Major Anthocyanin Pigments in the Ficus padana Fruits: HPLC-DAD-ESI-MS Identification and Antioxidant Activity

https://doi.org/10.22146/ijc.21242

Daimon Syukri(1*), Djaswir Darwis(2), Adlis Santoni(3)

(1) Department of Agricultural Product Technology, Andalas University, Limau Manis, Padang 25163, West Sumatra
(2) Department of Chemistry, Andalas University, Limau Manis, Padang 25163, West Sumatra
(3) Department of Chemistry, Andalas University, Limau Manis, Padang 25163, West Sumatra
(*) Corresponding Author

Abstract


The anthocyanins in Ficus padana were extracted and identified by using high-performance liquid chromatography/diode array detection and electrospray ionization/mass spectrometry (HPLC-DAD-ESI-MS). The individual anthocyanins were identified by comparing between their mass spectral data and published data. The first compound (peak 1) was identify as a pelargonidin 3-(6”-p-coumarylglucoside)-5-(4”’-Malonylglucoside) and the second compound was identify as a pelargonidin 3-(6’’-Malonylglucoside). The second one is a major compound that taking up to 91% of the total anthocyanin content in F. padana extract. The antioxidant activity was determined with 2,2-diphenyl-1-picrylhydrazyl (DPPH) assays and results showed that extract possessed high antioxidant capacity.

Keywords


Ficus padana; anthocyanin; HPLC-DAD-ESI-MS; antioxidant activity

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References

[1] Gautier-Hion, A., Duplantier, J.-M., Quris, R., Feer, F.,Sourd, C., Decoux, J.-P., Dubost, G., Emmons, L., Erard, C., Hecketsweiler, P., Moungazi, A., Roussilhon, C., and Thiollay, J.-M., 1985, Oecologia, 65 (3), 324–337.

[2] Gamble, J., Jaeger, S.R., and Harker, F.R., 2006, Postharvest Biol. Technol., 41 (1), 38–47.

[3] Gould, K.S., McKelvie, J., and Markham, K., 2002, Plant Cell Environ., 25 (10),1261–1269.

[4] Manetas, Y., 2006, Flora, 201 (3), 163–177.

[5] Steyn, W.J., Wand, S.J.E., Holcroft, D.M., and Jacobs, G., 2002, New Phytol, 155 (3), 349–361.

[6] Stintzing, F.C., and Carle, R., 2004, Trends Food Sci. Technol., 15 (1), 19–38.

[7] Huang, W., Zhang, S-L., Gai-hua Qin, G-H., Wenquan, L., and Wu, J., 2012, Afr. J. Agric. Res., 7 (26), 3772–3780.

[8] Andersen, Ø.M., 1985, J. Food Sci., 50 (5), 1230–1232.

[9] Matysik, G., and Benesz, M., 1991, Chromatographia, 32 (1-2), 19–22.

[10] Sherma, J., 2000, J Chromatogr. A, 880 (1-2), 129–147.

[11] Timberlake, C.F., and Bridle, P., 1976, Am. J. Enol. Vitic., 27, 97–105.

[12] Bakker, J., Preston, N.W., and Timberlake, C.F., 1986, Am. J. Enol. Vitic., 37 (2), 121–126.

[13] Hong, V., and Wrolstad, R.E., 1990, J. Agric. Food Chem., 38 (3), 708–715.

[14] Desai, K.G.H., Olsen, K.F., Mallery, S.R., Stoner, G.D., and Schwendeman, S.P., 2010, Pharm. Res., 27 (4), 628–643.

[15] Huang, Z., Wang, B., Williams, P., and Pace, R.D., 2009, LWT Food Sci. Technol., 42 (4), 819–824.

[16] Li, P.C.H., Wong, M.C.K., Adomat, H., and Guns, E.S.T., 2009, Can. J. Pure Appl. Sci., 3 (2), 765–772.

[17] Zheng, J., Ding, C., Wang, L., Li, G., Shi, J., Li, H., Wang, H., and Suo, Y., 2010, Food Chem., 126 (3), 859–865.

[18] Wilson, I.D., Plumb, R., Granger, J., Major, H., Williams, R., and Lenz, E.M., 2005, J. Chromatogr. B, 817 (1), 67–76.

[19] Lopes-da-Silva, F., de Pascual-Teresa, S., Rivas-Gonzalo, J., and Santos-Buelga, C., 2002, Eur. Food Res. Technol., 214 (3), 248–253.

[20] DuPont, M.S., Bennett, R.N., Mellon, F.A., and Williamson, G., 2002, J. Nutr., 132 (2), 172–175.

[21] Shoji, T., Masumoto, S., Moriichi, N., Kanda, T., and Ohtake, Y., 2006, J. Chromatogr. A, 1102 (1-2), 206–213.

[22] Aaby, K., Ekeberg, D., and Skrede. G., 2007, J. Agric. Food Chem., 55 (11), 4395–4406.

[23] Gil, M.I., Holcroft, D.M., and Kader, A.A., 1997, J. Agric. Food Chem., 45 (5), 1662–1667.

[24] Wu, X., Beecher, G.R., Holden, J.M., Haytowitz, D.B., Gebhardt, S.E., and Prior, R.L., 2006. J. Agric. Food Chem., 54 (11), 4069–4075.

[25] Gu, L., Kelm, M., Hammerstone, J.F., Beecher, G., Cunningham, D., Vannozzi, S., and Prior, R.L., 2002, J. Agric. Food Chem., 50 (17), 4852–4860.

[26] Prior, R.L., Lazarus, S.A., Cao, G., Muccitelli, H., and Hammerstone, J.F., 2001, J. Agric. Food Chem., 49 (3), 1270–1276.

[27] Garca-Beneytez, E., Cabello, F., and Revilla E., 2003, J. Agric. Food Chem., 51 (19), 5622–5629.

[28] Oliveira, J., Azevedo, J., Silva, A.M., Teixeira, N., Cruz, L., Mateus, N., and de Freitas, V., 2010, J. Agric. Food Chem., 58 (8), 5154–5159.

[29] Brand-Williams, W., Cuvelier, M.E., and Berset, C., 1995, LWT Food Sci. Technol., 28 (1), 25–30.

[30] Kong, J., Chia, L.S., Goh, N.K., Chia, T.F., and Brouillard, R., 2003, Phytochemistry, 64 (5), 923–933.

[31] Delgado-Vargas, F., and Paredes-Lopez, O., 2003, Natural Colorants for Food and Nutraceutical Uses, CRC Press, Boca Raton, FL, p. 326.

[32] Oki, T., Masuda, M., Furuta, S., Nishiba, Y., Terahara, N., and Suda, I., 2002, J. Food Sci., 67 (5).1752–1756.

[33] de Pascual-Teresa, S., Santos-Buelga, C., and Rivas-Gonzalo, J.C., 2002, J. Sci. Food Agric., 82 (9),1003–1006.

[34] Lapornik, B., Prošek, M., and Wondra, A.G., 2005, J. Food Eng., 71 (2).214–222.

[35] Jing, P., and Giusti, M., 2007, J. Food Sci., 72 (7), C363–C368.

[36] Fan, G., Han, Y., Gu, Z., and Chen, D., 2008, LWT Food Sci. Technol., 41 (1), 155–160.

[37] Steed, L.E., and Truong, V.D., 2008, J. Food Sci., 73 (5), S215–S221.

[38] Rivas-Gonzalo, J., 2003, “Analysis of polyphenols” in Methods in Polyphenols Analysis; Santos-Buelga, C., and Williamson, G., eds., Royal Society of Chemistry (Athenaeum Press, Ltd.), Cambridge, U.K., p. 95–98, 338–358.

[39] Strack, D., and Wray, V., 1989, “Anthocyanins” in Methods in Plants Biochemistry, Dey, P.M., and Harbone, J.B., eds., Academic Press: San Diego, CA, Vol. 1: Plant Phenolics, p. 325–359.

[40] http://www.lipidmaps.org/data/structure/LMSDSearch.php?Mode=ProcessClassSearch&LMID=LMPK12, accessed on November 10th 2013.

[41] Widyaningsih, W., 2010, Uji Aktivitas Antioksidan Ekstrak Daun Dewa (Gynura procumbens) dengan Metoda DPPH (1,1-difenil-2-pikrilhidrazil), Prosiding Seminar Nasional Kosmetika, Faculty of Pharmacy, Ahmad, Dahlan University, Yogyakarta.



DOI: https://doi.org/10.22146/ijc.21242

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