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Research Article

Phenolic Components and Antioxidant Capacity of Six Wild Passiflora Species from the Andean Region of Colombia

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Pages 319-335 | Received 16 Aug 2022, Published online: 27 Feb 2023

References

  • Cuervo Matamoros, P. A. Diversidad y usos de pasifloras Passifloraceae silvestres y cultivadas en el departamento del Casanare Orinoquia Colombia. 2020. https://ciencia.lasalle.edu.co/biologia/85
  • Ocampo Perez, J. A.; Forero Pinto, L. E.; MacDougal, J. M. Morphological Analysis Reveals a New Species of Passiflora Subgenus Decaloba (Passifloraceae): passiflora quimbayensis, an Endemic Species from Colombia. Syst. Bot. 2018, 43(1), 231–239. DOI: 10.1600/036364418X696923.
  • Ocampo, J. A.; Velásquez, A. I.; Velásquez, J. O. A Rediscovery for the Colombian Flora: passiflora Mariquitensis Mutis Ex L. Uribe (Passifloraceae), a Species Lost for More Than Two Centuries. Check List. 2020, 16(6), 1591. DOI: 10.15560/16.6.1591.
  • Jiménez, Á. A. R.; Méndez, J. J. A.; Murillo, W. A.; Guerrero, M. F. P. Vasodilator Effect of Ethanolic Extracts of Passiflora Vitifolia and Passiflora Edulis F. Edulis Seeds. J. Appl. Pharm. Sci. 2021, 11(10), 061–069.
  • Sabogal-Palma, A. C.; Chávez, J.; Oliveros-Gómez, D. F.; Murillo-Perea, E.; Méndez-Arteaga, J. J. Funcionalidades biológicas de Passiflora maliformis del sur macizo colombiano. Bioagro. 2016, 28(1), 003–012.
  • Yepes, A.; Ochoa-Bautista, D.; Murillo-Arango, W.; Quintero-Saumeth, J.; Bravo, K.; Osorio, E. Purple Passion Fruit Seeds (Passiflora Edulis F. Edulis Sims) as a Promising Source of Skin Anti-Aging Agents: enzymatic, Antioxidant and Multi-Level Computational Studies. Arabian J. Chem. 2021, 14(1), 102–905. DOI: 10.1016/j.arabjc.2020.11.011.
  • Dhawan, K.; Dhawan, S. Sharma A. Passiflora: a Review Update. J Ethnopharm. 2004, 94(1), 1–23. DOI: 10.1016/j.jep.2004.02.023.
  • Gadioli, I. L.; da Cunha, M. D. S. B.; de Carvalho, M. V. O.; Costa, A. M.; Pineli, L. D. L. D. O. A Systematic Review on Phenolic Compounds in Passiflora Plants: exploring Biodiversity for Food, Nutrition, and Popular Medicine. Crit. Rev. Food Sci. Nutr. 2018, 58(5), 785–807. DOI: 10.1080/10408398.2016.1224805.
  • Wosch, L.; Santos, K. C. D.; Imig, D. C.; Santos, C. A. M. Comparative Study of Passiflora Taxa Leaves: iI. A Chromatographic Profile. Rev. Bras. Farmacogn. 2017, 27(1), 40–49. DOI: 10.1016/j.bjp.2016.06.007.
  • Vigano, J.; de Paula Assis, B. F.; Nathia-Neves, G.; Dos Santos, P.; Meireles, M. A. A.; Veggi, P. C.; Martinez, J. Extraction of Bioactive Compounds from Defatted Passion Fruit Bagasse (Passiflora Edulis Sp.) Applying Pressurized Liquids Assisted by Ultrasound. Ultrason. Sonochem. 2020, 64, 104–999. DOI: 10.1016/j.ultsonch.2020.104999.
  • Silva, D. F. D.; Batista, M. R. A.; Aguiar, J. P. L.; Machado, F. M.; Figueiredo, J. N. R.; Ticona-Benavente, C. A. Passiflora Foetida Yielding and Nutritional Composition. Rev Bras Frutic. 2019, 41(3). DOI: 10.1590/0100-29452019144.
  • Karapetsas, A.; Voulgaridou, G. P.; Konialis, M.; Tsochantaridis, I.; Kynigopoulos, S., et al. Propolis Extracts Inhibit UV-Induced Photodamage in Human Experimental in vitro Skin Models. Antioxidants. 2019, 8(5), 125.
  • Delpino-Rius, A.; Eras, J.; Vilaró, F.; Cubero, M. Á.; Balcells, M.; Canela-Garayoa, R. Characterisation of Phenolic Compounds in Processed Fibres from the Juice Industry. Food Chem. 2015, 172, 575–584. DOI: 10.1016/j.foodchem.2014.09.071.
  • Ferran Font, M. D. Hidroxitirosol, el mejor antioxidante natural y el más desconocido: Estudio comparativo con otros antioxidantes; Trabajo Final de Máster Nutrición y Salud Universitat Oberta de Catalunya: Barcelona, Spain, 2015.
  • Viña, A.; Murillo, E. Essential Oil Composition from Twelve Varieties of Basil (Ocimum spp) Grown in Colombia. J. Braz. Chem. Soc. 2003, 14(5), 744–749. DOI: 10.1590/S0103-50532003000500008.
  • Saravanan, S.; Parimelazhagan, T. In vitro Antioxidant, Antimicrobial and Antidiabetic Properties of Polyphenols of Passiflora Ligularis Juss. Fruit Pulp. Food Sci. Human Wellness. 2014, 3(2), 56–64. DOI: 10.1016/j.fshw.2014.05.001.
  • Sasikala, V.; Saravana, S.; Parimelazhagan, T. 2011. Evaluation of antioxidant potential of different parts of wild edible plant Passiflora foetida L. https://imsear.searo.who.int/handle/123456789/150792.
  • Dominguez-Rodriguez, G.; García, M. C.; Plaza, M.; Marina, M. L. Revalorization of Passiflora Species Peels as a Sustainable Source of Antioxidant Phenolic Compounds. Sci. Total Environ. 2019, 696, 134030. Article 134030 DOI: 10.1016/j.scitotenv.2019.134030.
  • Leal, A. E. B. P.; de Oliveira, A. P.; Santos, R. F. D.; Soares, J. M. D.; Lavor, E. M. D., et al. Determination of Phenolic Compounds, in vitro Antioxidant Activity and Characterization of Secondary Metabolites in Different Parts of Passiflora Cincinnata by HPLC-DAD-MS/MS Analysis. Nat. Prod. Res. 2020, 34(7), 995–1001.
  • Medina, S.; Collado-González, J.; Ferreres, F.; Londoño-Londoño, J.; Jiménez-Cartagena, C., et al. Quantification of Phytoprostanes–Bioactive Oxylipins–And Phenolic Compounds of Passiflora Edulis Sims Shell Using UHPLC-QqQ-MS/MS and LC-IT-DAD-MS/MS. Food Chem. 2017, 229, 1–8. DOI: 10.1016/j.foodchem.2017.02.049.
  • Liang, J.; Guo, X. D.; Han, F. UHPLC-ESI-MS/MS Quantitative Analyses of Multicomponent Hu Gan Tablets. Molecules. 2019, 24(23), 4241. DOI: 10.3390/molecules24234241.
  • Acosta, M. L. C. Polifenoles: compuestos bioactivos con efectos benéficos en la prevención de diabetes tipo 2. Científica. 2019, 1, 6.
  • Abourashed, E. A.; Vanderplank, J. R.; Khan, I. A. High-Speed Extraction and HPLC Fingerprinting of Medicinal Plants–II. Application to Harman Alkaloids of Genus Passiflora. Pharm. Biol. 2003, 41(2), 100–106. DOI: 10.1076/phbi.41.2.100.14244.
  • Valencia-Avilés, E.; Ignacio-Figueroa, I.; Sosa-Martínez, E.; Bartolomé-Camacho, M. C.; Martínez-Flores, H. E.; García-Pérez, M. E. Polifenoles: propiedades antioxidantes y toxicológicas. Rev Fac Cienc Quím. 2017, 16, 15–29.
  • Quiñones, M.; Miguel, M.; Aleixandre, A. Los polifenoles, compuestos de origen natural con efectos saludables sobre el sistema cardiovascular. Nutr. Hosp. 2012, 27(1), 76–89. DOI: 10.1590/S0212-16112012000100009.
  • Avila, J.; Jiménez, A.; Méndez, J.; Murillo, E. Chemical and Biological Potential of Passiflora Vitifolia Fruit Byproducts Collected in the Colombian Central Andes. Asian J. Pharm. Clin. Res. 2021, 182–189. DOI: 10.22159/ajpcr.2021.v14i1.39277.
  • Li, H.; Zhou, P.; Yang, Q.; Shen, Y.; Deng, J., et al. Comparative Studies on Anxiolytic Activities and Flavonoid Compositions of Passiflora Edulis ‘Edulis’ and Passiflora edulis‘flavicarpa’. J Ethnopharm. 2011, 133(3), 1085–1090.
  • Rufino, A. T.; Costa, V. M.; Carvalho, F.; Fernandes, E. Flavonoids as Antiobesity Agents: a Review. Med Res Ver. 2021, 41(1), 556–585. DOI: 10.1002/med.21740.
  • Ożarowski, M.; Karpiński, T. M. Extracts and Flavonoids of Passiflora Species as Promising Anti-Inflammatory and Antioxidant Substances. Curr. Pharm. Des. 2021, 27(22), 2582–2604. DOI: 10.2174/1381612826666200526150113.
  • Urrego, N.; Sepúlveda, P.; Aragón, M.; Ramos, F. A.; Costa, G. M., et al. Flavonoids and Saponins from Passiflora Edulis F. Edulis Leaves (Purple Passion Fruit) and Its Potential Anti-Inflammatory Activity. J. Pharm. Pharmacol. 2021, 73(11), 1530–1538.
  • Ramos Méndez, L. V. Evaluación del aislamiento reproductivo en Passiflora biflora, Passiflora capsularis y Passiflora coriacea; Passifloraceae especies simpátricas en Cundinamarca: Colombia, 2016.
  • Caleño-Ruíz, B. L.; Morales-Liscano, G. Propagación asexual de especies endémicas y amenazadas del género Passiflora en los Andes colombianos. Colomb Forestal. 2019, 22(2), 67–82. DOI: 10.14483/2256201X.14302.
  • Viera, W.; Shinohara, T.; Samaniego, I.; Sanada, A.; Terada, N., et al. Phytochemical Composition and Antioxidant Activity of Passiflora Spp. Germplasm Grown in Ecuador. Plants. 2022, 11(3), 328.
  • Rotta, E. M.; Rodrigues, C. A.; Jardim, I. C. S. F.; Maldaner, L.; Visentainer, J. V. Determination of Phenolic Compounds and Antioxidant Activity in Passion Fruit Pulp (Passiflora Spp.) Using a Modified QuEchers Method and UHPLC-MS/MS. LWT. 2019, 100, 397–403. DOI: 10.1016/j.lwt.2018.10.052.
  • Lima-Neto, A. B. M.; Marques, M. M. M.; Mendes, F. N. P.; Vieira, Í. G. P.; Diniz, D. B.; Guedes, M. I. F. Antioxidant Activity and Physicochemical Analysis of Passion Fruit (Passiflora Glandulosa Cav.) Pulp Native to Cariri Region. Acta Scientiarum. Biological Sciences. 2017, 39(4), 417–422. DOI: 10.4025/actascibiolsci.v39i4.34045.
  • Schaich, K. M.; Tian, X.; Xie, J. Hurdles and Pitfalls in Measuring Antioxidant Efficacy: a Critical Evaluation of ABTS, DPPH, and ORAC Assays. J. Funct. Foods. 2015, 14, 111–125. DOI: 10.1016/j.jff.2015.01.043.
  • Kuskoski, E. M.; Asuero, A. G.; Troncoso, A. M.; Mancini-Filho, J.; Fett, R. Aplicación de diversos métodos químicos para determinar actividad antioxidante en pulpa de frutos. Food Sci Tech-Brazil. 2005, 25(4), 726–732. DOI: 10.1590/S0101-20612005000400016.
  • Yilmaz, Y.; Toledo, R. T. Major Flavonoids in Grape Seeds and Skins: antioxidant Capacity of Catechin, Epicatechin, and Gallic Acid. J. Agric. Food. Chem. 2004, 52(2), 255–260. DOI: 10.1021/jf030117h.
  • Tan, W. S.; Arulselvan, P.; Ng, S.F.; Taib, C. N. M.; Sarian, M. N.; Fakurazi, S. Healing Effect of Vicenin-2 (VCN-2) on Human Dermal Fibroblast (HDF) and Development VCN-2 Hydrocolloid Film Based on Alginate as Potential Wound Dressing. Biomed Res. Int. 2020, 2020, 1–15. DOI: 10.1155/2020/4730858.

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