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In recent years, there have been significant developments in plant proteins production for meat and fish analogues. Some of the key developments include the use of new plant protein sources such as soy, legumes, grains, potatoes, and seaweed, as well as insect proteins, leaf proteins, mushrooms, and microbial proteins. Furthermore, to improve the technological and functional properties of plant proteins, they can be subjected to traditional and unconventional treatments such as chemical (glycosylation, deamidation, phosphorylation, and acylation), physical (pulsed electric fields, ultrasound, high hydrostatic pressure, dynamic high-pressure treatment, and cold plasma), and biological (fermentation and enzymatic modification). To obtain the high quality and the desired texture of the food product, other ingredients besides proteins, such as water, fat, flavors, binders, dyes, vitamins, minerals, and antioxidants, also have to be used. The final product can be significantly influenced by the matrix composition, variety of ingredients, and water content, with the type of ingredients playing a role in either enhancing or constraining the desired texture of the food. There are several types of technologies used for meat and fish analogues production, including extrusion, shear cell technology, spinning, 3D printing, and others. Overall, the technologies used for meat and fish analogues production are constantly evolving as new innovations are developed and existing methods are improved. These developments have led to the creation of plant-based products that have a similar texture, taste, and nutritional profile to meat and fish, making them more appealing to consumers seeking alternatives to animal-based products.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10095742 | PMC |
http://dx.doi.org/10.3390/molecules28072966 | DOI Listing |
J Hum Nutr Diet
October 2025
Haszard Biostatistics, Otago, New Zealand.
Introduction: Dependent older adults in residential aged care are at increased risk of inadequate micronutrient intakes. Knowledge of dietary intakes in this group is needed to inform clinical decision making and guide nutrition policy and menu planning. This study aimed to determine the usual intake and food sources of micronutrients of New Zealand aged-care residents.
View Article and Find Full Text PDFInt J Gynaecol Obstet
September 2025
UCD Perinatal Research Center, School of Medicine, National Maternity Hospital, University College Dublin, Dublin, Ireland.
Objective: To identify potential nutritional risks for women using the FIGO Nutrition Checklist in relation to region, age and pregnancy/intention.
Methods: A retrospective analysis was conducted using 1515 responses from the online version of the FIGO Nutrition Checklist available on the FIGO website. Participants who responded "No" to at least one dietary question were classified as at potential nutritional risk.
Compr Rev Food Sci Food Saf
September 2025
Department of Seafood Processing Technology, Faculty of Fisheries, Cukurova University, Adana, Turkey.
Microbial spoilage and oxidation are significant causes of food deterioration, contributing to food waste of up to 30%. To mitigate these losses, active food packaging is an effective solution. Considering the excellent properties of nanofibers produced by electrospinning, integrating active food packaging functionality with nanofiber technology offers an ideal approach enhancing preservation.
View Article and Find Full Text PDFAquac Nutr
August 2025
College of Fisheries, Hunan Agricultural University, Changsha 410128, China.
An 8-week feeding trial was conducted to assess the effects of hydrolyzed feather meal (HFM) as a fish meal replacement on the growth performance, flesh quality, skin color, and intestinal microbiota of yellow catfish (). Five isonitrogen (44% crude protein) and isolipidic (8.5% crude lipid) diets were formulated with varying levels of HFM at 0% (FM, control), 2.
View Article and Find Full Text PDFFood Res Int
November 2025
Department of Animal Science, Iowa State University, Ames, IA 50011, United States. Electronic address:
Lutein and omega-3 fatty acids, particularly eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA), offer significant health benefits, especially when consumed together. However, their incorporation in food is often low due to their instability during processing and storage. Meat products play an essential role in human nutrition and are generally deficient in lutein and omega-3 fatty acids.
View Article and Find Full Text PDF