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Food composition and analysis

Effects of various heating methods on glucosinolate, carotenoid and tocopherol concentrations in broccoli

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Pages 103-111 | Published online: 10 Jul 2012

References

  • Barbieri G, Pernice R, Maggio A, De Pascale S, Fogliano V. 2008. Glucosinolates profile of Brassica rapa L. subsp. Sylvestris L. Janch. var. esculenta Hort. Food Chem. 107:1687–1691.
  • Bernhardt S, Schlich E. 2006. Impact of different cooking methods on food quality: retention of lipophilic vitamins in fresh and frozen vegetables. J Food Eng. 77:327–333.
  • Branca F, Li G, Goyal S, Quiros CF. 2002. Survey of aliphatic glucosinolates in Sicilian wild and cultivated Brassicaceae. Phytochemistry. 59:717–724.
  • Burton GW, Ingold KU. 1984. β-Carotene: an unusual type of lipid antioxidant. Science. 224:569–573.
  • Cheng DL, Hashimoto K, Uda Y.. 2004. In vitro digestion of sinigrin and glucotropaeolin by single strains of Bifidobacterium and identification of the digestive products.. Food Chem Toxicol. 42:351–357.
  • Cieślik E, Leszczyńska T, Filipiak-Florkiewicz A, Sikora E, Pisulewski PM. 2007. Effects of some technological processes on glucosinolate contents in cruciferous vegetables. Food Chem. 105:976–981.
  • Ciska E, Kozlowska H. 2001. The effect of cooking on the glucosinolates content in white cabbage. Eur Food Res Technol. 212:582–587.
  • Dowd P, Zheng ZB. 1995. On the mechanism of the anticlotting action of vitamin E quinone. Proc Natl Acad Sci USA. 29:8171–8175.
  • Fenwick GR, Heaney RK. 1983. Glucosinolates and their breakdown products in cruciferous crops, food and feeding stuffs. Food Chem. 11:249–271.
  • Fenwick GR, Griffiths NM, Heaney RK. 1983. Bitterness in Brussels sprouts (Brassica oleracea L. var. gemmifera): the role of 126 glucosinolates and their breakdown products. J Sci Food Agric. 34:73–80.
  • Glyszczyńska-Świglo A, Ciska E, Pawlak-Lemanska K, Chmielewski J, Borkowski T, Tyrakowska B. 2006. Changes in the content of health promoting compounds and antioxidant activity of broccoli after domestic processing. Food Add Contamin. 23:1088–1098.
  • Hayashi R, Hayashi S, Arai K, Chikuda M, Obara Y. 2012. Effects of antioxidant supplementation on mRNA expression of glucose-6-phosphate dehydrogenase, β-actin and 18S rRNA in the anterior capsule of the lens in cataract patients. Exp Eye Res. 96:48–54.
  • Hwang E-S, Jeffery EH. 2004. Effects of different processing methods on induction of quinine reductase by dietary broccoli in rats. J Med Food. 7:95–99.
  • International Standard Organization. 1992. Rapeseed: determination of glucosinolates content – Part 1: method using high performance liquid chromatography. Geneva, Switzerland: ISO 9167-1: 1992(E)1–9.
  • Jeffery EH, Brown AF, Kurilich AC, Keck AS, Matusheski N, Klein BP, Juvik JA. 2003. Variation in content of bioactive components in broccoli. Study review. J Food Compos Anal. 16:323–330.
  • Jia CG, Xu CJ, Wei J, Yuan J, Yuan GF, Wang BL, Wang BL. 2009. Effect of modified atmosphere packaging on visual quality and glucosinolates of broccoli florets. Food Chem. 114:28–37.
  • Khachik F, Beecher G, Whittaker N. 1986. Separation, identification and quantification of the major carotenoid and chlorophyll constituents in extracts of several green vegetables by liquid chromatography. J Agric Food Chem. 34:603–616.
  • Kiddle G, Benett RN, Botting NP, Davidson NE, Robertson AAA, Wallsgrove RM. 2001. High-performance liquid chromatographic separation of natural and synthetic desulphoglucosinolates and their chemical validation by UV, NMR and chemical ionisation-MS method. Phytochem Anal. 12:226–242.
  • Kurilich AC, Tsau GJ, Brown A, Howard L, Klein BP, Jeffery EJ, . 1999. Carotene, tocopherol and ascorbate contents in subspecies of Brassica oleracea. J Agric Food Chem. 47:1576–1581.
  • Kushad MM, Brown AF, Kurilich AC, Juvik JA, Klein BP, Wallig MA, Jeffery EH. 1999. Variation of glucosinolates in vegetable crops of Brassica oleracea. J Agric Food Chem. 47:1541–1548.
  • Lin CH, Chang CY. 2005. Textural change and antioxidant properties of broccoli under different cooking treatments. Food Chem. 90:9–15.
  • Lopez-Berenguer C, Carvajal M, Moreno DA, Garcia-Viguera C. 2007. Effects of microwave cooking conditions on bioactive compounds present in broccoli inflorescences. J Agric Food Chem. 55:10001–10007.
  • Masrizal MA, Giraud DW, Driskell JA. 1997. Retention of vitamin C, iron, and beta-carotene in vegetables prepared using different cooking methods. J Food Qual. 20:403–418.
  • Miglio C, Chiavaro E, Visconti A, Fogliano V, Pellegrini N. 2008. Effects of different cooking methods on nutritional and physicochemical characteristics of selected vegetables. J Agric Food Chem. 56:139–147.
  • Oerlemans K, Barrett DM, Suades CB, Verkerk R, Dekker M. 2006. Thermal degradation of glucosinolates in red cabbage. Food Chem. 95:19–29.
  • Pellegrini N, Chiavaro E, Gardana C, Mazzeo T, Contino D, Gallo M. 2008. Effect of different cooking methods on color, phytochemical concentration, and antioxidant capacity of raw and frozen Brassical Vegetables. J Agric Food Chem. 56:139–147.
  • Romani A, Vignlini P, Isolani L, Ieri F, Heimler D. 2006. HPLC-DAD/MS characterization of flavonoids and hydroxycinnamic derivatives in turnip tops (Brassica rapa L, subsp. sylvestris L.). J Agric Food Chem. 54:1342–1346.
  • Rosa E, Heaney R. 1996. Sensorial variation in protein, mineral and glucosinolate composition of Portuguese cabbages and kale. Animal Feed Sci Technol. 57:111–127.
  • Rungapamestry V, Duncan AJ, Fuller Z, Ratcliffe B. 2007. Effect of cooking brassica vegetables on the subsequent hydrolysis and metabolic fate of glucosinolates. Proc Nutr Soc. 66:69–81.
  • Rungapamestry V, Duncan AJ, Fuller Z, Ratcliffe B. 2008. Influence of blanching and freezing broccoli (Brassica oleracea var. italica) prior to storage and cooking on glucosinolate concentrations and myrosinase activity. Eur Food Res Technol. 227:37–44.
  • Sang JP, Minchinton IR, Johnstone PK, Truscott RJW. 1984. Glucosinolate profiles in the seed, root, and leaf tissue of cabbage, mustard, rapeseed, radish, and swede. Can J Plant Sci. 64:77–93.
  • Sikora E, Cieslik E, Leszczynska T, Filipiak-Florkiewicz A, Pisulewski PM. 2008. The antioxidant activity of selected cruciferous vegetables subjected to aquathermal processing. Food Chem. 107:55–59.
  • Song L, Thornalley PJ. 2007. Effect of storage, processing and cooking on glucosinolate content of Brassica vegetables. Food Chem Toxicol. 45:216–224.
  • Stacewicz-Sapuntzakis M, Bowen PE, Kikendall JW, Burgess M. 1987. Simultaneous determination of serum retinol and various carotenoids: their distribution in middle aged men and women. J Micronutr Anal. 3:27–45.
  • Stahl W, Sies H. 1992. Uptake of lycopene and its geometrical isomers is greater from heat-processed than from unprocessed tomato juice in human. J Nutr. 122:2161–2166.
  • Suzuki K, Ito Y, Hashimoto S, Kawado M, Inoue T, Ando M, . 2009. Association of serum retinol and carotenoids with insulin-like growth factors and insulin-like growth factor binding protein-3 among control subjects of a nested case-control study in the Japan Collaborative Cohort Study. Asian Pac J Cancer Prev. 10:29–35.
  • Tian Q, Rosselot RA, Schwartz SJ. 2005. Quantitative determination of intact glucosinolates in broccoli, broccoli sprouts, Brussels sprouts, and cauliflower by high-performance liquid chromatography-electrospray ionization-tandem mass spectrometry. Anal Biochem. 343:93–99.
  • Vallejo F, Tomas-Barveran FA, Garcia-Viguera C. Potential bioactive compounds in health promotion from broccoli cultivars grown in Spain. J Sci Food Agric. 2002a; 82:1293–1297.
  • Vallejo F, Tomas-Barberan FA, Garcia-Viguera C. Glucosinolates and vitamin C content in edible parts of broccoli florets after domestic cooking. Eur Food Res Technol. 2002b; 215:310–316.
  • Verkerk R, Dekker M. 2004. Glucosinolates and myrosinase activity in red cabbage (Brassica oleracea L. var. Capitata f. rubra DC.) after various microwave treatments. J Agric Food Chem. 52:7318–7323.
  • Verkerk R, Schreiner M, Krumbein A, Ciska E, Holst B, Rowland I, De Schrijver R, Hansen M, Gerhäuser C, Mithen R, Dekker M.. 2009. Glucosinolates in Brassica vegetables: the influence of the food supply chain on intake, bioavailability and human health. Mol Nutr Food Res. 53 Suppl 2:S219.
  • Volden J, Wicklund T, Verkerk R, Dekker M. 2008. Kinetics of changes in glucosinolate concentrations during long-term cooking of white cabbage (Brassica oleracea L. ssp. Capitata f. alba). J Agric Food Chem. 56:2068–2073.
  • Wachtel-Galor S, Wong KW, Benzie IFF. 2008. The effect of cooking on Brassica vegetables. Food Chem. 110:706–710.
  • Wathelet JP, Mabon N, Foucart M, Marlier M. 1996. Influence of blanching on the quality of Brussels sprouts (Brassica oleracea L. cv. gemmifera). Sci Aliments. 16:393–402.
  • West LG, Meyer KA, Balch BA, Rossi FJ, Schultz MR, Haas GW. 2004. Glucoraphanin and 4-hydroxyglucobrassicin contents in seeds of 59 cultivars of broccoli, raab, kohlrabi, radish, cauliflower, brussels sprouts, kale, and cabbage. J Agric Food Chem. 52:916–926.
  • Yuan G, Sun B, Yuan J, Wang Q. 2009. Effects of different cooking methods on health-promoting compounds of broccoli. J Zhejiang Univ Sci B. 10:580–588.
  • Zhang DL, Hamauzu Y.. 2004. Phenolics, ascorbic acid, carotenoids and antioxidant activity of broccoli and their changes during conventional and microwave cooking.. Food Chem. 88:503–509.
  • Zou Z, Xu X, Huang Y, Xiao X, Ma L, Sun T, . 2011. High serum level of lutein may be protective against early atherosclerosis: the Beijing atherosclerosis study. Atherosclerosis. 219:789–793.

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