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Keywords = frankfurter-type sausages

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37 pages, 1896 KB  
Article
Extruded and Enzyme-Fractionated Avocado (Persea americana Mill.) Seed Flour as an Ingredient for Frankfurter-Type Sausages: Technological, Physicochemical, and Sensory Implications
by Jesús Salvador Jaramillo-De la Garza, Esther Pérez-Carrillo, Carmen Hernández-Brenes, Dariana Graciela Rodríguez-Sánchez and Erick Heredia-Olea
Foods 2026, 15(9), 1615; https://doi.org/10.3390/foods15091615 - 6 May 2026
Viewed by 574
Abstract
The valorization of agro-industrial byproducts has emerged as an important strategy to improve resource efficiency and promote circular food systems. This study evaluated avocado (Persea americana Mill.) seed as a functional ingredient for frankfurter-type sausages using extrusion followed by enzyme-assisted wet milling. [...] Read more.
The valorization of agro-industrial byproducts has emerged as an important strategy to improve resource efficiency and promote circular food systems. This study evaluated avocado (Persea americana Mill.) seed as a functional ingredient for frankfurter-type sausages using extrusion followed by enzyme-assisted wet milling. Extrusion modified the techno-functional properties of avocado seed flour, increasing the water absorption index from 2.87 to 3.91 g/g while reducing the oil absorption index from 2.12 to 1.84 g/g. In addition, extrusion reduced the total acetogenin content by approximately 82.8% (11.99 to 2.07 mg/g), indicating a substantial reduction of these endogenous compounds. When incorporated at a concentration of 1% (w/w) to replace commercial soy fiber, avocado seed ingredients produced frankfurter-type sausages with low cooking losses (1.67–3.77%), stable water activity (0.979–0.990), and an acceptable instrumental hardness (1.01–1.41 N) over 35 days of refrigerated storage. Consumer sensory evaluation (n = 106) showed comparable or higher flavor and overall acceptability scores for sausages containing avocado seed flour relative to the control formulation. These findings demonstrate that extruded avocado seed flour can function as a viable upcycled ingredient for emulsified meat products, supporting circular bioeconomy approaches for the development of value-added foods of animal origin. Full article
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16 pages, 1823 KB  
Article
Physicochemical, Functional, and Consumer Relevant Characteristics of Plant-Based Meat Alternatives: The Role of Processing and Ingredients
by Erënesa Gorçaj, Afrim Hamidi and Zehra Hajrulai-Musliu
Appl. Sci. 2026, 16(4), 1869; https://doi.org/10.3390/app16041869 - 13 Feb 2026
Viewed by 1230
Abstract
Plant-based meat alternatives (PBMAs) are receiving increasing attention as potential substitutes for conventional meat products. This study presents a descriptive evaluation of the functional, physicochemical, and consumer-related characteristics of PBMAs, with particular emphasis on ingredient composition and thermal processing conditions. A total of [...] Read more.
Plant-based meat alternatives (PBMAs) are receiving increasing attention as potential substitutes for conventional meat products. This study presents a descriptive evaluation of the functional, physicochemical, and consumer-related characteristics of PBMAs, with particular emphasis on ingredient composition and thermal processing conditions. A total of 100 plant-based salami- and frankfurter-type sausage formulations were produced and subjected to three heat treatment durations (90, 150, and 210 min) at 92 °C. The samples were analyzed for proximate composition, fatty acid profile, water activity, and pH. Protein content ranged from 3.50% to 23.1%, with higher values observed in formulations containing multiple protein sources, while fiber content reached a maximum of 7.9% in selected formulations. Increasing thermal processing duration was associated with reduced moisture content, decreasing from approximately 45% (90 min) to 25% (210 min). Fatty acid analysis revealed lipid profiles dominated by polyunsaturated fatty acids, particularly linoleic acid (55–61%), with no detectable trans fatty acids. Consumer perceptions were assessed using a structured questionnaire (n = 200) conducted across five cities, indicating moderate awareness of PBMAs (52%) and limited willingness to replace conventional meat products (20%). Price and product availability were identified as the primary barriers to adoption. Overall, these findings provide a descriptive overview of compositional and physicochemical variability across a heterogeneous set of plant-based meat formulations while contextualizing technological characteristics within a consumer acceptance framework. Full article
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17 pages, 1274 KB  
Article
Inulin-Stabilised Vegetable Oil Emulsions as Fat Replacers in Chicken Frankfurters: Technological and Textural Evaluation
by Tamara Stamenić, Sladjana Šobajić, Maja Petričević, Nikola Delić, Slobodan Dolašević, Slaviša Stajić and Nikola Stanišić
Gels 2025, 11(11), 863; https://doi.org/10.3390/gels11110863 - 28 Oct 2025
Cited by 1 | Viewed by 1105
Abstract
This study investigated the complete replacement of pork backfat in frankfurters with inulin-based emulsion gels made from linseed, walnut or algal oil and structured in two ratios (1:2:0.5 and 1:2:1, oil–water–inulin). Proximate composition, water holding capacity, emulsion stability and colour were assessed after [...] Read more.
This study investigated the complete replacement of pork backfat in frankfurters with inulin-based emulsion gels made from linseed, walnut or algal oil and structured in two ratios (1:2:0.5 and 1:2:1, oil–water–inulin). Proximate composition, water holding capacity, emulsion stability and colour were assessed after production, while texture profile analysis (TPA) was monitored during 45 days of vacuum storage. The reformulated sausages showed a significant reduction in fat content (from 21.91% to 3.81%, p < 0.001) and increased water and carbohydrate levels (p < 0.001). These shifts in composition resulted in a slightly lower pH, higher cooking and purge losses and lower emulsion stability (p < 0.001), particularly when treated with algal oil. Colour measurements revealed lighter (higher L*, p = 0.008) and more yellowish sausages (p < 0.001), with walnut oil at a 1:2:0.5 emulsion ratio showing the least deviation from the control (ΔE = 7.45). The TPA showed that oil type was the dominant factor. Walnut formulations, especially in the 1:2:1 ratio, had hardness and chewiness values closest to those of the control, while algal sausages were softer and less cohesive (p < 0.05). PCA and heatmap analyses confirmed clustering by oil type and storage time, underlining the technological suitability of the walnut gels. Overall, inulin–oil gels enable nutritional reformulation but pose a technological challenge, with walnut oil proving to be the most promising substitute and algal oil requiring additional stabilisation. Full article
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15 pages, 296 KB  
Article
The Effect of Salt Reduction on Sensory, Physicochemical, and Microbial Quality in Selected Meat Products
by Miroslav Jůzl, Josef Kameník, Alena Saláková, Blanka Macharáčková, František Ježek, Markéta Janík Piechowiczová and Jan Slováček
Foods 2025, 14(18), 3150; https://doi.org/10.3390/foods14183150 - 9 Sep 2025
Cited by 3 | Viewed by 3486
Abstract
Efforts to reduce sodium chloride levels in meat products within the European Union are closely aligned with the World Health Organization’s recommendation to limit daily sodium intake to a maximum of 5 g per person. The nutritional significance of excessive salt intake is [...] Read more.
Efforts to reduce sodium chloride levels in meat products within the European Union are closely aligned with the World Health Organization’s recommendation to limit daily sodium intake to a maximum of 5 g per person. The nutritional significance of excessive salt intake is well-established, and the role of sodium chloride in meat products is not only crucial for sensory quality but also for hygienic safety. The aim of this study was to evaluate the impact of varying salt concentrations (1.4%, 1.6%, 1.8%, and 2.0%) on selected quality parameters of two common processed meat products: grilling sausages (Špekáčky) and frankfurters (Wiener Würstel). Sensory analysis was conducted with a relatively high number of trained evaluators (n = 73 for Wiener Würstel; n = 63 for Špekáčky). The results indicated that moderate salt reduction had no statistically significant effect (p > 0.05) on either the sensory attributes or the hygienic quality of the products. The method of salt content determination was shown to be critical for accurate assessment. These findings suggest that both types of reformulated products with reduced sodium content can be effectively used in production without compromising quality. Therefore, such formulations may serve as viable strategies for the food industry to contribute to public health objectives by reducing dietary sodium intake. Full article
19 pages, 2627 KB  
Article
Monitoring Sublethal Injury in Listeria monocytogenes During Heat Treatment of Pork Frankfurter-Type Sausages: A Single-Cell vs. Population Level Approach
by Marianna Arvaniti, Eleni Vlachou, Maria Kourteli, Anastasia E. Kapetanakou and Panagiotis N. Skandamis
Foods 2025, 14(17), 3144; https://doi.org/10.3390/foods14173144 - 8 Sep 2025
Cited by 3 | Viewed by 3321
Abstract
Listeria monocytogenes is a foodborne pathogen capable of contaminating ready-to-eat meat products, e.g., frankfurters. Post-packaging mild heat treatment via water immersion is commonly employed; however, this may be sublethal to cells located in protected niches or beneath the product surface. The objectives of [...] Read more.
Listeria monocytogenes is a foodborne pathogen capable of contaminating ready-to-eat meat products, e.g., frankfurters. Post-packaging mild heat treatment via water immersion is commonly employed; however, this may be sublethal to cells located in protected niches or beneath the product surface. The objectives of this study were to evaluate thermal injury of L. monocytogenes on frankfurters at single-cell versus population level and to comparatively estimate pathogens’ physiological status. Pork frankfurter-type sausages were inoculated (ca. 7.0–7.5 log CFU/cm2) with L. monocytogenes strain EGDE-e. Heat treatment was performed at 61 °C (max. 60 min) and 64 °C (max. 12 min). To determine the injured subpopulation from the total, tryptic soy agar with 0.6% yeast extract (TSAYE), supplemented or not with 5% NaCl, was used. Plating-based quantification of injured cells was compared to CFDA/PIstained cells analysed by fluorescence microscopy and quantified with Fiji software. Injury was recorded mainly after 2 and 4 min at 64 °C, whereas no injury was detected at 61 °C, at population level. Following exposure to 61 °C for 60 min, culturable cells dropped below the enumeration limit (0.3 log CFU/cm2), while a considerable number of CFDA+/PI and CFDA+/PI+ cells indicated viable-but-non-culturable induction and sublethal injury, respectively. These findings suggest that non-culturability may limit the accuracy of solely culture-based enumeration methods. Full article
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16 pages, 4179 KB  
Article
Eggplant Flour as a Functional Ingredient in Frankfurt-Type Sausages: Design, Preparation and Evaluation
by Jenny Blumenthal-Rodriguez, Carlos A. Amaya-Guerra, Armando Quintero-Ramos, Sandra L. Castillo-Hernández, Minerva Bautista-Villarreal, Juan G. Báez-González, Joel H. Elizondo-Luevano and Cynthia Torres-Alvarez
Foods 2025, 14(4), 624; https://doi.org/10.3390/foods14040624 - 13 Feb 2025
Cited by 1 | Viewed by 3177
Abstract
The food industry faces significant challenges in meeting the demand for healthier and more sustainable products, particularly in the search for natural alternatives that optimize the nutritional value of processed products and, at the same time, improve their functionality and shelf life. The [...] Read more.
The food industry faces significant challenges in meeting the demand for healthier and more sustainable products, particularly in the search for natural alternatives that optimize the nutritional value of processed products and, at the same time, improve their functionality and shelf life. The objective of this study was to evaluate eggplant flour (EF) in different concentrations (2–9%) as an alternative ingredient in the production of Frankfurt sausages. The physicochemical (Aw and pH) and chromatic properties, as well as the antioxidant activity (ABTS, DPPH, ORAC), total phenolic content, flavonoids, and sensory evaluation were analyzed. The physicochemical properties were as follows: Aw showed an average value of 0.973, and the average pH was 6.35. Additionally, significant differences were observed in chromatic properties across treatments. The antioxidant activity values ranged between 586.4–1775.5 ABTS µM eq. of Trolox/g of sausage and 550.7–1764.0 µM eq. of Trolox/g of sausage, indicating an improvement in activity as EF concentration increased. Treatments containing EF at 2% (T2) and 3% (T3) achieved an average acceptability rating close to 4 (“I like it slightly”), demonstrating a balance between functionality and sensory acceptability, although higher concentrations adversely affected flavor and texture perception. Eggplant flour was an effective and sustainable choice for enhancing meat products’ quality and shelf life, contributing to the development of healthier and more sustainable food options. Full article
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26 pages, 5745 KB  
Article
Validating Accelerated Shelf Life Testing Methodology for Predicting Shelf Life in High-Pressure-Processed Meat Products
by Athina Ntzimani, Maria Tsevdou, Evangelos Andrianos, Dimitrios Gounaris, Theodosios Spiliotopoulos, Petros Taoukis and Maria C. Giannakourou
Appl. Sci. 2025, 15(3), 1264; https://doi.org/10.3390/app15031264 - 26 Jan 2025
Cited by 9 | Viewed by 9090
Abstract
The shelf life of meat products is a critical factor in ensuring both consumer safety and product quality. Traditional methods for determining shelf life are labor-intensive and time-consuming, making it challenging for manufacturers to adapt to market demands. The accelerated shelf life testing [...] Read more.
The shelf life of meat products is a critical factor in ensuring both consumer safety and product quality. Traditional methods for determining shelf life are labor-intensive and time-consuming, making it challenging for manufacturers to adapt to market demands. The accelerated shelf life testing (ASLT) methodology offers a viable solution by exposing products to controlled elevated conditions that simulate long-term storage, allowing for faster shelf life predictions. This study evaluates the ASLT methodology as a predictive tool for determining the shelf life of high-pressure (HPP)-treated meat products. The present study includes experiments to verify the shelf life of frankfurter-type sausages under accelerated conditions. By simulating long-term storage at elevated temperatures (4–18 °C), a kinetic model was developed to monitor spoilage bacteria growth, with validation under dynamic temperature conditions. The results indicate that the main spoilage population of frankfurter-type sausages was lactic acid bacteria (LAB), which was strongly correlated with the total mesophilic microflora of the products. The findings show that elevated storage temperatures (8 and 18 °C) provide accurate shelf life predictions, offering an efficient approach to ensure product quality and meet consumer demands. Full article
(This article belongs to the Special Issue Advances in Food Microbiology and Its Role in Food Processing)
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15 pages, 2045 KB  
Article
Tamarind (Tamarindus indica L.) Components as a Sustainable Replacement for Pork Meat in Frankfurter Sausages
by Rafael Sepúlveda F. Trevisan Passos, Camila Cristina A. de Sousa, Mauricio C. A. da Silva, Ana M. Herrero, Claudia Ruiz-Capillas and Carlos Pasqualin Cavalheiro
Foods 2025, 14(2), 197; https://doi.org/10.3390/foods14020197 - 10 Jan 2025
Cited by 2 | Viewed by 4433
Abstract
Five types of frankfurters were formulated: a control without tamarind (T0) and four samples using 5% tamarind pulp paste (PT5), seeds (ST5), peel (CT5), and a blend of all of them (PSCT5), replacing the same portion of meat. The inclusion of tamarind components [...] Read more.
Five types of frankfurters were formulated: a control without tamarind (T0) and four samples using 5% tamarind pulp paste (PT5), seeds (ST5), peel (CT5), and a blend of all of them (PSCT5), replacing the same portion of meat. The inclusion of tamarind components led to a reduction in the moisture and protein content of the reformulated frankfurters. In terms of mineral composition, CT5 showed the highest (p < 0.05) calcium content. Additionally, ST5 and CT5 treatments demonstrated the lowest processing loss values. The pH was lower in the PT5 treatment (p < 0.05). Incorporating tamarind components reduced the lightness (L*) of the frankfurters, resulting in darker sausages. However, ST5 exhibited greater redness (a*), while higher yellowness (b*) values were observed in PT5 and CT5 treatments (p < 0.05). Texture analysis revealed no differences (p > 0.05) in hardness and chewiness between T0 and PT5; however, ST5 exhibited the highest values for these parameters (p < 0.05). No variation in the conformational order of the lipid acyl chains due to the incorporation of tamarind compounds was observed related to physical entrapment of these compounds in the frankfurter matrix. Both T0 and PT5 were well accepted by consumers, and scores higher than 7 were observed for overall acceptability and purchase intention. The study demonstrated that incorporating tamarind components, especially pulp paste (PT), is a viable alternative for replacing lean pork meat in frankfurters, improving the sustainable aspects of frankfurter production. Full article
(This article belongs to the Section Meat)
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21 pages, 1454 KB  
Review
Oleogels—Innovative Technological Solution for the Nutritional Improvement of Meat Products
by Simona Perța-Crișan, Claudiu-Ștefan Ursachi, Bianca-Denisa Chereji and Florentina-Daniela Munteanu
Foods 2023, 12(1), 131; https://doi.org/10.3390/foods12010131 - 27 Dec 2022
Cited by 35 | Viewed by 7765
Abstract
Food products contain important quantities of fats, which include saturated and/or unsaturated fatty acids. Because of a proven relationship between saturated fat consumption and the appearance of several diseases, an actual trend is to eliminate them from foodstuffs by finding solutions for integrating [...] Read more.
Food products contain important quantities of fats, which include saturated and/or unsaturated fatty acids. Because of a proven relationship between saturated fat consumption and the appearance of several diseases, an actual trend is to eliminate them from foodstuffs by finding solutions for integrating other healthier fats with high stability and solid-like structure. Polyunsaturated vegetable oils are healthier for the human diet, but their liquid consistency can lead to a weak texture or oil drain if directly introduced into foods during technological processes. Lately, the use of oleogels that are obtained through the solidification of liquid oils by using edible oleogelators, showed encouraging results as fat replacers in several types of foods. In particular, for meat products, studies regarding successful oleogel integration in burgers, meat batters, pâtés, frankfurters, fermented and bologna sausages have been noted, in order to improve their nutritional profile and make them healthier by substituting for animal fats. The present review aims to summarize the newest trends regarding the use of oleogels in meat products. However, further research on the compatibility between different oil-oleogelator formulations and meat product components is needed, as it is extremely important to obtain appropriate compositions with adequate behavior under the processing conditions. Full article
(This article belongs to the Section Meat)
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12 pages, 2229 KB  
Article
Antioxidant and Sensorial Properties: Meat Analogues versus Conventional Meat Products
by Fouad Ali Abdullah Abdullah, Dani Dordevic, Eliska Kabourkova, Johana Zemancová and Simona Dordevic
Processes 2022, 10(9), 1864; https://doi.org/10.3390/pr10091864 - 15 Sep 2022
Cited by 21 | Viewed by 4670
Abstract
Meat-product alternatives have become more popular among consumers, mainly due to concern for animal welfare and demand for more eco-friendly production. This study focused on the comparison between the antioxidant capacities of selected types of meat products and those of their plant-based alternatives. [...] Read more.
Meat-product alternatives have become more popular among consumers, mainly due to concern for animal welfare and demand for more eco-friendly production. This study focused on the comparison between the antioxidant capacities of selected types of meat products and those of their plant-based alternatives. The analogues of the following products were analyzed: minced meat, burger, steak, Hungarian sausages, Frankfurter sausages and salami. Total polyphenol contents and antioxidant capacities and sensory profiles of the products were determined. The highest polyphenol content (1.85 mg Gallic acid/g) and antioxidant capacity values (DPPH: 41.80% inhibition, CUPRAC: 9.21 Trolox mmol/kg, FRAP: 7.51 mmol/g, ABTS: 7.45% inhibition) were observed in the analogue samples of Hungarian sausages due to the oat flour presence in these products. The results indicated that antioxidant properties of meat analogue products (plant sources) were superior compared to conventional meat products (produced from animal sources). The sensorial attributes indicated no significant (p > 0.05) differences in taste (except the Frankfurter sausages). The novelty of the study can be seen in the fact that it confirmed that the sensory properties of meat analogue products can be close to those of traditional meat products. Full article
(This article belongs to the Special Issue Bio-Active Compounds in Food Production)
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14 pages, 1093 KB  
Article
Frankfurter-Type Sausage Enriched with Buckwheat By-Product as a Source of Bioactive Compounds
by Anna Marietta Salejda, Katarzyna Olender, Magdalena Zielińska-Dawidziak, Monika Mazur, Jakub Szperlik, Joanna Miedzianka, Ireneusz Zawiślak, Joanna Kolniak-Ostek and Aleksandra Szmaja
Foods 2022, 11(5), 674; https://doi.org/10.3390/foods11050674 - 25 Feb 2022
Cited by 29 | Viewed by 5004
Abstract
Buckwheat by-products may be used as promising food ingredients due to their nutritional composition. Buckwheat husk (BH) may be used in meat products as a source of valuable compounds. In this study, the addition of BH to the quality of frankfurter-type sausages was [...] Read more.
Buckwheat by-products may be used as promising food ingredients due to their nutritional composition. Buckwheat husk (BH) may be used in meat products as a source of valuable compounds. In this study, the addition of BH to the quality of frankfurter-type sausages was investigated, aiming to reduce buckwheat waste and to develop nutritionally enriched sausages. For the purpose of this study, a range of measurements, as well as observations, have been carried out. This included the following: pH, weight losses, yield, the instrumental color and texture measurement, protein digestibility, polyphenols, amino acid, trace elements analysis, and the organoleptic evaluation. Compared with no BH sausages, the cooking losses of sausages with 3% BH were higher, while storage losses were lower. BH increased the hardness of sausages after two weeks of storage. The growing addition of BH resulted in a decrease in L* and b*. This change of color resulted in its lower level of consumer acceptability. BH addition did not reduce the protein digestibility. The total amino acid content increased with the increasing husk addition, from 161.8 mg/kg to 228.0 mg/kg. Moreover, BH increased the content of manganese, calcium, potassium and magnesium. This research suggested that incorporation of BH improved the nutritional value of sausages with minimal changes in technological and sensory properties. Full article
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18 pages, 2467 KB  
Article
Physicochemical, Oxidative Stability and Sensory Properties of Frankfurter-Type Sausage as Influenced by the Addition of Carrot (Daucus carota) Paste
by Faisal Eudes Sam, Teng-Zhen Ma, Richard Atinpoore Atuna, Rafia Salifu, Bilal-Ahmad Nubalanaan, Francis Kweku Amagloh and Shun-Yu Han
Foods 2021, 10(12), 3032; https://doi.org/10.3390/foods10123032 - 6 Dec 2021
Cited by 25 | Viewed by 7546
Abstract
This study examined the addition of carrot paste (CP) at levels of 3%, 5%, and 10% as a potential antioxidant in frankfurter-type sausages, denoted as F1, F2, and F3. F0, was a control sample with no addition of CP. All formulated samples were [...] Read more.
This study examined the addition of carrot paste (CP) at levels of 3%, 5%, and 10% as a potential antioxidant in frankfurter-type sausages, denoted as F1, F2, and F3. F0, was a control sample with no addition of CP. All formulated samples were stored for 14 days during which their physicochemical, oxidative stability, and sensory properties were evaluated. Results showed that the pH of frankfurter-type sausages was not affected by the addition of CP, however, higher pH values were observed in CP-enriched samples on the first day of production and subsequent storage days. Cooking loss (CL) in frankfurter-type sausages was in the range of 2.20% to 2.87%, with the CP-enriched samples having a lower CL percentage, particularly F3 samples, compared to the control. Protein and fat content were lower in CP-enriched samples, but ash content increased. CP-enriched frankfurter-type sausages recorded significantly higher polyphenol contents compared to the control. Total polyphenol content in CP-enriched samples F1, F2, and F3 was higher throughout storage compared to the control. Lower peroxide values were also recorded in CP-enriched samples F1 (2.5 meq/kg), F2 (2.4 meq/kg), and F3 (2.2 meq/kg) compared to the control (2.9 meq/kg), demonstrating greater 2,2-Diphenyl-1-picrylhydrazyl (DPPH) antioxidant activity than the control samples. Formulations treated with 10% CP gained significantly higher scores for color, texture, and overall acceptability. Principal component analysis showed that higher inclusion levels of CP in formulation improved the sensory quality and oxidative stability. In conclusion, CP could be used to enhance the oxidative stability of frankfurter-type sausage without negatively influencing the sensory quality. Full article
(This article belongs to the Special Issue Preservation and Green Processing of Meat Products)
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6 pages, 541 KB  
Proceeding Paper
Assessment of Total and Partial Fat Replacement in Frankfurt-Type Sausages by Gelled Emulsion Elaborated with Peanut Flour and Flax Oil. Effect on Chemical Composition, Physic-Chemical and Sensorial Properties
by Carmen Botella-Martínez, Estrella Sayas-Barberá, José Ángel Pérez-Alvarez, Juana Fernández-López and Manuel Viuda-Martos
Biol. Life Sci. Forum 2021, 6(1), 81; https://doi.org/10.3390/Foods2021-11005 - 14 Oct 2021
Cited by 1 | Viewed by 1793
Abstract
A gelled emulsion (GE) prepared with flax oil and peanut flour was used to replace pork back-fat in Frankfurt-type sausages. Three different formulations were prepared: Control (CS) with 30% pork back fat, and two to achieve 50% and 100% fat substitution by GE [...] Read more.
A gelled emulsion (GE) prepared with flax oil and peanut flour was used to replace pork back-fat in Frankfurt-type sausages. Three different formulations were prepared: Control (CS) with 30% pork back fat, and two to achieve 50% and 100% fat substitution by GE (GE50 and GE100, respectively). This study demonstrated that the use of gelled emulsion elaborated with peanut flour and flax oil may be a promising strategy in the reformulation of healthier meat products due to producing a reduction in fat content and improving the fatty acid profile. Full article
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17 pages, 2516 KB  
Article
Underutilized Green Banana (Musa acuminata AAA) Flours to Develop Fiber Enriched Frankfurter-Type Sausages
by Diego Salazar, Mirari Arancibia, Lenin Calderón, María Elvira López-Caballero and María Pilar Montero
Foods 2021, 10(5), 1142; https://doi.org/10.3390/foods10051142 - 20 May 2021
Cited by 16 | Viewed by 7413
Abstract
This study aimed to develop a fiber-enriched Frankfurter-type sausage by incorporating underutilized green banana flours as a meat extender, replacing wheat flour with banana flours (8%). A low-fat formulation substituting 12% pork fat with 24% banana peel flour was also studied. Sausages were [...] Read more.
This study aimed to develop a fiber-enriched Frankfurter-type sausage by incorporating underutilized green banana flours as a meat extender, replacing wheat flour with banana flours (8%). A low-fat formulation substituting 12% pork fat with 24% banana peel flour was also studied. Sausages were stored at 4 °C/15 days. Cooking loss was low (5.6–4.1%) in all formulations and the substitution of wheat flour with banana flour did not modify moisture and protein composition, while carbohydrate, fiber, and ashes varied with the flour composition. In the low-fat sausages, fiber carbohydrate and ashes increased the most. Texture and color parameters were very similar for high-fat sausages throughout storage, although low-fat sausage showed higher hardness, while chewiness, L*, and whiteness tended to decrease. During the first week of storage, the microbial growth was scarce and then, an increase, except in the low-fat batch, in which growth remained constant. Enterobacteria and Staphylococcus aureus were not detected during storage. Sensory attributes throughout storage were very similar for all high-fat sausages; the odor in the formulations was defined as “different” but not unpleasant. The low-fat sausages, defined as a new product different from conventional sausages, were well accepted by the panelist. Banana flours are a suitable ingredient option to add nutritional value to Frankfurter-type sausages, which can be consumed by the wheat allergic population. Full article
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13 pages, 2916 KB  
Article
Antimicrobial Polyamide-Alginate Casing Incorporated with Nisin and ε-Polylysine Nanoparticles Combined with Plant Extract for Inactivation of Selected Bacteria in Nitrite-Free Frankfurter-Type Sausage
by Kazem Alirezalu, Milad Yaghoubi, Leila Poorsharif, Shadi Aminnia, Halil Ibrahim Kahve, Mirian Pateiro, José M. Lorenzo and Paulo E. S. Munekata
Foods 2021, 10(5), 1003; https://doi.org/10.3390/foods10051003 - 4 May 2021
Cited by 28 | Viewed by 5180
Abstract
The effects of combining a polyamide-alginate casing incorporated with nisin (100 ppm and 200 ppm) and ε-polylysine (500 ppm and 1000 ppm) nanoparticles and a mixed plant extract as ingredient in sausage formulation (500 ppm; composed of olive leaves (OLE), green tea (GTE) [...] Read more.
The effects of combining a polyamide-alginate casing incorporated with nisin (100 ppm and 200 ppm) and ε-polylysine (500 ppm and 1000 ppm) nanoparticles and a mixed plant extract as ingredient in sausage formulation (500 ppm; composed of olive leaves (OLE), green tea (GTE) and stinging nettle extracts (SNE) in equal rates) were studied to improve the shelf life and safety of frankfurter-type sausage. The film characteristics and microbiological properties of sausage samples were evaluated. Sausage samples were packaged in polyethylene bags (vacuum condition) and analysed during 45 days of storage at 4 °C. Control sausages were also treated with 120 ppm sodium nitrite. Polyamide-alginate films containing 100 ppm nisin and 500 ε-PL nanoparticles had the highest ultimate tensile strength compared to other films. However, 100 ppm nisin and 500 ε-PL nanoparticles decreased water vapour permeability of films. The results also revealed that nisin nanoparticles had significantly (p < 0.05) low inhibitory effects against Escherichia coli, Staphylococcus aureus, molds and yeasts and total viable counts compared to control and ε-PL nanoparticles. Furthermore, 1000 ppm ε-PL nanoparticles displayed the highest antimicrobial activity. Based on the obtained results, the films containing ε-PL nanoparticle could be considered as a promising packaging for frankfurter-type sausages. Full article
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