Logomarca do periódico: Brazilian Journal of Food Technology

Open-access Brazilian Journal of Food Technology

Publicación de: Instituto de Tecnologia de Alimentos - ITAL
Área: Ciências Agrárias
Versión on-line ISSN: 1981-6723
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Brazilian Journal of Food Technology, Volumen: 29, Publicado: 2026
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Brazilian Journal of Food Technology, Volumen: 29, Publicado: 2026

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Documents
ORIGINAL ARTICLE
Sodium-reduced bread formulated with seablite (Suaeda maritima L. Dumort) powder as salt substitution Singti, Wetanee Prachongpun, Papimon Sarasuk, Chanon Ngoenchai, Phurit Niamsuk, Jatnipit

Resumen en Inglés:

Abstract The objective of this study was to develop sodium-reduced bread by substituting salt with seablite powder (Suaeda maritima L. Dumort) and to evaluate its effects on physical, chemical, sensory, and storage properties. Bread samples were formulated with five levels of seablite powder replacing salt at 0, 25, 50, 75, and 100%. The samples were analyzed for color, volume, texture, moisture, pH, water activity, and sodium content. A sensory evaluation was conducted using consumer testing with 100 participants. Bread with 50% seablite substitution showed significantly reduced sodium content (1.14 g/100 g) compared to the control (1.46 g/100 g), while maintaining acceptable loaf volume, texture, and sensory attributes. Increasing substitution levels darkened crumb color and increased hardness and chewiness. Sensory scores for saltiness and sweetness declined at higher substitution levels, but 50% substitution achieved a favorable balance of health and quality. During five-day storage, texture degradation and moisture loss were more evident at room temperature than under refrigeration. These findings suggest that partial substitution of salt with seablite powder, up to 50%, is a promising strategy for sodium reduction in bread without compromising consumer acceptance.
ORIGINAL ARTICLE
Effects of homogenization and storage time on the rheological and sensory properties of creamed honey Silva, Letícia Oliveira Almeida Santos, Natalia Gomes Rodrigues, Sara de Melo Silveira Dias, Juliana Maria da Silva Torres Filho, Robledo de Almeida Carvalho, Naiara Barbosa Silva, Vanelle Maria da

Resumen en Inglés:

Abstract Creamed honey, produced through controlled crystallization, has a pleasant texture and is considered a value-added product. The objective of the study was to evaluate the effect of the product homogenization method using a domestic mixer and a mechanical agitator on the physicochemical, rheological, and sensory characteristics of creamed honey during storage for three months at 20 °C. Physicochemical analyses were performed as described by the Codex Alimentarius. Small-amplitude oscillatory stress and steady shear rheological measurements were conducted. Sensory acceptance and purchase intention were also evaluated. Throughout the storage period, the physicochemical properties complied with Brazilian legislation and Codex Alimentarius. The obtained rheograms were typical of pseudoplastic fluids, and the samples exhibited thixotropic behavior, as represented by the Weltman model. In the frequency sweep, the samples displayed a predominantly viscous behavior (G′′ (viscous modulus) > G′ (elastic modulus)). The increase in temperature, described by the Arrhenius model, evidenced a decrease in apparent viscosity (η10) at 10 s-1 and in G′ and G′′ during the temperature sweeps. After heating (20 °C to 30 °C) and cooling (30 °C to 20 °C), the samples did not revert to their initial structure. The storage time (p≤0.05) influenced the rheological properties, such as consistency index (K), flow behavior index (n), η10s-1, activation energy (Ea), and structural breakdown rate (B) for both types of agitators. Additionally, mechanical agitation had a significant effect (p≤0.05) on G′ and G′′. The type of agitator influenced (p≤0.05) the n, Ea, and hysteresis area. Throughout the evaluation period, there was sensory acceptance (range: 6.3–7.8) on a nine-point hedonic scale and purchase intention (range: 3.5–4.2) on a five-point attitude scale. The results demonstrated the maintenance of quality and sensory acceptance of creamed honey samples during storage for three months at 20 °C.
ORIGINAL ARTICLE
Assessment of trace elements in soumbara seasoning from the Abidjan Market (Côte d'Ivoire) Tanoh, Koffi Roger Alfred, Kouame Kohi Bouatenin, Koffi Maïzan Jean-Paul Djué, Yao Fabrice Marina, Koussemon

Resumen en Inglés:

Abstract This study aims to assess the level of contamination by trace elements (TMEs) in soumbara sold on markets (Abidjan Cty) to evaluate the risks of exposure for consumers. Seventy-five samples taken from the markets (Abobo market, Adjamé market, Cocody market, Treichville market, and Port-Bouët market) were analysed using inductively coupled plasma optical emission spectrophotometry (ICP-OES) from Spectro Arcos (USA). The results showed the presence of lead, cadmium, chromium, iron, manganese, copper, zinc, nickel, and cobalt in the samples analysed. The average lead content varied from (0.012±0.011) mg/kg (in soumbara sold on the Adjamé market) to (0.015±0.014) mg/kg (in soumbara sold on the Cocody market). The cadmium content was (0.019±0.012) mg/kg in soumbara sold on the Adjamé market. In soumbara sold on the Port-Bouët market, the content was (0.015±0.012) mg/kg. The average manganese content in soumbara sold on the Treichville was (1.663±1.447) mg/kg. The average iron, manganese, copper, zinc, and nickel content exceeded the required General Standard for Contaminants and Toxins in Food and Feed from Codex Alimentarius (CXS 193-1995), with the other trace elements present in trace amounts. However, the Risk Quotient (AHM/DHTP) for all the trace elements was less than 1. Consumption of soumbara sold in Abidjan markets would not present a health risk to consumers.
ORIGINAL ARTICLE
Evaluation of the antimicrobial effect of 14 essential oils against bacterial pathogens from Meat Processing Surfaces Kabelinde, Adia Foka, Frank Eric Tatsing Ateba, Collins Njie Manganyi, Madira Coutlyne

Resumen en Inglés:

Abstract This study aimed to evaluate the antimicrobial activity of 14 essential oils against bacterial isolates recovered from meat processing surfaces in selected supermarkets. A total of 23 isolates were identified using morphological, biochemical, and molecular techniques targeting the uidA and Ddl genes for Escherichia coli and Enterococcus spp., respectively. The antimicrobial activity of the essential oils was assessed using the disc diffusion method. The results indicated that E. coli strains were generally more susceptible to essential oils compared to Enterococcus spp. Thyme oil exhibited the highest antibacterial effect (up to 34 mm), followed by lemongrass and clove oils. Conversely, eucalyptus, rosemary, and sweet basil oils showed minimal to no activity. These findings confirm the antimicrobial efficacy of certain essential oils, particularly thyme oil, under the specified laboratory conditions. However, further research is required to evaluate their effectiveness and stability in the complex, real-world conditions of a meat processing environment before they can be considered a viable alternative to conventional chemical disinfectants.
ORIGINAL ARTICLE
Effect of toasting temperature on the generation of volatile compounds in sugar cane bagasse Valcárcel-Bolívar, Nubia Judith del Alamo-Sanza, Maria Asensio-Cuadrado, María Martínez-Gil, Ana María Nevares, Ignacio

Resumen en Inglés:

Abstract This study investigated the potential of toasted sugarcane bagasse as an innovative alternative for ageing distillates, taking advantage of the fact that bagasse is an abundant and renewable by-product of panela production (a solid, naturally sweet product made from unrefined sugarcane juice), with little or no information available on the subject. The research focused on its composition after being toasted at 180 °C, 200 °C, and 210 °C, seeking to identify volatile compounds that could contribute to the ageing process. Using solid-phase microextraction and gas chromatography, 27 main volatile compounds were identified, including lactones, phenols, and furans. Volatile compounds such as isovaleric acid, 4-vinylguaiacol, guaiacol, maltol, trans-whisky lactone, acetovainillone, coniferaldehyde, syringaldehyde, vanillin, furfural and 5-methylfurfural increased with temperature, with 210 °C generating the highest concentration of these compounds. Low concentrations of 5-hydroxymethylfurfural (5-HMF), trans-2-nonenal, valeric acid, furfurylthiol, cis-whisky lactone, geraniol, syringol, o-cresol, 2, 6-dimethoxyphenol, 4-vinylphenol, 3, 4-dimethylphenol, 4-ethylphenol, isoeugenol, and 4-ethylguaiacol were also detected in low concentrations. A key finding was the similarity of these compounds to those present in traditional ageing woods (American and French oak) and alternative woods (acacia, chestnut, cherry). These results suggest that toasted sugarcane bagasse has promising potential for usage in the ageing of wines and distillates, offering another alternative for utilising this resource beyond sugar or ethanol production. However, further research into this by-product is essential to optimise its application in ageing.
ORIGINAL ARTICLE
Meat-derived patties and plant-based meat analogs from Brazil: Are the labels accurate for protein and lipid content? Leonarski, Eduardo Borin, Raquel Guedes, Gabriela Bucaneve Felicetti, Marcos Alceu Quast, Leda Battestin Pinto, Vânia Zanella

Resumen en Inglés:

Abstract Although meat is the primary source of animal protein in the human diet, concerns about its environmental impact and the growing global population have led to the development of alternative proteins and meat analogs. As the demand for plant-based products rises, clear guidelines on nutrient content, such as protein and fat, are needed to ensure compliance. Thus, this study aimed to assess the accuracy of nutritional labeling for protein and lipid content in meat-derived patties and plant-based meat analogs. 21 processed products were examined: six meat-derived patties and 15 plant-based alternatives (plant-based patties; other plant-based products), available in groceries in western Paraná state, Brazil. Around 80% of plant-based analogous products had legumes as their primary protein source, mainly soybean, followed by pea and chickpea. Two meat-derived patties showed protein content below the Brazilian regulation limit (<15%), while all meat-derived patties met the lipid regulation (<25%). Laboratory analysis revealed minimal discrepancies between actual and labeled protein and lipid contents, except for chicken and beef patties A, which showed a >20% variation in lipid content. While protein and lipid contents in plant-based patties were lower than in meat-derived patties, no regulations currently define the minimum or maximum contents of these compounds in plant-based products. Additionally, 66.7% of plant-based patties showed more than 20% variation from label claims. In addition, other plant-based analog products had similar protein content to plant-based patties, and variation in lipid content reached over 20% compared to the label. Despite regulatory gaps, accurate labeling remains key to ensuring nutritional safety and meeting consumer expectations. In practice, producers should often batch-test products, set internal guardrails, and tighten supplier controls to improve label accuracy, while regulators establish composition standards and tolerance limits for plant-based meat analogs.
ORIGINAL ARTICLE
Chemical, antioxidant, and sensory profiles of Indonesian single-origin Arabica coffee with different roast levels and brewing methods Iswaldi, Ihsan David, Wahyudi Natalia, Regina Patricia, Sharon Shania, Jasmine Elfriede, Dwining Putri Christia, Abdi

Resumen en Inglés:

Abstract Coffee is a beverage commodity that continues to evolve in production as well as processing. As a movement among specialty coffee roasters and brewers, “third-wave coffee” arose due to an increasing focus on the unique flavor profiles and characteristics of single-origin coffee, roast levels, and precision brewing methods. As far as the authors know, there have been scant comprehensive studies examining the chemical, antioxidant, and sensory profiles of single-origin Indonesian coffee with various roast levels and brewing methods. Therefore, this study developed and carried out a comparative evaluation of spectroscopic (total phenolic and total flavonoid content), chromatographic (caffeine and chlorogenic acid), antioxidant, and sensory profiles. The results of this study showed that the combination of the V60 brewing method and light roasting level produced the maximum total phenolic content (TPC), caffeine, chlorogenic acid, and antioxidant activity in both Gayo Arabica and Flores Bajawa Arabica coffee samples. Based on the sensory descriptive test, varying the roasting level significantly impacts the sensory profile, where an increase in roasting level is positively correlated with the intensity level of color, aroma, bitterness, and mouthfeel attributes, but negatively correlated with the intensity of acidity attributes. Meanwhile, an increase in brewing temperature was positively correlated with all five attributes tested. Finally, based on Partial Least Squares Regression (PLS-R) modeling, increasing the intensity of color, bitterness, mouthfeel, and aroma, and decreasing acidity can increase panelist preference.
ORIGINAL ARTICLE
Toasted sugarcane bagasse as a sustainable alternative to traditional distillate aging in oak barrels Valcarcel Bolívar, Nubia Judith Caicedo Pineda, Gerardo Andrés Medina Vargas, Óscar Julio

Resumen en Inglés:

Abstract This study evaluated toasted sugar cane bagasse as a sustainable alternative for aging distilled spirits, comparing it with the traditional oak barrel method and medium-toasted oak chips. Parameters such as evaporation loss, pH, total acidity, ester content, color development, and aroma profile were analyzed. Results indicated that toasted bagasse exhibited higher evaporation loss (16%) compared to oak chips (9.0%) and oak barrels (9.8%), attributed to its greater porosity. Thus, pH decreased across all methods, reaching 5.30 in the first month for toasted bagasse, while total acidity was highest in this treatment (90.0 mg/L). Ester content increased over time, with final values of 2337 mg/L for toasted bagasse, 2859 mg/L for oak chips, and 2112 mg/L for the oak barrel, reflecting acetic acid esterification with alcohol. In terms of color, yellow was predominant, with the highest intensity in toasted bagasse, reaching an absorbance of 0.607 at 420 nm by month six. Aromatic notes of vanilla, caramel, and toasted wood were detected, with greater intensity in toasted bagasse during the first two months. These findings suggest that toasted sugar cane bagasse may serve as a viable and sustainable alternative for aging distilled spirits, achieving physicochemical and sensory characteristics comparable to traditional methods.
ORIGINAL ARTICLE
Sustainable recovery of phenolics from mustard seeds and study of their antioxidant and antimicrobial properties Rasera, Gabriela Boscariol Barboza, Giovana Rueda de Souza Silva, Anna Paula Silva, Nathalia Cristina Cirone de Alencar, Severino Matias de Castro, Ruann Janser Soares

Resumen en Inglés:

Abstract This study aimed to investigate the effects of pH and temperature on the recovery of phenolic compounds from germinated and non-germinated mustard seeds. For this purpose, a Central Composite Rotatable Design (CCRD) was applied to mustard from two species (Brassica nigra and Sinapis alba). The evaluated responses included total phenolic content (TPC), antioxidant (ABTS, DPPH, FRAP) and antimicrobial activities, as well as phenolic identification and quantification by HPLC-DAD. The most suitable pH and temperature conditions for obtaining extracts with higher TPC content and antioxidant activity, varied according to sample type: for non-germinated white mustard (pH 5 at 37.5 °C); for germinated white mustard (pH 7.1 at 46.4 °C); for non-germinated black mustard (pH 5 at 25 °C) and for germinated black mustard (pH 8 at 37.5 °C). Under optimized conditions, sinapic acid was identified as the major phenolic compound in all samples, ranging from 700 µg g-1 (non-germinated white mustard) to 1270 µg g-1 (germinated black mustard). Furthermore, all mustard extracts inhibited microbial growth to varying degrees depending on the bacterial strain and sample evaluated. Overall, the results highlight the potential of green extraction using pH adjustment and mild temperatures for the recovery of phenolic antioxidants with antimicrobial activities.
ORIGINAL ARTICLE
Gabiroba (Campomanesia pubescens): an analysis of the evolution of bioactive, proximate, and mineral compounds during development Machado, Gilson Gustavo Lucinda Carvalho, Elisângela Elena Nunes Boas, Eduardo Valério de Barros Vilas

Resumen en Inglés:

Abstract Gabiroba (Campomanesia pubescens (DC.) O. Berg.) (Myrtaceae) is a fruit species native to the Brazilian Cerrado. Its fruits have a sweet and sour taste and stand out as a rich source of vitamin C and bioactive compounds. This study aimed to analyze the evolution of bioactive compounds, proximate composition, and mineral profile of the fruit throughout its development (from 9 to 63 days after anthesis). The experiment was conducted in a completely randomized design (CRD), consisting of seven evaluation periods (from 9 to 63 days after anthesis, with a 9-day harvest interval), with three replicates. Fruits harvested at each developmental stage were analyzed for chlorophyll, total carotenoids, vitamin C, total phenolics, antioxidant activity, proximate composition, and mineral profile. The results were subjected to statistical analysis using the Sisvar software at a 5% significance level. Overall, an intense synthesis of chlorophyll and carotenoids was observed in the initial stages of development, followed by degradation during ripening. Vitamin C peaked at 36 days after anthesis, with a subsequent decline. Antioxidant activity, initially high, decreased throughout ripening. Significant variations in the proximate composition were observed depending on the development stage. Mineral content decreased linearly, with 100 g of ripe gabiroba providing 4.47% of the recommended daily intake (RDI) of Ca, 6.95% of Mg, 3.20% of P, 7.1% of K, 1.54% of Zn, 22.62% of Fe, 9.56% of Mn, and 11.11% of Cu.
ORIGINAL ARTICLE
Cured, aged and dried legs of Boer and Moxotó goats Alves, Nayane Valente Batista Gois, Glayciane Costa Lima, Juliana dos Santos Martins, Carla Maria do Carmo Resende Alencar, Nayara Reis Cordeiro de Lira de Carvalho, Francisco Allan Leandro Figueiredo Neto, Acácio Carvalho, Ana Júlia de Brito Araújo Martins, Marlos Gomes Queiroz, Mario Adriano Ávila Rodrigues, Rafael Torres de Souza

Resumen en Inglés:

Abstract This study aimed to compare the processing yield and quality attributes of cured, aged, and dried legs from Boer (exotic meat-type breed) and Moxotó (native dual-purpose breed from the Brazilian semi-arid region) goats, to evaluate the technological potential of the genotypes for producing value-added meat products. The experiment was conducted in a completely randomised design, with two treatments, the Boer breed and Moxotó breed, and 12 replicates per treatment. The hind legs came from uncastrated male animals, approximately 12 months old, that were slaughtered under sanitary inspection in an accredited slaughterhouse. The legs underwent dry curing (4 ± 3 °C; 85 ± 5% RH) for 3 days, followed by maturation and drying (10 ± 2 °C; 70 ± 5% RH) for 180 days. Yield and quality analyses (pH, lipid oxidation, instrumental colour, centesimal composition and microbiology) were performed at the end of processing. The analysis revealed no significant influence of breed on yield (P = 0.34), moisture (P = 0.51), ash (P = 0.43), protein (P = 0.91), and TBARS index (P = 0.10). However, a higher fat content was found in the Boer goat legs (P < 0.001), while the Moxotó goat legs exhibited a higher pH (P < 0.001). The breed also influenced the color parameters, with greater luminosity (L*; P < 0.001), yellow intensity (b*; P < 0.001), and saturation (C*; P = 0.02) in the Boer goat legs. In microbiological terms, both products met the standards outlined in the legislation, although the presence of Aspergillus fungi was identified on the surface of the products. This, in turn, does not compromise their safety. In conclusion, the yield of the cured, matured, and dried goat legs was not affected by the goat breed, but differences in fat content and color may influence consumer acceptance.
ORIGINAL ARTICLE
β-galactosidase innovation using patent data from the WIPO Patentscope database Silva, Josemeyre Bonifácio da Veloso, Naiale Fernanda da Silva Bosso, Alessandra Murata, Mayara Mari Suguimoto, Hélio Hiroshi

Resumen en Inglés:

Abstract This study aimed to analyze patents published at the World Intellectual Property Organization (WIPO) database related to biotechnological applications of β-galactosidase. China stood out as the holder of the majority of patent deposits. 53% of the documents came from universities; 43% of the patents were classified as technological processes, 36% as products, 19% enzyme enhancement, and 2% as analytical determination. Most of the patents were related to improved production of β-galactosidase. Lactose-free dairy products have increased the number of β-galactosidase patents over the last five years, especially for the production of GOS and dairy-free final products.
ORIGINAL ARTICLE
Optimization of hemp seed oil extraction and functional testing of its by-product in gluten-free baked goods Coronel, Stefania González Costa, Facundo Sallé, Leonardo Presa, Joaquin Gutiérrez Barrutia, María Belén Cozzano, Sonia

Resumen en Inglés:

Abstract Hemp is a non-psychoactive variety of cannabis. Its seed is rich in high quality protein, dietary fiber, and polyunsaturated fatty acids (PUFA). Oil extraction can be performed by cold pressing, and the by-product, known as press cake, is an interesting matrix to formulate functional foods. Response surface methodology was used for the optimization of hemp seed oil extraction by means of cold pressing. Experiments were carried out according to a face-centered central composite design with two independent variables (press and roasting temperature) at three different levels (60 °C, 65 °C, 70 °C; 120 °C, 140 °C, 160 °C). Optimized conditions were determined by a press temperature (PT) of 68.6 °C and a roasting temperature (RT) of 159.5 °C, with a predicted oil yield of 40.77% and an experimental one of 45.59%. With a circular economy approach, the by-product of the extraction process was used in the development of functional gluten free cookies, a source of protein and fiber, as well as antioxidant compounds. The cookie with higher press cake substitution showed the best results with a total phenolic content (TPC) after in vitro digestion of 3.97 ± 0.13 mg GAE/g and an antioxidant capacity measured by 2,2′-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS) and Ferric Reducing Antioxidant Power (FRAP) methods of 103 ± 4 µmol TEQ/g and 29 ± 1 µmol TEQ/g.
ORIGINAL ARTICLE
May spices be detected as starch in meat products? Starch quantification in meat products Topa, Davi Raiol Lemos, Ana Lúcia da Silva Corrêa Gallina, Darlila Aparecida

Resumen en Inglés:

Abstract This study aimed to investigate the presence of starch in commercial meat products, compare the accuracy of Lane-Eynon and Anthrone quantitative methods and evaluate the interference of spices in starch detection. Ten commercial products (fresh cured pork sausage, cooked cured Calabresa-type sausage, and salami) were initially screened using the qualitative Lugol’s test. Three samples that tested positive for starch were further analyzed using both Lane-Eynon and Anthrone quantitative methods. To compare the performance of the quantitative methods, fresh sausages were prepared in model-system with known starch concentration (0; 0.25; 0.5; 0.75, and 1.0%). The Anthrone method demonstrated superior accuracy, with a mean recovery rate of 97.4%, compared to only 23.0% for the Lane-Eynon method. Subsequently, the impact of spices was evaluated in formulations containing specific starches and spices. While starch-added samples were correctly identified, starch-free samples containing spices (white pepper, black pepper, and nutmeg) yielded false-positive results in the Lugol’s test. The Anthrone method proved effective in quantifying these low levels of background starch with high precision. Based on these findings, the Anthrone method is recommended for precise quantification, particularly in cases of suspected adulteration where qualitative tests may yield false positives due to spice interference.
ORIGINAL ARTICLE
Valorization of common bean protein extraction residues: production and characterization of polysaccharide-rich ingredients for food applications Galdeano, Melicia Cintia Lima, Janice Ribeiro Felberg, Ilana Vargas-Solórzano, Jhony Willian Bassinello, Priscila Zaczuk Gottschalk, Leda Maria Fortes Mellinger, Caroline Grassi

Resumen en Inglés:

Abstract Insoluble residue from common bean protein extraction was used to obtain three polysaccharide-rich ingredients: bean starch, fiber-rich flour, and carbohydrate-rich flour. The residue was fractionated by water suspension and centrifugation. Bean starch had high purity (90.71%) with minimal ash and fiber contamination. Its granules were oval to semi-elliptical, with slight surface porosities and some adhered protein bodies, showing a typical legume "C" crystallinity pattern, and gelatinization temperature of 74.65 °C. Viscosity curves were similar to those of bean starch in its native state. Fiber-rich flour had particles 5.6 times larger than carbohydrate-rich flour, due to higher fibrous content. It also showed higher water (5.09 g/g) and oil (1.52 g/g) holding capacities than carbohydrate-rich flour (3.16 g/g and 0.96 g/g, respectively). Phytate levels in both ingredients were below 0.7%, and no tannins were detected. This study demonstrates that the protein extraction process preserved flour macromolecules, reinforcing the potential of these byproducts in food applications.
ORIGINAL ARTICLE
Vegan and gluten-free biscuits with Amazonian peach palm (Bactris gasipaes Kunth): Agroindustrial potential and quality assessment Boeira, Lúcia Schuch Florêncio, Isabely Marques do Nascimento Miguel, Ana Maria Rauen de Oliveira Cipolli, Kátia Maria Vieira Avelar Bittencourt Ormenese, Rita de Cássia Salvucci Celeste Ito, Danielle Vianna, Carla Lea Camargo Ruffi, Cristiane Rodrigues Gomes

Resumen en Inglés:

Abstract Growing demand boosts innovation in vegan and gluten-free biscuits. The Amazon, rich in biodiversity, offers underused fruits like peach palm (PB), high in oleic acid, fiber, carotenoids, and phenolic compounds. Utilizing this fruit enhances local income and forest conservation, spurring the development of peach palm biscuits. This study reports the physicochemical and sensory characteristics as well as the stability of vegan and gluten-free peach palm biscuits with and without added sugar. The results demonstrated that Amazonian peach palm biscuits, with sugar and maltitol, have advantageous physicochemical characteristics as follows: low moisture (~1.6%), ideal Aw (0.22–0.27), proteins (8.7% and 8.5%), lipids rich in unsaturated fatty acids (62%, of which 69% is oleic acid), and high dietary fiber (20% and 19%). The replacement of sugar by maltitol did not significantly change the composition, suggesting an option for diabetics. Sensory tests indicated good acceptance, although potential consumers in the Northern region appreciated the products more than those in the Southeast region of Brazil. The relevant descriptors were soft to the bite, pleasant aftertaste, and crunchy. In the stability study, although small changes in color, odor, and crispness occurred, without an increase in peroxides, the shelf life of both products could be six months under the study conditions. This study demonstrated the high agroindustrial potential of Amazonian peach palm biscuits, presenting satisfactory physical-chemical and sensory attributes, in addition to stability for six months, constituting a functional, sustainable, and promising alternative for the market.
ORIGINAL ARTICLE
Validation and adaptation of an ion-exchange HPLC-DAD method for simultaneous analysis of organic acids in artisanal goat coalho cheese Alves, Angela Matilde da Silva Moraes, Adriane Elisabete Antunes de Oliveira, Julia Mariano Caju de Costa, Camila Neves Meireles Oliveira, Maria Elieidy Gomes de Silva, Marta Gomes da Gomes, Fernanda Moralez Leme Pacheco, Maria Teresa Bertoldo

Resumen en Inglés:

Abstract This study adapted and validated an HPLC-DAD method for the simultaneous quantification of eight organic acids in artisanal goat coalho cheese. The sample preparation used ion-exchange resin that ensures high selectivity for the complex protein matrices. The optimized method demonstrated excellent linearity (R2 > 0.998), precision (RSD < 4.5%), and recoveries ranging from 70% to 107%. The method was successfully applied to monitor the organic acid profiles in cheeses matured for 1, 20, 40, or 60 days, made with raw or pasteurized milk, with or without the addition of Limosilactobacillus mucosae CNPC007. Lactic acid was the predominant metabolite, negatively correlated with moisture, while acetic acid was inversely correlated with yield. These correlations reflect biochemical and technological transformations influenced by autochthonous culture. Overall, the validated method proved to be a robust, practical, and cost-effective tool for quality control and biochemical understanding of artisanal cheeses, broadening the possibilities for goat dairy products evaluation.
ORIGINAL ARTICLE
Chili oil from Hiyung chili: Oil matrix, extraction time, and sensory acceptance Purba, Febriani Akbar, Arief Rahmad Maulana Legowo, Agung Cahyo Wibowo, Alan Dwi Mardhiyah, Rodhiyatam Bintang, Tri Mega Saputra, Muhammad Zidan Veri

Resumen en Inglés:

Abstract This study formulated chili oil from Hiyung chili (Capsicum frutescens L.) and examined how the carrier oil (palm olein (PO), coconut oil (CO)) and extraction time (24/48/72 h) shape physicochemical quality and sensory acceptance. A factorial Completely Randomized Design was applied; responses included color (L, a, b*, ΔE), acid value (AV), free fatty acids (FFA), peroxide value (PV), and total capsaicinoids/Scoville Heat Units (SHU). From each oil-type, the best formulation (multi-criteria: capsaicinoids, color, oxidative stability) was compared with a commercial chili oil in a 5-point hedonic test. Color remained stable across treatments (ΔE, p>0.05). AV and FFA increased with time and were generally higher or rose more steeply in CO than PO, indicating greater hydrolytic susceptibility. PV increased with time, with PO higher than CO but all PV ≤ 20 meq O2/kg (Codex). Capsaicinoids and SHU were significantly higher in palm-olein chili oil (PO-48) than in coconut-oil chili oil (CO-24). In sensory tests, the commercial product outperformed prototypes in aroma, appearance, and color, while the palm olein prototype (PO-48) was spicier and did not differ from the commercial benchmark in overall liking after statistical adjustment. Findings position PO as a robust base for targeted sensory optimization, notably aromatic engineering (controlled allium/spice infusion; gentle roasting 120-150 °C) and visual refinement, to translate pungency advantages into consumer-preferred profiles.
ORIGINAL ARTICLE
Valorization of Surimi wash water for biodegradable edible film development from milkfish, snakehead and skipjack tuna Santi, Andi Syukroni, Ikbal Rusli, Arham

Resumen en Inglés:

Abstract Surimi processing generates large volumes of wash water containing soluble proteins and minor nutrients, which contribute significantly to the organic load of industrial wastewater. The recovery of these biomacromolecules for edible film production offers an alternative valorization pathway aligned with circular bioeconomy principles. Edible films were developed from wash water from Chanos chanos (milkfish), Channa striata (snakehead), and Auxis thazard (skipjack tuna) using a standardized agar-glycerol formulation. Wash water was analyzed for protein and fat content, pH, Total Dissolved Solids (TDS), heavy metals, and microbiological quality. Film characterization included mechanical properties (tensile strength, elongation at break, Young’s modulus), moisture content, solubility, water vapor transmission rate (WVTR), and color parameters. All analyses were conducted in triplicate (n = 3), and results were statistically evaluated. Antimicrobial activity against Escherichia coli was assessed using the agar diffusion method. Protein levels in wash water ranged from 0.11-0.18%, with heavy metals remaining below FAO/WHO limits. Snakehead edible film (SHEF) demonstrated the best mechanical performance (tensile strength 10.69 N/mm2; elongation 33.98%), while milkfish edible film (MFEF) exhibited the weakest (4.42 N/mm2; 22.46%). Moisture content (10-12%) and solubility (30-45%) were highest in MFEF, indicating a more hydrophilic and less stable matrix. WVTR values were consistently high 25.01 g/m2·h (SHEF), 25.97 g/m2·h (MFEF), and 26.18 g/m2·h (skipjack tuna edible film - SJEF). Color variations were species-dependent, and none of the films exhibited antimicrobial activity against E. coli. Surimi wash water is a feasible, low-cost biomaterial for edible film production.
ORIGINAL ARTICLE
Obtaining antihypertensive peptides from rapeseed meal through enzymatic hydrolysis: A strategy for the valorization of agro-industrial by-products Reyes-Garcia, Luis Zuñiga Hansen, Maria Elvira Soto Maldonado, Carmen Araya Lazo, Igor

Resumen en Inglés:

Abstract Defatted rapeseed meal (Brassica napus L.), an abundant and low-cost by-product of the oilseed industry, represents a strategic resource for agro-industrial valorization within the framework of more sustainable agriculture. This material, with a protein content of 35-40%, can be transformed into bioactive peptides, which can in turn be potentially used to prevent arterial hypertension, one of the primary risk factors of cardiovascular disease. In this study, we optimized an enzymatic hydrolysis protocol to obtain extracts with inhibitory capacity against the angiotensin-converting enzyme (ACE). We evaluated the enzymatic hydrolysis of rapeseed meal using three commercial proteases (Alcalase 2.4L, Protin SD-AC10F, and M Amano SD) to analyze the kinetics of peptide release. Angiotensin-converting enzyme (ACE) inhibitory activity was determined only for hydrolysates obtained with Alcalase 2.4L. Our results revealed that Alcalase 2.4L yielded the highest hydrolytic efficiency (62% of peptides at 1 h) and produced peptides with notable ACE inhibitory activity. The enzyme-to-substrate ratio had no clear effect on ACE inhibitory activity, with similar values observed for both the 1% and 10% ratios. The peptide extracts that we obtained confirm the potential of defatted rapeseed meal as a source of antihypertensive peptides. Our findings demonstrate that direct enzymatic hydrolysis of rapeseed meal is a viable strategy for transforming an agro-industrial by-product into a source of functional compounds with potential use in antihypertensive foods. Such work can contribute to the diversification of the rapeseed value chain and the promotion of cardiovascular health.
ORIGINAL ARTICLE
Enhancing sustainable fermentation in sparkling wine through yeast microencapsulation Malika, Assilova Botagoz, Mutaliyeva Assel, Tleukeyeva

Resumen en Inglés:

Abstract Microencapsulation technology offers a promising approach to optimizing yeast activity and ensuring controlled, sustainable fermentation processes in agricultural production, potentially improving economic efficiency and environmental safety, particularly in developing countries. This study evaluates the impact of encapsulating yeast cells within polysaccharide hydrogel matrices on fermentation performance, cell viability, and metabolic stability. Fourier-transform infrared (FTIR) spectroscopy and scanning electron microscopy (SEM) were employed to confirm the structural integrity and enzymatic stability of encapsulated yeast, thereby supporting their improved performance during fermentation within a porous network (1.8 ± 0.3 μm), which facilitates efficient nutrient exchange and resource utilization. The microencapsulation efficiency was measured at 98.34% ± 1.21%, ensuring prolonged yeast viability and metabolic activity. Comparative fermentation trials demonstrated a 25% increase in fermentation rate and enhanced production of aromatic compounds in the microencapsulated yeast systems compared to free yeast fermentation. These findings underscore the innovative potential of microencapsulation as a method for advancing sustainable practices in the agro-food sector with possible contributions to environmental safety, economic effectiveness, and social equity.
ORIGINAL ARTICLE
Assessing dangke whey as a viable substitute for coconut water in bacterial cellulose production using Komagataeibacter xylinus Maruddin, Fatma Rahasia, Inka Puteri Rahmatullah, Khisan Hajrawati, Hajrawati Sabil, Syahriana Taufik, Muhammad Taggo, Syamsuddin

Resumen en Inglés:

Abstract Dangke whey is a by-product of the dangke processing process and has not been optimally utilized; therefore, it is often discarded. Coconut water, commonly used for bacterial cellulose or nata de coco production, has nutritional content similar to that of dangke whey, particularly in carbon and nitrogen sources, making whey a potential alternative with comparable fermentative properties. This study aimed to evaluate the potential of dangke whey as an alternative fermentation medium for bacterial cellulose production using Komagataeibacter xylinus. The study substituted coconut water with dangke whey in varying proportions: N1 (100:0), N2 (70:30), N3 (50:50), N4 (30:70), and N5 (0:100). The physicochemical characteristics (yield, thickness, and moisture content) and organoleptic attributes (texture, chewing residue, lightness, and overall preference) were evaluated. The substitution of coconut water with dangke whey significantly affected (P < 0.01) yield, thickness, lightness, moisture content, and all sensory attributes. The whey proportion was inversely related to yield, thickness, moisture content, and organoleptic scores for texture and chewing residue, but directly related to lightness and clarity perception of the colour. These findings suggest that dangke whey has significant potential as a sustainable, cost-effective alternative fermentation medium for bacterial cellulose production by K. xylinus.
ORIGINAL ARTICLE
Functional cookies with Blueberry juice (Vaccinium corymbosum) and Cocoa powder (Theobroma cacao): proximate and physicochemical characterization Dipaz-Manuelo, Marcos Mendoza-Quispe, Sherly Nikita Pilco-Quesada, Silvia

Resumen en Inglés:

Abstract Blueberries are known for their antioxidant properties with high content of vitamins C and K, in addition to the presence of flavonoids and anthocyanins. Likewise, cocoa has fiber, vitamins A and B, and high antioxidant potential due to its epicatechins and catechins. Being widely consumed worldwide, the research objective is to develop functional biscuits incorporating blueberries, thus characterizing their phenolic compounds and antioxidant capacity. Nine treatments were prepared using a factorial 32 design: blueberry concentration (25%, 30%, and 35%) and cocoa concentration (5%, 10% and 15%). Proximal and physicochemical characterization of the raw materials was determined. The biscuits were mainly analyzed proximally, with total phenol content (TPC) determined by the Folin-Ciocalteau method and antioxidant capacity assessed by the ABTS method. The results showed that the raw materials had a synergistic effect to increase the protein content up to 7.69 g/100 g which was in treatment 5 (30% blueberry, 10% cocoa), treatment 3 (25% blueberry, 15% cocoa) which had the highest TPC with 40 mg EAG/g bs, and in antioxidant capacity in treatment 7 (35% blueberry, 5% cocoa) with 12.68 µM ET/g bs. Thus, it was shown that the incorporation of blueberries in cookies improved their functional properties that can cause health benefits.
ORIGINAL ARTICLE
Performance of packaging for fruits and vegetables: case study of strawberries Noletto, Ana Paula Reis Teixeira, Fábio Gomes Ito, Danielle Pinto, Janaina Antonino Lima Júnior, Orlando Fontes

Resumen en Inglés:

Abstract This study aimed to assess the performance of several types of packaging used for strawberries along the distribution chain. Fruits and vegetables (FV) are among the most perishable foods. They are vulnerable to losses throughout the supply chain, particularly when adequate harvesting, packaging, transportation, and marketing practices are not adopted. Thus, packaging can make relevant contributions to reducing such losses. Three strawberry supply chains were analyzed, focusing on both retailers and producers. Our results show that the materials used in the analyzed chains are clamshells and PET trays, the latter with PVC film. The secondary packaging used is self-locking corrugated boxes, with little use of pallets. The Packaging Scorecard method showed that retailers and manufacturers are generally satisfied with the performance of the packaging, but there may be room for improvement in attributes such as “innovation” and “physical protection against impacts and vibrations” in primary packaging. The tool showed potential for developing joint solutions that serve the distribution chain as a whole.
ORIGINAL ARTICLE
Plant-based yogurt from three local legumes: chemical, microbiological, nutritional and sensorial properties and its lipid profile effects in rats Slamet, Agus Tamaroh, Siti

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Abstract Plant-based yogurt is a potential alternative to replace dairy-based yogurt, especially for individuals who are lactose intolerant, allergic to milk, or have metabolic conditions such as obesity. This study characterizes the chemical and microbiological properties, proximate composition, and sensory preferences of plant-based yogurt made from cowpea, jack bean, and lablab, and it evaluates its impact on the blood lipid profile of rats. Fermentation was carried out by three inoculum ratios of Lactobacillus bulgaricus and Streptococcus thermophilus (1:1, 1:2, and 2:1). The analyses included pH, total acidity, total solids, and total live lactic acid bacteria (LAB). LAB calculations were performed on MRS agar (incubation at 37 °C for 48 hours), and then the colonies were confirmed as Gram-positive and catalase-negative. The sensory test showed the jack bean-based yogurt with the ratio of L. bulgaricus and S. thermophilus 1:2 was the most preferred formulation by the panelists. The yogurt exhibited a pH of 3.14, total acidity of 0.82%, and total solids of 9.85%, reflecting effective lactic fermentation through organic acid accumulation, with viable cell counts of 5.1 × 109 CFU/mL. The yogurt contained moisture, ash, protein, and fat of 88.32%, 3.76%, 7.86%, and 2.83%, respectively. The yogurt was then tested in vivo in Sprague-Dawley rats, with yogurt administered at 0, 10, and 20 mL/day for 28 days. The results showed that administering 20 mL of yogurt per day significantly (p < 0.05) reduced total cholesterol levels by 46.07%, triglycerides by 48.62%, and LDL by 78.79%, and significantly increased HDL levels beyond those of the normal group in Sprague-Dawley rats. Thus, jack bean-based yogurt has the potential to be a cholesterol-lowering functional food.
ORIGINAL ARTICLE
Respiration modelling and aptitude of ‘INIA Ágata’ strawberries as a ready-to-eat fruit under MAP conditions Irazoqui, Magdalena Barrios, Sofia Lema, Patricia

Resumen en Inglés:

Abstract Ready-to-eat (RTE) strawberries are highly valued for their convenience and nutritional quality, but their short postharvest life remains a major challenge for commercialization. Predictive respiration models combined with modified atmosphere packaging (MAP) represent a useful tool for designing storage systems that preserve product quality. This study evaluated the suitability of the ‘INIA Ágata’ cultivar as an RTE fruit under MAP and assessed the performance of a previously developed respiration model under short- and long-term storage conditions. Respiration kinetics were described using a Michaelis-Menten approach, including oxidative and fermentative CO2 production terms. Model predictions were validated with experimental data from short-term closed reactor experiments and long-term storage trials under passive MAP at 4 °C. In these long-term MAP trials, gas dynamics were monitored together with physicochemical, microbiological, biochemical, and sensory quality attributes. The uncompetitive Michaelis-Menten model with oxidative CO2 production showed an adequate predictive performance for short storage times (60 h). For longer storage (14 d), equilibrium conditions (EMAP) were achieved by day 3 (6-10 kPa O2 and 6-8 kPa CO2), and the model, including total CO2 production, provided a more accurate estimation of gas composition. Under these MAP conditions, physicochemical and microbiological parameters remained stable, with no significant changes in pH, soluble solids, firmness, or microbial counts. Bioactive compounds, including anthocyanins, ellagic acid, catechin, vitamin C, and total phenolics, were largely preserved; while cyanidin decreased at the end of storage, pelargonidin—the main anthocyanin—remained stable. Nonetheless, visual quality deteriorated significantly between days 10 and 14. Results obtained in this work confirm the suitability of ‘INIA Ágata’ strawberries as an RTE product under MAP, combining stable bioactive composition with predictable respiration behavior during refrigerated storage.
ORIGINAL ARTICLE
Statistical protocol for nonlinear model selection using cumulative CO2 production during alcoholic fermentation by Saccharomyces cerevisiae Sousa, Gustavo de Almeida Raulino, Geovani Jesus, Jailson de Mathias, João Guilherme Stroschein, Marcos Roberto Dobler

Resumen en Inglés:

Abstract Understanding the kinetics of alcoholic fermentation is essential for characterizing the metabolic performance of wine yeasts under different environmental conditions. This study aimed to establish a systematic method for selecting nonlinear regression models to describe the cumulative carbon dioxide production by Saccharomyces cerevisiae during alcoholic fermentation at two different temperatures: 18 °C and 28 °C. Fermentations were conducted in synthetic must based on diluted grape must with 250 g L−1 of reducing sugars, inoculated with a commercial yeast strain, and incubated under static conditions. CO2 production was monitored gravimetrically through daily mass loss. Four sigmoidal models were evaluated: the reparameterized Gompertz model, the classical Gompertz model, the Logistic model, and the No Lag Phase model. Ordinary least squares were used to fit the models, and statistical diagnostics were performed to validate the assumptions of normality, homoscedasticity, and independence of residuals. The reparameterized Gompertz model showed superior statistical and biological performance, yielding significant and coherent estimates of lag phase, maximum CO2 production rate, and final cumulative CO2. At 18°C, a distinct adaptation phase was observed, whereas at 28°C, fermentation commenced immediately with higher production rates and total yield. The reparameterized Gompertz model achieved the best fit at both temperatures, with the lowest root mean square error and Bayesian information criterion values, and was the only model to satisfy all residual diagnostic tests. The results demonstrate that temperature exerts a critical influence on yeast kinetics and model adequacy. This study contributes a robust and reproducible protocol for selecting nonlinear models applied to laboratory-scale alcoholic fermentation by S. cerevisiae, supporting improved kinetic characterization under controlled experimental conditions.
ORIGINAL ARTICLE
Oxidised tannic acid as a bio-derived crosslinker for densifying amorphous tuna protein films: a chemistry–structure–property approach Arsyad, Muh Ali Kuswandi, Bambang Thaha, Aminah Hajah Inthe, Mita Gebriella Rahmaniar,

Resumen en Inglés:

Abstract Tuna-processing by-products represent an abundant yet underutilised resource for sustainable biomaterials. This study introduces oxidised tannic acid (OTA) as a bio-derived crosslinker to reinforce protein-based films from tuna myofibrillar proteins and bone gelatin, offering a novel strategy to valorise fish-processing waste and improve film performance. OTA, produced by alkaline oxidation, was incorporated during film formation to maximise interchain coupling. Mechanical, Fourier Transform Infrared Spectroscopy (FTIR), X-ray Diffraction (XRD), Scanning Electron Microscopy (SEM), and barrier/hydration analyses linked chemistry and microstructure to performance. OTA increased tensile strength and lowered extensibility across matrices; in bone-gelatin films, strength rose from 6.30 ± 0.42 to 8.23 ± 0.62 N mm−2, while elongation fell from 85.16% ± 7.26% to 58.21% ± 2.39%. FTIR showed red-shifted –OH/–NH bands and intensified C=O/C–O signals, indicating stronger hydrogen bonding and quinone-mediated covalent linkages. XRD revealed tighter amorphous halos (15° to 25° 2θ) without emergent crystallinity, consistent with denser short-range packing. SEM showed more cohesive, less porous surfaces. Barrier/hydration properties improved in parallel (water vapour permeability decreased ~18% for MI-OTA and ~27% for BG-OTA; moisture content and water absorption also declined). Overall, OTA is an effective bio-derived crosslinker that densifies amorphous tuna protein networks, yielding stronger, less extensible, and more water-resistant films for sustainable packaging.
ORIGINAL ARTICLE
Green solvent extraction of oil and phenolic compounds from marolo and soursop seeds: Comparative study Menezes, Evandro Galvão Tavares Queiroz, Fabiana

Resumen en Inglés:

Abstract Several exotic Brazilian fruits, including marolo (Annona crassiflora Mart.) and soursop (Annona muricata L.), have been identified as promising sources for the extraction of oil and phenolic compounds. This study aimed to conduct a comparative evaluation of various solvents, including hexane, ethanol, acetone, and isopropanol, for the purpose of extracting oil and bioactive compounds from the seeds of these fruits. Extractions were carried out at three temperatures (35, 45, and 55 °C) and two solvent-to-seed ratios (5:1 and 10:1, w/w). Hexane was the solvent that demonstrated the highest oil extraction efficiency, reaching up to 99.61% for marolo seeds and 96.71% for soursop seeds; however, its efficacy in extracting phenolic compounds was found to be minimal. In contrast, ethanol and isopropanol, classified as green solvents, exhibited superior efficiency in extracting phenolic compounds, particularly at 45 °C and higher dilution ratios, thereby enhancing antioxidant potential, although with lower oil yields (56.28% to 94.32% for marolo and 54.66% 82.84% for soursop when ethanol was used). Extraction with ethanol at 45 °C was found to yield a favorable balance between oil yield and phenolic content, with oil yields of 71.25% (5:1) and 91.89% (10:1) for marolo, 61.95% (5:1) and 80.82% (10:1) for soursop. Additionally, the integration of mass balance calculations with the retention index (RI) enabled a more comprehensive evaluation of solvent performance, demonstrating that solvent type significantly affected retention behavior, with hexane showing a lower RI and green solvents showing higher retention, impacting downstream solvent recovery. These findings underscore the merits of employing green solvents in the development of more sustainable and safer extraction processes while providing a more robust basis for the valorization of marolo and soursop seed by-products.
ORIGINAL ARTICLE
Effect of osmotic dehydration on the freeze-drying and hot air-drying process of Andean papaya Chambi, Rocío Esperanza Huacantara Barriga, Rosario Edely Ortega Prieto, José Manuel

Resumen en Inglés:

Abstract Andean papaya (Carica pubescens) is a fruit of high nutritional and functional value; however, it has a rapid rate of respiration and ripening, which limits its shelf life. For this reason, the kinetics of the osmotic dehydration (OD) process and its influence on the freeze-drying and hot air-drying processes were evaluated in the present study. Six OD treatments were applied combining two temperatures (30 °C and 40 °C) and three concentrations of sucrose solution (40, 50 and 60 °Brix). Moisture loss curves were analyzed and adjusted to mathematical models to describe the drying kinetics. T6 (40 °C, 60 °Brix) presented the highest efficiency, achieving a moisture reduction of 48.51%. This treatment was selected for subsequent processing by freeze-drying and hot air drying, thus obtaining four types of Andean papaya slice samples: hot air dried (CD), hot air dried with osmotic dehydration as pretreatment (CD-OD), freeze dried (FD), and freeze dried with osmotic dehydration as pretreatment (FD-OD). The FD-OD sample showed moisture values of 8.95% ± 0.68, water activity (aw) 0.56 ± 0.03, density 1.41 ± 0.03 g/cm3, and vitamin C of 3.27 mg/100 g dry basis. Concerning color, a lightness 73.91 ± 5.19, a* value (-5.08 ± 1.11) and b* value (70.7 ± 3.75), similar to those of fresh fruit, were obtained. The textural profile showed a softer and more elastic texture than the fresh sample, with values of hardness 29.05 N, chewiness 3.49 N, gumminess 5.79 N and elasticity (0.61 mm); however, cohesiveness (0.02) was comparable to the control sample. The results confirmed that OD as a pretreatment improved the quality of the final product and represents an effective alternative to prolong the shelf life of Andean papaya.
ORIGINAL ARTICLE
Edible coatings enriched with ultrasound-assisted Arabica coffee pulp nanoextract (Coffea arabica L.) for extending shrimp and strawberry shelf life Widyastuti, Endrika Arumi, Diendira Widad Andoko, Joyelle Callista Pranowo, Dodyk Darmawan, Hariadi Wati, Anif Mukaromah Sutopo, Christoper Caesar Yudho

Resumen en Inglés:

Abstract Arabica coffee pulp is known to contain fiber and bioactive compounds that are antimicrobial, so it has the potential to be used in edible film formulations and edible coating applications to increase the shelf life of food products. However, conventional extract incorporation often results in large particle aggregation and reduced functional release. This work aimed to develop and optimize edible film formulations by adding Arabica coffee pulp using Response Surface Methodology (RSM), develop it through ultrasonication to overcome these limitations, and assess its effectiveness on the shelf life of shrimp and strawberries. The concentrations of sodium alginate (ALG) (1% to 2% w/v) and Arabica coffee pulp extract (CPE) (10% to 20% v/v) were considered independent variables. The variable combinations for the optimal response function were 1% (w/v) ALG and 20% (v/v) CPE. The validated optimum formula was further developed using ultrasonication which successfully reduced particle size to 31 nm and significantly improved of the film’s mechanical strength and barrier properties, leading to an increase in tensile strength (TS) by 78% and elongation at break (EAB) by 17.75%, along with decreases in thickness (18.81%), water vapor transmission rate (WVTR) (33.36%), and solubility (10.11%). Furthermore, the nano coffee pulp extract (NCPE) film exhibited higher antimicrobial activity against Escherichia coli and Staphylococcus aureus compared to the coffee pulp extract (CPE) film. Applied as a coating, the NCPE was able to reduce the rate of weight loss in shrimp by 4.01% and strawberries by 11.09%, and significantly suppressed microbial growth, achieving approximately 99% reduction in shrimp, maintaining the texture value of food products, and extending the shelf life of shrimp for 36 hours and strawberries for 5 days at room temperature. Thus, the development of edible film and edible coating through the addition of Arabica coffee pulp nano extract has proven effective in improving physical characteristics and antimicrobial activity.
REVIEW ARTICLE
Phenylketonuria in Brazil: a narrative review on treatment and public policies regarding patient and family demands Napoli, Daniele Cristina da Silva Andreola, Kaciane Pacheco, Maria Teresa Bertoldo

Resumen en Inglés:

Abstract Phenylketonuria (PKU) is an autosomal recessive disorder that affects phenylalanine metabolism and, if left untreated, leads to severe intellectual disability, behavioral problems, cognitive impairments, and other dysfunctions. This study aimed to assess the clinical and social aspects of PKU, focusing on the current Brazilian context, by synthesizing existing knowledge and its implications. A literature review was conducted using different academic databases, including Scopus, Web of Science, Elsevier, and Google Scholar, using context related to terms such as “phenylketonuria”, “phenylketonuria in Brazil”, “phenylalanine metabolism”, “history of phenylketonuria”, and “neonatal screening in Brazil”. Then, in order to keep our review up to date, works published in the last ten years were prioritized. Neonatal screening is widely adopted globally and began in Brazil in 1976, becoming mandatory in 2001 following the establishment of the National Neonatal Screening Program. The standard treatment begins immediately after diagnosis and consists of a protein-restricted diet supplemented with free amino acid formulas. Currently, two pharmacological therapies are available—sapropterin dihydrochloride and enzyme replacement therapy—which, although approved by Agência Nacional de Vigilância Sanitária (ANVISA), are still not offered by the Unified Health System (in Portuguese – Sistema Único de Saúde (SUS)) due to their high cost. Therefore, nutritional therapy remains the main form of treatment for PKU, despite being socially excluding and difficult to maintain over a lifetime. Public policies are urgently needed to ensure access to more effective and less restrictive treatments, aiming to improve the quality of life for individuals with PKU and minimize the consequences of the disease.
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