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This study explores the development of a novel olive oil-based oleogel using a co-amorphous mixture of curcumin (Cur) and piperine (Pip) as the gelator. The co-amorphous mixture was prepared via a solvent co-evaporation method, optimizing the molar ratio and solvent system. The resulting oleogel demonstrated superior rheological properties, including broader linear viscoelastic regions and higher storage moduli compared to the conventional stearic acid-based oleogels. The co-amorphous Cur-Pip system significantly enhanced the oxidative stability of olive oil under various storage conditions and thermal stresses, effectively reducing peroxide and acid values. Antioxidant activity assays revealed synergistic effects between Cur and Pip in the co-amorphous form, with combination index values lower than 0.5. The co-amorphous system also exhibited potent antimicrobial activity against a range of bacterial and fungal strains, with minimum inhibitory concentrations as low as < 2.0 mg/mL. Furthermore, the application of the oleogel in baked bread delayed mold growth by approximately 4 days compared to pure olive oil. This innovation addresses the need for clean-label, functional food ingredients by combining the structural benefits of oleogels with the bioactive properties of Cur and Pip. The study highlights the potential of co-amorphous phytochemical systems in developing multifunctional oleogels for applications in functional foods and natural food additives.
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http://dx.doi.org/10.1016/j.crfs.2025.101139 | DOI Listing |
J Texture Stud
October 2025
Faculty of Chemical-Metallurgical Engineering, Department of Food Engineering, Istanbul Technical University, Sarıyer, Istanbul, Türkiye.
In this study, potato slices were fried in four different vegetable oils (corn, olive, palm olein, and sunflower) to investigate how oil type influences the characteristics of potato chips. The diffusion coefficient of oils was attempted to be correlated with the final moisture, oil uptake, and textural parameters of potato chips. The diffusion coefficients were determined using two approaches.
View Article and Find Full Text PDFAnal Chim Acta
November 2025
Measurement Technology & Instrumentation Key Laboratory of Hebei Province, Institute of Electrical Engineering, Yanshan University, Qinhuangdao, 066004, China.
Background: With the development of modern agriculture, neonicotinoid pesticides have been widely used due to their high efficiency and strong systemic properties. However, excessive use leads to the accumulation of residues in the food chain, threatening the ecosystem and human health. Pesticide residues are easily accumulated in oilseed crops and become concentrated during the edible oil refining process.
View Article and Find Full Text PDFFungal Biol
October 2025
Marmara Forestry Research Institute Directorate, Fatih Forest Campus, Maslak-Sarıyer, Istanbul, Türkiye.
Vitamin D is critically important for sustainable human health, and the rising prevalence of deficiency-related diseases has increased interest in natural sources. This study explores the potential of epiphytic lichen-forming fungi, known for their unique metabolites, as a novel biosource of vitamin D for pharmaceutical and nutraceutical applications. Fourteen epiphytic lichen species were collected using a stratified sampling method from four mountainous forests in the Marmara Region of Türkiye.
View Article and Find Full Text PDFFood Chem
September 2025
CEB - Centre of Biological Engineering, Universidade do Minho, Campus de Gualtar, 4710-057 Braga, Portugal; LABBELS - Associate Laboratory, Guimarães, Braga, Portugal. Electronic address:
Olive pomace (OLP) and stones (OLS) are key by-products of olive oil production, rich in lignocellulose and pectin, making them viable substrates for prebiotic oligosaccharide (OS) production. This study evaluated the chemical composition of OLP and OLS powders (OLPp and OLSp) and their potential for OS production through one-step fermentation using recombinant Bacillus subtilis 3610. Both substrates had comparable xylan and pectin levels, but OLSp showed greater potential, achieving a maximum total sugar yield of 60 ± 3 mg.
View Article and Find Full Text PDFJ Sci Food Agric
September 2025
Universidade Federal do Pampa, Campus São Gabriel-São Gabriel, São Gabriel, Brazil.
Background: Fertilization of plants with selenium (Se) can enhance their resistance to abiotic stresses and improve human health and nutrition. However, Se fertilization in olive trees remains underexplored. This study evaluated the effect of foliar sodium selenite fertilization on leaf Se content, oxidative stress, olive tree productivity, biofortification of extra virgin olive oils (EVOO), and their physicochemical and antioxidant attributes in two mature 'Arbequina' olive orchards.
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