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N. Nirmal

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Review Open access Aug 2026

Crustacean Processing By-Products as Sustainable Sources of Bioactive Compounds: A Comprehensive Review of Conventional and Emerging Extraction Technologies and Applications

Crustacean processing industries, particularly those that process shrimp, crab, and lobster, generate substantial quantities of biological waste, consisting primarily of shells, heads, and exoskeletons. These by-products contribute significantly to environmental pollution due to their high organic load, slow degradability, and improper disposal practices. Nevertheless, they represent valuable reservoirs of bioactive compounds such as chitin, proteins, polyunsaturated fatty acids, carotenoids, and minerals, as well as biologically active enzymes and enzyme inhibitors, which possess immense potential in food, pharmaceutical/cosmetic, biomedical and environmental sectors. Unlike previous studies that primarily focus on individual components or specific extraction techniques, this review comparatively evaluates both conventional extraction techniques (acid–alkali treatment and solvent extraction) and emerging green approaches (supercritical fluid extraction, enzymatic hydrolysis, pulsed electric fields, ultrasound-assisted extraction, cold plasma, microwave-assisted extraction and high-pressure processing), highlighting their efficiencies, sustainability, and influence on compound quality. The review study further explores the diverse applications of the recovered constituents in food preservation, nutraceutical development, biodegradable packaging, and functional ingredient formulation. Moreover, current challenges concerning process optimization, industrial scalability, economic feasibility, and environmental impact are critically evaluated.

Akanksha R. Gautam, Sottawat Benjakul, Rattikarn Boonchoosri et al. · 0 citations
Review Jul 2026

Soft Matter Physics-Driven Design of Texture-Modified Foods for Geriatric Nutrition.

This narrative review synthesizes experimental and clinical studies published from 2020 onwards that treat TMFs as soft-matter systems, including gels, emulsions, and composite biopolymer networks used in geriatric nutrition and dysphagia care, and translates these soft-matter descriptors into quantitative, phenotype-aware engineering windows for safer and more nutritious geriatric TMFs.

Jaydeep Dave, N. Nirmal, Satish Kumar et al. · 0 citations

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