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Review Articles

Recent advance in technological innovations of sugar-reduced products

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References

  • Abbasi, S, and A. Saeedabadian. 2015. Influences of lactose hydrolysis of milk and sugar reduction on some physical properties of ice cream. Journal of Food Science and Technology 52 (1):367–74. doi: 10.1007/s13197-013-1011-1.
  • Acevedo, W., C. Capitaine, R. Rodríguez, I. A. Durán, F. G. Nilo, J. R. P. Correa, and E. Agosin. 2018. Selecting optimal mixtures of natural sweeteners for carbonated soft drinks through multi-objective decision modeling and sensory validation. Journal of Sensory Studies 33 (6):e12466. doi: 10.1111/joss.12466.
  • Afeiche, M. C., B. N. S. Koyratty, D. Wang, E. F. Jacquier, and K. A. Le. 2018. Intakes and sources of total and added sugars among 4 to 13-year-old children in China, Mexico and the United States. Pediatric Obesity 13 (4):204–12. doi: 10.1111/ijpo.12234.
  • Ahmad, U., R. S. Ahmad, A. Imran, and S. M. Hussian. 2019. Characterization of low calorie ready-to-serve peach beverage using natural sweetener, stevia (stevia rebaudiana bertoni). Progress in Nutrition 21:435–44. doi: 10.23751/pn.v21i1-S.6555.
  • Ahmed, I., I. M. Qazi, and S. Jamal. 2016. Developments in osmotic dehydration technique for the preservation of fruits and vegetables. Innovative Food Science & Emerging Technologies 34:29–43. doi: 10.1016/j.ifset.2016.01.003.
  • Alcaire, F., L. Antúnez, L. Vidal, A. Giménez, and G. Ares. 2017. Aroma-related crossmodal interactions for sugar reduction in milk desserts: Influence on consumer perception. Food Research International (Ottawa, Ont.) 97:45–50. doi: 10.1016/j.foodres.2017.02.019.
  • Alexandri, M., R. Schneider, and J. Venus. 2018. Membrane technologies for lactic acid separation from fermentation broths derived from renewable resources. Membranes 8 (4):94. doi: 10.3390/membranes8040094.
  • Allan, M. C., B. Rajwa, and L. J. Mauer. 2018. Effects of sugars and sugar alcohols on the gelatinization temperature of wheat starch. Food Hydrocolloids. 84:593–607. doi: 10.1016/j.foodhyd.2018.06.035.
  • Amies, C. B., A. D. M. Briggs, and P. Scarborough. 2019. Estimating the potential impact of the UK governments sugar reduction programme on child and adult health: Modelling study. BMJ (Clinical Research ed.) 365:l1417. doi: 10.1136/bmj.l1417.
  • Anari, R., R. Amani, and M. Veissi. 2017. Diabetes & metabolic syndrome: Clinical research & reviews sugar-sweetened beverages consumption is associated with abdominal obesity risk in diabetic patients. Diabetes & Metabolic Syndrome: Clinical Research & Reviews 11:S675–S678. doi: 10.1016/j.dsx.2017.04.024.
  • Ashwell, M., S. Gibson, F. Bellisle, J. Buttriss, A. Drewnowski, M. Fantino, A. M. Gallagher, K. D. Graaf, S. Goscinny, C. A. Hardman, et al. 2020. Expert consensus on low-calorie sweeteners: Facts, research gaps and suggested actions. Nutrition Research Reviews 33 (1):145–54. doi: 10.1017/S0954422419000283.
  • Auvray, M, and C. Spence. 2008. The multisensory perception of flavor. Consciousness and Cognition 17 (3):1016–31. doi: 10.1016/j.concog.2007.06.005.
  • Azais, B. V., D. Sluik, M. Maillot, F. Kok, and L. A. Moreno. 2017. A review of total & added sugar intakes and dietary sources in Europe. Nutrition Journal 16 (1):6. doi: 10.1186/s12937-016-0225-2.
  • Ban, Q. F., Z. H. Liu, C. W. Yu, X. M. Sun, Y. Q. Jiang, J. J. Cheng, and M. R. Guo. 2020. Physiochemical, rheological, microstructural, and antioxidant properties of yogurt using monk fruit extract as a sweetener. Journal of Dairy Science 103 (11):10006–14. doi: 10.3168/jds.2020-18703.
  • Bertelsen, A. S., L. A. Mielby, N. Alexi, D. V. Byrne, and U. Kidmose. 2020a. Individual differences in sweetness ratings and cross-modal aroma-taste interactions. Foods 9 (2):146. doi: 10.3390/foods9020146.
  • Bertelsen, A. S., Y. Zeng, L. A. Mielby, Y. X. Sun, D. V. Byrne, and U. Kidmose. 2021. Cross-modal effect of vanilla aroma on sweetness of different sweeteners among chinese and danish consumers. Food Quality and Preference 87:104036. doi: 10.1016/j.foodqual.2020.104036.
  • Bertelsen, A. S., L. A. Mielby, N. Alexi, D. V. Byrne, and U. Kidmose. 2020b. Sweetness enhancement by aromas: Measured by descriptive sensory analysis and relative to reference scaling. Chemical Senses 45 (4):293–301. doi: 10.1093/chemse/bjaa012.
  • Buccelato. 2019. Vanilla in perfumery and beverage flavors. Handbook of Vanilla Science and Technology, 2nd ed., F. D. Havkin and F. C. Belanger, 367–74. USA: Somerset. doi: 10.1002/.9781119377320.ch19.
  • Carvalho, A. D. C., G. D. F. S. Valente, and G. M. P. Assumpção. 2018. External preference map to evaluate the acceptance of light and diet yogurt preparedusingnatural sweeteners. Ciência Rural 48 (6):20170941. doi: 10.1590/0103-8478cr20170941.
  • Cediel, G., M. Reyes, M. L. D. C. Louzada, E. M. Steele, C. A. Monteiro, C. Corvalan, and R. Uauy. 2018. Ultra-processed foods and added sugars in the Chilean diet. Public Health Nutrition 21 (1):125–33. doi: 10.1017/S1368980017001161.
  • Chakraborty, R, and A. Das. 2019. Artificial sweeteners. Encyclopedia of food chemistry, 30–4. Kolkata, India: Jadavpur University.
  • Chattopadhyay, S., U. Raychaudhuri, and R. Chakraborty. 2014. Artificial sweeteners – a review. Journal of Food Science and Technology 51 (4):611–21. doi: 10.1007/s13197-011-0571-1.
  • Chen, X. W, and L. P. Ren. 2018. Energy metabolism and type 2 diabetes mellitus. Drugs and Clinic 3:5.
  • Christensen, C. M. 1980. Effects of solution viscosity on perceived saltiness and sweetness. Perception & Psychophysics 28 (4):347–53. doi: 10.3758/BF03204394.
  • Colchero, M. A., B. M. Popkin, J. A. Rivera, and S. W. Ng. 2016. Beverage purchases from stores in Mexico under the excise tax on sugar sweetened beverages: Observational study. BMJ (Clinical Research ed.) 352:h6704. doi: 10.1136/bmj.h6704.
  • Cruz, A, and B. G. Green. 2000. Thermal stimulation of taste. Nature 403 (6772):889–92. doi: 10.1038/35002581.
  • Dash, K. K., V. M. Balasubramaniam, and S. Kamat. 2019. High pressure assisted osmotic dehydrated ginger slices. Journal of Food Engineering 247:19–29. doi: 10.1016/j.jfoodeng.2018.11.024.
  • Driver. 2000. Multisensory perception: Beyond modularity and convergence. Current Biology 10:731–5. doi: 10.1016/S09609822(00)00740-5.
  • Erickson, S, and J. Carr. 2020. The technological challenges of reducing the sugar content of foods. Nutrition Bulletin 45 (3):309–14. doi: 10.1111/nbu.12454.
  • Faneer, K. A., R. Rohani, A. W. Mohammad, and M. M. B. Abbad. 2017. Evaluation of the operating parameters for the separation of xylitol from a mixed sugar solution by using a polyethersulfone nanofiltration membrane. Korean Journal of Chemical Engineering 34 (11):2944–57. doi: 10.1007/s11814-017-0186-y.
  • Fichera, E., T. Mora, B. G. L. Valcarcel, and D. Roche. 2021. How do consumers respond to “sin taxes”? New evidence from a tax on sugary drinks. Social Science & Medicine (1982) 274:113799. doi: 10.1016/j.socscimed.2021.113799.
  • Fidler Mis, N., C. Braegger, J. Bronsky, C. Campoy, M. Domellöf, N. D. Embleton, I. Hojsak, J. Hulst, F. Indrio, A. Lapillonne, ESPGHAN Committee on Nutrition:, et al. 2017. Sugar in infants, children and adolescents: A position paper of the European society for paediatric gastroenterology, hepatology and nutrition committee on nutrition. Journal of Pediatric Gastroenterology and Nutrition 65 (6):681–96. doi: 10.1097/MPG.0000000000001733.
  • Fu, M. J. 2020. The classification of food sweeteners and the status of their detection technology. Industry Review 8:59–60. doi: 10.16736/j.cnki.cn41-1434/ts.2020.08.023.
  • Gengatharan, A., G. A. Dykes, and W. S. Choo. 2021. Fermentation of red pitahaya extracts using lactobacillus spp. And saccharomyces cerevisiae for reduction of sugar content and concentration of betacyanin content. Journal of Food Science and Technology 58 (9):3611–21. doi: 10.1007/s13197-021-05116-2.
  • Ghnimi, S., S. Umer, A. Karim, and A. K. Eldin. 2017. Date fruit (Phoenix dactylifera L.): An underutilized food seeking industrial valorization. NFS Journal 6:1–10. doi: 10.1016/j.nfs.2016.12.001.
  • Grech, A., C. O. Kam, L. Gemming, and A. Rangan. 2018. Diet-quality and socio-demographic factors associated with non-nutritive sweetener use in the Australian population. Nutrients 10 (7):833. doi: 10.3390/nu10070833.
  • Hamza, H., N. Ben Miloud, M. Jemni, A. Slei, and S. M’barak. 2022. Gamma irradiated date syrup for sucrose substitution in yogurt: Effect on physicochemical properties, antioxidant capacity and sensory evaluation. Journal of Food Science and Technology 59 (1):192–201. doi: 10.1007/s13197-021-05000-z.
  • Han, P. F., T. Fark, R. A. D. Wijk, N. Roudnitzky, E. Iannilli, H. S. Seo, and T. Hummel. 2019. Modulation of sensory perception of cheese attributes intensity and texture liking via ortho- and retro-nasal odors. Food Quality and Preference 73:1–7. doi: 10.1016/j.foodqual.2018.11.019.
  • Han, P. F., B. Bagenna, and M. H. Fu. 2019. The sweet taste signalling pathways in the oral cavity and the gastrointestinal tract affect human appetite and food intake: A review. International Journal of Food Sciences and Nutrition 70 (2):125–35. doi: 10.1080/09637486.2018.1492522.
  • Hao, Y. H., F. Wang, W. N. Huang, X. J. Tang, Q. B. Zou, Z. B. Li, and A. Ogawa. 2016. Sucrose substitution by polyols in sponge cake and their effects on the foaming and thermal properties of egg protein. Food Hydrocolloids. 57:153–9. doi: 10.1016/j.foodhyd.2016.01.006.
  • Harrar, V., B. P. Fiszman, and C. Spence. 2011. There’s more to taste in a coloured bowl. Perception 40 (7):880–2. doi: 10.1068/p7040.
  • Hashemi, M., H. R. Gheisari, and S. Shekarforoush. 2015. Preparation and evaluation of low-calorie functional ice cream containing inulin, lactulose and Bifidobacterium lactis. International Journal of Dairy Technology 68 (2):183–9. doi: 10.1111/1471-0307.12173.
  • Hutchings, S. C., J. Y. Q. Low, R, and S. J. Keast. 2019. Sugar reduction without compromising sensory perception. An impossible dream? Critical Reviews in Food Science and Nutrition 59 (14):2287–307. doi: 10.1080/10408398.2018.1450214.
  • Ibrahim, S. F., N. S. E. M. Dalek, Q. A. F. M. Raffie, and M. R. F. Ain. 2020. Quantification of physicochemical and microstructure properties of dark chocolate incorporated with palm sugar and dates as alternative sweetener. Materials Today: Proceedings 31:366–71. doi: 10.1016/j.matpr.2020.06.235.
  • Ilyasoglu, B. H, and E. S. Nehir. 2021. Enhancing sweetness using double emulsion technology to reduce sugar content in food formulations. Innovative Food Science & Emerging Technologies 74:102809. doi: 10.1016/j.ifset.2021.102809.
  • Italy 2020. Osservatorio immagino nielsen GS1 italy, food labels explicitate italian consumers. Available. http://www.osservatorioimmagino.it.
  • Jensen, T., M. F. Abdelmalek, S. Sullivan, K. J. Nadeau, M. Green, C. Roncal, T. Nakagawa, M. Kuwabara, Y. Sato, D.-H. Kang, et al. 2018. Fructose and sugar: A major mediator of non-alcoholic fatty. Journal of Hepatology 68 (5):1063–75. doi: 10.1016/j.jhep.2018.01.019.
  • Jeske, S., E. Zannini, K. M. Lynch, A. Coffey, and E. K. Arendt. 2018. Polyol-producing lactic acid bacteria isolated from sourdough and their application to reduce sugar in a quinoa-based milk substitute. International Journal of Food Microbiology 286:31–6. doi: 10.1016/j.ijfoodmicro.2018.07.013.
  • Johnson, J, and F. M. J. Clydesdale. 1982. Perceived sweetness and redness in colored sucrose solutions. Journal of Food Science 47 (3):747–52. doi: 10.4315/0362-028X-46.1.21.
  • Jribi, S., M. Ouhaibi, H. Boukhris, C. Damergi, and H. Debbabi. 2021. Formulations of low-sugar strawberry jams: Quality characterization and acute post-pandrial glycaemic response. Journal of Food Measurement and Characterization 15 (2):1578–87. doi: 10.1007/s11694-020-00747-z.
  • Kanter, R., L. Vanderlee, and S. Vandevijvere. 2018. Front-of-package nutrition labelling policy: Global progress and future directions. Public Health Nutrition 21 (8):1399–408. doi: 10.1017/S1368980018000010.
  • Karalexi, M. A., M. Mitrogiorgou, G. G. Georgantzi, V. Papaevangelou, and S. Fessatou. 2018. Non-nutritive sweeteners and metabolic health outcomes in children: A systematic review and meta-analysis. The Journal of Pediatrics 197:128–33.e2. doi: 10.1016/j.jpeds.2018.01.081.
  • Khamise, N., D. Tayel, M. Helmy, and S. Aborhyem. 2020. Effect of aspartame and sucralose artificial sweeteners on weight and lipid profile of male albino rats. Journal of High Institute of Public Health. Czech Journal of Food Sciences 0 (0):87–100. doi: 10.21608/jhiph.2020.108281.
  • Khemacheevakul, K., J. Wolodko, H. Nguyen, and W. Wismer. 2021. Temporal sensory perceptions of sugar-reduced 3d printed chocolates. Foods 10 (9):2082. doi: 10.3390/foods10092082.
  • Kim, E., J. H. Shin, P. R. Seok, M. S. Kim, S. H. Yoo, and Y. Kim. 2018. Phyllodulcin, a natural functional sweetener, improves diabetic metabolic changes by regulating hepatic lipogenesis, inflammation, oxidative stress, fibrosis, and gluconeogenesis in db/db mice. Journal of Functional Foods 42:1–11. doi: 10.1016/j.jff.2017.12.038.
  • Kistler, T., A. Pridal, C. Bourcet, and C. Denkel. 2021. Modulation of sweetness perception in confectionary applications. Food Quality and Preference 88:104087. doi: 10.1016/j.foodqual.2020.104087.
  • Knoop, J. E., J. H. F. Bult, M. Stieger, and G. Smit. 2008. Effects of esters appearing in natural apple aroma on the sweetness impression of apple juice. 3rd European Conference on Sensory and Consumer Sciences. 9–11 September.
  • Kroger, M., K. Meister, and R. Kava. 2006. Low-calorie sweeteners and other sugar substitutes: A review of the safety issues. Comprehensive Reviews in Food Science and Food Safety 5 (2):35–47. doi: 10.1111/j.1541-4337.2006.tb00081.x.
  • Kuang, H. Y., Y. Ma, and Y. X. Liu. 2022. Protective effect of β-carotene on ova-induced food allergy in mice by strengthening intestinal epithelial barrier function and regulating intestinal microflora. Food & Function. Advance online publication. doi: 10.1039/D2FO02272A.
  • Laar, A. D. E. V., C. Grootaert, and J. V. Camp. 2021. Rare mono- and disaccharides as healthy alternative for traditional sugars and sweeteners? Critical Reviews in Food Science and Nutrition 61 (5):713–41. doi: 10.1080/10408398.2020.1743966.
  • Lee, A. A, and C. Owyang. 2017. Sugars, sweet taste receptors, and brain responses. Nutrients 9 (7):653. doi: 10.3390/nu9070653.
  • Lesme, H., C. Rannou, M. H. Famelart, S. Bouhallab, and C. Prost. 2020. Yogurts enriched with milk proteins: Texture properties, aroma release and sensory perception. Trends in Food Science & Technology 98:140–9. doi: 10.1016/jtifs.2020.02.006.
  • Li, X. E., K. Lopetcharat, Y. Qiu, and M. A. Drake. 2015. Sugar reduction of skim chocolate milk and viability of alternative sweetening through lactose hydrolysis. Journal of Dairy Science 98 (3):1455–66. doi: 10.3168/jds.2014-8490.
  • Lima, M., G. Ares, and R. Deliza. 2019. Comparison of two sugar reduction strategies with children: Case study with grape nectars. Food Quality and Preference 71:163–7. doi: 10.1016/j.foodqual.2018.07.002.
  • Luo, J. Q., S. W. Guo, Y. Y. Wu, and Y. H. Wan. 2018. Separation of sucrose and reducing sugar in cane molasses by nanofiltration. Food and Bioprocess Technology 11 (5):913–25. doi: 10.1007/s11947-018-2062-0.
  • Luo, X., J. Arcot, T. Gill, J. C. Y. Louie, and A. Rangan. 2019. A review of food reformulation of baked products to reduce added sugar intake. Trends in Food Science & Technology 86:412–25. doi: 10.1016/j.tifs.2019.02.051.
  • Luzzi, G., M. Steffens, I. C. Rädecker, W. Hoffmann, C. M. A. P. Franz, J. Fritsche, and P. C. Lorenzen. 2020. Enhancing the sweetening power of lactose by enzymatic modification in the reformulation of dairy products. International Journal of Dairy Technology 73 (3):502–12. doi: 10.1111/1471-0307.12681.
  • Mahato, D. K., R. Keast, D. G. Liem, C. G. Russell, S. Cicerale, and S. Gamlath. 2020. Sugar reduction in dairy food: An overview with flavoured milk as an example. Foods 9 (10):1400. doi: 10.3390/foods9101400.
  • Matuska, M., A. Lenart, and H. N. Lazarides. 2006. On the use of edible coatings to monitor osmotic dehydration kinetics for minimal solids uptake. Journal of Food Engineering 72 (1):85–91. doi: 10.1016/j.jfoodeng.2004.11.023.
  • McCain, H. R., S. Kaliappan, and M. A. Drake. 2018. Invited review: Sugar reduction in dairy products. Journal of Dairy Science 101 (10):8619–40. doi: 10.3168/jds.2017-14347.
  • Mensink, M. A., H. W. Frijlink, K. V. D. V. Maarschalk, and W. L. J. Hinrichs. 2017. How sugars protect proteins in the solid state and during drying (review): Mechanisms of stabilization in relation to stress conditions. European Journal of Pharmaceutics and Biopharmaceutics : official Journal of Arbeitsgemeinschaft Fur Pharmazeutische Verfahrenstechnik e.V 114:288–95. doi: 10.1016/j.ejpb.2017.01.024.
  • Mojto, V., A. Gvozdjakova, M. Mojtov’a, J. Kucharsk’a, P. Jaglan, and O. Vanˇcov’a. 2019. Dietary sugar intake and risk of noncommunicable diseases. The Role of Functional Food Security in Global Health. R. B. Singh, R. R. Watson and T. Takahashi, 287–99. Slovakia: Bratislava. doi: 10.1016/B978-0-12813148-0.00017-7.
  • Mondaca, R. L., A. V. Gálvez, L. Z. Bravo, and K. A. Hen. 2012. Stevia rebaudiana bertoni, source of a high-potency natural sweetener: A comprehensive review on the biochemical, nutritional and functional aspects. Food Chemistry 132:1121–32. doi: 10.1016/j.foodchem.2011.11.140.
  • Mooradian, A. D., M. Smith, and M. Tokuda. 2017. The role of artificial and natural sweeteners in reducing the consumption of table sugar: A narrative review. Clinical Nutrition ESPEN 18:1–8. doi: 10.1016/j.clnesp.2017.01.004.
  • Morais, E. C., E. A. Esmerino, R. A. Monteiro, C. M. Pinheiro, C. A. Nunes, A. G. Cruz, and H. M. Bolini. 2016. Prebiotic low sugar chocolate dairy desserts: Physical and optical characteristics and performance of parafac and pca preference map. Journal of Food Science 81 (1):S156–S164. doi: 10.1111/1750-3841.13121.
  • Moriano, M. E, and C. Alamprese. 2017. Honey, trehalose and erythritol as sucrose-alternative sweeteners for artisanal ice cream. A pilot study. LWT 75:329–34. doi: 10.1016/j.lwt.2016.08.057.
  • Mullee, A., D. Romaguera, J. Pearson-Stuttard, V. Viallon, M. Stepien, H. Freisling, G. Fagherazzi, F. R. Mancini, M.-C. Boutron-Ruault, T. Kühn, et al. 2019. Association between soft drink consumption and mortality in 10 European countries. JAMA Internal Medicine 179 (11):1479–90. doi: 10.1001/jamainternmed.2019.2478.
  • Nettleton, J. E., T. Klancic, A. Schick, A. C. Choo, J. Shearer, S. L. Borgland, F. Chleilat, S. Mayengbam, and R. A. Reimer. 2019. Low-dose stevia (rebaudioside a) consumption perturbs gut microbiota and the mesolimbic dopamine reward system. Nutrients 11 (6):1248. doi: 10.3390/nu11061248.
  • Noble, E. E., C. A. Olson, E. Davis, L. Tsan, Y.-W. Chen, R. Schade, C. Liu, A. Suarez, R. B. Jones, C. de La Serre, et al. 2021. Gut microbial taxa elevated by dietary sugar disrupt memory function. Translational Psychiatry 11 (1):194. doi: 10.1038/s41398-021-01309-7.
  • Nobrega, L., G. Ares, and R. Deliza. 2020. Are nutritional warnings more efficient than claims in shaping consumers’ healthfulness perception? Food Quality and Preference 79:103749. doi: 10.1016/j.foodqual.2019.103749.
  • Oliveira, A. A. A., A. C. Andrade, S. C. Bastos, J. P. F. Condino, A. C. Junior, and A. C. M. Pinheiro. 2021. Use of strawberry and vanilla natural flavors for sugar reduction: A dynamic sensory study with yogurt. Food Research International (Ottawa, Ont.) 139:109972. doi: 10.1016/j.foodres.2020.109972.
  • Oliveira, D., F. Reis, R. Deliza, A. Rosenthal, A. Giménez, and G. Ares. 2016. Difference thresholds for added sugar in chocolate-flavoured milk: Recommendations for gradual sugar reduction. Food Research International (Ottawa, Ont.) 89 (Pt 1):448–53. doi: 10.1016/j.foodres.2016. 08.019.
  • Oliveira, D., L. Antunez, A. Gimenez, J. C. Castura, R. Deliza, and G. Ares. 2015. Sugar reduction in probiotic chocolate-flavored milk: Impact on dynamic sensory profile and liking. Food Research International (Ottawa, Ont.) 75:148–56. doi: 10.1016/j.foodres.2015.05.050.
  • Olivo, L. 2019. Sweeteners offer natural appeal. Nutraceuticals World. doi: https://www.nutraceuticalsworld.com/issues/2019-06/view_features/plant-based-sweeteners-offer-natural-appeal/.
  • Ozcan, T., T. Ozdemir, and H. R. Avci. 2021. Survival of lactobacillus casei and functional characteristics of reduced sugar red beetroot yoghurt with natural sugar substitutes. International Journal of Dairy Technology 74 (1):148–60. doi: 10.1111/1471-0307.12741.
  • Public Health England 2020. Sugar reduction. Report on progress between 2015 and 2019. England.
  • Pan, L. H., L. Fei, S. Z. Luo, and J. P. Luo. 2019. Pomegranate juice powder as sugar replacer enhanced quality and function of set yogurts: Structure, rheological property, antioxidant activity and in vitro bioaccessibility. LWT 115:108479. doi: 10.1016/j.lwt.2019.108479.
  • Pereira, C. T. M., D. M. Pereira, A. C. D. Medeiros, E. Y. Hiramatsu, M. B. Ventur, and H. M. A. Bolini. 2021. Skyr yogurt with mango pulp, fructooligosaccharide and natural sweeteners: Physical aspects and drivers of liking. LWT 150:112054. doi: 10.1016/j.lwt.2021.112054.
  • Pereira, C. T. M., D. M. Pereira, and H. M. A. Bolini. 2021. Influence of a prebiotic and natural sweeteners on the sensory profile of skyr yogurt with mango pulp. Journal of Food Science 86 (6):2626–39. doi: 10.1111/1750-3841.15760.
  • Peters, J. C., R. Marker, Z. X. Pan, J. A. Breen, and J. O. Hill. 2018. The influence of adding spices to reduced sugar foods on overall liking. Journal of Food Science 83 (3):814–21. doi: 10.1111/1750-3841.14069.
  • Pineli, L. L. O., L. A. Aguiar, A. Fiusa, R. B. A. Botelho, R. P. Zandonadi, and L. Melo. 2016. Sensory impact of lowering sugar content in orange nectars to design healthier, low-sugar industrialized beverages. Appetite 96:239–44. doi: 10.1016/j.appet.2015.09.028.
  • Piqueras, F. B., Z. Laughlin, M. Miodownik, and C. Spence. 2012. Tasting spoons: Assessing how the material of a spoon affects the taste of the food. Food Quality and Preference 24 (1):24–9. doi: 10.1016/j.foodqual.2011.08.005.
  • Piqueras, F. B., J. Alcaide, E. Roura, and C. Spence. 2012. Is it the plate or is it the food? Assessing the influence of the color (black or white) and shape of the plate on the perception of the food placed on it. Food Quality and Preference 24 (1):205–8. doi: 10.1016/j.foodqual.2011.08.011.
  • Prescott, J. 2015. Multisensory processes in flavour perception and their influence on food choice. Current Opinion in Food Science 3:47–52. doi: 10.1016/j.cofs.2015.02.007.
  • Pruksasri, S., B. Lanner, and S. Novalin. 2020. Nanofiltration as a potential process for the reduction of sugar in apple juices on an industrial scale. LWT 133:110118. doi: 10.1016/j.lwt.2020.110118.
  • Reale, A., T. D. Renzo, A. Russo, S. Niro, A. Ottombrino, and M. P. Pellicano. 2020. Production of low-calorie apricot nectar sweetened with stevia: Impact on qualitative, sensory, and nutritional profiles. Food Science & Nutrition 8 (4):1837–47. doi: 10.1002/fsn3.1464.
  • Rice, T., A. W. Sahin, K. M. Lynch, E. K. Arendt, and A. Coffey. 2020. Isolation, characterisation and exploitation of lactic acid bacteria capable of efficient conversion of sugars to mannitol. International Journal of Food Microbiology 321:108546. doi: 10.1016/j.ijfoodmicro.2020.108546.
  • Richardson, A. M., A. A. Tyuftin, K. N. Kilcawley, E. Gallagher, M. G. O’Sullivan, and J. P. Kerry. 2021. The application of pureed butter beans and a combination of inulin and rebaudioside a for the replacement of fat and sucrose in sponge cake: Sensory and physicochemical analysis. Foods 10 (2):254. doi: 10.3390/foods10020254.
  • Rodrigues, J. F., R. D. S. Andrade, S. C. Bastos, S. B. Coelho, and A. C. M. Pinheiro. 2016. Miracle fruit: An alternative sugar substitute in sour beverages. Appetite 107:645–53. doi: 10.1016/j.appet.2016.09.014.
  • Roper, S. D, and N. Chaudhari. 2017. Taste buds: Cells, signals and synapses. Nature Reviews. Neuroscience 18 (8):485–97. doi: 10.1038/nrn.2017.68.
  • Rother, K. I., E. M. Conway, and A. C. Sylvetsky. 2018. How nonnutritive sweeteners influence hormones and health. Trends in Endocrinology and Metabolism: TEM 29 (7):455–67. doi: 10.1016/j.tem.2018.04.010.
  • Sahin, A. W., E. Zannini, A. Coffey, and E. K. Arendt. 2019. Sugar reduction in bakery products: Current strategies and sourdough technology as a potential novel approach. Food Research International (Ottawa, Ont.) 126:108583. doi: 10.1016/j.foodres.2019.108583.
  • Sahin, A. W., T. Rice, E. Zannini, K. M. Lynch, A. Coffey, and E. K. Arendt. 2019. The incorporation of sourdough in sugar-reduced biscuits: A promising strategy to improve techno-functional and sensory properties. European Food Research and Technology 245 (9):1841–54. doi: 10.1007/s00217-019-03302-3.
  • Salgado, C. M., L. Palacio, P. Prádanos, A. Hernández, C. G. Huerta, and S. P. Magariño. 2015. Comparative study of red grape must nanofiltration: Laboratory and pilot plant scales. Food and Bioproducts Processing 94:610–20. doi: 10.1016/j.fbp.2014.08.007.
  • Saputro, A. D., D. V. D. Walle, S. Kadivar, M. D. B. Sintang, P. V. D. Meeren, and K. Dewettinck. 2017. Investigating the rheological, microstructural and textural properties of chocolates sweetened with palm sap-based sugar by partial replacement. European Food Research and Technology 243 (10):1729–38. doi: 10.1007/s00217-017-2877-3.
  • Saraiva, A., C. Carrascosa, D. Raheem, F. Ramos, and A. Raposo. 2020. Natural sweeteners: The relevance of food naturalness for consumers, food security aspects, sustainability and health impacts. International Journal of Environmental Research and Public Health 17 (17):6285–22. doi: 10.3390/ijerph17176285.
  • Shankar, P., S. Ahuja, and K. Sriram. 2013. Non-nutritive sweeteners: Review and update. Nutrition (Burbank, Los Angeles County, Calif.) 29 (11–12):1293–9. doi: 10.1016/j.nut.2013.03.024.
  • Sikder, J., S. Chakraborty, P. Pal, E. Drioli, and C. Bhattacharjee. 2012. Purification of lactic acid from microfiltrate fermentation broth by cross-flow nanofiltration. Biochemical Engineering Journal 69:130–7. doi: 10.1016/j.bej.2012.09.003.
  • Sloan. 2020. The top 10 functional food trends. Food Technology 64:22. doi: WOS:000276884300011.
  • Sman, V. D. R. G. M. 2016. Sugar and polyol solutions as effective solvent for biopolymers. Food Hydrocolloids. 56:144–9. doi: 10.1016/j.foodhyd.2015.12.001.
  • Song, Y., X. Li, and Y. Zhong. 2019. Optimization of butter, xylitol, and high-amylose maize flour on developing a low-sugar cookie. Food Science & Nutrition 7 (11):3414–24. doi: 10.1002/fsn3.1160.
  • Southgate, D. A. T. 1995. Digestion and metabolism of sugars. American Journal of Clinical 62:203–11. doi: 10.1093/ajcn/62.1.203S.
  • Souza, E. L. D. 2021. Insights into the current evidence on the effects of essential oils toward beneficial microorganisms in foods with a special emphasis to lactic acid bacteria – a review. Trends in Food Science & Technology 114:333–41. doi: 10.1016/j.tifs.2021.06.011.
  • Souza, L. B. A. D., V. R. A. Pinto, L. G. L. N. Nascimento, R. Stephani, A. F. D. Carvalho, and I. T. Perrone. 2021. Low‐sugar strawberry yogurt: Hedonic thresholds and expectations. Journal of Sensory Studies 36 (3):12643. doi: 10.1111/joss.12643.
  • Sowa, P. M., E. Keller, N. Stormon, R. Lalloo, and P. J. Ford. 2019. The impact of a sugar-sweetened beverages tax on oral health and costs of dental care in Australia. European Journal of Public Health 29 (1):173–7. doi: 10.1093/eurpub/cky087.
  • Stanhope, K. L. 2016. Sugar consumption, metabolic disease and obesity: The state of the controversy. Critical Reviews in Clinical Laboratory Sciences 53 (1):52–67. doi: 10.3109/10408363.2015.1084990.
  • Stanner, S. A, and A. Spiro. 2020. Public health rationale for reducing sugar – strategies and challenges. Nutrition Bulletin 45 (3):253–70. doi: 10.1111/nbu.12460.
  • Su, K., D. Festring, C. Ayed, Q. Yang, C. J. Sturrock, R. Linforth, T. Foster, and I. Fisk. 2021. Reducing sugar and aroma in a confectionery gel without compromising flavour through addition of air inclusions. Food Chemistry 354:129579. doi: 10.1016/j.foodchem.2021.129579.
  • Suez, J., T. Korem, D. Zeevi, G. Zilberman-Schapira, C. A. Thaiss, O. Maza, D. Israeli, N. Zmora, S. Gilad, A. Weinberger, et al. 2014. Artificial sweeteners induce glucose intolerance by altering the gut microbiota. Nature 514 (7521):181–6. doi: 10.1038/nature13793.
  • Sunds, A. V., V. M. Rauh, J. Sørensen, and L. B. Larse. 2018. Maillard reaction progress in uht milk during storage at different temperature levels and cycles. International Dairy Journal 77:56–64. doi: 10.1016/j.idairyj.2017.08.008.
  • Swithers, S. E. 2013. Artificial sweeteners produce the counterintuitive effect of inducing metabolic derangements. Trends in Endocrinology and Metabolism: TEM 24 (9):431–41. doi: 10.1016/j.tem.2013.05.005.
  • Terefe, N. S, and M. A. Augustin. 2020. Fermentation for tailoring the technological and health related functionality of food products. Critical Reviews in Food Science and Nutrition 60 (17):2887–913. doi: 10.1080/10408398.2019.1666250.
  • Torrico, D. D., J. Tam, S. Fuentes, C. G. Viejo, and F. R. Dunshea. 2019. D-tagatose as a sucrose substitute and its effect on the physico-chemical properties and acceptability of strawberry-flavored yogurt. Foods 8 (7):256. doi: 10.3390/foods8070256.
  • Tyuftin, A. A., A. M. Richardson, M. G. O’ Sullivan, K. N. Kilcawley, E. Gallagher, and J. P. Kerry. 2021. The sensory and physical properties of shortbread biscuits cooked using different sucrose granule size fractions. Journal of Food Science 86 (3):705–14. doi: 10.1111/1750-3841.15600.
  • Vatankhah, M., F. Garavand, B. Mohammadi, and A. Elhamirad. 2017. Quality attributes of reduced-sugar iranian traditional sweet bread containing stevioside. Journal of Food Measurement and Characterization 11 (3):1233–9. doi: 10.1007/s11694-017-9500-y.
  • Velazquez, A. L., L. Vidal, P. Varela, and G. Ares. 2020. Cross-modal interactions as a strategy for sugar reduction in products targeted at children: Case study with vanilla milk desserts. Food Research International (Ottawa, Ont.) 130:108920. doi: 10.1016/j.foodres.2019.108920.
  • Velázquez, A. L., L. Vidal, F. Alcaire, P. Varela, and G. Ares. 2021. Significant sugar-reduction in dairy products targeted at children is possible without affecting hedonic perception. International Dairy Journal 114:104937. doi: 10.1016/j.idairyj.2020.104937.
  • Vreman, R. A., A. J. Goodell, L. A. Rodriguez, T. C. Porco, R. H. Lustig, and J. G. Kahn. 2017. Health and economic benefits of reducing sugar intake in the USA, including effects via non-alcoholic fatty liver disease: A microsimulation model. British Medical Journal 7:13543. doi: 10.1136/bmjopen-2016-013543.
  • Walaa, A., A. W. S. A. Ahmed, A. M. M. Kholif, S. A. E. Ghani, and H. R. Wehaidy. 2021. Rice straw and orange peel wastes as cheap and eco-friendly substrates: A new approach in beta-galactosidase (lactase) enzyme production by the new isolate l. Paracasei mk852178 to produce low-lactose yogurt for lactose-intolerant people. Waste Management (New York, N.Y.) 131:403–11. doi: 10.1016/j.wasman.2021.06.028.
  • Walji, A. “4 global yogurt trends to look for in 2019”, August 23, 2019, https://www.mintel.com/blog/food-market-news/4-global-yogurt-trends-to-look-for-in-2019.
  • Wang, G., A. J. Bakke, J. E. Hayes, and H. Hopfer. 2019. Demonstrating cross-modal enhancement in a real food with a modified abx test. Food Quality and Preference 77:206–13. doi: 10.1016/j.foodqual.2019.05.007.
  • Wang, G., J. Hayes, G. Ziegler, R. Roberts, and H. Hopfer. 2018. Dose-response relationships for vanilla flavor and sucrose in skim milk: Evidence of synergy. Beverages 4 (4):73. doi: 10.3390/beverages4040073.
  • World Health Organization 2014. Who opens public consultation on draft sugars guideline. World Health Organization. https://www.who.int/mediacentre/news/notes/2014/consultation-sugar-guideline/en/.
  • World Health Organization 2016. Taxes on sugary drinks. World Health Organization: 2–5. doi: http://apps.who.int/iris/bitstream/handle/.
  • Woodbury, T. J., A. L. Lust, and L. J. Mauer. 2021. The effects of commercially available sweeteners (sucrose and sucrose replacers) on wheat starch gelatinization and pasting, and cookie baking. Journal of Food Science 86 (3):687–98. doi: 10.1111/1750-3841.15572.
  • Xiang, S., H. Zou, Y. Liu, and R. Ruan. 2020. Effects of microwave heating on the protein structure, digestion properties and maillard products of gluten. Journal of Food Science and Technology 57 (6):2139–49. doi: 10.1007/s13197-020-04249-0.
  • Xie, P., X. Liu, and Y. P. Yang. 2021. Introduction of common artificial sweeteners and suggestions for their development. Industry Review. 3:77. doi: 10.16736/j.cnki.cn41-1434/ts.2021.03.026.
  • Xing, Q., C. Hou, Z. Zhang, K. Han, Q. Yan, and J. Luo. 2017. Comparative study on the physicochemical properties of pea, chickpea, and wheat starch gels in the presence of sweeteners. Starch - Stärke 69 (9-10):1600287. doi: 10.1002/star.201600287.
  • Xu, Y., M. M. Hlaing, O. Glagovskaia, M. A. Augustin, and N. S. Terefe. 2020. Fermentation by probiotic lactobacillus gasseri strains enhances the carotenoid and fibre contents of carrot juice. Foods 9 (12):1803. doi: 10.3390/foods9121803.
  • Ye, J. H., L. Y. Huang, N. S. Terefe, and M. A. Augustin. 2019. Fermentation-based biotransformation of glucosinolates, phenolics and sugars in retorted broccoli puree by lactic acid bacteria. Food Chemistry 286:616–23. doi: 10.1016/j.foodchem.2019.02.030.
  • Yi, H., M. L. Guang, W. Hua, W. J. Zhu, F. Z. Jian, X. S. He, and Y. H. Qun. 2009. Experimental study on the rejection of salt and dye with cellulose acetate nanofiltration membrane. Journal of the Taiwan Institute of Chemical Engineers 40 (3):289–95. doi: 10.1016/j.jtice.2008.08.008.
  • Yunker, A. G., R. Patel, and K. A. Page. 2020. Effects of non-nutritive sweeteners on sweet taste processing and neuroendocrine regulation of eating behavior. Current Nutrition Reports 9 (3):278–89. doi: 10.1007/s13668-020-00323-3.
  • Zhang, S. S., Z. S. Xu, L. H. Qin, and J. Kong. 2020. Low-sugar yogurt making by the co-cultivation of lactobacillus plantarum wcfs1 with yogurt starter cultures. Journal of Dairy Science 103 (4):3045–54. doi: 10.3168/jds.2019-17347.
  • Zhao, C. M., T. Du, P. Li, X. J. Du, and S. Wang. 2021. Production and characterization of a novel low-sugar beverage from red jujube fruits and bamboo shoots fermented with selected lactiplantibacillus plantarum. Foods 10 (7):1439. doi: 10.3390/foods10071439.
  • Zhu, Y., S. F. Olsen, P. Mendola, T. I. Halldorsson, S. Rawal, S. N. Hinkle, E. H. Yeung, J. E. Chavarro, L. G. Grunnet, C. Granström, et al. 2017. Maternal consumption of artificially sweetened beverages during pregnancy, and offspring growth through 7 years of age: A prospective cohort study. International Journal of Epidemiology 46 (5):1499–508. doi: 10.1093/ije/dyx095.

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