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Hive science products

Physicochemical and bioactive properties of Southern Brazilian Apis mellifera L. honeys

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Pages 910-916 | Received 02 Jul 2019, Accepted 28 Jan 2020, Published online: 12 Mar 2020

References

  • Ahmad, N. S., Aziz, A. A., Kong, K. W., Hamid, M. A. S., Cheong, J. P. G., & Hamzah, S. H. (2017). Dose-response effect of Tualang honey on postprandial antioxidant activity and oxidative stress in female athletes: A pilot study. The Journal of Alternative and Complementary Medicine, 23(12), 989–995. doi:10.1089/acm.2017.0129
  • Al, M. L., Daniel, D., Moise, A., Bobis, O., Laslo, L., & Bogdanov, S. (2009). Physico-chemical and bioactive properties of different floral origin honeys from Romania. Food Chemistry, 112(4), 863–867. doi:10.1016/j.foodchem.2008.06.055
  • Al-Farsi, M., Al-Belushi, S., Al-Amri, A., Al-Hadhrami, A., Al-Rusheidi, M., & Al-Alawi, A. (2018). Quality evaluation of Omani honey. Food Chemistry., 262, 162–167. Available from:. doi:10.1016/j.foodchem.2018.04.104
  • Alyammahi, M. M. (2018). Physicochemical characteristics of mono floral Emirati honey. [place unknown]: United Arab Emirates University. Available from: https://scholarworks.uaeu.ac.ae/cgi/viewcontent.cgi?article=1003&context=food_theses.
  • AOAC International. (2005). Official Methods of Analysis of AOAC INTERNATIONAL. 18th ed. Horwitz W, Latimer G.W., eds. Gaithersburg: AOAC International.
  • Arnous, A., Makris, D. P., & Kefalas, P. (2002). Correlation of pigment and flavanol content with antioxidant properties in selected aged regional wines from Greece. Journal of Food Composition and Analysis., 15(6), 655–665. doi:10.1006/jfca.2002.1070
  • Ávila, S., Beux, M. R., Ribani, R. H., & Zambiazi, R. C. (2018). Stingless bee honey: Quality parameters, bioactive compounds, health-promotion properties and modification detection strategies. Trends in Food Science and Technology., 81, 37–50. doi:10.1016/j.tifs.2018.09.002
  • Bandeira, A. M. P., Gomes, V. V., Vasconcelos, A. A., Taube, P. S., Barros, E. C. d. , Costa, S. C., … Rocha, J. B. T. (2018). Antioxidant activity and physicochemical characteristics of honeys from the eastern Amazon region, Brazil. Acta Amazonica, 48(2), 158–167. doi:10.1590/1809-4392201702721
  • Benzie, I. F. F., & Strain, J. J. (1996). The ferric reducing ability of plasma (FRAP) as a measure of antioxidant power: The FRAP assay. Analytical Biochemistry., 239(1), 70–76. doi:10.1006/abio.1996.0292
  • Bertoncelj, J., Doberšek, U., Jamnik, M., & Golob, T. (2007). Evaluation of the phenolic content, antioxidant activity and colour of Slovenian honey. Food Chemistry., 105(2), 822–828. doi:10.1016/j.foodchem.2007.01.060
  • Biluca, F. C., de Gois, J. S., Schulz, M., Braghini, F., Gonzaga, L. V., Maltez, H. F., … Borges, D. L. G., et al. (2017). Phenolic compounds, antioxidant capacity and bioaccessibility of minerals of stingless bee honey (Meliponinae). Journal of Food Composition and Analysis., 63, 89–97. doi:10.1016/j.jfca.2017.07.039
  • Biluca, F. C., Della Betta, F., de Oliveira, G. P., Pereira, L. M., Gonzaga, L. V., Costa, A. C. O., & Fett, R. (2014). 5-HMF and carbohydrates content in stingless bee honey by CE before and after thermal treatment. Food Chemistry., 159, 244–249. doi:10.1016/j.foodchem.2014.03.016
  • Boussaid, A., Chouaibi, M., Rezig, L., Hellal, R., Donsì, F., Ferrari, G., & Hamdi, S. (2018). Physicochemical and bioactive properties of six honey samples from various floral origins from Tunisia. Arabian Journal of Chemistry, 11(2), 265–274. doi:10.1016/j.arabjc.2014.08.011
  • Brand-Williams, W., Cuvelier, M. E., & Berset, C. (1995). Use of a free radical method to evaluate antioxidant activity. LWT - Food Science and Technology, 28(1), 25–30. doi:10.1016/S0023-6438(95)80008-5
  • Bueno-Costa, F. M., Zambiazi, R. C., Bohmer, B. W., Chaves, F. C., Silva, W. d. , Zanusso, J. T., & Dutra, I. (2016). Antibacterial and antioxidant activity of honeys from the state of Rio Grande do Sul, Brazil. LWT - Food Science and Technology, 65, 333–340. doi:10.1016/j.lwt.2015.08.018
  • Codex Alimentarius Commission. (2001). Codex Alimentarius: Fats, oils and related products (Vol. 8). Food & Agriculture Org.
  • Da Silva, P. M., Gauche, C., Gonzaga, L. V., Costa, A. C. O., & Fett, R. (2016). Honey: Chemical composition, stability and authenticity. Food Chemistry., 196, 309–323. doi:10.1016/j.foodchem.2015.09.051
  • De-Melo, A. A. M., Almeida-Muradian, L. d. , Sancho, M. T., & Pascual-Maté, A. (2018). Composition and properties of Apis mellifera honey: A review. Journal of Apicultural Research., 57, 5–37. doi:10.1080/00218839.2017.1338444
  • do Nascimento, K. S., Sattler, J. A. G., Macedo, L. F. L., González, C. V. S., de Melo, I. L. P., Araújo, E. d S., … de Almeida-Muradian, L. B. (2018). Phenolic compounds, antioxidant capacity and physicochemical properties of Brazilian Apis mellifera honeys. Lwt - Lwt, 91, 85–94. doi:10.1016/j.lwt.2018.01.016
  • European Commission. (2002). European Commission Council Directive 2001/110/EC of 20 December 2001 relating to honey. Off J Eur Communities, 10 (12.1), 2002.
  • Hossen, M. S., Ali, M. Y., Jahurul, M. H. A., Abdel-Daim, M. M., Gan, S. H., & Khalil, M. I. (2017). Beneficial roles of honey polyphenols against some human degenerative diseases: A review. Pharmacological Reports, 69(6), 1194–1205. doi:10.1016/j.pharep.2017.07.002
  • Instituto Brasileiro de Geografia e Estatística (IBGE). (2018). Produção de origem animal (mel de abelha). Available from: https://sidra.ibge.gov.br/tabela/74#resultado.
  • Kavanagh, S., Gunnoo, J., Marques Passos, T., Stout, J. C., & White, B. (2019). Physicochemical properties and phenolic content of honey from different floral origins and from rural versus urban landscapes. Food Chemistry., 272, 66–75. doi:10.1016/j.foodchem.2018.08.035
  • Küçük, M., Kolaylı, S., Karaoğlu, Ş., Ulusoy, E., Baltacı, C., & Candan, F. (2007). Biological activities and chemical composition of three honeys of different types from Anatolia. Food Chemistry., 100(2), 526–534. doi:10.1016/j.foodchem.2005.10.010
  • Kuś, P. M., Congiu, F., Teper, D., Sroka, Z., Jerković, I., & Tuberoso, C. (2014). Antioxidant activity, color characteristics, total phenol content and general HPLC fingerprints of six Polish unifloral honey types. LWT - Food Science and Technology, 55(1), 124–130. doi:10.1016/j.lwt.2013.09.016
  • Lachman, J., Orsák, M., Hejtmánková, A., & Kovářová, E. (2010). Evaluation of antioxidant activity and total phenolics of selected Czech honeys. LWT - Food Science and Technology, 43(1), 52–58. doi:10.1016/j.lwt.2009.06.008
  • Mahmoodi-Khaledi, E., Lozano-Sánchez, J., Bakhouche, A., Habibi-Rezaei, M., Sadeghian, I., & Segura-Carretero, A. (2017). Physicochemical properties and biological activities of honeys from different geographical and botanical origins in Iran. European Food Research and Technology, 243(6), 1019–1030. doi:10.1007/s00217-016-2811-0
  • Naila, A., Flint, S. H., Sulaiman, A. Z., Ajit, A., & Weeds, Z. (2018). Classical and novel approaches to the analysis of honey and detection of adulterants. Food Control., 90, 152–165. doi:10.1016/j.foodcont.2018.02.027
  • Özcan, M. M., & Al Juhaimi, F. (2015). Honey as source of natural antioxidants. Journal of Apicultural Research., 54, 145–154. doi:10.1080/00218839.2016.1144976
  • 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 and Medicine, 26(9-10), 1231–1237. doi:10.1016/S0891-5849(98)00315-3
  • Sant’ana, L. D., Ferreira, A. B. B., Lorenzon, M. C. A., Berbara, R. L. L., & Castro, R. N. (2014). Correlation of total phenolic and flavonoid contents of Brazilian honeys with colour and antioxidant capacity. International Journal of Food Properties., 17, 65–76. doi:10.1080/10942912.2011.614368
  • Saxena, S., Gautam, S., & Sharma, A. (2010). Physical, biochemical and antioxidant properties of some Indian honeys. Food Chemistry., 118 (2), 391–397. doi:10.1016/j.foodchem.2009.05.001
  • Singleton, V. L., & Rossi, J. A. (1965). Colorimetry of total phenolics with phosphomolybdic phosphotungstic acid reagents. Am J Enol Vitic, 16, 144–158.
  • Valdés-Silverio, L. A., Iturralde, G., García-Tenesaca, M., Paredes-Moreta, J., Narváez-Narváez, D. A., Rojas-Carrillo, M., … Alvarez-Suarez, J. M. (2018). Physicochemical parameters, chemical composition, antioxidant capacity, microbial contamination and antimicrobial activity of Eucalyptus honey from the Andean region of Ecuador. Journal of Apicultural Research., 57(3), 382–394. doi:10.1080/00218839.2018.1426349
  • White, J. W. (1984). Instrumental color classification of honey: Collaborative study. Journal of Aoac International, 67, 1129–1131. doi:10.1093/jaoac/67.6.1129
  • Zarei, M., Fazlara, A., & Alijani, N. (2019). Evaluation of the changes in physicochemical and antioxidant properties of honey during storage. Functional Foods in Health and Disease, 9(9), 593. doi:10.31989/ffhd.v9i9.616

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