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Colorant and antioxidant properties of red-purple pitahaya (Hylocereus sp.)

Published online by Cambridge University Press:  15 May 2005

Fabrice Vaillant
Affiliation:
Centre de Coopération Internationale en Recherche Agronomique pour le Développement, Tropical Fruits Dept. (Cirad, Département Flhor), TA 50/PS4, 34398 Montpellier Cedex 5, France Centro Nacional de Ciencias y Tecnología de Alimentos (CITA), Universidad de Costa Rica, Código Postal 2060, San José, Costa Rica
Ana Perez
Affiliation:
Centro Nacional de Ciencias y Tecnología de Alimentos (CITA), Universidad de Costa Rica, Código Postal 2060, San José, Costa Rica
Indiana Davila
Affiliation:
Universidad Nacional Autónoma de Nicaragua (UNAN), Campos médicos, León, Nicaragua
Manuel Dornier
Affiliation:
Centre de Coopération Internationale en Recherche Agronomique pour le Développement, Tropical Fruits Dept. (Cirad, Département Flhor), TA 50/PS4, 34398 Montpellier Cedex 5, France École Nationale Supérieure des Industries Alimentaires, Tropical Food Dept. (ENSIA-SIARC), 1101 avenue Agropolis, CS 24501, 34093 Montpellier Cedex 5, France
Max Reynes
Affiliation:
Centre de Coopération Internationale en Recherche Agronomique pour le Développement, Tropical Fruits Dept. (Cirad, Département Flhor), TA 50/PS4, 34398 Montpellier Cedex 5, France
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Abstract

Introduction. Red-purple pitahaya (Hylocereus sp.) is a promising crop grown commercially in dry regions of Central America. Both its skin and flesh are characterized by being a glowing, deeply red-purple color. Materials and methods. The main physicochemical characteristics of three commercial cultivars of red pitahaya were assessed, including total phenolic compounds contents, total betacyanins, vitamin C and oxygen radical absorbance capacity (ORAC). Thermal stability of betacyanins at different temperature and pH was also assessed. Results and discussion. Pitahaya fruit has a low vitamin C content ranging from (116 to 171) µg·g–1 of fresh pulp without seeds, but it is rich in betacyanins [(0.32 to 0.41) mg·g–1] and phenolic compounds [(5.6 to 6.8) µmol Eq gallic acid·g–1]; it has a high antioxidant ORAC value of (8.8 to 11.3) µmol Eq Trolox·g–1. Visible spectra of aqueous fruit extracts were very similar to that of pure betacyanin. Indeed, the characteristic color of juice diluted to 1% presents a high hue angle ( = 350º ± 3) and high chroma values (C* = 79 ± 2). Thermal stability of pitahaya betacyanin decreases with pH, but it remains compatible with industrial utilization as a colorant (half-time = 22.6 min at 90 °C at pH = 5 of the fruit) and was found to be very similar to that previously reported for beetroot. Conclusions. Pitahaya juice combines the functional properties of a natural food colorant with high antioxidant potency.

Type
Research Article
Copyright
© CIRAD, EDP Sciences

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References

Barbeau, G., La pitahaya rouge, un nouveau fruit exotique, Fruits 45 (1990) 141147.
Nerd, A., Gutman, F., Mizrahi, Y., Ripening and postharvest behaviour of fruits of two Hylocereus species (Cactaceae), Postharvest Biol. Tec. 17 (1999) 3945. CrossRef
Stintzing, F.C., Schieber, A., Carle, R., Betacyanins in fruits from red-purple pitaya, Hylocereus polyrhizus (Weber) Britton & Rose, Food Chem. 77 (2002) 101106. CrossRef
Wybraniec, S., Mizrahi, Y., Fruit flesh betacyanin pigments in Hylocereus cacti, J. Agr. Food Chem. 50 (2002) 60866089. CrossRef
Bilyk, A., Extractive fractionation of betalaines, J. Food Sci. 44 (1979) 12491251. CrossRef
Sapers, G., Taffer, I., Ross, L., Functional properties of a food colorant prepared from red cabbage, J. Food Sci. 46 (1981) 105109. CrossRef
Stintzing, F.C., Schieber, A., Carle, R., Rote Bete als Farbendes Lebensmittel- eine Bestandsaufnahme, Obst, Gemüse- und Kartoffelverarbeit. 85 (2000) 196204.
Delgado-Vargas, F., Jimenez, A.R., Paredes-Lopez, O., Natural pigments: carotenoids, anthocyanins and betalains. Characteristics, biosynthesis, processing and stability, Crit. Rev. Food Sci. 40 (2000) 173289. CrossRef
Stintzing, F.C., Carle, R., Functional properties of anthocyanins and betalains in plants, food, and in human nutrition, Trends Food Sci. Tech. 15 (2004) 1938. CrossRef
Odoux, E., Dominguez-Lopez, A., Le figuier de Barbarie : une source industrielle de betalaïnes, Fruits 51 (1996) 6178.
Escribano, J.P., Garcia-Carmona, F., Muñoz, R., Characterization of the antiradical activity of betalains from Beta Vulgaris L. roots, Phytochem. Analysis 9 (1998) 124127. 3.0.CO;2-0>CrossRef
Kanner, J., Harel, S., Granit, R., Betalains – A new class of dietary cationized antioxidants, J. Agric. Food Chem. 49 (2001) 51785185. CrossRef
Cai, Y., Sun, M., Wu, H., Huang, R., Corke, H., Characterization and quantification of betacyanin pigments from diverse Amaranthus species, J. Agric. Food Chem. 46 (1998) 20632070. CrossRef
Butera, D., Tesoriere, L., Di-Gaudio, F., Bongiorno, A., Allegra, M., Pintaudi, A.M., Kohen, R., Livrea, M.A., Antioxidant activities of Sicilian prickly pear (Opuntia ficus-indica) fruit extracts and reducing properties of its betalains: betanin and indicaxanthin, J. Agric. Food Chem. 50 (2002) 68956901. CrossRef
Kaur, C., Kapoor, H., Antioxidants in fruits and vegetables – The millennium's health, Int. J. Food Sci. Tech. 36 (2001) 703725. CrossRef
Anonymous, Fruits and fruits products, in: Helrich K. (Ed.), Official Methods of Analysis of the Association of Official Analytical Chemists (AOAC), Association of Official Analytical Chemists, Arlington, USA, 1990, pp. 910–928.
Englyst, H.N., Cummings, J.H., Simplified method for the measurement of total non-starch polysaccharides by gas-liquid chromatography of constituent sugars as alditol acetates, Analyst 109 (1984) 937942. CrossRef
Slinkard, K., Singleton, L., Total phenol analysis: automation and comparison with manual methods, Am. J. Enol. Viticult. 28 (1977) 4955.
Kacem, B., Marshall, M.R., Mathews, R.F., Gregory, J.F., Simultaneous analysis of ascorbic and dehydroascorbic acid by high-performance liquid chromatography with postcolumn derivatization and UV absorbance, J. Agric. Food Chem. 34 (1986) 271274. CrossRef
Brause, A.R., Woollard, D.C., Indyk, H.E., Determination of total vitamin C in fruit juices and related products by liquid chromatography: interlaboratory study, J. AOAC Int. 86 (2003) 367374.
Saguy, I., Kopelman, I.J., Misrahi, S., Computer-aided determination of beet pigments, J. Food Sci. 43 (1978) 124127. CrossRef
Huang, A.S., Von Elbe, J.H., Effect of pH on the degradation and regeneration of betanine, J. Food Sci. 52 (1987) 16891693. CrossRef
Ou, B., Hampsch-Woodill, M., Prior, R., Development and validation of an improved oxygen radical absorbance capacity assay using fluorescein as the fluorescent probe, J. Agric. Food Chem. 49 (2001) 46194626. CrossRef
Ou, B., Huang, D., Hampsch-Woodil, M., Flanagan, J., Deemer, E., Analysis of antioxidant activities of common vegetables employing oxygen radical absorbance capacity (ORAC) and ferric reducing antioxidant power (FRAP) assays: a comparative study, J. Agric. Food Chem. 50 (2002) 31223128. CrossRef
Prior, R., Huang, D., Gu, L., Wu, X., Bacchiocca, M., Howard, L., Hampsch-Woodill, M., Huang, D., Ou, B., Jacob, R., Assays for hydrophilic and lipophilic antioxidant capacity, oxygen radical absorbance capacity (ORAC) of plasma and other biological and food samples, J. Agric. Food Chem. 51 (2003) 32733279. CrossRef
Sapers, G.M., Hornstein, J.S., Varietal differences in colorant properties and stability of red beet pigment, J. Food Sci. 44 (1979) 12451248. CrossRef
Sobkowska, E., Szapski, J., Kaczmarck, R., Red table beet pigment as food colorant, Int. Food Ingred. 3 (1991) 2428.
Kujala, T., Vienola, M., Klila, K., Loponen, J., Pihlaja, K., Betalain and phenolic compositions of four beetroot (Beta vulgaris) cultivars, Eur. Food Res. Technol. 214 (2002) 505510. CrossRef
Vinson, J.A., Su, X., Zubik, L., Bose, P., Phenol antioxidant quantity and quality in foods: fruits, J. Agric. Food Chem. 49 (2001) 53155321. CrossRef
Wybraniec, S., Platzner, I., Geresh, S., Gottlieb, H.E., Haimberg, M., Mogilnitzki, M., Mizrahi, Y., Betacyanins from vine cactus Hylocereus polyrhizus, Phytochemistry 58 (2001) 12091212. CrossRef
Huang, A.S., Von Elbe, J.H., Effect of pH on the degradation and regeneration of betanine, J. Food Sci. 52 (1987) 16891693. CrossRef
Megard, D., Stability of red beet pigments for use as food colorant: a review, Foods Food Ingred. J. 158 (1993) 130150.
Saguy, I., Thermostability of red beet pigments (betanin and vulgaxanthine-I): influence of pH and temperature, J. Food Sci. 44 (1979) 15541555. CrossRef