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Bioactive Compounds, Physico-Chemical Characteristics, and Sensory Analysis of Biscuits Enriched with Saffron as Natural Colorant

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Ajila, C.M., Leelavathi, K. & Rao U.P. (2008). Improvement of dietary fiber content and antioxidant properties in soft dough biscuits with the incorporation of mango peel powder. J. Cereal Sci. 48, 319–326. https://doi.org/10.1016/j.jcs.2007.10.001.Search in Google Scholar

Ali, A., Panhwar, A.A., Ali, A., Naz, S., Ali, R., Mastoi, Z.A., Majid Ali, Bashir, N., Nighat Din, & Salman, A. (2021). Physico-chemical and organoleptic characteristics of biscuits enriched with date powder. Pak. J. Biotechnol. 18 (1-2), 31–36. https://doi.org/10.34016/pjbt.2021.18.1-2.31Search in Google Scholar

Bajaj, S., Urooj, A. & Prabhasankar, P. (2006). Effect of incorporation of mint on texture, colour and sensory parameters of biscuits. Int. J. Food Prop. 9, 691–700. https://doi.org/10.1080/10942910600547632.Search in Google Scholar

Basu, S., Shivhare, U.S., Singh, T. V. & Beniwal, V.S. (2011). Rheological, textural and spectral characteristics of sorbitol substituted mango jam. J. Food Eng. 105, 503–512. https://doi.org/10.1016/j.jfoodeng.2011.03.014.Search in Google Scholar

Bhat, N.A., Hamdani, A.M. & Masoodi, F.A. (2018). Development of functional cookies using saffron extract. J. Food Sci. 55, 4918–4927. https://doi.org/10.1007/s13197-018-3426-1Search in Google Scholar

Caleja. C., Barros, L., Antonio, A.L., Oliveira, B.M., P.P., Isabel C.F.R.F. (2017). A comparative study between natural and synthetic antioxidants: Evaluation of their performance after incorporation into biscuits. Food chem. 216, 342–346. https://doi.org/10.1016/j.foodchem.2016.08.075.Search in Google Scholar

Chaalal, M., Louaileche, H., Touati, N. & Bey, M. B. (2013). Phytochemicals, in vitro antioxidant capacity and antiradical potential of whole and ground seeds of three prickly pear varieties: A comparative study. Ind. Crops Prod. 49, 386–391. https://doi.org/10.1016/j.indcrop.2013.05.010.Search in Google Scholar

Chalatsa, I., Arvanitis, D.A., Koulakiotis, N.S., Giagini, A., Skaltsounis, A.L., Daifoti, Z.P., Tsarbopoulos, A. & Sanoudou, D. (2019). The Crocus sativus compounds trans-crocin 4 and transcrocetin modulate the amyloidogenic pathway and tau misprocessing in Alzheimer disease neuronal cell culture models. Front. Neurosci. 13, 249. https://doi.org/10.3389/fnins.2019.00249.Search in Google Scholar

Dutau G, Rancé F, Fejji S, Juchet, A., Brémont, F. & Nouilhan, P. (1996). Intolérance aux additifs alimentaires chez l’enfant: mythe ou réalité? Rev. Francaise D Allergol. Et D Immunol. Clin. 36 (2), 129–142. https://doi.org/10.1016/S0335-7457(96)80074-8.Search in Google Scholar

Elhassaneen, Y., Ragab, R. & Mashal, R. (2016). Improvement of bioactive compounds content and antioxidant properties in crackers with the incorporation of prickly pear and potato peels powder. Int. J. Nutr. Food Sci. 5 (1), 53–61. doi: 10.11648/j.ijnfs.20160501.18.Search in Google Scholar

Faridi, N., Heidarzadeh, H., Mohagheghi, M.A. & Bathaie, S.Z. (2019). BT-474 breast cancer cell apoptosis induced by crocin, a saffron carotenoid. Basic. Clin. Cancer Res. 11 (1), 5–15. https://doi.org/10.18502/bccr.v11i1.1646.Search in Google Scholar

Gaglio, R., Gentile, C., Bonanno, A., Vintaloro, L., Perrone, A., Mazza, F., Barbaccia, P., Settanni, L. & Grigoli, A.D. (2019). Effect of saffron addition on the microbiological, physicochemical, antioxidant and sensory characteristics of yoghurt. Int. J. Dairy Technol. 72 (2), 208–217. https://doi.org/10.1111/1471-0307.12569.Search in Google Scholar

Gandhi, K., Gautam, P., Kumar, K., Sharma, R. & Mann B. (2021). Physico-chemical characteristics of biscuits fortified with whey protein concentrate–iron sulphate (WPC– FeSO4) complex. J. Food Meas. Charact. 15, 2831–2841. https://doi.org/10.1007/s11694-021-00869-ySearch in Google Scholar

Gentile, C., Perrone, A., Attanzio, A., Tesoriere, L. & Livrea, M.A. (2015). Sicilian pistachio (Pistacia vera L.) nut inhibits expression and release of inflammatory mediators and reverts the increase of paracellular permeability in IL-1β-exposed human intestinal epithelial cells. Eur. J. Nutr. 54 (5), 811–821. https://doi.org/10.1007/s00394-014-0760-6.Search in Google Scholar

Karimi, E., Oskoueian, E., Hendra, R. & Jaafar, H.Z. (2010). Evaluation of Crocus sativus L. stigma phenolic and flavonoid compounds and its antioxidant activity. Molecules. 15 (9), 6244–6256. https://doi.org/10.3390/molecules15096244.Search in Google Scholar

Khorasanchi Z, Shafiee M, Kermanshahi F, Khazaei, M., Ryzhikov, M., Parizadeh, M.R., Kermanshahi, B., Ferns, G.A., Avan, A., Hassanian, S.M. (2018). Crocus sativus a natural food coloring and flavoring has potent anti-tumor properties. Phytomedicine. 43, 21–27. https://doi.org/10.1016/j.phymed.2018.03.041.Search in Google Scholar

Krystyjan, M., Gumul, D., Ziobro, R. & Korus, A. (2015). The fortification of biscuits with bee pollen and its effect on physicochemical and antioxidant properties in biscuits. LWT-Food Sci. Technol. 63 (1), 640–646. https://doi.org/10.1016/j.lwt.2015.03.075.Search in Google Scholar

Lage, M. & Cantrell, C.L. (2009). Quantification of saffron (Crocus sativus L.) metabolites crocins, picrocrocin and safranal for quality determination of the spice grown under different environmental Moroccan conditions. Sci. Hortic. 121 (3), 366–373. https://doi.org/10.1016/j.scienta.2009.02.017.Search in Google Scholar

Lv, B., Yin, J., Feng, C. & Li, Y; (2019) Neuroprotective effects of crocin I and II in an ischemiareperfusion injury model. bioRxiv. 757971. https://doi.org/10.1101/757971.Search in Google Scholar

Mahloko, L. M., Silungwe, H., Mashau, M. E. & Kgatla, T.E. (2019). Bioactive compounds, antioxidant activity and physical characteristics of wheat-prickly pear and banana biscuits. Heliyon. 5 (10), e02479. https://doi.org/10.1016/j.heliyon.2019.e02479.Search in Google Scholar

Maksimović, Z., Malenčić, D. & Kovačević, N. (2005). Polyphenol contents and antioxidant activity of Maydis stigma extracts. Bioresour. Technol. 96 (8), 873–877. https://doi.org/10.1016/j.biortech.2004.09.006.Search in Google Scholar

Maleki, F., Kazemi, H., Siahmarguee, A. & Kamkar, B. (2017). Development of a land use suitability model for saffron (Crocus sativus L.) cultivation by multi-criteria evaluation and spatial analysis. Ecol. Eng. 106, 140–153. https://doi.org/10.1016/j.ecoleng.2017.05.050.Search in Google Scholar

Manzocco, L., Calligaris, S., Mastrocola, D., Nicoli, M.C. & Lerici, C.R. (2000). Review of nonenzymatic browning and antioxidant capacity in processed foods. Trends Food Sci. Technol. 11 (9), 340–346. https://doi.org/10.1016/S0924-2244(01)00014-0Search in Google Scholar

Nabil, B., Ouaabou, R., Ouhammou, M., Saadouni, L. & Mahrouz, M. (2019). Shelf life of composite biscuits supplemented with cladode flour (Opuntia ficus indica): physicochemical properties and ntioxidant activity. International Conference on Food, Nutrition and Agriculture (ICFNA19). September 27-28, 2019 Istanbul (Turkey).Search in Google Scholar

Oboh, G., Raddatz, H. & Henle, T. (2008). Antioxidant properties of polar and non-polar extracts of some tropical green leafy vegetables. J. Sci. Food Agricul. 88 (14), 2486–2492. https://doi.org/10.1002/jsfa.3367.Search in Google Scholar

Oliveira, E.W., Esmerino, E.A., Carr, B.T., Pinto, L.P.F., Silva, H.L.A., Pimentel, T.C., Bolini, H.M.A., Cruz, A.G. & Freitas, M.Q. (2017). Reformulating Minas Frescal cheese using consumers’ perceptions: Insights from intensity scales and check-all-that-apply questionnaires. J. Dairy Sci. 100 (8), 6111–6124. https://doi.org/10.3168/jds.2016-12335.Search in Google Scholar

Parveen, H., Bajpai, A., Bhatia, S. & Singh, S. (2017). Analysis of biscuits enriched with fibre by incorporating Carrot and Beetroot pomace powder. Indian J. Nutr. Diet. 54 (4), 405.408. https://doi.org/10.21048/ijnd.2017.54.4.15754Search in Google Scholar

Pashirzad, M., Shafiee, M., Avan, A., Ryzhikov, M., Fiuji, H., Bahreyni, A., Khazaei, M., Soleimanpour, S. & Hassanian, S.M. (2019). Therapeutic potency of crocin in the treatment of inflammatory diseases: Current status and perspective. J. Cell. Physiol. 234 (9), 14601–14611. https://doi.org/10.1002/jcp.28177.Search in Google Scholar

Pasqualone, A., Bianco, A.M., Paradiso, V.M., Summo, C., Gambacorta, G., Caponio, F. & Blanco, A. (2015). Production and characterization of functional biscuits obtained from purple wheat. Food Chem. 180, 64–70. https://doi.org/10.1016/j.foodchem.2015.02.025.Search in Google Scholar

Prieto, M.A., Vázquez, J.A. & Murado, M.A. (2015). Crocin bleaching antioxidant assay revisited: Application to microplate to analyse antioxidant and pro-oxidant activities. Food Chem. 167 (15), 299–310. https://doi.org/10.1016/j.foodchem.2014.06.114.Search in Google Scholar

Quettier-Deleu, C., Gressier, B., Vasseur, J., Dine, T., Brunet, C., Luyckx, M., Cazin, M., Cazin, J. C., Bailleul, F. & Trotin, F. (2000). Phenolic compounds and antioxidant activities of buckwheat (Fagopyrum esculentum Moench) hulls and flour. J. Ethnopharmacol. 72 (1-2), 35–42. https://doi.org/10.1016/S0378-8741(00)00196-3.Search in Google Scholar

Raina, B.L., Agarwal, S.G., Bhatia, A.K. & Gaur, G.S. (1996). Changes in pigments and volatiles of Saffron (Crocus sativus L.) during processing and storage. J. Sci. Food Agricult. 71 (1), 27–32. https://doi.org/10.1002/(SICI)1097-0010(199605).Search in Google Scholar

Ramalakshmi, K., Kubra, I.R. & Rao, L.J.M. (2008). Antioxidant potential of low-grade coffee beans. Food Res. Int. 41, 96–103. https://doi.org/10.1016/j.foodres.2007.10.003.Search in Google Scholar

Rameshrad, M., Razavi, B.M. & Hosseinzadeh, H. (2018). Saffron and its derivatives, crocin, crocetin and safranal: a patent review. Expert Opin. Ther. Pat. 28, 147–165. https://doi.org/10.1080/13543776.2017.1355909.Search in Google Scholar

Šaponjac, V.T., Ćetković, G., Čanadanović-Brunet, J., Pajin, B., Djilas, S., Petrović, J., Lončarević, I., Stajčić, S. & Vulić, J. (2016). Sour cherry pomace extract encapsulated in whey and soy proteins: Incorporation in cookies. Food chem. 207 (15), 27–33. https://doi.org/10.1016/j.foodchem.2016.03.082.Search in Google Scholar

Sefidgar, S.M., Ahmadi-Hamedani, M., Javan, A.J., Sani, R.N. & Vayghan, A.J. (2019). Effect of crocin on biochemical parameters, oxidative/antioxidative profiles, sperm characteristics and testicular histopathology in streptozotocin-induced diabetic rats. Avicenna J. Phytomed. 9 (4), 347.Search in Google Scholar

Türkmen, İ. & Ekşi, A. (2011). Brix degree and sorbitol/xylitol level of authentic pomegranate (Punica granatum) juice. Food chem. 127 (3), 1404–1407. https://doi.org/10.1016/j.foodchem.2010.12.118.Search in Google Scholar

Ydjedd S, Chaalal M, Bahri S, Mokadem, S. & Radji, H. (2021). Antioxidant and α-amylase inhibition activities of prickly pears (Opuntia ficus indica L.) betalains extracts and application in yoghurt as natural colorants. J. Agroaliment. Processes Technol. 27, 140-150Search in Google Scholar

Zhou, C.L., Liu, W., Zhao, J., Yuan, Chi., Song, Y., Chen, D., Ni, Y.Y. & Li, Q.H. (2014). The effect of high hydrostatic pressure on the microbiological quality and physical–chemical characteristics of Pumpkin (Cucurbita maxima Duch.) during refrigerated storage. Innov. Food Sci. Emerg. Technol. 21, 24–34. https://doi.org/10.1016/j.ifset.2013.11.002.Search in Google Scholar

Zhu, A., Lao, C., Wang, Z., Chen, Y. & Bai, C. (2019). Characterization of Crocetin-Monoglucuronide as a Neuron-Protective Metabolite of Crocin-1. Mol. Nutr. Food Res. 63(13), 1900024. https://doi.org/10.1002/mnfr.201900024Search in Google Scholar

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