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Keywords = fruit peel dietary fiber

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28 pages, 12658 KB  
Review
Advances in Dietary Fiber: Classification, Functional Properties, Interactions, and Valorization of Dietary Fiber from Food Processing By-Products
by Xue Chen, Khalid Amin, Peng Liu, Xiaochun Yu, Hongling Fu and Ming Li
Foods 2026, 15(16), 2826; https://doi.org/10.3390/foods15162826 - 13 Aug 2026
Viewed by 374
Abstract
During food processing, large quantities of by-products are generated, including seeds, fruit peels, pomace, shells, and other plant-derived residues. These by-products are usually rich in dietary fiber (DF) and possess significant potential for nutritional and functional applications. Dietary fiber plays an important role [...] Read more.
During food processing, large quantities of by-products are generated, including seeds, fruit peels, pomace, shells, and other plant-derived residues. These by-products are usually rich in dietary fiber (DF) and possess significant potential for nutritional and functional applications. Dietary fiber plays an important role in maintaining human health and reducing the risk of cardiovascular disease, diabetes, and other non-communicable diseases. At the same time, the incorporation of dietary fiber into food systems can effectively improve the physicochemical properties of foods and enhance their functional characteristics. This article reviews the research progress on dietary fiber derived from food processing by-products, with a focus on the interactions between dietary fiber and other functional components in foods, as well as its potential effects on human health. In addition, this article summarizes and analyzes the current applications of food processing by-product-derived dietary fiber in traditional food processing, functional foods, and other emerging food-related fields and discusses its future development directions. This review aims to provide a theoretical reference for the high-value utilization of dietary fiber derived from food processing by-products. This review emphasizes that dietary fiber derived from different food processing by-products exhibits diverse compositional characteristics and functional potential, and its functional properties are closely associated with the original sources and characteristics of the raw materials. Reasonable utilization of food processing by-products can provide new avenues for the development of high-value functional food ingredients and sustainable food materials. Full article
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16 pages, 785 KB  
Communication
Proximate Composition, Antioxidant Capacity, and Dietary Fiber Functional Properties of Pulp and Peel of Two Oenocarpus bataua Morphotypes from the Bolivian Amazon: Effects of Preservation Methods and Frozen Storage
by Rosa F. Zabalaga, Daniela Sejas Pérez, Brenda Fortunata Villena Vargas, Marcos Luján Pérez, Freddy S. Zenteno Ruiz and Daniel M. Larrea-Alcázar
Foods 2026, 15(16), 2819; https://doi.org/10.3390/foods15162819 - 13 Aug 2026
Viewed by 378
Abstract
Oenocarpus bataua Mart. (Arecaceae) (known as “majo” in Bolivia) is an Amazonian palm fruit with considerable potential for the development of functional foods; however, its rapid postharvest deterioration limits its utilization. This study evaluated the effects of preservation methods and frozen storage on [...] Read more.
Oenocarpus bataua Mart. (Arecaceae) (known as “majo” in Bolivia) is an Amazonian palm fruit with considerable potential for the development of functional foods; however, its rapid postharvest deterioration limits its utilization. This study evaluated the effects of preservation methods and frozen storage on the physicochemical properties of two morphotypes of its fruits (dark-purple and pale-colored). Proximate analysis of pulp and peel fractions revealed a lipid-rich composition, with crude lipid contents close to 49% (dry basis), moderate protein levels (7.1–9.7%), and crude fiber contents around 15%. Dietary fiber characterization showed exceptionally high total dietary fiber (61.6%), predominantly insoluble dietary fiber (56.3%) under short-term frozen storage. Fresh pulp exhibited high antioxidant capacity, as determined by the DPPH assay (2003–2070 µmol TE/g dry matter), while freeze-drying preserved significantly higher antioxidant activity than hot-air drying. Functional properties were strongly affected by storage duration, with water-holding capacity decreasing from (4.43–3.17) g H2O/g dry matter and swelling capacity from 13.95 to 9.62 mL H2O/g dry matter after prolonged freezing. FTIR spectroscopy confirmed the presence of characteristic polysaccharide and lignocellulosic structures and indicated structural disruption of the insoluble fiber matrix during long-term storage. These findings support the use of Bolivian majo as a promising source of functional ingredients and provide a basis for developing value-added Amazonian food products and optimizing preservation strategies. Full article
(This article belongs to the Section Food Engineering and Technology)
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27 pages, 4424 KB  
Review
Food Industry By-Products as Natural Preservatives: Supporting Adolescent Food Literacy and Critical Food Choices
by Paula Silva
Nutrients 2026, 18(12), 1859; https://doi.org/10.3390/nu18121859 - 9 Jun 2026
Viewed by 402
Abstract
This review aims to critically examine food industry by-products as potential sources of natural preservatives and to discuss how this evidence can be translated into adolescent food literacy, label interpretation, and critical food choices. Adolescents are increasingly exposed to food labels and claims [...] Read more.
This review aims to critically examine food industry by-products as potential sources of natural preservatives and to discuss how this evidence can be translated into adolescent food literacy, label interpretation, and critical food choices. Adolescents are increasingly exposed to food labels and claims about “natural,” “clean-label,” “upcycled,” “sustainable,” and “circular” foods, which may not always be transparent or supported by sufficient evidence regarding their safety, efficacy, sensory quality, consumer acceptance, or environmental benefit. Therefore, they need more than nutritional information; they need to interpret labels, question sustainability claims, and understand how food innovations are produced, tested, communicated, and regulated. Food by-products such as fruit and vegetable pomaces, peels, seeds, skins, olive and wine residues, cereal by-products, coffee silverskin, and cocoa residues are promising resources for clean-label preservation and circular food systems because they may contain phenolics, flavonoids, carotenoids, anthocyanins, essential oils, pectin, dietary fibers, and other compounds with antioxidant, antimicrobial, coloring, stabilizing, and texturizing properties. However, the bioactive potential alone does not guarantee that a by-product-derived ingredient is safe, effective, acceptable, scalable, or sustainable. Its use requires extraction, stabilization, real-food validation, safety assessment, sensory optimization, regulatory compliance, and sustainability evaluation. The review concludes that by-product-derived natural preservatives are both technological resources and educational tools. Future research and education should connect food preservation, label interpretation, food safety, sensory quality, sustainability evidence, and consumer decision-making to empower adolescents as critical consumers and informed agents of change in sustainable food systems. Full article
(This article belongs to the Section Nutrition and Public Health)
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22 pages, 933 KB  
Article
Citrus Peel Flours: From Residues to Bioactive Ingredients for Food Applications
by Daniele Sales, Tiane C. Finimundy, Jessica Ribeiro, Sandrina Heleno, Filipa Mandim, Marina Kostić, Marina Soković, Lillian Barros, Cristina Caleja and Eliana Pereira
Molecules 2026, 31(10), 1673; https://doi.org/10.3390/molecules31101673 - 15 May 2026
Viewed by 963
Abstract
The high consumption of citrus fruits generates large amounts of peel bioresidues, whose valorization represents an important strategy for sustainable agri-food systems. This study aimed to characterize the nutritional, chemical, and bioactive properties of flours obtained from orange (FL), tangerine (FT), lime (FLA), [...] Read more.
The high consumption of citrus fruits generates large amounts of peel bioresidues, whose valorization represents an important strategy for sustainable agri-food systems. This study aimed to characterize the nutritional, chemical, and bioactive properties of flours obtained from orange (FL), tangerine (FT), lime (FLA), and lemon (FLO) peels, and to evaluate their potential as functional food ingredients. The flours were evaluated for proximate composition, organic acids, phenolic compounds, fatty acids, free sugars, and bioactive properties. Lime flour showed the highest protein, ash, dietary fiber, and total phenolic contents, with hesperidin identified as the predominant compound. The corresponding extracts exhibited relevant antioxidant, antimicrobial, antiproliferative, and nitric oxide (NO) production inhibitory activities, with lime flour presenting the strongest overall bioactive potential. Based on these results, lime flour was selected for application in a food model by partially replacing wheat flour (10% and 20%) in “Madalenas”, a traditional Portuguese muffin cake. The incorporation of lime flour improved product preservation compared with the control formulation and samples containing a synthetic preservative (potassium sorbate). These findings highlight the potential of citrus peel flours, particularly lime flour, as natural functional ingredients and sustainable alternatives for food formulations, contributing to waste valorization and circular economy approaches in the agri-food sector. Full article
(This article belongs to the Special Issue Natural Bioactives and Functional Ingredients in Foods)
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35 pages, 3159 KB  
Review
Recent Advances in the Development of Active and Intelligent Packaging Films Using Fruit Peel Powders
by Nianfeng Zhang, Bilal Ahmad, Fengfeng Xu and Jun Liu
Foods 2026, 15(1), 162; https://doi.org/10.3390/foods15010162 - 3 Jan 2026
Cited by 4 | Viewed by 2585
Abstract
Fruit peels, a primary fruit processing by-product, are rich in biodegradable polymers (e.g., dietary fibers and proteins) and bioactive substances (e.g., polyphenols, essential oils, and pigments) that are suitable for producing active and intelligent packaging films. In recent years, there is a new [...] Read more.
Fruit peels, a primary fruit processing by-product, are rich in biodegradable polymers (e.g., dietary fibers and proteins) and bioactive substances (e.g., polyphenols, essential oils, and pigments) that are suitable for producing active and intelligent packaging films. In recent years, there is a new trend to utilize fruit peels in the form of powders for film production, which aligns with circular economy principles. In general, fruit peel powders (FPPs) can function as rigid fillers and the polymer matrix in packaging films, forming FPP-filled and FPP-based films, respectively. These two film types exhibit distinct characteristics: FPP-filled films typically have a compact structure with strong molecular interactions, leading to superior mechanical and barrier properties. Conversely, FPP-based films often display a cracked structure with weaker molecular interactions, resulting in inferior mechanical and barrier properties. Despite these differences, both film types demonstrate excellent antioxidant and antimicrobial activities, pH sensitivity, and biodegradability, as well as considerable promise for active and intelligent packaging. This review comprehensively summarizes the preparation methods, structural characteristics, physical and functional properties, and active and intelligent packaging potential of both film types. It also features a multi-dimensional comparison of FPP-filled and FPP-based films’ performance and a discussion of their current challenges and future directions. Full article
(This article belongs to the Special Issue Active and Intelligent Food Packaging for the Food Industry)
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19 pages, 1035 KB  
Article
Cydonia oblonga Mill. (Quince) Peel as a Functional Food Ingredient in Gluten-Free Sorghum Muffins: Effects on Nutritional, Technological, and Sensory Properties
by Dilek Demirbuker Kavak, Bilge Akdeniz and Betül Aslan Yılmaz
Processes 2025, 13(12), 3915; https://doi.org/10.3390/pr13123915 - 3 Dec 2025
Cited by 2 | Viewed by 1023
Abstract
The technological limitations of gluten-free flours, including weak structure and low elasticity, negatively impact the sensory quality and consumer acceptance of the final product. Incorporating quince peel, a source of fiber and bioactive compounds, may enhance the nutritional and textural profile while improving [...] Read more.
The technological limitations of gluten-free flours, including weak structure and low elasticity, negatively impact the sensory quality and consumer acceptance of the final product. Incorporating quince peel, a source of fiber and bioactive compounds, may enhance the nutritional and textural profile while improving key sensory attributes such as flavor and mouthfeel. This study aimed to valorize quince peel powder (QP), a fruit-processing by-product, by incorporating it (0%, 6%, 12%, 18%) into gluten-free sorghum muffins to enhance their nutritional profile and assess its impact on their technological and sensory properties. Phenolic characterization revealed that QP was rich in phenolics (337.1 μg/g), predominantly chlorogenic acid (54.5%). The 18% QP formulation increased the dietary fiber content by 80.8% and improved antioxidant activity by 23.3% relative to the control muffins. Image processing analysis of the crumb structure showed that QP created a uniform texture while moderately reducing air cell volume. Texture profile analysis revealed that increasing QP levels resulted in higher hardness and lower springiness. Quantitative descriptive analysis combined with multivariate analysis indicated that the 6–12% QP formulations were the most acceptable in terms of key sensory attributes. These results demonstrate the successful valorization of quince peel as a functional ingredient in sorghum muffins, enhancing nutritional and textural properties while maintaining structural integrity. Full article
(This article belongs to the Special Issue The Advances in Food Processing and Functional Food)
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20 pages, 2628 KB  
Article
Impact of Mango Bagasse and Peel Confectionery Rich in Dietary Fiber on Gut Microbiota, Metabolite Profiles, and Genetic Regulation in High-Fat-Diet-Fed Wistar Rats
by Yuritzi Barbosa, Marcela Gaytán-Martínez, Rocio Alejandra Chavez-Santoscoy, Erika Magallón-Gayón, Silvia Hinojosa-Alvarez, Adriana Chico-Peralta, Marcos de Donato and Aurea K. Ramírez-Jiménez
Nutrients 2025, 17(23), 3780; https://doi.org/10.3390/nu17233780 - 2 Dec 2025
Cited by 1 | Viewed by 1407
Abstract
Background/Objectives: Insufficient dietary fiber intake contributes to gut microbiota dysbiosis, systemic inflammation, and the onset of obesity-related metabolic disorders. Agro-industrial by-products have emerged as sustainable sources to restore microbial and metabolic balance. This study aimed to evaluate the effects of a mango bagasse- [...] Read more.
Background/Objectives: Insufficient dietary fiber intake contributes to gut microbiota dysbiosis, systemic inflammation, and the onset of obesity-related metabolic disorders. Agro-industrial by-products have emerged as sustainable sources to restore microbial and metabolic balance. This study aimed to evaluate the effects of a mango bagasse- and peel-based confectionery (MC) on gut microbiota composition, short-chain fatty acids (SCFAs), and hepatic gene expression in Wistar rats fed either a standard diet (STD) or a high-fat diet (HFD). Methods: Twenty-four rats were randomly assigned to four groups (STD, MC-STD, HFD, MC-HFD) and treated for 11 weeks. Eating behavior, body composition, microbiota composition, SCFAs, and hepatic transcriptomics were evaluated. Results: MC supplementation did not significantly alter weight gain or SCFA levels but shifted clustering patterns in principal component analysis, indicating a distinct dietary response. Microbiota analysis revealed a trend toward lower relative abundances of obesogenic species such as Phascolarctobacterium faecium and Ruminococcus torques, while Intestimonas butyriciproducens and Anaerostipes hadrus were modulated according to diet type. Transcriptomic profiling demonstrated consistent downregulation of lipid metabolism–related genes (Cyp4a14, Hmgcs1, Cyp51, Fads1), linked to PPAR signaling pathways. Conclusions: MC supplementation may beneficially modulate the gut–liver axis and highlights the nutritional potential of fruit by-products as functional ingredients to promote metabolic health under high-fat dietary conditions. Full article
(This article belongs to the Special Issue Advances in Gene–Diet Interactions and Human Health)
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33 pages, 912 KB  
Review
Green Extraction of Bioactive Compounds from Plant-Based Agri-Food Residues: Advances Toward Sustainable Valorization
by Samanta Shiraishi Kagueyam, José Rivaldo dos Santos Filho, Alex Graça Contato, Cristina Giatti Marques de Souza, Rafael Castoldi, Rúbia Carvalho Gomes Corrêa, Carlos Adam Conte Junior, Natália Ueda Yamaguchi, Adelar Bracht and Rosane Marina Peralta
Plants 2025, 14(23), 3597; https://doi.org/10.3390/plants14233597 - 25 Nov 2025
Cited by 43 | Viewed by 3837
Abstract
Agri-food residues have accumulated globally at unprecedented scales, generating environmental pressures and resource inefficiencies, a core problem addressed in this review, while simultaneously representing rich, underutilized reservoirs of health-promoting phytochemicals. This review synthesizes recent advances (2016–2025) in the green extraction, characterization, and biological [...] Read more.
Agri-food residues have accumulated globally at unprecedented scales, generating environmental pressures and resource inefficiencies, a core problem addressed in this review, while simultaneously representing rich, underutilized reservoirs of health-promoting phytochemicals. This review synthesizes recent advances (2016–2025) in the green extraction, characterization, and biological validation of phytochemicals from plant-based residues, including polyphenols, flavonoids, carotenoids, alkaloids, and dietary fibers from key sources such as grape pomace, citrus peels, coffee silverskin, pomegranate peel, cereal brans, and tropical fruit by-products. Emphasis is placed on sustainable extraction methods: ultrasound-assisted extraction (UAE), microwave-assisted extraction (MAE), pressurized liquid extraction (PLE), supercritical CO2 extraction (SFE), and natural deep eutectic solvents (NADES), which enable efficient recovery while minimizing environmental impact. In vitro, in vivo, and clinical studies demonstrate that residue-derived compounds exert antioxidant, anti-inflammatory, metabolic-regulating, and prebiotic effects, contributing to health in general and gut microbiota modulation. Integrating these bioactives into functional foods and nutraceuticals supports sustainable nutrition and circular bioeconomy goals by reducing food waste and promoting health-oriented valorization. Regulatory advances, including approvals from the European Food Safety Authority (EFSA) and the U.S. Food and Drug Administration (FDA) for ingredients such as olive phenolics, citrus flavanones, and coffee cascara, further illustrate increasing translational readiness. The convergence of green chemistry, biorefinery design, and nutritional science positions agri-food residues as pivotal resources for future health-promoting and environmentally responsible diets. Remaining challenges include scaling cost-effective green processes, harmonizing life cycle assessment protocols, expanding toxicological datasets, and conducting longer-term clinical trials to support safe and evidence-based commercialization. Full article
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23 pages, 2087 KB  
Review
Research Progress on the Nutritional Components, Bioactivity, Health Effects, and Food Applications of Passion Fruit Peel (PFP)
by Liangjie Ba, Chenglin Luo, Xue Li, Sen Cao and Donglan Luo
Foods 2025, 14(19), 3397; https://doi.org/10.3390/foods14193397 - 30 Sep 2025
Cited by 8 | Viewed by 4400
Abstract
Passion fruit peel (PFP) is a common byproduct of industrial passion fruit processing, yet it serves as a valuable source of diverse bioactive compounds and nutrients. However, limited attention has been paid in the literature to the nutritional properties and practical applications of [...] Read more.
Passion fruit peel (PFP) is a common byproduct of industrial passion fruit processing, yet it serves as a valuable source of diverse bioactive compounds and nutrients. However, limited attention has been paid in the literature to the nutritional properties and practical applications of PFP. This review summarizes methods for extracting bioactive substances from PFP, examines their potential health benefits, and explores their prospects for utilization in the food industry. Recent studies have quantified various bioactive components, such as flavonoids, vitamins, and dietary fiber (DF), while reporting the corresponding extraction yields or concentrations. Furthermore, these compounds exhibit significant potential in promoting human health, including antioxidant, anti-inflammatory, and gut health-improving effects. The analysis also highlights the bioavailability of bioactive constituents in PFP. Consequently, PFP presents a promising yet underexplored area for scientific research, though substantial challenges remain in optimizing its utilization, enhancing extraction efficiency, and advancing innovative applications. Full article
(This article belongs to the Section Food Nutrition)
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21 pages, 858 KB  
Article
Nutrients, Phytochemicals, and In Vitro Antioxidant and Antimicrobial Activities of Lulo (Solanum quitoense Lam.) Fruit Pulp, Peel, and Seeds
by Mikel Añibarro-Ortega, Maria Inês Dias, Jovana Petrović, Alexis Pereira, Marina Soković, Lillian Barros and José Pinela
Foods 2025, 14(12), 2083; https://doi.org/10.3390/foods14122083 - 13 Jun 2025
Cited by 4 | Viewed by 3547
Abstract
Lulo or naranjilla (Solanum quitoense Lam.) is an Andean fruit with a sour and refreshing flavor, widely used in the preparation of juices and sweets. Despite its potential for international markets, it remains largely unknown outside its native regions, and most existing [...] Read more.
Lulo or naranjilla (Solanum quitoense Lam.) is an Andean fruit with a sour and refreshing flavor, widely used in the preparation of juices and sweets. Despite its potential for international markets, it remains largely unknown outside its native regions, and most existing studies have focused on the whole fruit or its juice. This study investigated the nutritional and phenolic profiles of the peel, pulp, and seeds of S. quitoense using official food analysis methods and chromatographic techniques. In addition, the in vitro antioxidant activity and antimicrobial effects against foodborne fungi and bacteria were assessed. The peel was rich in ascorbic acid (25.2 mg/100 g fw), α-tocopherol (7.9 mg/100 g fw), dietary fiber (16.5 g/100 g fw), macrominerals (Na, Ca, K), and flavonoids (14.2 mg/g extract); the pulp contained high levels of citric acid (4.22 g/100 g fw) and sucrose (2.7 g/100 g fw); and the seeds stood out for their contents of trace elements (Zn, Cu, Mn, Fe), oleic acid, and spermidine-derived phenolamides (37.8 mg/g extract). Hydroethanolic extracts showed antioxidant activity by inhibiting lipid peroxidation and oxidative hemolysis, with the seed extract exhibiting the strongest antifungal effect against Aspergillus versicolor, likely due to its high spermidine derivative content. These findings shed light on the potential of S. quitoense fruit for the development of functional foods, antioxidant-rich beverages, and nutraceutical products. Full article
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30 pages, 1212 KB  
Review
New Insights and Strategies in the Nutritional Reformulation of Meat Products Toward Healthier Foods
by Pablo Ayuso, Pascual García-Pérez and Gema Nieto
Molecules 2025, 30(12), 2565; https://doi.org/10.3390/molecules30122565 - 12 Jun 2025
Cited by 18 | Viewed by 5322
Abstract
Meat plays a key role in human nutrition, providing protein of high digestibility and essential micronutrients. However, according to the FAO and WHO, excessive consumption of red and processed meats may increase health risks due to their content of saturated fats, sodium, and [...] Read more.
Meat plays a key role in human nutrition, providing protein of high digestibility and essential micronutrients. However, according to the FAO and WHO, excessive consumption of red and processed meats may increase health risks due to their content of saturated fats, sodium, and E-number additives. For this reason, recent research has focused on the nutritional reformulation of meat products to develop functional and health-promoting alternatives that meet consumer expectations and respond to market trends for healthier and more sustainable foods. However, the addition or elimination of traditional ingredients in meat products leads to problems such as changes in texture, color, or sensory acceptability that must be solved. This review will focus on current reformulation strategies in the meat industry, including the reduction or replacement of animal fat with vegetable oils using technologies such as microencapsulation, or the elaboration of 3D gels using organogelants and hydrocolloids; the replacement of the umami flavor of salt with extracts from seafoods and mushrooms; the replacement of E-number additives with antioxidant and preservative extracts from plants and herbs; and the incorporation of dietary fiber through fruit peels and vegetable by-products. Full article
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16 pages, 3839 KB  
Article
Passion Fruit Seeds as a Functional Ingredient in Snack Bars: A Nutritional and Sustainable Approach
by Kezban Esen Karaca Çelik, Reyhan Irkin, Sema Çarıkçı, Simge Sipahi, Selinay Yakar, Cem Yaman and Ece Öneş
Foods 2025, 14(11), 1857; https://doi.org/10.3390/foods14111857 - 23 May 2025
Cited by 5 | Viewed by 6404
Abstract
Passion fruit (Passiflora edulis) is consumed worldwide, and its processing generates a substantial amount of waste, particularly from the seeds and peels. This study investigated the potential of valorizing passion fruit seeds by adding them to high-fiber snack bars. Seed-enriched snack [...] Read more.
Passion fruit (Passiflora edulis) is consumed worldwide, and its processing generates a substantial amount of waste, particularly from the seeds and peels. This study investigated the potential of valorizing passion fruit seeds by adding them to high-fiber snack bars. Seed-enriched snack bars were evaluated for their sensory qualities, antioxidant activities, and nutritional compositions. Seed addition markedly increased the dietary fiber content (from 4.17% to 5.66%), fat content (from 15.02% to 19.63%), and antioxidant activity (e.g., 83.38% vs. 82.47% DPPH inhibition at 50 ppm) compared to the control. This was mainly due to the presence of piceatannol, a potent bioactive molecule. The overall phenolic content decreased from 90.11 to 65.37 mg GAE/100 g, suggesting intricate matrix interactions. The control bars exhibited a higher overall acceptability score, whereas the seed bars remained within the acceptable sensory range and required only minor texture adjustments. Microbiological analyses confirmed that both formulations retained their safety for 7 days at +4 °C, with appropriate levels of yeast and total viable count and no mold growth. These results suggest that passion fruit seeds have the potential to be used as a sustainable functional food ingredient. Further research is warranted to improve the sensory qualities and shelf-life stability. Full article
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26 pages, 1591 KB  
Review
Apple Waste/By-Products and Microbial Resources to Promote the Design of Added-Value Foods: A Review
by Hiba Selmi, Ester Presutto, Martina Totaro, Giuseppe Spano, Vittorio Capozzi and Mariagiovanna Fragasso
Foods 2025, 14(11), 1850; https://doi.org/10.3390/foods14111850 - 22 May 2025
Cited by 10 | Viewed by 5757
Abstract
Apple fruit is among the most consumed fruits in the world, both in fresh and processed forms (e.g., ready-to-eat fresh slices, juice, jam, cider, and dried slices). During apple consumption/processing, a significant amount of apple residue is discarded. These residues can also be [...] Read more.
Apple fruit is among the most consumed fruits in the world, both in fresh and processed forms (e.g., ready-to-eat fresh slices, juice, jam, cider, and dried slices). During apple consumption/processing, a significant amount of apple residue is discarded. These residues can also be interesting materials to exploit, particularly for direct valorization in the design of added-value foods. In fact, apple waste/by-products are rich in essential components, including sugars, proteins, dietary fibers, and phenolic compounds, as they comprise apple peels, seeds, and pulp (solid residue of juice production). In this sense, the current review paper presents an overview of the nutritional composition of apple waste/by-products, and mainly apple pomace, highlighting their application in producing value-added products through microbial biotechnology. If appropriately managed, apple by-products can generate a variety of useful compounds required in food (as well as in feed, pharmaceutics, and bioenergy). Recent strategies for the synergic use of apple waste/by-products and microbial resources such as lactic acid bacteria and yeasts are discussed. This review contributes to defining a reference framework for valorizing apple waste/by-products from a circular economy perspective through the application of bioprocesses (e.g., fermentation), mainly oriented towards designing foods with improved quality attributes. Full article
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24 pages, 2830 KB  
Article
Nutritional, Phytochemical, and Biological Characterization of Peel, Pulp, and Seed Powder from the Fruits of Berberis mikuna and Berberis burruyacuensis: Potential as a Functional Ingredient
by Enzo Agustín Matteucci, María Eugenia Orqueda, Mariana Leal, María Inés Isla, Mario Simirgiotis, Iris Catiana Zampini, Oscar R. Dantur and María Alejandra Moreno
Plants 2025, 14(10), 1418; https://doi.org/10.3390/plants14101418 - 9 May 2025
Cited by 1 | Viewed by 1853
Abstract
Berberis mikuna Job. (common name “mikuna”) and Berberis burruyacuensis O.R. Dantur, S. Radice, E. Giordani and Papini (common name “sacha mikuna”) are endemic native plant species from northwestern Argentina. The aim of this work was to evaluate, for the first time, the potential [...] Read more.
Berberis mikuna Job. (common name “mikuna”) and Berberis burruyacuensis O.R. Dantur, S. Radice, E. Giordani and Papini (common name “sacha mikuna”) are endemic native plant species from northwestern Argentina. The aim of this work was to evaluate, for the first time, the potential of the pulp, seed, and peel powders from B. mikuna and B. burruyacuensis fruits as functional food ingredients, with the purpose of adding value to these native resources and promoting their sustainable use. All powders exhibited nutritional value due to their protein, lipid, fiber, and ash content, especially the seed powder. Phenolic compounds (including xanthone, phenolic esters, coumarins, flavonoids, tannins, and anthocyanins), alkaloids, amino acids, lipids, and vitamins, totaling 33 compounds, were identified in the pulp, seed, and peel of both Berberis fruits through UHPLC-PDA-ESI-QT-MS/MS. High anthocyanin content was observed in the pulp and peel, mainly in B. mikuna (195.55 ± 7.75 and 283.49 ± 6.55 g C3GE/100 g of powder, respectively), while tannins were abundant in the seeds (3.64 ± 0.11 and 6.09 ± 0.06 mg PB2/100 g of powder for B. mikuna and B. burruyacuensis, respectively). The powders exhibited antioxidant activity (ABTS•+; H2O2) and the capacity to inhibit enzymes related to metabolic syndrome, such as α-glucosidase, α-amylase, and lipase. These findings suggest the potential of B. mikuna and B. burruyacuensis fruit powders as functional food ingredients, dietary supplements, or natural functional colorants for foods and beverages. Full article
(This article belongs to the Section Phytochemistry)
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20 pages, 612 KB  
Review
Flavors of the Earth: Bioprospecting and Potential of Agricultural Ingredients in Yogurt Production with a Focus on Sustainability, Quality, and Technological Innovation
by Carlos Eduardo de Faria Cardoso, Sofia Terra Silva, Maria Eduarda Flores Trindade, Monique de Barros E. Campos, Adriano Gomes Cruz, Francine Albernaz T. Fonseca Lobo and Anderson Junger Teodoro
Foods 2025, 14(9), 1497; https://doi.org/10.3390/foods14091497 - 25 Apr 2025
Cited by 4 | Viewed by 2194
Abstract
There is a growing interest in promoting health and improving quality of life, which has led consumers to prefer foods that offer not only basic nutrition but also additional health benefits. In this space, yogurt has gained increasing attention due to its potential [...] Read more.
There is a growing interest in promoting health and improving quality of life, which has led consumers to prefer foods that offer not only basic nutrition but also additional health benefits. In this space, yogurt has gained increasing attention due to its potential to deliver bioactive compounds and improve overall consumer well-being. As a fermented dairy product consumed globally, yogurt serves as an effective dietary base for nutritional enhancement through the incorporation of a wide range of primary agricultural products, including fruits, vegetables, cereals, and their respective by-products, including peels, seeds, and pomace. This review provides an overview of recent advances in yogurt biofortification using primary agricultural matrices and agro-industrial by-products within the framework of sustainable food systems and the circular economy. Significant increases in antioxidant activity and final phytochemical content are observed after the addition of ingredients to yogurt. Enrichment with dietary fiber from fruit peels or pomace also improved syneresis control and viscosity of the products. The microbiological viability of probiotic strains was maintained or increased in most formulations, and sensory acceptance remained favorable with enriched yogurts. These findings highlight the potential of agricultural matrices to enhance yogurt functionality, promoting sustainability and reducing food waste. Full article
(This article belongs to the Special Issue Recent Advances in Functional Components in Plant-Based Foods)
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