: Antibacterial activities of medicinal plants used in Mexican traditional medicine. Journal of Ethnopharmacology 208: 264-329.CrossRefGoogle ScholarPubMed