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Renata Žvirdauskienė

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Open access Jul 2026

Bioprocessing of Wheat Bran by Combined Extrusion and Solid-State Fermentation: Impact on Biopolymer Physicochemical and Functional Properties

This study aimed to investigate the effects of thermo-mechanical treatment and solid-state fermentation (SSF) on the structural, physicochemical, and techno-functional characteristics of wheat bran (WB), with a particular emphasis on specific isolated protein fractions, starch, and dietary fibre. WB was subjected to extrusion at different temperatures (90, 115, and 130 °C) and screw speeds (16 and 25 rpm), followed by a 24-h SSF with Liquorilactobacillus uvarum. Changes in chemical composition, hydration properties (water absorption, solubility, swelling capacity), temperature-dependent (30–80 °C) extract viscosity, as well as protein extraction yields and in vitro protein digestibility of isolated protein fractions were systematically evaluated. Extrusion reduced insoluble dietary fibre (IDF) content by 15.7–33.9%, while increasing soluble dietary fibre (SDF) content by 59.1–94.2%, and SSF with L. uvarum additionally increased the SDF fraction by 6.5–7.9%. Regarding technological properties, extrusion increased WB water solubility (WS) up to 14.6%, and 24-h fermentation further enhanced WS, reaching up to 16.3%. Extrusion increased the degree of starch gelatinisation up to 49.1%, whereas fermentation reduced it to 40.7% and decreased the WB extract viscosity by 18.3–24.6%. Furthermore, 24-h SSF enhanced the in vitro digestibility of globulin, gliadin, and glutenin fractions from initial values of 71.3–78.8%, 70.6–75.2%, and 70.2–73.0% to 82.0–85.6%, 83.3–88.6%, and 79.4–89.0%, respectively. The observed thermo-induced thickening and enhanced digestibility suggest that modified wheat bran has potential as a functional bio-ingredient for future application in novel food formulations.

D. Žadeikė, Svajune Norvilaite, Renata Žvirdauskienė et al. · 1 citation
Open access Aug 2026

Essential Oils as Potential Alternatives to Synthetic Fungicides for the Control of Two Fusarium Head Blight Pathogens

Fusarium head blight of cereal, caused by fungi of the genus Fusarium spp., reduces yield and accumulates mycotoxins. The increasing resistance of pathogens to synthetic fungicides encourages the search for natural alternatives. This work aims to determine the chemical composition of essential oils (EOs) of caraway, sage, and pine and to evaluate their antifungal activity against Fusarium graminearum and Fusarium culmorum. The composition of EOs was determined by gas chromatography and gas chromatography–mass spectrometry, and activity was assessed by agar dilution to determine mycelial growth inhibition and EC50, with the effect evaluated by two-way ANOVA. Caraway EO, belonging to the carvone chemotype (carvone 57.57%, limonene 35.86%), had the highest antifungal activity (EC50 = 727 ppm), sage EO (cis-thujone 29.59%, camphor 21.74%) had an average activity (EC50 = 1017 ppm), and pine EO, rich in α-pinene and δ-3-carene, had the lowest activity (EC50 > 3000 ppm). The antifungal activity was determined by the compounds’ chemical nature, not by their amount. Low EO concentrations (125–250 ppm) elicited a biphasic response, promoting mycelial growth (zero effect point ≈ 269–295 ppm); therefore, insufficient dosage could increase the risk of mycotoxin contamination. Carvone-rich caraway EO exhibited the highest antifungal activity among the oils tested and is worthy of further investigation as a potential tool for sustainable control of Fusarium head blight in cereals.

Renata Žvirdauskienė, R. Baranauskienė, D. Čižeikienė et al. · 0 citations

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