Food Gels Fabrication, Characterization, and Application
Materialtyp:
ArtikelUtgivningsinformation: CH MDPI - Multidisciplinary Digital Publishing Institute 2025Beskrivning: 1 electronic resource (218 p.)Innehållstyp: - text
- computer
- online resource
- 9783725858972
- 9783725858989
- Mathematics and Science
- Chemistry
- Beeswax
- Bigels
- Blended gel
- Blueberry pomace anthocyanins
- Bone
- Cassia bean gum
- Chilled beef
- Complex polysaccharide gels
- Composite matrix emulsion gel
- Composite network
- Crayfish muscle
- Curcumin
- Delivery
- Electrospraying
- Emulsion gel
- Emulsion gels
- Emulsion structure
- Encapsulation
- Enzymatic hydrolysis
- Fat substitute
- Freeze–thaw stability
- Freshness monitoring
- Gel disintegration
- Gel properties
- Gelatin
- Gelation challenges
- Lactobacillus reuteri DSM 17938
- Lipid oxidation
- Low salt
- Mathematical model
- Meat and sausage
- Milk
- Milk fat globule membrane
- Nemipterus virgatus
- Nutrient
- Organogel
- Physicochemical properties
- Protein
- Protein gel
- Saturated fatty acid
- Soy protein isolate
- Surimi
- Surimi gel
- Technological additives
- Textural properties
- Trans-fatty acid
- Transglutaminase
- Whey
- Yanbian cattle
- Κ-carrageenan
Open Access Unrestricted online access star
This Reprint focuses on the recent advancements in food gel technology and their applications across multiple domains, encompassing surimi-based seafood analogs that demand mechanically robust networks and dairy products requiring high emulsification stability and efficient nutrient integration. The innovation of composite gels, which incorporate bioactive components, has further expanded their functional capabilities and health-promoting potential. The research landscape encompasses critical advancements, including low-salt surimi gelation strategies utilizing amino acid supplements and high-pressure processing, emulsion restructuring in milk via homogenization and ultrasonic treatment, and the design of double emulsions for enhanced nutrient encapsulation. Moreover, it addresses emerging sustainable resource utilization approaches, such as gelatin extraction from underutilized raw materials, biotherapeutic delivery through protein–polysaccharide complexes, and advanced processing technologies like microfluidization and membrane emulsification to improve texture and stability.
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eng
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