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30 pages, 6912 KB  
Review
Genetic Variants Influencing Taste Perception and Food Preferences: Current Evidence
by Ewa Miller-Kasprzak and Paweł Bogdański
Nutrients 2026, 18(15), 2531; https://doi.org/10.3390/nu18152531 - 4 Aug 2026
Viewed by 74
Abstract
Taste perception, taste preferences, and food preferences are three interrelated constructs underlying food-related behavior and contribute to individual dietary choices. Both genetic and environmental factors contribute to shaping these traits. Taste perception refers to interindividual differences in biological sensitivity to basic taste modalities. [...] Read more.
Taste perception, taste preferences, and food preferences are three interrelated constructs underlying food-related behavior and contribute to individual dietary choices. Both genetic and environmental factors contribute to shaping these traits. Taste perception refers to interindividual differences in biological sensitivity to basic taste modalities. Taste preferences represent the hedonic evaluation of taste modalities, including salty, sweet, bitter, sour, or umami, and fatty tastes, and are closely related to, but distinct from, taste perception. Recent evidence in sensory genetics has identified numerous single-nucleotide variants (SNVs) associated with interindividual differences in both taste perception and taste-modality-related responses. Essential genes include TAS1R2 and TAS1R3 for sweet taste, TAS1R1 and TAS1R3 for umami, TAS2R38 for bitter taste, CD36 for fat perception, and epithelial sodium channel (ENaC) subunits for salt sensitivity. Regarding broader food preferences, variants in genes involved in metabolic regulation and reward processing—such as FTO, MC4R, GHRL, DRD2, and OPRM1—also contribute to food-related behaviors and choice patterns. Health status and genetic variants may also influence taste perception and food preferences. This review summarizes current evidence on the genetic determinants of taste perception, taste modality preferences, and food liking, emphasizing the multifactorial nature of food-related behaviors and the role of genetic variability in shaping individual differences in dietary choices. Full article
(This article belongs to the Section Nutrigenetics and Nutrigenomics)
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15 pages, 1456 KB  
Article
Taste Sensitivity Is Inversely Associated with Body Mass Index (BMI) Independently of Caloric Intake: Evidence from Sensory and Genetic Analyses
by Melania Melis, Silvia Deligia, Lala Chaimae Naciri and Iole Tomassini Barbarossa
Nutrients 2026, 18(15), 2459; https://doi.org/10.3390/nu18152459 - 27 Jul 2026
Viewed by 272
Abstract
Background/Objectives: Taste perception has emerged as a key determinant of eating behavior and metabolic regulation, but its relationship with body mass index (BMI) remains incompletely understood. We investigated the relationships among global, sweet, and lipid taste sensitivity; sweet- and lipid-taste-related polymorphisms; caloric [...] Read more.
Background/Objectives: Taste perception has emerged as a key determinant of eating behavior and metabolic regulation, but its relationship with body mass index (BMI) remains incompletely understood. We investigated the relationships among global, sweet, and lipid taste sensitivity; sweet- and lipid-taste-related polymorphisms; caloric intake; and BMI. Methods: Taste sensitivity was assessed using taste strips (overall and sweet) and detection thresholds for fatty acids (oleic, linoleic, and palmitic acids). Genotyping of polymorphism genes was conducted. Pearson correlation analyses examined bivariate associations between taste variables and BMI. Multiple regression models were performed to identify independent predictors of BMI and to evaluate the mediating role of caloric intake. Results: A strong inverse correlation was found between total and sweet taste sensitivity and BMI, particularly in super-tasters (STs) and participants with the sensitive genotype of sweet-taste-related polymorphisms. Similarly, greater sensitivity to fatty acids was associated with lower BMI, specifically in non-tasters (NTs) and participants with the insensitive genotype of CD36 polymorphisms. In multiple regression models, overall and lipid sensitivity were the most significant predictors of BMI, which were inversely associated with it. TAS1R2 and TAS1R3 also showed independent effects. Importantly, caloric intake was not retained in the final model. Conclusions: Taste sensitivity is inversely associated with BMI independently of caloric intake. These findings suggest that the gustatory system could influence body weight through mechanisms beyond energy consumption, probably involving food choice and extra-oral receptor-mediated metabolic regulation. Taste perception and related genetic factors may represent important targets for personalized nutrition and obesity prevention strategies. Full article
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16 pages, 1142 KB  
Article
Consumer Acceptability and Community Perceptions of Indigenous Crop-Enriched Stiff Pap in Rural KwaZulu-Natal, South Africa: Implications for Sustainable Food System Transformation
by Sesethu Samuel Ntlanga, Lelethu Mdoda, Denver Naidoo and Laurencia Govender
Foods 2026, 15(14), 2489; https://doi.org/10.3390/foods15142489 - 14 Jul 2026
Viewed by 357
Abstract
Indigenous crops are well adapted to marginal conditions and rich in nutrients, making them promising contributors to food and nutrition security in rural South African communities. This study evaluated the consumer acceptability and community perceptions of stiff pap composite dishes incorporating pumpkin leaves, [...] Read more.
Indigenous crops are well adapted to marginal conditions and rich in nutrients, making them promising contributors to food and nutrition security in rural South African communities. This study evaluated the consumer acceptability and community perceptions of stiff pap composite dishes incorporating pumpkin leaves, Cucurbita pumpkin, and cream-fleshed sweet potato (CFSP) among 60 rural participants. Employing a cross-sectional design, sensory testing using a nine-point hedonic scale and focus group discussions (FGDs) were conducted across the uMkhanyakude and King Cetshwayo District Municipalities in KwaZulu-Natal, South Africa. All three composite dishes were well-liked overall. The CFSP-based dish achieved the highest overall acceptability (7.68) and was the most preferred (40%; n = 24), while the pumpkin-based dish was the least preferred (38%; n = 23). Significant differences in taste and color were observed across dishes (p < 0.05). Focus groups highlighted that familiarity, flavor balance, preparation methods, and cultural norms shaped willingness to adopt these dishes, with novel combinations eliciting both curiosity and hesitation. Cultural norms, family preferences, and the traditional significance of stiff pap shape acceptance pathways. The findings suggest that integrating indigenous crops into culturally familiar staples can promote dietary diversification and support smallholder farming systems, with culturally sensitive culinary guidance serving as the key enabler for broader adoption. These findings imply that embedding indigenous crops within culturally central staples offers a practical, consumer-driven entry point for sustainable food system transformation, simultaneously advancing dietary diversity, smallholder livelihoods, and the resilience of rural food systems. Full article
(This article belongs to the Section Food Security and Sustainability)
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12 pages, 561 KB  
Article
Sweet Taste Receptor Genetic Variation TAS1R2 rs35874116 Is Associated with Dietary Quality in a Korean Population
by Eunyoung Kim and Jeong-Hwa Choi
Nutrients 2026, 18(8), 1224; https://doi.org/10.3390/nu18081224 - 14 Apr 2026
Viewed by 728
Abstract
Background/Objectives: Individual differences in sweet taste sensitivity, influenced by genetic factors such as variants of the taste receptor type 1 member 2 (TAS1R2), are associated with food preferences and nutrient intake. However, the relationship between TAS1R2 polymorphisms and diet quality in [...] Read more.
Background/Objectives: Individual differences in sweet taste sensitivity, influenced by genetic factors such as variants of the taste receptor type 1 member 2 (TAS1R2), are associated with food preferences and nutrient intake. However, the relationship between TAS1R2 polymorphisms and diet quality in Koreans remains unexplored. This study investigated the association between the TAS1R2 rs35874116 (T>C, Ile191Val) variant and diet quality, assessed using the Korean Healthy Eating Index (KHEI). Methods: Analyzing data from the Korean Genome and Epidemiology Study, we evaluated the dietary quality of 41,669 Koreans based on KHEI scores and TAS1R2 rs35874116 genotypes (TT versus CT+CC). Results: The findings indicate that genetic variation in the sweet taste receptor is linked to specific components of dietary quality. Although total KHEI scores did not differ between genotypes, TT genotype carriers had significantly higher vegetable intake scores compared to C allele carriers (3.42 ± 1.35 vs. 3.37 ± 1.36, padjusted = 0.002). Additionally, TT carriers exhibited higher sodium intake (6.85 ± 3.53 vs. 6.95 ± 3.51, padjusted = 0.002) and lower scores in the moderation domain (18.82 ± 5.15 vs. 18.98 ± 5.07, padjusted = 0.002). Conclusions: The TAS1R2 rs35874116 variant is associated with specific aspects of diet quality in Koreans, particularly vegetable and sodium intake. These findings suggest that genetic variations in sweet taste perception influence dietary behaviors among Koreans. Full article
(This article belongs to the Special Issue Advances in Gene–Diet Interactions and Human Health)
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19 pages, 7663 KB  
Article
Taste Changes in a Rat Model of Spinal Cord Injury: Impact of High-Fat Diet and Weight Loss Surgery
by Jonathan Snyder, Tiffany Tang, Gregory M. Holmes and Andras Hajnal
Nutrients 2026, 18(3), 503; https://doi.org/10.3390/nu18030503 - 2 Feb 2026
Viewed by 936
Abstract
Background: Approximately two-thirds of individuals with spinal cord injury (SCI) become overweight or obese. Weight loss surgery, including vertical sleeve gastrectomy (VSG), is one of the most effective long-term treatments for obesity and type 2 diabetes. Introduction: The main objective of this study [...] Read more.
Background: Approximately two-thirds of individuals with spinal cord injury (SCI) become overweight or obese. Weight loss surgery, including vertical sleeve gastrectomy (VSG), is one of the most effective long-term treatments for obesity and type 2 diabetes. Introduction: The main objective of this study was to test in our diet induced obesity rat model whether subjects respond to VSG in the same way as subjects with or without SCI. Methods: To address this question, male Wistar rats underwent either T3 contusion injuries or sham spinal surgeries (Sham). Following recovery, all rats were fed a high-energy, high-fat diet (HFD) for six weeks before undergoing VSG. Taste responsivity and preferences were assessed at multiple time points. Results: Prior to HFD exposure, SCI rats exhibited significantly reduced lick responses for sucrose at higher concentrations and increased licking for low concentrations of sodium, although 2BC sucrose preference was unchanged. HFD feeding in SCI rats enhanced salt and sucrose licking overall. Importantly, VSG reduced sucrose licking, with SCI rats showing greater sensitivity to this effect. cFos immunohistochemistry further revealed enhanced neuronal activation to sucrose ingestion in the dorsal vagal complex, including the rostral subnucleus of the nucleus of the solitary tract. Discussion and Conclusions: Together, these findings support the hypothesis that SCI alters taste functions, thereby increasing vulnerability to diet-induced obesity and that VSG may restore sweet taste responsivity even more effectively in SCI-associated obesity than in non-SCI obesity. Future studies are needed to clarify the neural and hormonal mechanisms mediating these effects and to determine their translational relevance to human SCI populations. Full article
(This article belongs to the Section Nutrition and Obesity)
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17 pages, 563 KB  
Article
Reduced Fat Taste Sensitivity and Its Association with Childhood Obesity in Tunisian Children: A Cross-Sectional Study
by Rym Ben Othman, Inchirah Karmous, Farah Aissa, Halil İbrahim Ceylan, Youssef Zanina, Henda Jamoussi, Nicola Luigi Bragazzi and Ismail Dergaa
Nutrients 2025, 17(19), 3095; https://doi.org/10.3390/nu17193095 - 29 Sep 2025
Cited by 4 | Viewed by 2614
Abstract
Background: Childhood obesity is a growing public health challenge, with altered taste perception potentially influencing food choices and contributing to weight gain. Objective: To determine detection thresholds for linoleic acid (fat taste) and sucrose (sweet taste) in children aged 6–12 years, and to [...] Read more.
Background: Childhood obesity is a growing public health challenge, with altered taste perception potentially influencing food choices and contributing to weight gain. Objective: To determine detection thresholds for linoleic acid (fat taste) and sucrose (sweet taste) in children aged 6–12 years, and to explore associations with obesity, dietary intake, and food preferences. Methods: In this cross-sectional study, 100 Tunisian children (mean age: 8.05 ± 1.44 years; 54% girls; 45 obese, 55 non-obese) were recruited from an educational support center in Nabeul. Taste sensitivity was evaluated using the 3-alternative forced choice (3-AFC) method with ascending concentrations of linoleic acid (0.018–12.0 mM) for fat taste and sucrose (0.00125–0.32 mol/L) for sweet taste. Participants were categorized as tasters or non-tasters based on detection thresholds. Anthropometric measurements, 24 h dietary recalls, food frequency questionnaires, and food preference assessments were also conducted. Results: Low taste sensitivity was common (93% for sweet, 49% for fat). Girls were more often fat tasters than boys (68.6% vs. 31.4%, p = 0.003). Children with obesity had higher fat taste thresholds (median 3.00 mM, range 0.37–12.0) than non-obese peers (median 1.50 mM, range 0.018–6.0; p = 0.012), indicating reduced fat taste sensitivity. Linear regression showed a significant positive association between fat taste threshold and BMI (p = 0.001), meaning higher detection thresholds corresponded to higher BMI. Sweet taste thresholds did not differ significantly between children with and without obesity (p = 0.731). Sweet non-tasters consumed more sucrose (85.9 ± 64.9 g/d vs. 70.3 ± 62.3 g/d; p = 0.033) and reported more frequent table sugar use (p = 0.047). Fat non-tasters consumed more magnesium (425 ± 414 mg/d vs. 287 ± 60.8 mg/d; p = 0.026) and fiber (22.9 ± 7.51 g/d vs. 20.3 ± 5.32 g/d; p = 0.048) and reported higher intake frequencies of cheese (p = 0.039), sour cream (p = 0.004), and fast food (p = 0.012). Food preferences reflected similar patterns, with non-tasters generally rating high-fat or high-sugar foods more favorably. While most children demonstrated high detection thresholds, girls showed significantly higher fat taste sensitivity compared to boys (p = 0.03). Children with obesity exhibited significantly higher fat taste detection thresholds compared to non-obese children (p = 0.012), with thresholds ranging from 0.37 to 12.0 mM versus 0.018 to 6.0 mM, respectively. No significant difference was observed for sweet taste perception between weight groups (p = 0.731). Conclusions: Nearly half of the children exhibited reduced fat taste sensitivity, which was moderately associated with obesity and positively linked to BMI. Full article
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17 pages, 3245 KB  
Article
Integrating Sensory Evaluation, Electronic Nose, and Metabolomics to Characterize Aroma in Peach and Nectarine Varieties
by Meng Sun, Julin Ma, Zhixiang Cai, Juan Yan, Ruijuan Ma, Mingliang Yu, Yinfeng Xie and Zhijun Shen
Foods 2025, 14(17), 3087; https://doi.org/10.3390/foods14173087 - 2 Sep 2025
Cited by 4 | Viewed by 1607
Abstract
This study investigates the aroma differences among various peach and nectarine varieties by sensory evaluation, electronic nose (E-nose) analysis, and metabolomics. Peach is a significant fruit crop in China, and identifying unique fragrances is essential for germplasm selection and cultivar improvement. Six peach [...] Read more.
This study investigates the aroma differences among various peach and nectarine varieties by sensory evaluation, electronic nose (E-nose) analysis, and metabolomics. Peach is a significant fruit crop in China, and identifying unique fragrances is essential for germplasm selection and cultivar improvement. Six peach and nectarine varieties were collected from the National Peach Germplasm Repository in Nanjing, China. Sensory evaluation revealed significant differences in aroma and taste, with ”Zi Jin Hong 3” and “Bai Mi Pan Tao” showing high scores for aroma, sweetness, and overall sensory quality, while “Tachibanawase” had the lowest overall impression score. E-nose analysis showed distinct response values among varieties, with sensors W1S, W1W, and W5S exhibiting the highest sensitivity. GC-MS identified 446 metabolites, including esters and terpenes. PCA and OPLS-DA differentiated metabolite profiles among varieties, revealing significant differences in metabolite expression. The integration of these techniques provides a comprehensive understanding of aroma differences, highlighting the potential for identifying unique germplasms for breeding high-quality cultivars with charming flavor, and offering a theoretical foundation for raw material selection and process optimization in the deep-processing industry of peach fruits in future research. Full article
(This article belongs to the Section Plant Foods)
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24 pages, 2067 KB  
Article
Effect of Wine Yeast (Saccharomyces sp.) Strains on the Physicochemical, Sensory, and Antioxidant Properties of Plum, Apple, and Hawthorn Wines
by František Lorenc, Markéta Jarošová, Jan Bedrníček, Vlastimil Nohejl, Eliška Míková and Pavel Smetana
Foods 2025, 14(16), 2844; https://doi.org/10.3390/foods14162844 - 16 Aug 2025
Cited by 8 | Viewed by 2714
Abstract
Fruit wines have become a popular alternative to grape wines for their variability of sensory properties and unique chemical profiles, offering interesting biological activities. Winemaking also utilizes fruits, which are usually sensitive to biological deterioration, thus reducing post-harvest losses. The quality of wines [...] Read more.
Fruit wines have become a popular alternative to grape wines for their variability of sensory properties and unique chemical profiles, offering interesting biological activities. Winemaking also utilizes fruits, which are usually sensitive to biological deterioration, thus reducing post-harvest losses. The quality of wines depends on the fermentation conditions, including the wine yeast selection. In this study, we observed the effect of three common Saccharomyces wine yeast strains on the physicochemical characteristics (color, pH, ethanol content), antioxidant potential (total polyphenol content—TPC, DPPH, and ABTS antioxidant assays), and sensory properties and their relations within plum, apple, and hawthorn wines. Generally, we observed quite-wide ranges in physicochemical properties (pH: 2.8–3.8, ethanol content: 9.0–16.2%) and antioxidant potential parameters (TPC: 0.5–2.4 mg/GAE, DPPH: 0.3–1.4 mg/AAE, 0.5–3.0 mg/AAE), which were affected by the fruit, yeast, and sampling term. The yeast strain significantly affected physicochemical properties and the antioxidant potential on a minor scale. The highest impact of yeast was observed within sensory analyses, where the hawthorn and apple wines fermented by yeast strain Fruit Red exhibited a different sensory profile than those fermented by the Buket and Special strains. A positive correlation between antioxidant potential parameters and their relationship with wine color was confirmed. Moreover, the overall acceptability grew with sweet taste intensity, and panelists preferred wines with lower ethanol content. In general, this study proved the significant impact of wine yeast strain selection on certain qualitative parameters of fruit wines. Full article
(This article belongs to the Special Issue Winemaking: Innovative Technology and Sensory Analysis)
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18 pages, 1308 KB  
Article
The Influence of Mediterranean and Western Dietary Patterns on Sensory Perception and Taste Sensitivity: A Study Among University Students
by Ghazal Zolfaghari, María José Castro-Alija, María Laguillo Diaz, Luis Carlos Ramón-Carreira, José María Jiménez and Irene Albertos
Foods 2025, 14(16), 2827; https://doi.org/10.3390/foods14162827 - 15 Aug 2025
Cited by 2 | Viewed by 1991
Abstract
This study examines the relationship between dietary patterns, specifically the Mediterranean diet (MD) and the Western diet (WD), and sensory perception among nursing students at the University of Valladolid, Spain. The study aims to understand how these dietary patterns affect taste sensitivity and [...] Read more.
This study examines the relationship between dietary patterns, specifically the Mediterranean diet (MD) and the Western diet (WD), and sensory perception among nursing students at the University of Valladolid, Spain. The study aims to understand how these dietary patterns affect taste sensitivity and preferences, contributing to the fields of nutrition and sensory science. Materials and Methods: A total of 41 students participated in this study, following ethical guidelines. Food-grade materials such as refined salt, sucrose, monosodium glutamate, water, and breadsticks were used in sensory assessments. The study involved structured sensory evaluations along with dietary habit questionnaires. Sensory tests were conducted to measure taste perception, and statistical analyses were performed using IBM SPSS Statistics 25.0, with descriptive statistics and correlation analysis. Results: The findings revealed significant differences in taste perception across diet adherence levels. Specifically, higher adherence to the MD was associated with a higher perceived intensity and enjoyment of saltiness and umami, while a higher adherence to the WD showed a preference for sweetness. Significant correlations were found between diet adherence and taste enjoyment, with stronger positive associations for saltiness and umami under the MD. Conclusions: This study emphasized the impact of dietary habits on taste perception. Adherence to the MD enhanced sensitivity to moderate taste intensities, while adherence to the WD resulted in decreased perception at lower concentrations and heightened sensory responses at higher intensities. These results suggest that long-term dietary patterns influence taste receptor adaptation, potentially affecting food choices and overall health. Full article
(This article belongs to the Section Food Nutrition)
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14 pages, 635 KB  
Article
Sweet and Fat Taste Perception: Impact on Dietary Intake in Diabetic Pregnant Women—A Cross-Sectional Observational Study
by Inchirah Karmous, Rym Ben Othman, Ismail Dergaa, Halil İbrahim Ceylan, Cyrine Bey, Wissem Dhahbi, Amira Sayed Khan, Henda Jamoussi, Raul Ioan Muntean and Naim Akhtar Khan
Nutrients 2025, 17(15), 2515; https://doi.org/10.3390/nu17152515 - 31 Jul 2025
Cited by 7 | Viewed by 3520
Abstract
Background: Taste changes are common during pregnancy and can have a significant impact on dietary habits. Objective: This study aimed to investigate the influence of the perception of sweet and fat taste on diet in pregnant diabetic women. Methods: This [...] Read more.
Background: Taste changes are common during pregnancy and can have a significant impact on dietary habits. Objective: This study aimed to investigate the influence of the perception of sweet and fat taste on diet in pregnant diabetic women. Methods: This cross-sectional observational study included 66 pregnant women, 33 with gestational diabetes and 33 with pre-gestational type 2 diabetes. Taste perception tests were conducted to evaluate thresholds for detecting sweet and fatty tastes. Dietary surveys were used to assess daily nutrient intake, and various biochemical parameters, such as glycemia, HbA1c, and cholesterol, were analyzed. Results: The low-fat taster group (threshold > 0.75 mmol/L) included more patients with diabetes compared to those with gestational diabetes. All diabetic patients had low sucrose perception. Although pregnant women with gestational diabetes detected sweetness at high concentrations, pregnant women with diabetes detected it at lower concentrations (0.012 ± 0.023 mmol/L vs. 0.006 ± 0.005 mmol/L; p = 0.3). High-fat tasters exhibited elevated glycemia compared to low-fat tasters (6.04 ± 1.88 mmol/L vs. 7.47 ± 3.4 mmol/L; p = 0.03). They also had higher cholesterol (p = 0.04) and lower HDL-C levels (4.96 ± 1.04 mmol/L vs. 1.36 ± 0.29 mmol/L; p = 0.03). High-fat tasters showed more frequent daily consumption of oil, butter, cheese, and chocolate. The highly sweet tasters had higher cholesterol levels and lower LDL levels. Individuals who reported being highly sensitive to sweet taste consumed more daily oil, sweetened yogurt, or cream desserts, as well as white sugar. Conclusions: These findings indicate that altered sensitivity to fat and sweet tastes is associated with different dietary habits and metabolic profiles in pregnant women with diabetes. Specifically, reduced sensitivity to the taste of fat is associated with higher consumption of high-fat foods and poorer lipid profiles. In contrast, sensitivity to sweet taste correlates with an increased intake of sugary and fatty foods. Understanding these taste-related behaviors can help develop personalized nutritional strategies to improve metabolic control and maternal–fetal outcomes in this high-risk group. Full article
(This article belongs to the Section Nutrition and Diabetes)
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28 pages, 3298 KB  
Review
Comprehensive New Insights into Sweet Taste Transmission Mechanisms and Detection Methods
by Yuanwei Sun, Shengmeng Zhang, Tianzheng Bao, Zilin Jiang, Weiwei Huang, Xiaoqi Xu, Yibin Qiu, Peng Lei, Rui Wang, Hong Xu, Sha Li and Qi Zhang
Foods 2025, 14(13), 2397; https://doi.org/10.3390/foods14132397 - 7 Jul 2025
Cited by 8 | Viewed by 6231
Abstract
Sweet taste plays a pivotal role in human dietary behavior and metabolic regulation. With the increasing incidence of metabolic disorders linked to excessive sugar intake, the development and accurate evaluation of new sweeteners have become critical topics in food science and public health. [...] Read more.
Sweet taste plays a pivotal role in human dietary behavior and metabolic regulation. With the increasing incidence of metabolic disorders linked to excessive sugar intake, the development and accurate evaluation of new sweeteners have become critical topics in food science and public health. However, the structural diversity of sweeteners and their complex interactions with sweet taste receptors present major challenges for standardized sweetness detection. This review offers a comprehensive and up-to-date overview of sweet taste transmission mechanisms and current detection methods. It outlines the classification and sensory characteristics of both conventional and emerging sweeteners, and explains the multi-level signaling pathway from receptor binding to neural encoding. Key detection techniques, including sensory evaluation, electronic tongues, and biosensors, are systematically compared in terms of their working principles, application scope, and limitations. Special emphasis is placed on advanced biosensing technologies utilizing receptor–ligand interactions and nanomaterials for highly sensitive and specific detection. Furthermore, an intelligent detection framework integrating molecular recognition, multi-source data fusion, and artificial intelligence is proposed. This interdisciplinary approach provides new insights and technical solutions to support precise sweetness evaluation and the future development of healthier food systems. Full article
(This article belongs to the Special Issue Novel Insights into Food Flavor Chemistry and Analysis)
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12 pages, 5362 KB  
Article
Effect of Annealing Treatment on Sensing Response of Inorganic Film Taste Sensor to Sweet Substances
by Tomoki Shinta, Hidekazu Uchida and Yuki Hasegawa
Sensors 2025, 25(6), 1859; https://doi.org/10.3390/s25061859 - 17 Mar 2025
Cited by 1 | Viewed by 1052
Abstract
The effect of annealing treatment on an inorganic film for taste sensors has not been fully elucidated. In this study, we developed an inorganic film taste sensor using SnO2 as a sensitive film and evaluated the effect of annealing treatment on its [...] Read more.
The effect of annealing treatment on an inorganic film for taste sensors has not been fully elucidated. In this study, we developed an inorganic film taste sensor using SnO2 as a sensitive film and evaluated the effect of annealing treatment on its sensing response to sweet substances. First, we confirmed from XRD patterns that annealing at 600 °C caused a change in crystal orientation. Next, the taste sensor response to acesulfame potassium solution, which is a high-intensity sweetener and an electrolyte, showed a negative response with high concentration dependence. On the other hand, the sensors exhibited a positive response to non-electrolytes such as aspartame and glucose, with the sensor annealed at 600 °C showing a larger response to non-electrolytes compared to the other sensors. In terms of concentration dependence, the response to aspartame was higher, whereas the response to glucose was lower. Also, a reduction in variability was observed after annealing treatment at 150 °C and 300 °C. This phenomenon was clarified by comprehensively investigating various properties. Full article
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11 pages, 2745 KB  
Communication
Fluorescence Detection of 4-Hydroxy-2,5-dimethyl-3(2H)-furanone Based on Fluorescence Resonance Energy Transfer and Competitive Host–Guest Recognition
by Xiaowan Zhang, Chenchen Wang, Yurong Zhuang, Dingzhong Wang, Peng Li, Shihao Sun and Wei Wei
Chemosensors 2025, 13(3), 110; https://doi.org/10.3390/chemosensors13030110 - 16 Mar 2025
Viewed by 1787
Abstract
Sweetening compounds are commonly incorporated into food products to enhance their texture and flavor, thereby indicating product quality. 4-Hydroxy-2,5-dimethyl-3(2H)-furanone (HDMF) is a sweet aromatic compound characterized by its pineapple-like baking scent. While it serves as a taste enhancer in various industries, including wine [...] Read more.
Sweetening compounds are commonly incorporated into food products to enhance their texture and flavor, thereby indicating product quality. 4-Hydroxy-2,5-dimethyl-3(2H)-furanone (HDMF) is a sweet aromatic compound characterized by its pineapple-like baking scent. While it serves as a taste enhancer in various industries, including wine production and soy sauce manufacturing, HDMF also exhibits DNA-damaging activity in foods. In this study, a fluorescence detection method based on fluorescence resonance energy transfer (FRET) for the sensitive detection of HDMF was developed. Initially, gold nanoparticles were deposited onto the surface of Fe3O4 to create fluorescence-quenching materials. Subsequently, thiol-functionalized β-cyclodextrin (SH-β-CD) was modified to provide cavities that allow the fluorescent dye rhodamine 6G (R6G) to enter. The fluorescence of R6G remains quenched until HDMF is present because it will compete with R6G for binding sites within the SH-β-CD cavities through competitive host–guest recognition. Furthermore, the fluorescence intensity of R6G at 553 nm exhibited a strong linear correlation with the logarithmic value of HDMF concentration over a range from 5 × 10−7 M to 10−4 M. This rapid and sensitive fluorescence detection strategy rooted in FRET and competitive host–guest recognition demonstrated significant potential for detecting HDMF in food products. Full article
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17 pages, 1656 KB  
Review
Artificial Taste: Advances and Innovative Applications in Healthcare
by Letao Wang, Yuzhang Li, Yao Zhang and Bin Zheng
Appl. Sci. 2025, 15(2), 545; https://doi.org/10.3390/app15020545 - 8 Jan 2025
Cited by 3 | Viewed by 7080
Abstract
Background: Scientists have recently developed a technology that induces artificial taste through electronic stimulation. However, scattered reports have made it difficult to comprehensively understand the technology’s details and appreciate its potential applications in healthcare. To address these gaps, a meta-review was conducted. We [...] Read more.
Background: Scientists have recently developed a technology that induces artificial taste through electronic stimulation. However, scattered reports have made it difficult to comprehensively understand the technology’s details and appreciate its potential applications in healthcare. To address these gaps, a meta-review was conducted. We re-viewed the current literatures on the technology behind artificial taste. Targeted original research papers were analyzed, with data extracted to address five key aspects: interface design, stimulation parameters, sensation verification results, applications to health problems, and potential side effects in human subjects. Results: A total of 19 relevant papers were identified. Eight studies focused on tongue-tip electrode interfaces, while others integrated technology into eating utensils. Eleven studies examined stimulation frequencies (50–1000 Hz), with five altering temperature and two changing water color to enhance taste perception. Only six studies reported verification results, showing that most participants perceived sour and salty tastes, mild bitter responses, and unreliable sweet evocation. Sixteen papers discussed applications in healthcare (dietary and weight management), entertainment (food and beverage sampling), and education. Side effects included reduced sensitivity after repeated trials and occasional discomfort from excessive stimulation, though no immediate tissue damage was reported. Conclusions: Artificial taste technology offers an innovative approach to managing food and beverage intake without compromising taste sensations. When applied on a large scale, it holds significant potential for regulating eating behaviors and providing novel strategies for addressing chronic health issues associated with diet. Full article
(This article belongs to the Section Computing and Artificial Intelligence)
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22 pages, 4656 KB  
Article
Field Performance of Tissue Culture and Standard Propagated Raspberry Under Different Irrigation Regimes
by Tatjana Anđelić, Jelena Tomić, Boris Rilak, Žaklina Karaklajić-Stajić, Jasminka Milivojević, Dragan Radivojević and Tatjana Vujović
Horticulturae 2025, 11(1), 23; https://doi.org/10.3390/horticulturae11010023 - 1 Jan 2025
Cited by 1 | Viewed by 3019
Abstract
Healthy plant material that is uniform and genetically pure is essential for the successful raspberries production since it guarantees quality and consistent yields. A 4-year study (2018–2021) focused on raspberry cultivars “Meeker” and “Willamette”, which were propagated by tissue culture (MpP) and root [...] Read more.
Healthy plant material that is uniform and genetically pure is essential for the successful raspberries production since it guarantees quality and consistent yields. A 4-year study (2018–2021) focused on raspberry cultivars “Meeker” and “Willamette”, which were propagated by tissue culture (MpP) and root suckering (RsP) methods in three irrigation regimes (IR1-100% ETc, IR2-50% ETc, and IR3-25% ETc). “Meeker” had longer primocanes, higher productivity, sweetness, soluble solids, and sugar content in IR1. Micropropagated plants demonstrated initially longer primocanes (177.9 cm in 2018 and 203.5 cm in 2019) and slightly better productivity compared to root-suckered plants. Over time, the growth rates of plants obtained by two vegetative propagation methods became similar. The IR1 irrigation regime maximized yields per floricane and meter of trellis in 2019 and 2021 (619.8 and 501.9 g and 2.5 and 2.0 kg, respectively), providing sufficient water for raspberry plants. IR1 improved primocane height in 2018 and 2021 (181.3 and 238.3 cm), fruiting lateral length (31 cm), and number of flowers per fruiting lateral (10.7) in 2021. In all experimental years, “Meeker” showed a high sweetness index (8.53, 11.28, and 9.36) due to high sugar and low acid content, but it was sensitive to water deficit. “Willamette” maintained high total anthocyanins and stable sugar content, which emphasizes its adaptability to different conditions. Both cultivars showed high antioxidant activity with variability across study years. Antioxidant activity peaked in 2019 under all irrigation regimes and remained stable in 2021. The cultivar “Meeker” excelled in vegetative growth, productivity, and fruit taste, making it suitable for obtaining high yields in a 100% ETc irrigation level. In contrast, “Willamette” is better suited for obtaining high-quality fruit under water-limited conditions. Full article
(This article belongs to the Special Issue Advances in Tree Crop Cultivation and Fruit Quality Assessment)
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