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Evaluation of chemical composition and cooking properties of Turkish type gluten-free rice couscousOriginal PaperEmine AydinCzech J. Food Sci., 2022, 40(6):427-437 | DOI: 10.17221/223/2021-CJFS In this study, the aim was to produce traditional couscous in gluten-free form. For this purpose, rice flour (RF) and pre-treated (gelatinized) rice flour (GRF) were added in varying proportions (15, 20, 25, and 30%) to the recipe instead of gums and enzymes in order to provide the desired structure. The control sample without GRF was also produced. With the addition of GRF, the total dietary fibre (TDF) content in the couscous samples increased, and reversely the carbohydrate and energy values decreased. The GRF reduced the level of total soluble organic material (TSOM) as well as the cooking loss of the couscous samples, which resulted in lower deformability. According to the results, the gluten-free rice couscous was successfully produced with GRF, especially at a 30% ratio. Good cooking properties were observed in these couscous samples. In this context, in the addition of 30% GRF, higher water absorption and swelling volume with lower cooking loss were observed compared with the control sample. In addition, the couscous samples had higher ash, dietary fibre and fat content as well as a lower phytic acid ratio (P < 0.05). It was determined that there was significant correlation between the cooking time of the samples with the cooking loss and total soluble organic material. According to the results, the PCA showed that there were clear correlations between cooking trials (water absorption and swelling volume) and chemical composition (moisture, ash, crude fat, and TDF). |
Chemical composition, physical properties and sensory attributes of gluten-free pasta produced from acorn flourOriginal PaperLassoued Rabeb, Chouaibi Moncef, Gharsallah Karima, Abderrabba Manef, Mejri JamelCzech J. Food Sci., 2026, 44(2):101-111 | DOI: 10.17221/168/2024-CJFS The use of flours from the acorns of Quercus ilex and Quercus coccifera to produce gluten-free pasta was investigated in the current study. The latter evaluates the nutritional value, physical properties (minimum preparation time, water absorption index, cooking loss, and colour), textural properties (hardness, firmness, and stickiness), and sensory attributes of cooked rice pasta enriched with different dosages of acorn flour [25 g·(100 g)–1 and 50 g·(100 g)–1]. The results demonstrated that pasta produced from Quercus ilex acorn required the shortest cooking time, whereas pasta made from Quercus coccifera acorn exhibited the highest cooking losses. Pastes enriched with acorn displayed a more pronounced yellow colour. The combination of 50% rice flour and 50% acorn flour in pasta formulations significantly reduced cooking losses and yielded acceptable scores across all sensory attributes, resulting in the highest overall quality. |
Technological approaches applied in the design of gluten-free bakery productsReviewRodica Siminiuc*, Dinu ȚurcanuCzech J. Food Sci., 2023, 41(3):155-172 | DOI: 10.17221/180/2022-CJFS
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Crystallinity of starch, food composition, and digestibility of starchReviewEv¾en ©árka, Petra Smrèková, Marcela SlukováCzech J. Food Sci., 2025, 43(2):90-104 | DOI: 10.17221/33/2025-CJFS Starch granules in their native state are insoluble and semi-crystalline. There are three forms of starch/amylopectin in nature: A, B, and C: in cereals (A), tubers and high amylose starches (B), and some varieties of peas and beans (C). Crystallinity and rate of starch hydrolysis depend on the plant species and growing conditions. The changes during food preparation include gelatinisation, the formation of amylose-lipids and amylose-protein complexes, and resistant starch (RS) origin. They are accompanied by changes from crystal to amorphous form and vice versa. Starch in human food is mostly rapidly or slowly digestible. Rapidly digestible starch is formed by gelatinisation, cooking extrusion, breaking down of starch granules, or hydrolysis to maltodextrins. By definition, RS is not digested in the small intestine. This review addresses the influences of biochemical processes in the human body on starch digestibility. It is strongly influenced by the degree of chewing, the activity of α-amylase in the intestine, and transit time through the stomach and small intestine. Resistant starch and endogenous intestinal mucus support the growth of specialist microbes in the large intestine that produce a variety of short-chain fatty acids, causing the perception of satiety, lowering pH, and inhibiting pathogens in the colon. |
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. |
Production of low protein and gluten-free cookies for phenylketonuria (PKU) and/or celiac patientsOriginal PaperOzen Parlak, Ayse Neslihan DundarCzech J. Food Sci., 2021, 39(1):29-34 | DOI: 10.17221/145/2020-CJFS Abstract: The aim of this study was to analyse the production of gluten-free, low protein cookies, which can easily be consumed by celiac and phenylketonuria (PKU) patients. The formula was adopted to prepare the control cookies (without dried fruits) from maise starch, stabilisers, salt, sodium bicarbonate, protein-reduced milk powder, and sunflower oil. Different cookies were made by adding raisins (R), dried black currants (Cu), dried dates (D), dried apples and cinnamon (A) separately. In cookies, two different stabilisers were calculated according to starch weight [pectin (P): 0.15%, glycerol monostearate (GMS, G): 0.4%]. The effects of stabilisers and dried fruits on the physicochemical and sensory properties of cookies were investigated. The protein content was significantly higher (P < 0.05) in the cookies including R with pectin (PR), Cu with pectin (PCu), and A with pectin (PA). The amount of phenylalanine (Phe) was significantly higher (P < 0.05) in PR. The values of dietary fibre were the highest in the A cookies, while the lowest values appeared in the control (C). In the sensory evaluation (appearance, tasting properties, and affordability), it was found that PD (pectin with dries dates) was chosen as the best cookie (P < 0.05). |
Application of the cell-free supernatant from Weissella viridescens to control Listeria monocytogenesOriginal PaperChao Yang, Ying Ying Zhang, Tao YuCzech J. Food Sci., 2022, 40(4):290-297 | DOI: 10.17221/6/2022-CJFS Listeria monocytogenes can form biofilms on different food contact surfaces, increasing the risk of cross-contamination in food products. Weissella viridescens are Gram-positive bacteria and belong to lactic acid bacteria (LAB). The aim of this study was to investigate the antibacterial activity of cell-free culture supernatant (CFS) from W. viridescens to control L. monocytogenes biofilms as well as their growth on chilled pork. Preliminary results suggest that the antibacterial compounds in W. viridescens CFS may be proteinaceous in nature. The minimum inhibitory concentrations (MICs) of most L. monocytogenes strains tested was 30 mg mL-1. Biofilm formation of L. monocytogenes 10403S on stainless steel and polystyrene was significantly inhibited by the sub-inhibitory concentration of W. viridescens CFS (1/8MIC, 1/4MIC, and 1/2MIC). Our results also showed that W. viridescens CFS at concentrations higher than MIC (1MIC, 2MIC, and 4MIC) was effective in eradicating the mature biofilms of 10403S strain on various surfaces. Dip applications of W. viridescens CFS could inhibit the growth of L. monocytogenes on chilled pork. On the whole, W. viridescens CFS has the potential to control biofilms as a natural antibiofilm and as an antibacterial agent to inhibit the growth of L. monocytogenes on chilled pork. |
The nutrients, flavour, and antioxidant analysis of different parts of Dictyophora rubrovalvataOriginal PaperYanli Wang, Xiuqin Han, Qinglin Guan, Xue Wei, Xiaoli ZhouCzech J. Food Sci., 2024, 42(1):10-20 | DOI: 10.17221/130/2023-CJFS
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Effects of hydroxyl radical oxidation on the structural and functional properties of mutton myosinOriginal PaperYingying Cao, Huaiyu Li, Fubing WangCzech J. Food Sci., 2024, 42(6):423-434 | DOI: 10.17221/133/2024-CJFS
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Ultrasound-assisted ionic liquids extraction of carotenoids from Xinjiang apricots and evaluation of their antioxidant potentialOriginal PaperXiaohui Sun, Wanhui Guo, Na Jiang, Shuangyu Cao, Lei Ma, Shenghong LiuCzech J. Food Sci., 2025, 43(6):398-410 | DOI: 10.17221/26/2025-CJFS Xinjiang apricot is favoured by consumers because of its distinctive aroma, high nutritive value, and abundant functional active substances. Carotenoids of apricot are efficient antioxidants that can protect the human body from free radical attack. However, the extraction, quantification, and antioxidant activity of carotenoids from Xinjiang apricots have not been reported. In this work, ultrasound-assisted ionic liquid (ILs) extraction and optimisation of carotenoids from Xinjiang apricots and to evaluate their antioxidant potential. Based on Box–Behnken design (BBD), the best conditions were IL/ethanol (RIL/E) ratio of 1 : 2, solid-liquid ratio (RS/L) of 1 : 3, extraction time of 17 min and number of extractions of 3. The content of carotenoid extracted by ultrasonic-assisted [Bmim][BF4] ILs was 32.98 ± 0.27 μg·g–1 that of traditional extraction method was 25.05 ± 0.35 μg·g–1. Moreover, ultrasonic-assisted ILs extraction technology can shorten the extraction time, simplify the extraction steps and increase the extraction amount. Meanwhile, in order to recover and reuse ILs, ILs-ethanolic solution was frozen at temperatures lower than –80 °C, allowing the ILs precipitation and separation from the ethanol solution. Meantime, the antioxidant potential of five Xinjiang apricot varieties were evaluated by DPPH (2,2-diphenyl-1-picrylhydrazyl) and ABTS [2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid)] assays in vitro and analysed by UV–vis spectroscopy and Raman spectroscopy. The results showed Shushanggan apricot has the highest carotenoid content and the strongest antioxidant activity. In conclusion, this research further proves the advantage of ultrasonic-assisted ILs in carotenoid extraction and the potential to obtain valuable carotenoids from the apricot industries. |
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Harnessing nature's secrets: Silver nanoparticles from Withania coagulans fruit and root extracts unveil exceptional antioxidant and antimicrobial propertiesOriginal PaperFarwa Iftikhar, Rahmatullah Qureshi, Ayesha Siddiqa, Khursid Anwar, Fizza Arshad, Zia-ur-Rehman Mashwani, Aayesha Riaz, Safir Ullah Khan, Amir Ali, Shahzad Iqbal, Ajaz Ahmad, Melissa Danae Bejarano GómezCzech J. Food Sci., 2024, 42(3):192-206 | DOI: 10.17221/39/2024-CJFS Nanotechnology, an emerging field, holds significant promise with applications across diverse sectors, including medicine, agriculture, and the biological sciences. To address environmental concerns, the green biosynthesis of silver nanoparticles (AgNPs) using plant extracts is favoured. This study focuses on the formulation and characterisation of AgNPs using extracts from Withania coagulans (Stocks) Dunal, a medicinal plant that holds a unique phytochemical profile. The AgNPs derived from W. coagulans root (WcAgNPR) and fruit (WcAgNPF) extracts were characterised using ultraviolet and visible light (UV-Vis) spectral analysis, scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX), and Fourier-transform infrared spectroscopy (FTIR) spectroscopy. The findings reveal that both WcAgNPR and WcAgNPF exhibit substantial antioxidant potential, with robust iron reducing capabilities and potent 2,2-diphenyl-1-picrylhydrazyl (DPPH) free radical scavenging activity. Additionally, they demonstrate strong hydrogen peroxide scavenging abilities. Notably, WcAgNPR outperforms WcAgNPF in the phosphomolybdate assay for antioxidant potential. Both AgNPs display remarkable antimicrobial efficacy, with minimal inhibitory concentrations (MIC) below 10 µg·mL–1 against gram-positive bacteria (Staphylococcus aureus) and noteworthy activity against gram-negative Escherichia coli (WcAgNPF with a MIC of 30 µg·mL–1 and WcAgNPR with a MIC of 60 µg·mL–1). These findings highlight the silver nanoparticles' significant antioxidant and antimicrobial potential, suggesting their potential for in vivo use as antimicrobial agents with minimal oxidative damage. |
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. |
Amino acid and fatty acid profiles in raw and cooked swamp buffalo meat (Bubalus bubalis)Original PaperThassawan Somchan, Sawitree Wongtangtintharn, Suthipong UriyapongsonCzech J. Food Sci., 2025, 43(5):352-357 | DOI: 10.17221/131/2024-CJFS The purpose of this study was to assess the amino acid and fatty acid profiles of swamp buffalo meat (Bubalus bubalis) obtained from a local market. The extractable free amino acids and free fatty acids of raw and cooked loin (Longissimus lumborum: LL) and round (Semimembranosus: SM) buffalo meat were analysed. These experiments were performed in a 2 × 2 factorial in randomised complete block design (RCBD) and there were four treatments combinations, including raw-loin, cooked-loin, raw-round and cooked-round with five replications. The results revealed the amino acid composition for the raw-loin included leucine [4.51 mg·(100 g)–1 sample) and isoleucine [4.56 mg·(100 g)–1 sample], whereas methionine, aspartic acid and asparagine were the least common amino acids found in both raw and cooked swamp buffalo meat [0.002, 0.020 and 0.034 mg·(100 g)–1] of the sample. The amino acid composition of the cooked meat decreased by 50% as compared to raw meat. Swamp buffalo meat contains 10 fatty acids, including saturated fatty acids (SFAs) such as myristic acid (C14:0), palmitic acid (C16:0), stearic acid (C18:0) and docosanoic acid (C22:0); monounsaturated fatty acids (MUFAs) such as palmitoleic acid (C16:1, n-7) and oleic acid (C18:1); and polyunsaturated fatty acids (PUFAs) such as linoleic acid (C18:2, n-6, ω6), gamma-linolenic acid (C18:3, n-6, ω6), eicosatetraenoic acid (C20:5, n-3, ω3) and docosahexaenoic acid (C22:4, n-6, ω6). Stearic acid (C18:0) was the most abundant saturated fatty acids found in the lipid component of buffalo meat. Other medium- and long-chain saturated fatty acids (C14:0, C16:0, C22:0) contributed to around 3–4% of the total fatty acid composition. The most abundant MUFAs and PUFAs were oleic acid (C18:1) and eicosapentaenoic acid (C20:5). The PUFA/SFA ratio, total polyunsaturated fatty acids n-3, total polyunsaturated fatty 64 acids n-6, and n-6/n-3 ratios were not significantly different between raw and cooked buffalo meat. |
Ginger essential oil-infused pectin-alginate films for extending sliced bread shelf lifeOriginal PaperNguyen Hong Khoi Nguyen, Nam Quoc Tran, Thuan Huynh Dinh Nguyen, Quyen Phuong HuynhCzech J. Food Sci., 2025, 43(6):438-449 | DOI: 10.17221/24/2025-CJFS This study examines composite films made from pectin and alginate, enhanced with ginger essential oil (GEO) at 0, 0.5, 1, and 1.5% concentration. The films were analysed for their structure, physical properties, antioxidant and antibacterial activities, and effectiveness in preserving sliced bread over 0, 2, 4, 6, and 8 days. The outcomes presented that incorporating GEO upgraded pectin-alginate films' properties. SEM images revealed increased essential oil distribution on the film surface with higher GEO concentrations, indicating good compatibility. Higher GEO concentrations enhanced the films' abilities to scavenge free radicals DPPH, 2,2-diphenyl-1-picrylhydrazyl; and ABTS, 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) and inhibit bacteria (Listeria monocytogenes and Escherichia coli). Furthermore, increasing GEO concentrations in the films helped maintain key quality attributes of sliced bread, such as moisture content, water activity, microbial counts, and firmness. Films with 1.0 and 1.5% GEO concentrations were the most effective in preserving bread, potentially inhibiting mould formation and maintaining sensory properties over the 8-day storage period. This study demonstrates that pectin-alginate films supplemented with GEO at 1 and 1.5% concentration are suitable for storing sliced bread. |
Molecular hydrogen content of different dietary supplementsShort CommunicationSergej Ostojic, Milan VranesCzech J. Food Sci., 2024, 42(2):136-140 | DOI: 10.17221/16/2024-CJFS
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Quality characteristics and antioxidant activity of goat milk yoghurt fortified with Lycium ruthenicum Murr. fruitOriginal PaperKongyang Wu, Jiafei Huang, Panpan Bu, Hang Gao, Tongxiang Yang, Mingyan Shi, Jianming Han, Yilin FanCzech J. Food Sci., 2023, 41(5):382-392 | DOI: 10.17221/77/2023-CJFS
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Evaluation the bioactivity and applicability of flavedo extract in preserving Citrus maxima (Burm.) Merr. pomeloOriginal PaperNguyen Hong Khoi Nguyen, Giang Long Bach, Truc Thanh TranCzech J. Food Sci., 2024, 42(4):273-283 | DOI: 10.17221/22/2024-CJFS
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Comparative study on quality parameters of dry-cured beaver (Castor fiber) and nutria (Myocastor coypus) sausagesOriginal PaperJan Slováèek, ©árka Nedomová, Markéta Janík Piechowiczová, Ondøej Mikulka, Miroslav JùzlCzech J. Food Sci., 2024, 42(5):382-389 | DOI: 10.17221/112/2024-CJFS The aim of the study was to define and compare the quality properties of dry-cured heat-treated meat products from the meat of free-living semi-aquatic wildlife species. Eurasian beaver (Castor fiber) and nutria (Myocastor coypus) are wild animals whose presence in the countryside is regulated in the Czech Republic. Basic chemical, microbiological, sensory analyses, and instrumental measurements of the colour and texture of dry-cured sausages (pork, as a control group with 51% lean pork and experimental groups with 51% lean beaver and nutria meat in fresh state) were performed. There were no statistically significant differences (P > 0.05) in microbiological counts per gram between the sausage groups according to the meat used after 3 weeks of storage. In the sensory analysis, beaver sausages were rated as the darkest and least attractive (P < 0.05). The data obtained using the Meullenet-Owens Razor Shear (MORS) test did not show a statistically significant difference (P > 0.05). However, a significant difference (P < 0.05) was measured between the beaver product and the pork and nutria variants using the compression method. |
Eco-friendly synthesis of ZnO nanoparticles for improved pectin/chitosan hydrogels with antibacterial activityOriginal PaperShirin Gull, Huma Umbreen, Mahr Un Nisa, Abid Rashid[Ahead of Print]Czech J. Food Sci., X:X | DOI: 10.17221/159/2025-CJFS The core objective of the present study was to develop a novel nanocomposite pectin/chitosan hydrogel based on green-synthesised zinc oxide nanoparticles (ZnO NPs-L). For this purpose, zinc oxide nanoparticles were prepared by the solution casting method, using extract from aloe vera leaves, and were incorporated into pectin/chitosan hydrogels (0, 10, and 20%). The nanoparticles were analysed using scanning electron microscopy, X-ray diffraction, UV-Vis, and FTIR (Fourier transform infrared) spectroscopy. Moreover, the hydrogels were evaluated through FTIR, scanning electronic microscopy, atomic force microscopy, gel fraction, contact angle measurements, swelling ratio, investigations of thermal stability, mechanical strength and antibacterial activity. The structural heterogeneity and surface roughness of the hydrogel were evidenced by SEM analysis. The results showed that incorporation of ZnO NPs-L into hydrogel enhanced gel fraction to > 65%, surface wettability to > 64°, tensile strength to > 5.8 MPa, and swelling ratio to > 4 140 in a dose-dependent manner. Further, ZnO NPs-L (20 mg) loaded hydrogels exhibited the highest zone of inhibition against Escherichia coli (> 13 mm) and Staphylococcus aureus (> 12 mm). The findings suggested that pectin/chitosan/ZnO NPs-L hydrogels have appropriate mechanical flexibility, swelling behaviour and antibacterial activities, which are required for their effective use in the biomedical and agricultural sectors. |
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. |
Beta-hydroxy-beta-methylbutyrate in functional food ingredients: An overview of biosynthesis, metabolic mechanisms and applicationsReviewXizi Zhang, Huijing Zhang, Jiaxing Li, Chenchen Qi, Di Zhang, Wei Chen, Chengtao WangCzech J. Food Sci., 2026, 44(1):1-15 | DOI: 10.17221/88/2025-CJFS β-Hydroxy-β-methylbutyrate (HMB) is a metabolite of the essential amino acid leucine, which can be produced naturally in mammals and is also found in trace amounts in citrus fruits and fish. Studies have shown that HMB plays an important role in maintaining human health by improving muscle health and inhibiting muscle catabolism. This review summarises the synthesis and metabolism of HMB and discusses its potential use as a nutrient, highlighting and analysing the importance of HMB supplementation for athletes' physical recovery and the treatment of muscular dystrophy-related diseases between 2019 and 2025. This study will help us to deepen our understanding of the application of HMB as a dietary supplement for the treatment of different diseases, providing the latest insights into its sustainability. |
Occurrence of Norovirus genogroup II in leafy greens in the region of Marrakech using a molecular methodOriginal PaperSalma Berrouch, Nouhaila El Fellaki, Abdelkader Biary, Hibatallah Lachkar, Houda Rafi, Halima Rouane, Simeon Goïta, Jamal Eddine HafidCzech J. Food Sci., 2026, 44(2):123-131 | DOI: 10.17221/101/2025-CJFS Leafy greens are important vectors for enteric viruses, including human noroviruses (HuNoV), which are a leading cause of foodborne disease. These viruses can contaminate the agricultural environment through untreated wastewater or direct contamination. While studies on HuNoV in vegetables have been conducted, few have focused on Morocco. This study aimed to detect HuNoV in leafy greens collected in the region of Marrakech region over a fifteen-week period (March–June 2023). For this purpose, 112 samples (coriander, lettuce and parsley) were collected and analysed using the ISO 15216-2:2019 method with minor modifications, after validation. The method involved eluting viruses using an alkaline buffer, concentrating them through polyethylene glycol precipitation, and detecting viral RNA via real-time RT-PCR. The applied method yielded variable recovery rates among the tested matrices, with coriander showing the highest recovery (1.5%), followed by lettuce (1.2%) and parsley (0.6%), confirming a significant matrix-dependent variation in HuNoV recovery (ANOVA, P < 0.001). This method enabled the assessment of leafy green contamination, which was found to be 0.89% (1/112). This study underscores the need to enhance detection methods to better assess the risks associated to noroviruses in leafy greens, with implications for human health. |
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. |
Current trends and future perspectives in dairy by-product valorisationReviewAslıhan TüğenCzech J. Food Sci., 2026, 44(3):167-180 | DOI: 10.17221/7/2026-CJFS The increase in milk production and demand for dairy products worldwide has led to the emergence of a wide variety of products in the sector, whilst a high volume of solid (sludge) and liquid waste is also generated. Dairy industry wastes, due to their high organic load (biological oxygen demand, chemical oxygen demand), high moisture content and variable composition, can cause significant environmental and economic problems when disposed of directly. The aim of this research is to determine current methods and possible future trends for the valorisation of dairy industry by-products (whey, casein and lactose-containing wastes, wastewater and sewage sludge). Literature from 2010–2025 was systematically screened in databases such as Web of Science, ResearchGate, ScienceDirect, PubMed and Google Scholar in line with the PRISMA guide, and a total of 34 documents were examined. According to the results, various technologies aimed at conversion into valuable products (valorisation) and integration into the circular economy have come to the fore. Thermochemical methods such as hydrothermal carbonisation (HTC), hydrothermal liquefaction (HTL), pyrolysis and gasification increase energy and chemical substance recovery from wastes with high moisture content. Biological methods (anaerobic and aerobic digestion, composting, microbial fermentation) yield value-added products such as biogas, compost, bioplastic and single cell protein (SCP). The necessity of integrated systems combining both thermochemical and biological approaches is also established in the literature. |
Characteristic parameters of honey wines and dessert meadsOriginal PaperVojtìch Kru¾ík, Adéla Grégrová, Lívia Vaispacherová, Eli¹ka Václavíková, Tereza ©korpilová, Ale¹ Rajchl, Helena Èí¾kováCzech J. Food Sci., 2022, 40(1):42-50 | DOI: 10.17221/159/2021-CJFS The aim of this study was to evaluate the chemical composition of 17 samples of mead originating from the Czech Republic. The samples included honey wines (made only from water and honey) and dessert meads which were treated mainly by the addition of sugar or alcohol. The following chemical parameters were analysed: ethanol, sugar-free extract, hydroxymethylfurfural (HMF), sugars (monosaccharides, disaccharides), organic acids, assimilable nitrogen, and polyphenols. Substantial differences were found between samples: i) the content of glucose and fructose was 2.5-113.1 g L-1 and 17.3-136.3 g L-1, respectively; ii) the HMF content ranged from 1.0 mg L-1 to 87.7 mg L-1. The most abundant organic acids were lactic acid (average 1.0 g L-1), gluconic acid (0.6 g L-1), and acetic acid (0.4 g L-1); the amount of phenolic compounds was 151.9-385.3 mg gallic acid equivalent (GAE) L-1. Honey wines typically contained turanose (2.0-7.6 g L-1) and trehalose (1.1-10.1 g L-1), while dessert mead was characterised by an increased sucrose content (up to 76.5 g L-1). |
Bioactive compounds and antioxidant activities of selected types of chilli peppersOriginal PaperTerezia Hudáková, Monika ©uleková, Jan Tauchen, Martina ©emeláková, Matú¹ Várady, Peter PopelkaCzech J. Food Sci., 2023, 41(3):204-211 | DOI: 10.17221/45/2023-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. |
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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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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