References
-
Yavuz, Z., Kutlu, G. & Tornuk, F. Incorporation of oleaster (Elaeagnus angustifolia L.) flour into white bread as a source of dietary fibers. J. Food Process. Preserv. 46 (11), e17050 (2022).
-
Düşkün, B. et al. Formulation of Fiber-Enriched Crackers with Oleaster Powder: Effect on Functional, Textural, and Sensory Attributes. Vol. 80(1). 1–8 (Plant Foods for Human Nutrition, 2025).
-
Essa, M. M. et al. Functional foods and their impact on health. J. Food Sci. Technol. 60 (3), 820–834 (2023).
-
Kumar, A. et al. Major phytochemicals: recent advances in health benefits and extraction method. Molecules 28 (2), 887 (2023).
-
Yasar, B., Kutlu, G. & Tornuk, F. Edible flowers as sources of bioactive compounds: determination of phenolic extraction conditions. Int. J. Gastronomy Food Sci. 30, 100618 (2022).
-
Kutlu, G. & Erol, K. F. An in vitro assessment of the bioactive, cytotoxic, and antidiabetic potential of different parts of tumbleweed (Gundelia tournefortii L). Gıda 50 (1), 28–41 (2025).
-
Erol, K. F. & Kutlu, G. Assessment of antimicrobial, anti-diabetic, anti-Alzheimer and anti-cancer properties, along with bioaccessibility and bioactive potential of polygonum cognatum Meissn extracts from various cities in Türkiye. Food Bioscience. 63, 105669 (2025).
-
Spence, C. Cinnamon: the historic spice, medicinal uses, and flavour chemistry. Int. J. Gastronomy Food Sci. 35, 100858 (2024).
-
Adimas, Z. T. et al. The effect of concentration of cinnamon extract and storage time on physicochemical, microbial and sensory attributes of avocado juice. Appl. Food Res. 4 (2), 100585 (2024).
-
Seyedahmadi, S. et al. Enhancing the quality of rice-based gluten-free bread using sourdoughs fermented with Lactobacillus fermentum and Lactobacillus plantarum. Sci. Rep. 15 (1), 26543 (2025).
-
Kutlu, G. et al. Incorporation of madımak (Polygonum Cognatum Meissn.) leaf powder into gluten-free bread formulations: Evaluation of their nutritional, antidiabetic, color, bioactive, textural, and sensory properties. J. Sci. Food Agric. (2025).
-
Jensen, S. et al. Antioxidants and shelf life of whole wheat bread. J. Cereal Sci. 53 (3), 291–297 (2011).
-
Demirkan, E. N. et al. Potential use of hazelnut (Corylus Avellana L.) shell powder in muffin production by partial substitution of wheat flour: Color, bioactive, textural, and sensory properties. Eur. Food Sci. Eng. 5 (1), 1–7 (2024).
-
Li, H. et al. Effect of tea polyphenols on the quality characteristics of fresh wheat noodles in the storage. Int. J. Food Sci. Technol. 55 (6), 2562–2569 (2020).
-
Xiao, Z. et al. Effect of modified wheat Bran on the structure and digestibility of bread. Shipin Kexue / Food Sci. 42, 39–45 (2021).
-
Zulkapli, N. H. & Razali, N. F. Comparative study of pomegranate (Punica granatum) Peel and banana (Musa paradisiaca L.) Peel extracts as natural preservative and its antioxidant effect on homemade cake. Progress Eng. Application Technol. 6 (1), 607–613 (2025).
-
Wang, C. et al. Influence of onion peel extract on the dough characteristics of High-Gluten wheat flour and the quality of bread. Foods 14 (9), 1618 (2025).
-
Wen, C. et al. Strategic approaches for co-encapsulation of bioactive compounds: technological advances and mechanistic insight. Foods 14 (12), 2024 (2025).
-
Castejón, N., Luna, P. & Señoráns, F. J. Microencapsulation by spray drying of omega-3 lipids extracted from oilseeds and microalgae: effect on polyunsaturated fatty acid composition. Lwt 148, 111789 (2021).
-
Razghandi, E. et al. Combined pulsed electric field-ultrasound assisted extraction of Yarrow phenolic-rich ingredients and their nanoliposomal encapsulation for improving the oxidative stability of sesame oil. Ultrason. Sonochem. 110, 107042 (2024).
-
Fang, Z. & Bhandari, B. Encapsulation of polyphenols–a review. Trends Food Sci. Technol. 21 (10), 510–523 (2010).
-
Ray, S., Raychaudhuri, U. & Chakraborty, R. An overview of encapsulation of active compounds used in food products by drying technology. Food Bioscience. 13, 76–83 (2016).
-
Meral, R. et al. A Novel Solution to Enhance the Oxidative and Physical Properties of Cookies Using Maltodextrin-Based Nano-Sized Oils as a Fat Substitute (ACS Omega, 2025).
-
Akbarbaglu, Z. et al. Production, characterization and spray-drying encapsulation of date (Phoenix dactylifera L.) seed protein hydrolysates for bread fortification. J. Food Meas. Charact. 19 (2), 938–951 (2025).
-
Akbarbaglu, Z. et al. Stabilization of antioxidant thyme-leaves extract (Thymus vulgaris) within biopolymers and its application in functional bread formulation. Future Foods. 9, 100356 (2024).
-
López-Córdoba, A. et al. Yerba mate antioxidant powders obtained by co-crystallization: stability during storage. J. Food Eng. 124, 158–165 (2014).
-
Kalajahi, S. G. et al. The enzymatic modification of whey-proteins for spray drying encapsulation of Ginkgo-biloba extract. Int. J. Biol. Macromol. 245, 125548 (2023).
-
AOAC, Association of Official Analytical Chemists, Official Methods of Analysis of the Association of Official Analytical Chemists. Ed. 18th Ed. (AOAC Press, 2006).
-
Goula, A. M. & Adamopoulos, K. G. Spray drying of tomato pulp in dehumidified air: II. The effect on powder properties. J. Food Eng. 66 (1), 35–42 (2005).
-
Cano-Chauca, M. et al. Effect of the Carriers on the Microstructure of Mango Powder Obtained by Spray Drying and its Functional Characterization .Vol. 6(4). 420–428 (Innovative Food Science & Emerging Technologies, 2005).
-
Tsatsop, R. K. T. et al. Microencapsulation using spray drying of anthoxyanins from Lannea microcarpa (African grape) fruits juice with pyrodextrin from sweet potato starch. Discover Chem. 2 (1), 5 (2025).
-
de Barros Fernandes, R. V., Borges, S. V. & Botrel, D. A. Gum arabic/starch/maltodextrin/inulin as wall materials on the microencapsulation of rosemary essential oil. Carbohydr. Polymers 101, 524–532 (2014).
-
Capannesi, C. et al. Electrochemical sensor and biosensor for polyphenols detection in olive oils. Food Chem. 71 (4), 553–562 (2000).
-
Tan, S. P. et al. Effects of the spray-drying temperatures on the physiochemical properties of an encapsulated bitter melon aqueous extract powder. Powder Technol. 281, 65–75 (2015).
-
Hosseini, S. M. et al. Optimization of antioxidant extraction process from corn meal using pulsed electric field-subcritical water. J. Food Process. Preserv. 45 (6), e15458 (2021).
-
Razghandi, E. et al. Application of pulsed electric field-ultrasound technique for antioxidant extraction from yarrow: ANFIS modeling and evaluation of antioxidant activity. J. Food Process. Preserv. 2024 (1), 2951718 (2024).
-
Roby, M. H. H. et al. Evaluation of antioxidant activity, total phenols and phenolic compounds in thyme (Thymus vulgaris L.), Sage (Salvia officinalis L.), and marjoram (Origanum majorana L.) extracts. Ind. Crops Prod. 43, 827–831 (2013).
-
Gharekhani, M. et al. Sourdoughs fermented by autochthonous Lactobacillus strains improve the quality of gluten-free bread. Food Sci. Nutr. 9 (11), 6372–6381 (2021).
-
Allahyari, N. et al. The effect of different formulations and baking conditions on the physicochemical properties of gluten-free cakes. Appl. Food Res. 101301, p (2025).
-
Shahid, M. Z. et al. Antioxidant capacity of cinnamon extract for palm oil stability. Lipids Health Dis. 17 (1), 116 (2018).
-
Liu, X. et al. Accurate determination of moisture content in flavor microcapsules using headspace gas chromatography. Polymers 14 (15), 3002 (2022).
-
Mangope, K., Kaseke, T. & Fawole, O. A. Microencapsulation and Characterization of Pomegranate Seed Oil Using Gum Arabic and Maltodextrin Blends for Functional Food Applications. Vol. 12(11). 9252–9267 (Food Science & Nutrition, 2024).
-
Deng, W. et al. Stability of purple corn anthocyanin encapsulated by maltodextrin, and its combinations with gum Arabic and Whey protein isolate. Foods 12 (12), 2393 (2023).
-
Bagdat, E. S., Kutlu, G. & Tornuk, F. The effect of free and encapsulated probiotic bacteria on some physicochemical, microbiological, and textural properties of apricot leather (pestil) during storage. J. Food Sci. 89 (8), 4688–4703 (2024).
-
Zahara, I. A., Ulfa, S. M. & Safitri, A. Comparative Analysis of Different Natural Polymers as Coating Agents for Freeze-Dried Microencapsulation of Cosmos Caudatus Kunth Compounds. Vol. 2024(1). 6833341 (The Scientific World Journal, 2024).
-
Díaz-Montes, E. Wall materials for encapsulating bioactive compounds via spray-drying: A review. Polymers 15 (12), 2659 (2023).
-
Malekizadeh, N. et al. Effects of different concentrations of maltodextrin and drying temperatures of spray drying process on physicochemical properties of encapsulated Sumac extract. Iran. Food Sci. Technol. Res. J. 14 (2), 321–334 (2018).
-
Azkiyah, L. et al. The effect of wall materials and drying methods on the encapsulation sardinella Lemuru smart flavor. Indonesian Food Sci. Technol. J. 8 (1), 60–67 (2024).
-
Xin, X. et al. Effects of spray-drying and freeze-drying on bioactive and volatile compounds of smoke powder food flavouring. Food Bioprocess Technol. 15 (4), 785–794 (2022).
-
Sun, X. et al. Microencapsulation of Tangeretin in a citrus pectin mixture matrix. Foods 9 (9), 1200 (2020).
-
George, T. T. et al. Characterization of Moringa Oleifera leaf powder extract encapsulated in maltodextrin and/or gum arabic coatings. Foods 10 (12), 3044 (2021).
-
Sarabandi, K. et al. Application of gum arabic and maltodextrin for encapsulation of eggplant peel extract as a natural antioxidant and color source. Int. J. Biol. Macromol. 140, 59–68 (2019).
-
Zolqadri, R. et al. Microencapsulated red-garlic peptides with biopolymers: influence on the ACE-inhibitory, biological activity, textural structures, and sensory properties of pan-breads. Future Foods. 11, 100550 (2025).
-
Choudhury, N., Meghwal, M. & Das, K. Microencapsulation: an overview on concepts, methods, properties and applications in foods. Food Front. 2 (4), 426–442 (2021).
-
Saavedra-Leos, Z. et al. Technological application of maltodextrins according to the degree of polymerization. Molecules 20 (12), 21067–21081 (2015).
-
Siti, A. et al. Microencapsulation of Seafood Flavor Enhancers from Indonesian Brown Seaweed with Maltodextrin, Arabic Gum, and β-Cyclodextrin. (2023).
-
González-Ocampo, H. et al. Microcapsules carriers of phenolic extracts of Maclura tinctoria (L) D. Don ex Steud with/without fish oil: potential additive in commercial aquafeeds. Food Chem. Adv. 9, 101101 (2025).
-
Mohd Nawi, N., Muhamad, I. I., Mohd, A. & Marsin The Physicochemical Properties of Microwave-Assisted Encapsulated Anthocyanins from Ipomoea Batatas as Affected by Different Wall Materials. Vol. 3(2). 91–99 (Food Science & Nutrition, 2015).
-
Tomsone, L. et al. Microencapsulation of horseradish (Armoracia rusticana L.) juice using spray-drying. Foods 9 (9), 1332 (2020).
-
Zhang, Z. H. et al. The effect of different wall materials on the physicochemical properties and antioxidant activity of pomegranate peel polyphenols (PPP) microcapsules. Int. J. Biol. Macromol. 298, 139958 (2025).
-
Sukri, N. et al. Effect of maltodextrin and Arabic gum ratio on physicochemical characteristic of spray dried propolis microcapsules. Int. J. Food Eng. 17 (2), 159–165 (2021).
-
Xiao, Z. et al. Maltodextrin as wall material for microcapsules: A review. Carbohydr. Polym. 298, 120113 (2022).
-
Kang, S. et al. Development and evaluation of gum arabic-based antioxidant nanocomposite films incorporated with cellulose nanocrystals and fruit peel extracts. Food Packaging Shelf Life. 30, 100768 (2021).
-
Akdeniz, B. & Şahin, S. The Effects of Maltodextrin and Gum Arabic on Encapsulation of Onion Skin Phenolic Compounds. (2017).
-
Mutavski, Z. et al. Stabilization and preservation of bioactive compounds in black Elderberry by-product extracts using maltodextrin and gum arabic via spray drying. Foods 14 (5), 723 (2025).
-
Lee, J., Taip, F. & Abdullah, Z. Effectiveness of additives in spray drying performance: a review. Food Res. 2 (6), 486–499 (2018).
-
Mohammed, N. K. et al. Spray drying for the encapsulation of oils—A review. Molecules 25 (17), 3873 (2020).
-
Saberi, M. et al. Evaluation of the quality properties of grape pomace and flaxseed oil microcapsules stabilized with different ratios of maltodextrin and gum tragacanth. Ournal Food Sci. Technol. (Iran) 20(139) (2023).
-
Medina-Jaramillo, C. & López-Córdoba, A. Enhancing the physicochemical, thermal, and technological properties of freeze-dried Welsh onion leaf juice: influence of maltodextrin and gum arabic as carrier agents. Polymers 17 (6), 801 (2025).
-
Robert, P. et al. Encapsulation of polyphenols and anthocyanins from pomegranate (Punica granatum) by spray drying. Int. J. Food Sci. Technol. 45 (7), 1386–1394 (2010).
-
Tolun, A., Altintas, Z. & Artik, N. Microencapsulation of grape polyphenols using maltodextrin and gum arabic as two alternative coating materials: development and characterization. J. Biotechnol. 239, 23–33 (2016).
-
Sarabandi, K. et al. Effect of different carriers on microstructure and physical characteristics of spray dried apple juice concentrate. J. Food Sci. Technol. 55 (8), 3098–3109 (2018).
-
Zhu, J. et al. Recent progress in microencapsulation technology and its applications in petroleum industry. J. Mol. Liq. 407, 125162 (2024).
-
Akbarbaglu, Z. et al. Effect of maltodextrin and gum arabic carriers on the physicochemical properties and antioxidant activity of spraydried casein hydrolysates. Iran. J. Food Sci. Technol. 17(107), 131–145 (2021).
-
Sendri, N. et al. Valorization of red cabbage pomace for stabilization of anthocyanins in rhododendron arboreum. Ind. Crops Prod. 187, 115371 (2022).
-
Afshari, K. et al. Effect of microencapsulated date pit (Phoenix dactylifera L.) extract on staling and organoleptic properties of baguette bread. J. Food Sci. Technol. 20 (144), 2008–8787 (2024) .
-
Pasrija, D. et al. Microencapsulation of green tea polyphenols and its effect on incorporated bread quality. LWT-Food Sci. Technol. 64 (1), 289–296 (2015).
-
Chen, Y. et al. Micro-computed tomography study on bread dehydration and structural changes during ambient storage. J. Food Eng. 296, 110462 (2021).
-
Ghasemi, L. et al. The effects of encapsulated probiotic bacteria on the physicochemical properties, staling, and viability of probiotic bacteria in gluten-free bread. J. Food Process. Preserv. 46 (3), e16359 (2022).
-
Bińkowska, W. et al. Utilization of microencapsulated polyphenols to enhance the bioactive compound content in whole grain bread: recipe optimization. Appl. Sci. 14 (22), 10156 (2024).
-
Wyrwisz, J., Moczkowska-Wyrwisz, M. & Kurek, M. A. Modeling of texture and starch retrogradation of high-in-fiber bread using response surface methodology. Appl. Sci. 14 (24), 11603 (2024).
-
Sehn, G. A. R. & Steel, C. J. Staling kinetics of whole wheat pan bread. J. Food Sci. Technol. 57 (2), 557–563 (2020).
-
Schefer, S., Oest, M. & Rohn, S. Interactions between phenolic acids, proteins, and carbohydrates—Influence on dough and bread properties. Foods 10 (11), 2798 (2021).
-
Lim, H. S. et al. Quality and antioxidant properties of bread containing turmeric (Curcuma longa L.) cultivated in South Korea. Food Chem. 124 (4), 1577–1582 (2011).
-
Nouska, C. et al. Physicochemical characteristics, antioxidant properties, aroma profile, and sensory qualities of value-added wheat breads fortified with post-distillation solid wastes of aromatic plants. Foods 12 (21), 4007 (2023).
-
Lachowicz, S., Świeca, M. & Pejcz, E. Biological activity, phytochemical parameters, and potential bioaccessibility of wheat bread enriched with powder and microcapsules made from Saskatoon berry. Food Chem. 338, 128026 (2021).
-
Costa, N. H. B. et al. Incorporation of pomegranate (Punica granatum) extract enhanced the concentration of bioactive compounds and shelf life of bread. Food Sci. Nutr. 13(7), e70690 (2025).
-
Bagale, U. et al. Ultrasound-assisted stable curcumin nanoemulsion and its application in bakery product. Int. J. Food Sci. 2022 (1), 4784794 (2022).
-
Yolcu, Z. et al. Alternative plant-based gluten-free sourdough pastry snack production by using beetroot and legumes: characterization of physical and sensorial attributes. ACS Omega. 9 (17), 19451–19460 (2024).
-
Torgbo, S. et al. Ohmic heating extraction and characterization of Rambutan (Nephelium lappaceum L.) Peel extract with enhanced antioxidant and antifungal activity as a bioactive and functional ingredient in white bread Preparation. Food Chem. 382, 132332 (2022).
-
Guiné, R. P. Textural properties of bakery products: A review of instrumental and sensory evaluation studies. Appl. Sci. 12 (17), 8628 (2022).
-
Shori, A. B., Kee, L. A. & Baba, A. S. Total phenols, antioxidant activity and sensory evaluation of bread fortified with spearmint. Arab. J. Sci. Eng. 46 (6), 5257–5264 (2021).
-
Kerbab, K. et al. Nutritional composition, physicochemical properties, antioxidant activity, and sensory quality of matricaria chamomilla-enriched wheat bread. Foods 14 (5), 838 (2025).
