- Abcha, I., Souilem, S., Neves, M.A., Wang, Z., Nefatti, M., Isoda, H., & Nakajima, M. (2018). Ethyl oleate food-grade O/W emulsions loaded with apigenin: Insights to their formulation characteristics and physico-chemical stability. Food Research International, 116, 953_962. doi: 10.1016/j.foodres.2018.09.032. [Google Scholar] [Crossref]
- Abdo, E.M., Shaltout, O.E., & Mansour, H.M. (2023). Natural antioxidants from agro-wastes enhanced the oxidative stability of soybean oil during deep-frying. Lwt, 173, 114321. doi: org/10.1016/j.lwt.2022.114321. [Google Scholar] [Crossref]
- Ayadi, M.A., Grati-Kamoun, N., & Attia, H. (2009). Physico-chemical change and heat stability of extra virgin olive oils flavoured by selected Tunisian aromatic plants. Food and Chemical Toxicology, 47, 2613_2619. [Google Scholar]
- Banerjee, S., Kyser, T. K., Vuletich, A., & Leduc, E. (2015). Elemental and stable isotopic study of sweeteners and edible oils: constraints on food authentication. Journal of Food Composition and Analysis, 42, 98_116. [Google Scholar]
- Ben Haj Said, L., Najjaa, H., Neffati, M., & Bellagha, S. (2013). Color, phenolic and antioxidant characteristic changes of Allium roseum leaves during drying. Journal of Food Quality, 36, 403_410. doi: org/10.1111/jfq.12055. [Google Scholar] [Crossref]
- Ben Haj Said, L., Medini, M., Rekik, C., Abcha, I., Allaf, K., & Bellagha, S. (2025a). Comparative study of continuous, intermittent, and interval starting-accessibility drying; case of green onion (Allium cepa L.) leaves. International Journal of Food Engineering. DOI: 10.1515/ijfe-2023-0176. [Google Scholar]
- Ben Haj Said, L., Medini, M., Abcha, I., Rekik, C., & Bellagha, S. (2025b). Antioxidant and organoleptic properties of canned tuna enriched with green onion by-product as functional ingredient. Journal of Culinary Science & Technology. https://doi.org/10.1080/15428052.2025.2556837. [Google Scholar] [Crossref]
- Chen, X., & Sun, S. (2023). Color reversion of refined vegetable oils: A review. Molecules, 28, 5177. [Google Scholar]
- Choe, E., & David, B.M. (2006). Mechanisms and factors for edible oil oxidation. Comprehensive Reviews in Food Science and Food Safety, 5, 169-186. https://doi.org/10.1111/j.1541-4337.2006.00009.x. [Google Scholar] [Crossref]
- Demarco, F., Rômio, A.P., da Trindade Alfaro, A., & Tonial, I.B. (2022). Effects of natural antioxidants on the lipid oxidation, physicochemical and sensory characteristics, and shelf life of sliced salami. Food and Bioprocess Technology, 15, 2282_2293. [Google Scholar]
- El-Hadidy, E.M., Mossa, M. E., & Habashy, H.N. (2014). Effect of freezing on the pungency and antioxidants activity in leaves and bulbs of green onion in Giza 6 and Photon varieties. Annals of Agricultural Sciences, 59, 33_39. [Google Scholar]
- Ferreiro, N., Rodrigues, N., Veloso, A.C.A., Fernandes, C., Paiva, H., Pereira, J.A., & Peres, A.M. (2022). Impact of the Covering Vegetable Oil on the Sensory Profile of Canned Tuna of Katsuwonus pelamis Species and Tuna’s Taste Evaluation Using an Electronic Tongue. Chemotherapy, 10, 18. doi: 10.3390/chemosensors10010018. [Google Scholar] [Crossref]
- Gliguem, H., Ben Hassine, D., Ben Haj Said, L., Ben Tekaya, I., Rahmani, R., & Bellagha, S. (2021). Supplementation of double cream cheese with Allium roseum: Effects on quality improvement and shelf-life extension. Foods, 10, 1276. [Google Scholar]
- Gomez-Limia, L., Sanmartin, N.M., Carballo, J., Dominguez, R., Lorenzo, J.M., & Martinez, S. (2021). Oxidative Stability and Antioxidant Activity in Canned Eels: Effect of Processing and Filling Medium. Foods, 10, 790. doi: 10.3390/foods10040790. [Google Scholar] [Crossref]
- IOC (International Olive Council). Sensory Analysis of Olive Oil—Method for the Organoleptic Assessment of Virgin Olive Oil Applying to Use a Designation of Origin; COI/T.20/Doc. no. 22; IOC (International Olive Council): Madrid, Spain, 2005; p. 29. [Google Scholar]
- Kalogiouri, N.P., Kokokiris, L.E., Doulgeraki, S., Papadopoulos, A., & Samanidou, V.F. (2021). Determination of phenolic antioxidants in tuna fillets canned in hydrosols with HPLC‐DAD. International Journal of Food Science and Technology, 56, 4091_4097. doi: 10.1111/ijfs.15034. [Google Scholar] [Crossref]
- Karoui, I. J., Dhifi, W., Ben Jemia, M., & Marzouk, B. (2011). Thermal stability of corn oil flavoured with Thymus capitatus under heating and deep‐frying conditions. Journal of the Science of Food and Agriculture, 91, 927_933. [Google Scholar]
- Kozłowska, M., Żbikowska, A., Szpicer, A., & Półtorak, A. (2019). Oxidative stability of lipid fractions of sponge-fat cakes after green tea extracts application. Journal of Food Science and Technolology, 56, 2628_2638. [Google Scholar]
- Loizzo, M.R., Bonesi, M., Falco, T., Leporini, M., Pagliuso, M., Sicari, V., & Tundis, R. (2021). Carolea olive oil enriched with an infusion of Capsicuum annuumand C. chinense dried pepper powders to produce an added value flavoured olive oils. Journal of Food Processing and Preservation, 45, 57_76. doi: 10.1111/jfpp.15776. [Google Scholar] [Crossref]
- Lu, X., Wang, J., Al-Qadiri, H.M., Ross, C.F., Powers, J.R., Tang, J., & Rasco, B.A. (2011). Determination of total phenolic content and antioxidant capacity of onion (Allium cepa) and shallot (Allium oschaninii) using infrared spectroscopy. Food Chemistry, 129, 637_644. [Google Scholar]
- Mavlanov, U., Czaja, T.P., Nuriddinov, S., Dalimova, D., Dragsted, L.O., Engelsen, S.B., & Khakimov, B. (2024). The effects of industrial processing and home cooking practices on trans-fatty acid profiles of vegetable oils. Food Chemistry, 469, 142571. [Google Scholar]
- Medina, I., Sacchi, R., Biondi, L., Aubourg, S.P., & Paolillo, L. (1998). Effect of packing media on the oxidation of canned tuna lipids. Antioxidant effectiveness of extra virgin olive oil. Journal of Agricultural and Food Chemistry, 46, 1150_1157. [Google Scholar]
- Mohan, C.O., Remya, S., Ravishankar, C.N., Vijayan, P.K., & Srinivasa Gopal, T.K. (2014). Effect of filling ingredient on the quality of canned yellowfin tuna (Thunnus albacares). International Journal of Food Science and Technology, 49, 1557_1564. doi: 10.1111/ijfs.12452. [Google Scholar] [Crossref]
- Ortiz, J., Vivanco, J.P., & Aubourg, S.P. (2014). Lipid and sensory quality of canned Atlantic salmon (Salmo salar): Effect of the use of different seaweed extracts as covering liquids. European Journal of Lipid Science and Technology, 116, 596_605. [Google Scholar]
- Pataca, J.K.G., Porto-Figueira, P., Pereira, J.A.M., Caldeira, H., & Câmara, J.S. (2021). Profiling the occurrence of biogenic amines in different types of tuna samples using an improved analytical approach. LWT, 139, 110804. doi: 10.1016/j.lwt.2020.110804. [Google Scholar] [Crossref]
- Romano, R., Filosa, G., Pizzolongo, F., Durazzo, A., Lucarini, M., Severino, P., & Santini, A. (2021). Oxidative stability of high oleic sunflower oil during deep-frying process of purple potato Purple Majesty. Heliyon, 7, e06294. [Google Scholar]
- Ramos-Escudero, F., Gonzalez-Miret, M.L., Vinas-Ospino, A., & Ramos Escudero, M. (2019). Quality, stability, carotenoids and chromatic parameters of commercial Sacha inchi oil originating from Peruvian cultivars. Journal of Food Science and Technolology, 56, 4901-4910. doi: 10.1007/s13197-019-03960-x. [Google Scholar] [Crossref]
- Saoudi, S., Chammem, N., Sifaoui I., Bouassida-Beji, M., Jimenez I.A., Bazzocchi, I.L., Silva, S.D., Hamdi, M., & Bronze, M.R. (2016). Influence of Tunisian aromatic plants on the prevention of oxidation in soybean oil under heating and frying conditions. Food Chemistry, 212, 503_511. doi: 10.1016/j.foodchem.2016.05.186. [Google Scholar] [Crossref]
- Suri, K., Singh B., Kaur, A., Yadav, M.P., & Singh, N. (2019). Impact of infrared and dry air roasting on the oxidative stability, fatty acid composition, Maillard reaction products and other chemical properties of black cumin (Nigella sativa L.) seed oil. Food Chemistry, 295, 537_547. doi: 10.1016/j.foodchem.2019.05.140. [Google Scholar] [Crossref]
- Taghvaei, M., & Jafari, S. M. (2015). Application and stability of natural antioxidants in edible oils in order to substitute synthetic additives. Journal of Food Science and Technology, 52, 1272_1282. [Google Scholar]
- Tarchoune, I., Sgherri, C., Eddouzi, J., Zinnai, A., Quartacci, M.F., & Zarrouk, M. (2019). Olive Leaf Addition Increases Olive Oil Nutraceutical Properties. Molecules, 24, 545. doi: 10.3390/molecules24030545. [Google Scholar] [Crossref]
- Tinello, F., Zannoni, S., & Lante, A. (2020). Antioxidant Properties of Soybean Oil Supplemented with Ginger and Turmeric Powders. Applied Sciences, 10, 8438. doi: 10.3390/app10238438. [Google Scholar] [Crossref]
- Yang, Y.R., Meng, F.C., Wang, P., Jiang, Y.B., Yin, Q.Q., Chang, J., & Liu, J.X. (2012). Effect of organic and inorganic selenium supplementation on growth performance, meat quality and antioxidant property of broilers. African Journal of Biotechnology, 11, 3031_3036. [Google Scholar]
- Yuan, Y., Wang, X., Jin, M., Sun, P., & Zhou, Q. (2019). Influence of different lipid sources on growth performance, oxidation resistance and fatty acid profiles of juvenile swimming crab, Portunus trituberculatus. Aquaculture, 508, 147_158. [Google Scholar]
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