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Background: The composition of meat batters can be modified by the addition of fish oil or microencapsulation of oil. Such modifications affect the water binding and the rheological properties of the resulting systems. There is little information available on the behaviour of water molecules in model meat batter systems with microcapsules. The main goal of the study was to assess the degree of water binding by the meat batter system and to carry out a rheological analysis during heating and cooling.
Results: The sample with the microcapsules was characterized by a slightly elevated level of total protein. The encapsulated oil additive reduced the pH and water activity value in the meat batter, compared with the control sample. There was one relaxation time T and two time components T in the control batter and the batter containing encapsulated oil. The sample with the oil additive was characterized by two components of relaxation time T and three components of relaxation time T . There was an inverse correlation between the dynamic viscosity of the batters and the spin-spin relaxation times T and T . The temperature courses of the modulus of elasticity in all the systems exhibited three areas of change (20-43 °C, 43-60 °C, and >60 °C). The highest dynamics of change in the modulus of elasticity was observed for the initial and final temperature range (60-85 °C).
Conclusions: The samples with the oil and microcapsule additives exhibited higher elastic energy accumulation capacity and dynamic viscosity than the control batter within the whole heating range. The fish oil microcapsules improved the mechanical properties of poultry sausage batters and their water-binding properties. This may increase the juiciness and microbiological stability of the finished products. © 2020 Society of Chemical Industry.
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http://dx.doi.org/10.1002/jsfa.10723 | DOI Listing |
Inflammopharmacology
September 2025
Department of Surgery, School of Medicine, Federal University of Ceará, Fortaleza, Ceará, Brazil.
Objective: This study evaluated the effects and mechanisms of antioxidant and anti-inflammatory oils with a high omega-9:omega-6 ratio and a low omega-6:omega-3 ratio on post-extraction healing in rats.
Materials And Methods: A total of 128 Wistar rats were divided into four groups: Sham, Saline, Isolipidic, and Anti-inflammatory/Antioxidant. The animals received one of the following treatments: (1) 0.
Vet Res Commun
September 2025
Department of Aquaculture, Faculty of Fisheries, Cukurova University, Adana, Turkey.
This study evaluated how dietary black seed oil (Nigella sativa L.) against the diazinon waterborne toxicity on Nile tilapia (Oreochromis niloticus), focusing on growth performance, hematological and biochemical parameters as well as oxidative stress markers and histological changes. A 40-day feeding trial was carried out using four experimental groups: Group 1 (control group), Group 2 (N.
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September 2025
Hill's Pet Nutrition, Topeka, KS, USA 66601.
Fish oil is a source of the n-3 fatty acids eicosapentaenoic acid (EPA) and docosahexanoic acid (DHA) that confer several health benefits. To ensure continuity in the supply of n-3 fatty acids, alternative sources are being sought. Algal oil may serve as a promising alternative to fish oil for supplementing DHA in cat foods.
View Article and Find Full Text PDFCompr Rev Food Sci Food Saf
September 2025
Department of Seafood Processing Technology, Faculty of Fisheries, Cukurova University, Adana, Turkey.
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View Article and Find Full Text PDFAquac Nutr
August 2025
Guangdong Provincial Key Laboratory of Aquatic Animal Disease Control and Healthy Culture and Key Laboratory of Control for Disease of Aquatic Animals of Guangdong Higher Education Institutes, Fisheries College, Guangdong Ocean University, Zhanjiang, China.
Nuclear factor erythroid 2-related factor 2 (Nrf2) is an essential component in regulating oxidative stress. Sulforaphane (SFN) is a natural antioxidant and gene agonist that can increase the antioxidant capacity of the organism and reduce oxidative stress. However, research on the repair of oxidative stress damage by SFN in aquatic animals remains extremely scarce.
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