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Articles

Ultrasonic-assisted extraction and antioxidant capacities of flavonoids from Camellia fascicularis leaves

Capacidad antioxidante de flavonoides obtenidos de hojas de Camellia fascicularis mediante su extracción asistida por ultrasonido

, , , , & ORCID Icon
Pages 105-112 | Received 21 Feb 2017, Accepted 13 Jun 2017, Published online: 04 Aug 2017

References

  • Azuma, C.M., Santos, F.C.S.D., & Lago, J.H.G. (2011). Flavonoids and fatty acids of Camellia japonica leaves extract. Revista Brasileira De Farmacognosia, 21, 1159–1162. doi:10.1590/S0102-695X2011005000128
  • Balasumdram, N., Ai, T.Y., Sambanthamurthi, R., Sundram, K., & Samman, S. (2005). Antioxidant properties of palm fruit extract. Asia Pacific Journal of Clinical Nutrition. 14, 319–324. Retrieved from https://www.ncbi.nlm.nih.gov/pubmed/16326638
  • Boudkhili, M., Greche, H., Misbahi, H., Giovanelli, S., Noccioli, C., Pistelli, L., & Aarab, L. (2015). Isolation and antioxidant activity of flavonoids from Coriaria myrtifolia methanolic extract. Chemistry of Natural Compounds, 51, 141–142. doi:10.1007/s10600-015-1222-y
  • Chen, H.Y., & Yen, G.C. (2007). Antioxidant activity and free radical-scavenging capacity of extracts from guava (Psidium guajava L.) leaves. Food Chemistry, 101, 686–694. doi:10.1016/j.foodchem.2006.02.047
  • Ciftci, O., Ozcan, C., Kamisli, O., Cetin, A., Basak, N., & Aytac, B. (2015). Hesperidin, a citrus flavonoid, has the ameliorative effects against experimental autoimmune encephalomyelitis (EAE) in a C57BL/J6 Mouse Model. Neurochemical Research, 40, 1111–1120. doi:10.1007/s11064-015-1571-8
  • Dzoyem, J.P., Hamamoto, H., Ngameni, B., Ngadjui, B.T., & Sekimizu, K. (2013). Antimicrobial action mechanism of flavonoids from dorstenia species. Drug Discoveries & Therapeutics, 7, 66–72. doi:10.5582/ddt.2013.v7.2.66
  • Feng, S., Cheng, H., Fu, L., Ding, C., Zhang, L., Yang, R., & Zhou, Y. (2014). Ultrasonic-assisted extraction and antioxidant activities of polysaccharides from camellia oleifera leaves. International Journal of Biological Macromolecules, 68, 7–12. doi:10.1016/j.ijbiomac.2014.04.026
  • Fu, X.D., Tang, C.F., Rang, L., Peng, K.L., & Jiang, H.T. (2015). Antioxidant effect of flavonoids in extracts from the Eriobotrya japonica (Thunb.) Lindl. Leaves. Science and Technology of Food Industy, 36, 135–139. (in Chinese). doi:10.13386/j.issn1002-0306.2015.01.020
  • Georgiev, K., Zhelev, I., & Georgieva, S. (2014). Total phenolic compounds and tannins content of bancha green tea (Camellia sinensis) depending on extraction conditions. Scripta Scientifica Pharmaceutica, 1, 48–51. doi:10.14748/ssp.v1i1.605
  • Guo, L.X. (2013). Antitumor effects and mechanisms of total saponin and total flavonoid extracts from Patrinia villosa (Thunb.) juss. African Journal of Pharmacy & Pharmacology, 7, 165–171. doi:10.5897/AJPP12.761
  • Hammi, K.M., Jdey, A., Abdelly, C., Majdoub, H., & Ksouri, R. (2015). Optimization of ultrasound-assisted extraction of antioxidant compounds from tunisian zizyphus lotus fruits using response surface methodology. Food Chemistry, 184, 80–89. doi:10.1016/j.foodchem.2015.03.047
  • He, J., Wu, Z.Y., Zhang, S., Zhou, Y., Zhao, F., Peng, Z.Q., & Hu, Z.W. (2014). Optimization of microwave-assisted extraction of tea saponin and its application on cleaning of historic silks. Journal of Surfactants & Detergents, 17, 919–928. doi:10.1007/s11743-013-1523-8
  • Kedare, S.B., & Singh, R.P. (2011). Genesis and development of DPPH method of antioxidant assay. Journal of Food Science and Technology, 48, 412–422. doi:10.1007/s13197-011-0251-1
  • Li, R.G., Liu, L.W., Zheng, H.Y., & Tang, L.L. (2009). Antioxidant properties of P. communis trin flavonoids extracts. Acta Agriculturae Boreali-Occidentalis Sinica, 18, 310–314. (in Chinese). Retrieved from http://www.xbnyxb.net/ch/reader/create_pdf.aspx?file_no=20090466
  • Liu, B., Ma, Y., Liu, Y., Yang, Z., & Zhang, L. (2014). Ultrasonic-assisted extraction and antioxidant activity of flavonoids from Adinandra nitida leaves. Tropical Journal of Pharmaceutical Research, 12, 1045–1051. doi:10.4314/tjpr.v12i6.27
  • Liu, H., Mou, Y., Zhao, J.L., Wang, J.H., Zhou, L.G., Wang, M.A., … Yang, F.Y. (2010). Flavonoids from Halostachys caspica and their antimicrobial and antioxidant activities. Molecules, 15, 7933–7945. doi:10.3390/molecules15117933
  • Liu, T., Zhao, J., Ma, L., Ding, Y., & Su, D. (2012). Hepatoprotective effects of total triterpenoids and total flavonoids from Vitis viniferal against immunological liver injury in mice. Evidence-Based Complementary and Alternative Medicine, 2012, 1–8. doi:10.1155/2012/969386
  • Liu, Y., Li, Z., Xu, H., & Han, Y. (2016). Extraction of saponin from Camellia oleifera abel cake by a combination method of alkali solution and acid isolation. Journal of Chemistry, 10, 1–8. doi:10.1155/2016/6903524
  • Liyana-Pathirana, C., & Shahidi, F. (2005). Optimization of extraction of phenolic compounds from wheat using response surface methodology. Food Chemistry, 93, 47–56. doi:10.1016/j.foodchem.2004.08.050
  • Lu, J., Zhou, C., Rong, Q., Xu, Y.Y., Zhou, B., & Li, Z.H. (2013). Optimization of microwave-assisted extraction of flavonoids from Cryptotaenia japonica hassk using response surface methodology. Advance Journal of Food Science and Technology. 5, 310–317. Retrieved from http://maxwellsci.com/print/ajfst/v5-310-317.pdf
  • Luo, Y.Q., Guo, H., Hu, L.F., Shi, L.W., & Qian, J.Q. (2011). Antioxidant activity of flavonoids from bamboo leaves. Food Science and Technology, 36, 201–203. (in Chinese). Retrieved from http://www.ixueshu.com/document/720104517f97441d318947a18e7f9386.html
  • Maran, J.P., Manikandan, S., Priya, B., & Gurumoorthi, P. (2013). Box-behnken design based multi-response analysis and optimization of supercritical carbon dioxide extraction of bioactive flavonoid compounds from tea (Camellia sinensis L.) leaves. Journal of Food Science and Technology, 52, 92–104. doi:10.1007/s13197-013-0985-z
  • Matthaus, B. (2002). Antioxidant activity of extracts obtained from residues of different oilseeds. Journal of Agricultural & Food Chemistry, 50, 3444–3452. doi:10.1021/jf011440s
  • Min, T.L., & Bartholomew, B. (2007). Theaceae, Cemellia. In P.H. Raven & L.B. Zhang (Eds.), Flora of China (Vol. 12, pp. 367–370). Beijing: Science Press & St. Louis: Missouri Botanical Garden Press.
  • Oku, H., Ogawa, Y., Iwaoka, E., Yu, Y., & Kagota, S. (2011). Preventive effects of the extract of kinka-cha, a folk tea, on a rat model of metabolic syndrome. Journal of Natural Medicines, 65, 610–616. doi:10.1007/s11418-011-0523-0
  • Peng, X., Yu, D.Y., Feng, B.M., Wang, Y.Q., & Shi, L.Y. (2012). A new acylated flavonoid glycoside from the flowers of Camellia nitidissima and its effect on the induction of apoptosis in human lymphoma U937 cells. Journal of Asian Natural Products Research, 14, 799–804. doi:10.1080/10286020.2012.691475
  • Radhika, M., Ghoshal, N., & Chatterjee, A. (2012). Comparison of effectiveness in antitumor activity between flavonoids and polyphenols of the methanolic extract of roots of potentilla fulgens in breast cancer cells. Journal of Complementary & Integrative Medicine, 9. Article 24. doi:10.1515/1553-3840.1644
  • Re, R., Pellegrini, N., Proteggente, A., Pannala, A., Yang, M., & Rice-Evans, C. (1999). Antioxidant activity applying an improved ABTS radical cation decolorization assay. Free Radical Biology & Medicine, 26, 1231–1237. doi:10.1016/S0891-5849(98)00315-3
  • Sait, S., Hamrizeghichi, S., Boulekbachemakhlouf, L., Madani, K., Rigou, P., Brighenti, V., … Pellati, F. (2015). HPLC-UV/DAD and ESI-MS(n) analysis of flavonoids and antioxidant activity of an algerian medicinal plant: Paronychia argentea Lam. Journal of Pharmaceutical and Biomedical Analysis, 111, 231–240. doi:10.1016/j.jpba.2015.03.027
  • Shen, S.A., Cheng, H.R., Li, X., Li, T., Yuan, M., Zhou, Y.H., & Ding, C.B. (2014). Effects of extraction method on antioxidant activities of polysaccharides from camellia seed cake. European Food Research and Technology, 238, 1015–1021. doi:10.1007/s00217-014-2183-2
  • Song, L.X., Wang, X.S., Zheng, X.Q., & Huang, D.J. (2011). Polyphenolic antioxidant profiles of yellow camellia. Food Chemistry, 129, 351–357. doi:10.1016/j.foodchem.2011.04.083
  • Srinivasan, S., & Pari, L. (2013). Antihyperlipidemic effect of diosmin: A citrus flavonoid on lipid metabolism in experimental diabetic rats. Journal of Functional Foods, 5, 484–492. doi:10.1016/j.jff.2012.12.004
  • Tumbas, V., Canadanovic-Brunet, J., Gille, L., Dilas, S., & Cetkovic, G. (2010). Superoxide anion radical scavenging activity of bilberry (Vaccinium myrtillus L.). Journal of Berry Research, 1, 13–23. doi:10.3233/BR-2010-002
  • Wang, S., & Xie, Y. (2004). China species red list, Vol.1: Red list. Beijing: Higher Education Press. (in Chinese).
  • Wang, W., Liu, H., Wang, Z., Qi, J., Yuan, S., Zhang, W., … Jia, A.Q. (2016). Phytochemicals from Camellia nitidissima Chi inhibited the formation of advanced glycation end-products by scavenging methylglyoxal. Food Chemistry, 205, 204–211. doi:10.1016/j.foodchem.2016.03.019
  • Wei, J.B., Li, X., Song, H., Liang, Y.H., Pan, Y.Z., Ruan, J.X., … Su, Z.H. (2015). Characterization and determination of antioxidant components in the leaves of Camellia chrysantha (Hu) Tuyama based on composition–activity relationship approach. Journal of Food and Drug Analysis, 23, 40–48. doi:10.1016/j.jfda.2014.02.003
  • Wen, Y., Liu, Y.T., Zhang, J.M., & Guo, L. (2013). Purification of total flavonoids from Buddleja officinalis by ab-8 macroporous adsorption resin. Advanced Materials Research, 641-642, 988–992. doi:10.4028/www.scientific.net/AMR.641-642.988
  • Xie, Y., & Wang, S. (2007). Conservation status of Chinese species: (1) Overview. Integrative Zoology, 2, 26–35. doi:10.1111/j.1749-4877.2007.00039.x
  • Zhang, G.L., Zhang, G.S., Zhang, K., Wang, D., & Ping, S.H. (2015). Investigation and analysis of wild Camellia fascicularis in Yunnan province. Forestry Science and Technology of Guangdong Province, 31, 45–48. (in Chinese). doi:10.3969/j.issn.1006-4427.2015.01.009
  • Zhang, H.T., & Ren, S.X. (1998). Camellia fascicularis Chang. In Z.Y. Wu & H.B. Cui (Eds.), Flora Republicae Popularis Sinicae (Vol. 49, pp. 105). Beijing: Science Press. (in Chinese).
  • Zhang, Y., Wu, L.Y., Ma, Z.S., Cheng, J., & Liu, J.B. (2015). Anti-diabetic, anti-oxidant and anti-hyperlipidemic activities of flavonoids from corn silk on stz-induced diabetic mice. Molecules, 21, E7. doi:10.3390/molecules21010007
  • Zhang, Z. (2015). Extraction and free radical scavenging activity of polysaccharide from ‘anji baicha’ (Camellia sinensis (L.) O. kuntze). International Journal of Biological Macromolecules, 84, 161–165. doi:10.1016/j.ijbiomac.2015.12.016
  • Zhong, K., Wang, Q., He, Y., & He, X. (2010). Evaluation of radical scavenging polysaccharides with ultrasonic extraction on in S1580 tumor mice models. International Journal of Biological Macromolecules, 47, 356–360. doi:10.1016/j.ijbiomac.2010.05.022
  • Zhu, H.B., Wang, Y.Z., Liu, Y.X., Xia, Y.L., & Tang, T. (2010). Analysis of flavonoids in portulaca oleracea L. by UV-Vis spectrophotometry with comparative study on different extraction technologies. Food Analytical Methods, 3, 90–97. doi:10.1007/s12161-009-9091-2
  • Zielinski, A.A.F., Granato, D., Alberti, A., Nogueira, A., Demiate, I.M., & Haminiuk, C.W.I. (2015). Modelling the extraction of phenolic compounds and in vitro antioxidant activity of mixtures of green, white and black teas (Camellia sinensis, l. kuntze). Journal of Food Science and Technology -Mysore-, 52, 6966–6977. doi:10.1007/s13197-015-1797-0