Microparticles loaded with rice bran oil were produced by spray drying. Rice flour (RF) and rice protein (RP), considered as co-products of the cereal production chain, were tested as stabilizers in the encapsulation process to improve emulsion stability and the properties of the particles. Rice bran oil presented 1.75% ɣ-oryzanol, a powerful antioxidant with health benefits. AG/RP treatment (10% of rice protein): no phase separation after 24 h, higher zeta potential (-29.09 mV ± 0.67), encapsulation efficiency (73.90% ± 0.22), real density (1.27 g/cm), and smaller particle size (8.27 μm ± 0.13). Microparticles containing co-products were the most appropriate to slow down the autooxidation (at 60°C for 8 weeks), especially associated with the use of rice flour. The co-products improve the emulsion characteristics, particle properties and stability of the encapsulated oil. This study presented the technological effects of the use of rice chain co-products, which is in line with the current scenario of sustainability.
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http://dx.doi.org/10.1080/02652048.2022.2079743 | DOI Listing |
Gels
January 2025
Faculty of Food Engineering, Stefan cel Mare University of Suceava, 720229 Suceava, Romania.
The amount of saturated fat in cookies can be reduced by replacing margarine with oleogel, resulting in healthier products. In this study, the rheological and textural profile of cookies formulated with oleogel as the main margarine substitute was evaluated. Hemp seed vegetable oil was oleogelized with four types of waxes: beeswax (BW), carnauba wax (CW), candelilla wax (DW), rice bran wax (RW), and three oleogeling agents, sitosterol (S), pea protein (PP), and xanthan gum (XG), respectively.
View Article and Find Full Text PDFFood Res Int
February 2025
Institute of Agrochemistry and Food Technology (IATA-CSIC), Carrer del Catedràtic Agustín Escardino Benlloch, 7, 46980 Paterna, Valencia, Spain; Department of Food and Human Nutritional Sciences, University of Manitoba. Winnipeg, Canada. Electronic address:
High-pressure processing (HPP) enhances food safety and shelf life by inactivating microorganisms and preserving food quality, yet its effectiveness in low-humidity environments has not been evaluated. This study investigated the effects of HPP at 500 MPa for 15 min across varying hydration levels (15, 30, 60, 77 %) on rice bran (RB), aiming to identify microbial effectiveness, besides techno-functional and physicochemical properties. HPP effectively reduced mesophilic bacteria, molds and yeast of RB at > 15 % hydration level, achieving reductions of up to 4 logarithmic cycles in the latter, nearing the detection limit of the method.
View Article and Find Full Text PDFFood Res Int
February 2025
State Key Laboratory of Food Science and Resources, Nanchang University, Nanchang 330047, China; International Institute of Food Innovation Co., Ltd., Nanchang University, Nanchang 330200, China. Electronic address:
The decline in physiological functions caused by aging increases the prevalence of dysphagia. Anthocyanins play a dual role in enhancing the nutrition of the food and influencing its swallowing properties. The objective of this study was to investigate the impact of anthocyanins from purple red rice bran on the viscosity, rheological and textural properties, and IDDSI classification of rice starch-based dysphagia food masses.
View Article and Find Full Text PDFCureus
January 2025
Electrophysiology, 3Brain AG, Genova, ITA.
The natural product MGN-3 (Biobran) is a defatted, partially hydrolysed rice bran-derived hemicellulose enzymatically modified with an extract of . It has a high proportion of arabinoxylan. It has a protective action against intracerebroventricular streptozotocin-induced murine sporadic Alzheimer's disease and reverses spatial memory deficit in this disease model.
View Article and Find Full Text PDFNat Prod Res
January 2025
Loyola Centre for Research and Development, Xavier Research Foundation, St. Xavier's College Campus, Ahmedabad, Gujarat, India.
Mycophenolic acid (MPA) is an immunosuppressive/antibiotic drug, biologically produced by the fermentation of Penicillium brevicompactum as its secondary metabolite using submerged (SmF) and solid-state (SSF) fermentation processes. In this study, the SSF of (MTCC 1999) was done in optimised conditions to enhance MPA yield. Substrates including basmati and non-basmati rice, barley, oats, cornflakes, rice bran, and wheat bran were 80% moistened and sterilised.
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