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Impact of microencapsulation and milk matrix on Lactobacillus acidophilus survivalin yoghurt-based icecreamsOriginal PaperFeray İnci Maden, Salih ÖzdemirCzech J. Food Sci., 2026, 44(3):181-191 | DOI: 10.17221/107/2025-CJFS This study examined the effects of milk origin (cow versus buffalo), probiotic delivery form (free cells versus alginate-encapsulated Lactobacillus acidophilus ATCC 4356), and inulin supplementation on microbial viability, physicochemical properties, and melting behaviour of yoghurt ice cream over a 60 day storage period. Ten formulations were evaluated on days 1, 15, 30, and 60 for total and probiotic counts, yeast and mould levels, pH, titratable acidity, drip time, viscosity (measured at 30 and 50 rpm), and overrun. Buffalo milk samples containing encapsulated probiotics and inulin showed the highest Lactobacillus acidophilus counts (reaching 5.97 log CFU·g–1), the greatest resistance to melting (first drip: 97.14 min), the highest viscosity (20.166 Pa.s at 30 rpm), and the highest overrun (34.77%), whereas cow milk controls exhibited the lowest microbial survival and melting performance. Encapsulation markedly improved probiotic stability; in most encapsulated samples, yeast and mould counts remained below 2.00 log CFU·g–1 after 30 days, and this was accompanied by higher pH values (maximum 4.99 ± 0.04) and more controlled titratable acidity levels (0.57–0.87%). These findings indicate that alginate microencapsulation, particularly within buffalo milk matrices, effectively enhances probiotic viability and the functional quality of frozen dairy products. |
Enhancing labneh with freeze-dried fruits or fruit flavours: Effects on physicochemical, microbiological, and sensory propertiesOriginal PaperBayram Çetin, Christina Rehagel, Ömer AkinedenCzech J. Food Sci., 2026, 44(3):216-226 | DOI: 10.17221/189/2025-CJFS The present study aimed to formulate novel labneh variants containing freeze-dried fruit pieces or fruit flavour and to evaluate their influence on physicochemical properties, microbiological quality, and sensory acceptance during storage. For this purpose, fruit-piece labneh was prepared by incorporating 6% freeze-dried strawberry, blackberry, or kiwi pieces, while fruit-flavoured labneh was formulated by adding 0.01% colouring and 0.1% fruit flavour derived from strawberry, blackberry, or kiwi juice. The labneh variants developed in this study were subjected to additional post-fermentation pasteurisation followed by hot filling. Samples were analysed on days 1, 7, 15, and 30 of storage for selected physicochemical, microbiological and sensory parameters. Compared with plain labneh, fruit-piece samples showed increased dry matter content, except for those containing kiwi. Conversely, water activity and fat content decreased, and variations in titratable acidity and pH were influenced by the type of fruit added. Microbiological analyses based on classical indicator microorganisms revealed low levels of total aerobic mesophilic bacteria ranging from 1.5 × 101 to 8.1 × 101 CFU·g–1. The Enterobacteriaceae, Escherichia coli, yeasts and moulds were not detected, indicating good product safety. Notably, structural defects such as syneresis and increased bitterness were determined in kiwi-piece samples during storage. Sensory evaluation indicated that strawberry-flavoured, blackberry-flavoured, and strawberry-piece labneh were the most preferred by panellists. Overall, fruit- or flavour-enriched labneh produced with an additional post-fermentation heat treatment represents an attractive option for product diversification in the dairy industry. Based on their satisfactory safety, good microbiological stability and high sensory acceptance, these variants offer a strong potential for industrial application. |
Production and quality assessment of fig wine: A comparative study on Turkish fig varietiesOriginal PaperZiya Binat, Ayºegül Kırca-ToklucuCzech J. Food Sci., 2026, 44(3):192-203 | DOI: 10.17221/201/2025-CJFS This study aimed to produce technologically viable fig wines from two main Turkish fig varieties (Sarilop and Bursa Siyahi) and to evaluate their quality and acceptability. Fig musts were prepared at two soluble solids concentrations (17 and 24 °Bx) using fresh and sun-dried Sarilop (yellow-coloured) and fresh Bursa Siyahi (dark purple-coloured) figs. Total phenolic content of fig wines ranged from 223.21 to 267.98 mg gallic acid equivalents (GAE)·L–1, while total antioxidant capacity varied from 3.73 to 4.42 µmol Trolox·(100 mL)–1 (ABTS) and 35.09 to 69.30 µmol Trolox·(100 mL)–1 (DPPH). Wines produced from fresh Bursa Siyahi figs exhibited the highest antioxidant activity. Both fig variety and fruit form (fresh or dried) significantly affected phenolic composition. Epicatechin and chlorogenic acid were predominant in wines produced from fresh Bursa Siyahi figs, whereas rutin was dominant in wines made from fresh Sarilop figs. Wines produced from musts with 24 °Bx showed significantly higher descriptive sensory scores than those produced from musts with 17 °Bx (P < 0.05). No significant difference in overall impression was observed between wines made from fresh and dried Sarilop figs. |
Drying effects on physicochemical and techno-functional properties of Terminalia arjuna leaf mucilagein set yoghurt Original PaperR.R.G.H.N. Senarathna, T.C. Kananke[Ahead of Print]Czech J. Food Sci., X:X | DOI: 10.17221/16/2026-CJFS Stabilisers are widely used in yoghurt production to improve texture, consistency, and gel stability while minimising syneresis. Although gelatine is commonly applied for this purpose, ethical and sustainability concerns have increased interest in plant-based alternatives. This study evaluated Terminalia arjuna leaf mucilage powders as a natural stabiliser in set yoghurt. Mucilage was dried by freeze drying, microwave drying, and oven drying, incorporated at 0.6–1.0% (w/w), and compared with gelatine-stabilised yoghurt for physicochemical, textural, and sensory properties. The drying method and concentration significantly affected yoghurt quality. Yoghurt containing 1.0% freeze-dried mucilage powder showed the highest water-holding capacity (58.40 ± 0.10%) and lowest syneresis (22.10 ± 0.10%), with sensory and proximate characteristics comparable to the gelatine control. These results demonstrate that freeze-dried T. arjuna leaf mucilage, at an optimised concentration, is a promising plant-based alternative to gelatine in set yoghurt. |
Preparation and characterisation of antioxidative edible films based on cocoa pods extract incorporating black or green tea extract Original PaperTriana Lindriati, Siti Mutimmah, Maryam Husnul Istiqomah, Melania Anggraini, Herlina Herlina, Sih Yuwanti, Asmak Afriliana[Ahead of Print]Czech J. Food Sci., X:X | DOI: 10.17221/81/2025-CJFS Cocoa pods are an underutilised agro-industrial waste rich in pectin and polyphenols. This research developed cocoa pod extract as a base material for antioxidant edible films by incorporating black or green tea extracts as solvents. Five formulations were prepared, which differ in solvent: distilled water, 50% v/v, and 100% v/v of black or green tea extract. Using tea extracts as a solvent significantly (P ≤ 0.05) increased total polyphenol content, antioxidant activity, and tensile strength, while reducing solubility, elongation, and water vapour transmission rate. Green tea extract showed higher effects than black tea extract. The edible film prepared with 100% v/v green tea extract exhibited the highest polyphenol content [18.09 ± 1.49 mg gallic acid equivalents (GAE)·g–1] and DPPH (2,2-diphenyl-1-picrylhydrazyl) inhibition (52.28 ± 2.6%), and effectively prevented peroxide formation in peanut oil. Fourier transform infrared spectroscopy (FTIR) analysis revealed enhanced hydrogen bonding between macromolecules upon incorporation of tea extracts, thereby improving mechanical strength and water barrier properties. These results show the potential of cocoa pod extract, when incorporated with green tea extracts, to produce a good physical and mechanical performance while preserving antioxidant properties. |
Antimicrobial effect of Thymus vulgaris and Rosmarinus officinalis L.essential oils against Gram-positive bacteria inoculated in cooked turkey breasts stored under different temperatures Original PaperTalal Lahreche, Karima Aoues, Lydia Yasmine Kebir[Ahead of Print]Czech J. Food Sci., X:X | DOI: 10.17221/186/2025-CJFS In order to simulate post-cooking contamination, the study evaluated the effects of storage temperature on the antibacterial activity of essential oils (EOs) of Rosmarinus officinalis L. (0.6%) and Thymus vulgaris (0.3%) added to cooked turkey breasts inoculated with Staphylococcus aureus (ATCC 25923), Bacillus cereus (ATCC 14579), and Listeria innocua (ATCC 33090). The turkey breasts were packaged aerobically and stored at 3 ± 1 °C for 120 h, 8 ± 1 °C for 120 h, and 3 ± 1 °C for 24 h, followed by 12 h at 25 ± 1 °C, and at 3 ± 1 °C until the end of storage (120 h). Sensory assessments and microbial analysis were performed at 0, 24, 36, 72, and 120 h of storage. A gas chromatography-mass spectrometry was used to analyse the components of the EOs; the major components in rosemary EO were 1,8-cineole (40.99%), α-pinene (13.40%), and campohr (10.92), while thyme EO was dominated by thymol (35.72%), o-cymene (20.65%), and γ-terpinene (8.81%). Thyme EO application led to a significant (P < 0.05) reduction of bacterial growth at each day of testing and was unaffected by abused storage temperature, while rosemary EO, when used at 0.6%, was found to be effective against L. innocua cells during regular and inadequate storage (3 ± 1 °C and 8 ± 1 °C). According to sensory analysis, samples containing thyme and rosemary EO received better scores than the control. These results demonstrate that thyme and rosemary EOs have significant antibacterial activity and can be recommended as a preservative except for post-contamination. |
Antioxidant potential and antimicrobial activity of coloured onion peels extracted using ultrasound-assisted deep eutectic solventsOriginal PaperÖzge Demir, Fatma Nur Baºtürk, Yusufcan Gerçek, Emel Mataracı Kara, ªah İsmail Kırbaºlar[Ahead of Print]Czech J. Food Sci., X:X | DOI: 10.17221/33/2026-CJFS In this study, the most effective deep eutectic solvent (DES) for extracting antioxidants from purple onion peel was identified using total antioxidant capacity (TAC) values obtained by the CUPRAC assay. The DES systems used in this study consisted of choline chloride (ChCl) combined with ethylene glycol (EG), diethylene glycol (DiEG), triethylene glycol (TriEG), tetraethylene glycol (TetEG), 1,4-butanediol (1,4-but), and 1,2-propanediol (1,2-pro) at a molar ratio of 1 : 2 with 30% water content. All DESs were characterised in terms of Fourier transform infrared (FTIR) spectra, viscosity, density, and pH. Ultrasound-assisted extraction was optimised using response surface methodology, resulting in a maximum TAC of 582.96 mg Trolox equivalent (TE)·g–1 dry sample (DS) for ChCl : 1,4-but : H2O, which was almost twice the amount achieved with 70% ethanol. Antioxidant parameters, including TAC, total phenolic content, total flavonoid content, and radical scavenging activities [2,2-diphenyl-1-picrylhydrazyl (DPPH) and 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS)], were evaluated for purple, red, brown, and white onion peels. Antimicrobial activity was assessed using the broth microdilution method. HPLC analysis was employed to quantify phenolic and flavonoid compounds, revealing significant compositional differences among the onion peels. Overall, the results demonstrate that purple and red onion peels exhibit superior antioxidant and antimicrobial properties, supporting their potential as sustainable sources of natural antioxidants. |
Comprehensive nutritional profiling and antioxidant capacity assessment of indigenous mushrooms Pleurotus ostreatus and Agaricus bisporusOriginal PaperTouseef Iqbal, Muhammad Sohaib, Sanaullah Iqbal, Habib RehmanCzech J. Food Sci., 2024, 42(3):174-183 | DOI: 10.17221/158/2023-CJFS
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Essential oils of indigenous citrus varieties of Northeast India as potential antibiofilm agents against foodborne pathogens: An in vitro and in silico studyOriginal PaperSurjya Loying, Rajeev Sarmah, Manash Pratim Sarma, Abdul Malik, Suhail Akhtar, Azmat Ali Khan, Rahul Nayak, Devabrata SaikiaCzech J. Food Sci., 2024, 42(3):153-162 | DOI: 10.17221/179/2023-CJFS The unique structural and biological diversity found in plants renders them a distinctive and sustainable source for discovering new antibacterial, antifungal and antiparasitic compounds. In the present study, antimicrobial and antibiofilm properties of essential oils of citrus varieties of Northeast India were studied against selected foodborne pathogens using both in vitro and in silico approaches. These essential oils showed significant antimicrobial and antibiofilm activities against foodborne pathogens. i.e. Bacillus cereus MTCC430 and Yersinia enterocolitica MTCC859. It was observed that the treatment with essential oil disturbed the membrane integrity of the pathogens, thereby causing the release of nucleic acids. This study also postulated that active compounds of the essential oils interact with different target proteins of the pathogens and provide an explanation for the mechanisms of antimicrobial and antibiofilm action of the essential oils of citrus varieties against foodborne pathogens. |
Analysis of the quality of curds from Slovakia and neighbouring countriesOriginal PaperJana Záhumenská, Franti¹ek Zigo, Tomá¹ Mihok, Mariana Kováèová, Zuzana Farka¹ová, Jana Výrostková, Zuzana Lacková, Mária VargováCzech J. Food Sci., 2024, 42(5):317-329 | DOI: 10.17221/51/2024-CJFS The work deals with the evaluation of the quality of curds produced in Slovakia and neighbouring countries (Czech Republic, Poland, Hungary, Ukraine) at the time of their purchase and at the time of the end of the warranty period. Significant differences in consistency (P < 0.05) were found between the model samples of cottage cheese after sensory evaluation. Differences in total porosity were noted between curds examined on the first and last day, storage reduced porosity and changed (reduced) grain size. There was a significant difference in colour between the samples (A1–E5) (P < 0.05). Colourimetric measurement confirmed the lightest colour in sample E4 (L* = 92.87, L* – lightness) from Ukraine, which showed the lowest fat content, and the darkest sample was sample C3 from Poland (L* = 88.62). The minimum value of dry matter content was found in sample E4 (15.79 ± 2.59%) and the maximum value in sample C3 (35.82 ± 2.59%). Towards the end of the use-by date, the dry matter values slightly decreased. Statistical significance was demonstrated between the first day of purchase and the expiration date in dry matter content (P < 0.05) and between fat content in dry matter (P < 0.05). The titration acidity was exceeded in two cases, in sample B2 (first day – FD 172 °SH / last day – LD 192 °SH) and B4 (FD 162 °SH / LD 167 °SH). During the guarantee period, the growth of micromycetes in curds was statistically significant (P < 0.05). |
Quality assessment of elderberry (Sambucus nigra L.) jamsOriginal PaperOana-Viorela Nistor, Doina-Georgeta Andronoiu, Liliana CecluCzech J. Food Sci., 2025, 43(1):48-58 | DOI: 10.17221/111/2024-CJFS
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Classification of peanut variety based on hyperspectral imaging and improved extreme learning machineOriginal PaperMengke Wang, Hongrui Zhang, Hongfei Lv, Chengye Liu, Jinhuan Xu, Xiangdong LiCzech J. Food Sci., 2025, 43(1):17-28 | DOI: 10.17221/109/2024-CJFS Peanut as an important crop, plays an important role in agricultural production, which is rich in edible vegetable oil and protein. The variety of peanut affects the content of vegetable oil and protein. Therefore, the classification of peanut variety can better promote the sustainable development of agriculture. In this study, hyperspectral imaging technology is used to achieve peanut variety classification. In addition, the spatial-spectral extreme learning machine (SS-ELM) is proposed to process the hyperspectral data to get the final classification label. To fully explore the spatial structure information of hyperspectral data, propagation filtering is integrated into the framework of extreme learning machine (ELM). The average accuracy of the improved ELM model on five varieties of peanuts dataset (Luhua 11, Dabaisha, Xiaobaisha, Fenghua, and Luohanguo 308) is 98.32%, which is higher than other classic models. The experimental results show that the improved ELM can classify peanut of different varieties by hyperspectral imaging. |
Comparison of three different methods for the determination of sulphur dioxide in fruit and vegetable productsOriginal PaperNovel Kishor Bhujel, Eugene Okraku Asare, Tereza Podskalská, Kshitiz Pokhrel, Filip Beòo, Vojtìch Kru¾ík, Ale¹ Rajchl, Helena Èí¾kováCzech J. Food Sci., 2025, 43(1):1-7 | DOI: 10.17221/113/2024-CJFS Sulphite is a food additive used worldwide. Globally, for concentrations above 10 mg·kg–1, sulphite compounds must be labelled as sulphur dioxide (SO2) on the packaging due to their potential health risks. This study compares spectrophotometric (S), titration (T) (modified optimised Monier-Williams, OMW), and reflectoquant (R) methods for measuring sulphur dioxide in twenty fruit and vegetable products. The samples comprise sulphited, unsulphited, and naturally sulphur-containing products (Allium genus such as garlic and onion). The article discusses the strengths and weaknesses of the method used. Allium genus samples yielded false-positive results, especially in fresh garlic samples with average SO2 concentrations of 46, 1 152, and 40 mg·kg–1 obtained by titration, spectrophotometric, and reflectoquant methods, respectively, therefore, none of the methods is suitable for testing this type of vegetables or products containing a low proportion of them. For other types of samples, the methods showed acceptable working characteristics. Recovery tests showed 89.5, 82.0, and 75.2% recovery with 2.8, 3.9, and 13.2% repeatability and the limit of quantification of 1, 10, and 25 mg·kg–1 in the spectrophotometric, titration, and reflectoquant methods. The result highlights the importance of method selection based on sample characteristics and regulatory compliance. |
Study on the geographical origin and characteristic differential components of Qianbei Ma lamb based on rapid evaporative ionization mass spectrometryOriginal PaperJi Zhang, Rui Hou, Yuhang Luo, Xiaohong Zhang, Hong Luo, Lei Ling, Liping XiangCzech J. Food Sci., 2025, 43(1):59-70 | DOI: 10.17221/159/2024-CJFS A rapid evaporative ionization mass spectrometry (REIMS) method combined with intelligent knife (iKnife) method was developed to explore the geographical origin and characteristic differential components of Qianbei Ma lamb. The REIMS conditions were initially refined, with the cauterization duration of 3 seconds, and the auxiliary solvent flow rate set to 100 μL·min–1 to prevent duplication. A database model was created from raw data through the proposed principal component analysis-linear discriminate analysis (PCA-LDA) in Live ID software, successfully applied to identify samples from 5 provinces in China and the real-time reliable identification rate with confidence higher than 99%. The obtained data by REIMS were used to establish the multivariate statistical models which using orthogonal projection to latent structures discriminant analysis (OPLS-DA), provided strong the discrimination power between composition and content changes of 16 specific ions such as m/z 726.3952 and m/z 744.4050, etc., including fatty alcohols, fatty acids and phosphatidylserines in mutton of different origin and the model displayed validation [R2(Y) = 0.968, Q2 = 0.924]. |
Effects of dried fig flour incorporation as a natural additive on nutritional composition and sensory assessment of biscuitOriginal PaperBerrighi NabilaCzech J. Food Sci., 2025, 43(1):37-47 | DOI: 10.17221/187/2024-CJFS The aim of this work is to characterize the physicochemical and techno-functional properties of dried fig flour to investigate its effect on the qualities of biscuits on the one hand and to encourage the use of this aromatic and medicinal plant in the agri-food industry. During this study, figs and wheat grains were dried and subsequently ground to obtain a flour that was used in various proportions of 0%, 50% and 100%, respectively in the manufacture of the biscuit. The flours were examined for proximate composition, polyphenol and tannin levels, along with functional properties. Flour derived from dried figs showed higher levels of crude ash, sugar, fiber, polyphenol and tannin, as well as greater water absorption capacity and density. The results indicated that incorporating dried and rehydrated fruits increased the total antioxidant activity of the biscuits compared to the control sample. The detailed organoleptic analysis, conducted through a tasting test revealed that all tasters found the dry biscuits acceptable. Biscuits formulated with 50% fig powder exhibited improved sensory attributes, including attractive colour, a crispy texture, and a more pronounced flavour. The use of this aromatic and medicinal plant in the food industry, particularly in biscuit production, holds significant potential. It enhances the nutritional value while imparting a sweet taste, distinctive flavour and natural colour. Additionally, its use contributes to improving the functional attributes of biscuit products, offering a sustainable approach to valorizing dried fig flour. |
Effect of lotus seed paste as a fat replacer on the quality attributes of pork pattiesOriginal PaperShirong Huang, Fenfen Chen, Min Tang, Shengnan Zhao, Dongfang ChenCzech J. Food Sci., 2025, 43(5):311-319 | DOI: 10.17221/1/2025-CJFS The potential of lotus seed paste (LSP) as a fat substitute in pork patties was investigated. Pork patties were prepared by substituting varying levels of fat (0, 20, 40, and 60%) with LSP. LSP addition increased moisture while reducing fat content. Compared to control, LSP-added pork patties had significantly higher thiobarbituric acid reactive substances, L* values and microbial counts (P < 0.05), but lower thawing, centrifugal, and cooking losses, and diameter reduction. Furthermore, LSP incorporation enhanced hardness, springiness, chewiness and adhesiveness of the patties. Patties with 60% fat replacement by LSP had the highest b* value and cohesiveness, and the lowest a* value. Substituting 40% or more fat significantly improved the colour, taste, texture and overall acceptability of pork patties (P < 0.05). |
Biocontamination in the dairy industry: The effect of raw milk conditioning film on the adhesion of Escherichia coliOriginal PaperZakariyae El hafa, Ikhlas Hani Chennoufi, Hafida Zahir, Mostafa El louali, Hassan LatracheCzech J. Food Sci., 2025, 43(2):112-117 | DOI: 10.17221/91/2024-CJFS Conditioning films on surfaces employed in the dairy industry serve as the precursors to the formation of pathogenic biofilms that impact product quality and consumer safety. Conditioning films have been studied from several aspects. However, there has been no study that evaluated the effect of raw milk conditioning film on the adhesion of Escherichia coli. This study investigated the adhesion of E. coli on glass and stainless-steel surfaces conditioned with raw milk and explored the surface properties potentially influencing this adhesion using the contact angle method. The results showed that after treating surfaces with raw milk, the adhesion of the bacteria on stainless steel and glass was significantly altered. Adhesion increased significantly on stainless steel (from 0.55 log10 to 2.8 log10) but it decreased on glass (from 1.56 log10 to 0.8 log10). Significant alterations were observed in the physicochemical properties of the surfaces. Glass was initially relatively hydrophilic (46.33°), while stainless steel was relatively hydrophobic (82.5°). After treatment, the glass became relatively more hydrophobic (74.6°), and stainless steel became relatively more hydrophilic (69.4°). The electron donor/acceptor components of glass decreased after the treatment, while these components increased for stainless steel. The significant changes in adhesion were hypothesized to be due to the modification of surface properties by the raw milk. |
Technological and nutritional aspects of fresh purslane (Portulaca oleracea L.) in ice cream productionOriginal PaperEngin Gündoğdu, Fatma HezerCzech J. Food Sci., 2025, 43(2):129-139 | DOI: 10.17221/93/2024-CJFS
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Comparison of the lipid content and fatty acid composition of two hulled oats and their hull with naked and dehulled oats varietiesOriginal PaperKshitiz Pokhrel, Lenka Kouøimská, Novel Kishor Bhujel, Rasmita Parajuli, Matìj Bo¾ikCzech J. Food Sci., 2025, 43(2):152-159 | DOI: 10.17221/172/2024-CJFS Oat (Avena sativa Linnaeus) has distinctive multifunctional characteristics and nutritional profile, as well as a large amount of oat-processing by-product comprises hulls, which contain lipids and other nutrients. In this study, the lipid content and fatty acid (FA) profiles of six naked oat varieties (Kamil, Marco Polo, Oliver, Patrik, Santini, and Saul), two hulled oat varieties (Atego and Korok), and their dehulled grains and hulls were analysed. The findings of the study demonstrated that the lipid content varied from 4.14 g·100 g–1 dry matter (DM) (Santini) to 6.68 g·100 g–1 DM (Kamil) in naked oats; 3.61 g·100 g–1 DM in Atego and 3.47 g·100 g–1 DM in Korok with hull; 0.70 g·100 g–1 DM in Atego hull and 0.71 g·100 g–1 DM in Korok hull. Dehulled oats had a higher lipid content than hulled oats. Linoleic and oleic acids were the predominant FAs in analysed samples. Oat hulls contained maximum amounts of saturated FAs (SFAs) (26% in Korok and 25.6% in Atego). Elimination of hulls raised the amount of linoleic acid and decreased the amount of oleic acid. Oat hull contained the least amount of linoleic acid and the highest amount of C20 : 0 (eicosanoic acid) and C22 : 0 (docosanoic acid). Oats are a significant source of lipids, predominantly comprising unsaturated fatty acids (UFAs). Moreover, oat hulls contribute to the lipid content although their FA composition, with higher palmitic acid and lower linoleic acid levels, differs from that of naked, hulled, and dehulled oats. |
Kinetic analysis of growth of Lactobacillus delbrueckii subsp. bulgaricus WDCM 00102 in algae-based mediumOriginal PaperIvo GanchevCzech J. Food Sci., 2025, 43(2):140-151 | DOI: 10.17221/175/2024-CJFS An unstructured mathematical model is proposed to describe the fermentation kinetics of growth, lactic acid production, pH and sugar consumption by Lactobacillus delbrueckii subsp. bulgaricus WDCM 00102 (National Bank for Industrial Microorganisms and Cell Cultures, Sofia, Bulgaria) as a function of the buffering capacity and initial dry matter concentration of pretreated biomass of Spirulina platensis (Arthrospira platensis) ('Simbiotex' Ltd., Sofia, Bulgaria) in the culture media. Initially the experimental data of L. delbrueckii subsp. bulgaricus WDCM 00102 fermentations in algae-based media with different buffering capacities and dry matter concentrations were fitted to a set of primary models. Later the parameters obtained from these models were used to establish mathematical relationships with the independent variables tested. The models were validated with 6 fermentations of L. delbrueckii subsp. bulgaricus WDCM 00102 in different algae-based media. In most cases, the proposed models adequately describe the biochemical changes taking place during fermentation and are a promising approach for the formulation of algae-based probiotic foods. |
Isolation, characterisation and technological properties of raw donkey's milk isolate, Lacticaseibacillus paracasei, compared to raw goat's and cow's milk isolatesOriginal PaperGabriela Greifová, Eva Drobná, Petra Olejníková, Gabriel Greif, Mária GreifováCzech J. Food Sci., 2025, 43(2):118-128 | DOI: 10.17221/202/2024-CJFS
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Cahuiche (Vaccinium leucanthum Schltdl.): A berry with antioxidant, antihypertensive and antibacterial potentialOriginal PaperJavier Castro-Rosas, Carlos Alberto Gómez-Aldapa, Edna Zaranne Martinez-Ramirez, Netzahualcoyol Calcáneo-Martíne, Reyna Nallely Falfán-CortésCzech J. Food Sci., 2025, 43(5):336-343 | DOI: 10.17221/218/2024-CJFS
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Decontamination of Aspergillus parasiticus in rice by dielectric barrier discharge cold plasma: Variable effects and mechanism of degradationOriginal PaperZhu Shuo, Yan Zhongjun, Shanshan Shi, Ai Zhi, Chenghong Wang, Fei ShenCzech J. Food Sci., 2025, 43(3):226-234 | DOI: 10.17221/153/2024-CJFS Rice is prone to be contaminated with spoilage or toxigenic fungi during harvest, storage and processing, with Aspergillus species being the most frequent. It is crucial to develop effective sterilisation technologies for mycotoxin prevention and food safety. In this study, sterilised rice infected by Aspergillus parasiticus strain was treated by dielectric barrier discharge (DBD) cold plasma. Various parameters, including moisture content, oxygen content, treatment time and voltage were tested. Furthermore, sterilisation mechanism of Aspergillus parasiticus by cold plasma was also explored. Results indicated that decontamination effect could be significantly affected by moisture content, oxygen concentration, voltage and treatment time. A 99.89% degradation rate against Aspergillus parasiticus was achieved at 90 kV after 5 min. Cold plasma could reduce the initial concentration of 6.05 to 2.28 CFU·mL–1 within 240 s, and to thoroughly decontamination within 360 s. In addition, cold plasma treatment destroyed the integrity of Aspergillus parasiticus cell membrane, resulting in a reduction in mycelium biomass and dry weight, as well as a significant decrease in intracellular Ca2+Mg2+-adenosine triphosphatase (ATPase) activity. These findings demonstrate the potential of cold plasma technology for environmentally friendly sterilisation of hazardous fungi in grain system. |
Effects of flour, starch and pea (Pisum sativum L.) protein as fat substitutes during storage of pork sausagesOriginal PaperGema Morales-Olán, María Antonieta Ríos-Corripio, Marlon Rojas-López, Joel Velasco-Velasco, Aleida Selene Hernández-CázaresCzech J. Food Sci., 2025, 43(3):194-204 | DOI: 10.17221/211/2024-CJFS Efforts are being made to replace the fat in meat products such as sausages with vegetable compounds to generate healthier foods. In this work, the effects of including flour, starch, and proteins isolated from pea seeds as partial fat substitutes in pork sausages was evaluated by studying the proximate composition, energy content, total cholesterol, lipid oxidation, and physicochemical, textural, and structural properties during refrigerated storage. The results showed significant differences in the composition of the sausages. Low-fat flour (LFF), starch (LFS), and pea protein (LFP) sausages had approximately 18% lower energy content than high-fat (HF) sausages. Cholesterol content was not significantly different in the treatments. Cooking yield, pH, and water activity were not affected by the inclusion of the replacements. LFF sausages had the highest purge losses and LFP sausages the lowest. The addition of pea starch improved the luminosity of the sausages, but the addition of pea protein resulted in darker sausages. After 12 days of storage, no differences were found between the hardness of LFP and HF sausages. The replacements did not affect lipid oxidation. The results suggest that replacing fat with pea seed components may be an alternative to producing low-fat sausages with health benefits. |
Studies comparing the effectiveness of models for drying bitter gourd slicesOriginal PaperDinh Anh Tuan Tran, Tuan Nguyen Van, Thi Khanh Phuong HoCzech J. Food Sci., 2025, 43(3):205-215 | DOI: 10.17221/255/2024-CJFS Drying is an essential food preservation method, improving product shelf life and quality while reducing transportation and storage costs. This study evaluated the drying kinetics of bitter gourd slices under halogen drying conditions using both traditional empirical models (Page, Midilli, Logarithmic, Peleg, and Two-Term) and the machine learning-based random forest (RF) model. Experiments were conducted at 60 °C, 65 °C, and 70 °C with slice thicknesses of 3, 5, and 7 mm. Model performance was assessed using the coefficient of determination (R²), root mean square error (RMSE) and mean absolute percentage error (MAPE). The results show that the RF model demonstrated the highest accuracy, with an average R2 of 0.9826, the lowest RMSE (0.0655), and MAPE (1.40 %). Its ability to capture non-linear drying behaviour made it the most reliable model. The Midilli model was the best-performing traditional model, with an average R2 of 0.9851, but its accuracy declined for thicker slices and higher temperatures. Logarithmic and Peleg models exhibited significant errors, particularly during the mid-to-late drying phases. The results highlight RF's robustness and adaptability, outperforming traditional models in handling complex drying dynamics. |
Time-kill properties of citrus peel essential oils and constituents against foodborne pathogensOriginal PaperJe-Hyuk LeeCzech J. Food Sci., 2025, 43(3):161-169 | DOI: 10.17221/258/2024-CJFS Growth inhibition and time-kill properties of Hallabong, Redhyang, Cheonhyehyang, and orange peel essential oils against foodborne pathogens were evaluated. Hallabong, Redhyang, Cheonhyehyang, and orange peel essential oils prolonged the lag phase of Bacillus cereus, Bacillus subtilis, Shigella sonnei, Vibrio parahaemolyticus, and Vibrio vulnificus for > 24 h and extended the lag phase by 4–24 h against other food poisoning bacteria. Citrus fruit peel essential oil and their constituents after 12 and 24 h of incubation showed almost complete growth inhibition against all foodborne pathogens, except Pseudomonas aeruginosa. Hallabong, Redhyang, Cheonhyehyang, and orange peel essential oils exhibited > 40% killing activity against B. cereus, B. subtilis, and S. sonnei, V. parahaemolyticus, and V. vulnificus after 12 and 24 h of incubation. Additionally, B. subtilis showed the highest microbial killing rate of over 16% per hour, followed by Vibrio sp. Hallabong, Redhyang, Cheonhyehyang, and orange peel essential oil are anticipated to replace chemical preservatives against foodborne pathogens. |
Valorisation of dragon fruit peel in drinking yoghurt: Development, physicochemical, proximate, functional properties, and shelf-life evaluationOriginal PaperMaryam Saeed Hafiz, Karunanayaka Mudiyanselage Imayuru Ushada Karunanayaka, Kartika Nugraheni, Ganwarige Sumali Nivanthi FernandoCzech J. Food Sci., 2025, 43(3):179-186 | DOI: 10.17221/21/2025-CJFS Dragon fruit peel (Hylocereus spp.), often discarded as waste has gained interest for its anti-aging, anti-inflammatory, and anti-diabetic properties. Peels make up to 22–44% (w·w–1) of the fruit's weight and this waste could make a significant effect on the environment. Therefore, this study aimed to develop a drinking yoghurt using dragon fruit peel extract as a natural colorant and evaluate its physicochemical, proximate, functional, and shelf-life properties. The sugar concentrations (4, 6, and 8% w·w–1) and incubation times (4, 6, and 8 h) were changed to optimise the product. Sensory evaluation by 30 semi-trained panellists using a 5-point hedonic scale identified 6% (w·w–1) sugar and an 8 h incubation as optimal. Compared to plain drinking yoghurt, the dragon fruit peel (DFP) drinking yoghurt showed higher crude fat (2.87%), fibre (0.72%), ash (0.66%), moisture (84.08%), total antioxidants (824.3 mg TE·100 g–1), flavonoids (0.22 mg QE–1·mL–1), and betalains content (0.0064 mg·mL–1). During storage, DFP yoghurt's pH declined, with minimal betalain loss, and it remained stable for three weeks at 4 °C without preservatives. This study demonstrates the potential of dragon fruit peel as a functional ingredient in yoghurt, offering nutritional and environmental benefits. |
Effects of benzalkonium chloride adaptation on controlling Listeria monocytogenes biofilms and its growth in foodOriginal PaperHonghui Wang, Yamin Ren, Yanhong Tang, Mingyu Zhang, Xiaoli ZouCzech J. Food Sci., 2025, 43(3):216-225 | DOI: 10.17221/40/2025-CJFS In this study the eradication effectiveness of four commonly used disinfectants against benzalkonium chloride (BC) adapted and non-adapted biofilms of Listeria monocytogenes was compared and the effects of food preservatives on the growth of these strains were comparatively evaluated on pasteurised chicken sausage. After BC adaptation, the minimum inhibitory concentrations (MICs) of BC against planktonic bacteria of L. monocytogenes increased, while the MICs of chlorine dioxide remained unchanged. BC adapted strains showed stronger biofilm formation than the wild-type parents. When used at 1 × MIC, the eradication rates of chlorine dioxide on biofilm biomass, cell viability and biofilm extracellular polymeric substance were higher than BC. When used at the recommended concentrations, chlorine dioxide exhibited the highest efficiency in BC adapted and non-adapted biofilm eradication. Among the four food preservatives, nisin showed the highest inhibition of both BC adapted and non-adapted strains grown on pasteurised chicken sausage. Our data suggest that proper use of BC is required to reduce the exposure of L. monocytogenes to sublethal concentrations of BC and the emergence of BC adapted strains. |
Effect of pasteurisation and high-pressure processing on selected bioactive components in human milk – An experimental studyOriginal PaperMiroslava Jandová, Michaela Fi¹erová, Pavla Paterová, Pavel Mìøièka, Jan Malý, Marián Kacerovský, Eli¹ka Kovaøíková, Jan Strohalm, Kateøina Demnerová, Jana Kadavá (email: jana.kadava@vsCzech J. Food Sci., 2025, 43(3):170-178 | DOI: 10.17221/45/2025-CJFS High-pressure processing (HPP) represents a promising alternative to conventional Holder pasteurisation (HoP) used by human milk banks worldwide. The objective of this study was to identify whether the HPP would achieve the same or better retention of the content of selected analytes than the HoP. Samples collected from 15 breast milk donors were processed in four ways: i) no treatment; ii) HoP; iii) HPP in cycles (350 MPa, 4 cycles); iv) continuous HPP (350 MPa, 20 min). The content of secretory immunoglobulin A (sIgA), lactoferrin and lysozyme was determined using commercially available ELISA kits, and the lipase activity was assessed using an A-lipase activity assay kit. Data were compared statistically using paired t-tests. HoP significantly reduced the content of lysozyme and lactoferrin as well as lipase activity (P < 0.001). Cycled HPP significantly decreased lipase activity (P = 0.002), while continuous HPP led to a significant decrease in lysozyme content (P = 0.001) and lipase activity (P = 0.014). Cycled HPP showed high retention of pretreatment levels of lysozyme – median 99 (88; 99%), lactoferrin – 84 (66; 105%), and sIgA content – 83 (28; 117%). Among the studied treatment regimens, the best preservation of initial levels of bioactive components was achieved using HPP at 350 MPa in cycles. |
Immobilised Aspergillus niger lipase synthesises sn-1,3-dioleoyl-2-palmitoylglycerolOriginal PaperShanhui Chen, Renbin Liu, Dong Wang, Shiyou Li, Zhirong YangCzech J. Food Sci., 2025, 43(4):291-299 | DOI: 10.17221/143/2024-CJFS sn-1,3-Dioleoyl-2-palmitoylglycerol (OPO) is a structural triglyceride with a specific distribution of fatty acids, which is an important component of breast milk fat and which can better promote the absorption of minerals and energy in infants. In this study, a lab-made immobilised Aspergillus niger lipase (IM-ANL), which is more economical than a commercial lipase, was used for hydrolysis to produce free fatty acids (FFA) and acidolysis interesterification to produce OPO. The enzyme was used for multiple purposes, reducing the cost of enzymatic production. The optimum conditions for hydrolysis were determined by experiments: the amount of IM-ANL enzyme dosage was 3%, the reaction temperature was 45 °C, and the reaction time was 48 h. The optimum conditions for acidolysis interesterification were as follows: the amount of IM-ANL enzyme dosage was 4%, the molar ratio of tripalmitin to oleic acid was 1 : 8, the reaction temperature was 55 °C, and the reaction time was 3 h. In this study, economical palm stearin and high oleic acid sunflower seed oil were selected as reaction raw materials, and the reaction temperature was moderate, the safety risk was low, the energy consumption was reduced, the process was more economical, and the economic value of high oleic acid vegetable oil was improved, which was conducive to the further promotion of OPO production. |
