Faba bean
(Vicia faba L.)
is a protein-rich legume with a high potential to be used for plant-based protein and responsible food systems, it is an eco-friendly legume. Its high protein content and balanced amino acid profile along with its high content of dietary fibre and bioactive compounds make it a promising alternative to animal protein sources. Although these benefits, the potential use of faba beans in food products has been hampered by the presence of anti-nutritional factors like vicine and convicine, and protein digestibility and sensory acceptability problems. The present review critically discusses recent developments in sustainable processing technologies aimed at enhancing the nutritional value, protein digestibility and bioavailability of beneficial compounds of faba beans. Apart from the traditional methods like soaking, autoclaving and thermal fermentation, novel methods like enzymatic hydrolysis, ultrasonication and pulsed electric field (PEF) processing are evaluated. In addition to the traditional methods (soaking, autoclaving and thermal fermentation), novel methods like enzymatic hydrolysis, ultrasonication and pulsed electric field (PEF) processing are evaluated. Such strategies are successful in reducing ANFs, improving protein functionality and digestibility, and making bioactive compounds more available, and enhancing sensory properties. Such improvements help to enable the incorporation of faba beans in innovative food products, such as plant based meat replacement, snacks and value added products etc. Moreover, it is noteworthy that biotechnological approaches with the use of specific enzymes and probiotic microorganisms have great potential to reduce the amount of vicine and convicine and enhance nutritional safety. Several green extraction technologies are also available to recover high value phytochemicals in an efficient manner, including ultrasound-assisted extraction and supercritical CO2 extraction. Collectively, these processing strategies emphasize the important role of faba beans in promoting plant-based diets, food security, and sustainable food innovation.
S. Girhe, N. Solanke, S. Thakre et al.· BIO Web of Conferences· 0 citations
The growing production of food processing waste brings an environmental challenge and a need for sustainable food innovation. Fruit peels, which are thrown away as agro–industrial waste, are full of bioactive substances that have useful bioactive compounds. This article explores the use of dragon fruit (
Selenicereus spp., formerly Hylocereus spp.
) peel and lemon
(Citrus limon)
zest in fruit–based spreads to enhance nutritional, functional, and sensory properties. The peel of the dragon fruit, generally regarded as waste, contains a high amount of betalains (betacyanins: 32–80 mg/100 g fresh weight; betaxanthins: 12–40 mg/100 g fresh weight), dietary fibre (up to 46.5%), pectin (yield: 9.4–20.5% by ultrasound– and microwave-assisted extraction, respectively) and phenolic compounds (total phenolics: 2.8–8.9 mg GAE/g dry weight). Similarly, lemon zest is a rich source of fiavonoids (primarily hesperidin and eriocitrin), and D–limonene (59–74% of essential oil) responsible for flavour enhancement and preservation. The combined use of these by–products in fruit spread improves antioxidant potential, fibre content, texture, and sensory characteristics. Therefore, the use of dragon fruit peel and lemon zest added to fruit–based spreads can be considered an effective approach to the green economy, converting agro–industrial waste into value–added functional foods.
Janhavi Ulman, D. Joseph, V. Kele et al.· BIO Web of Conferences· 0 citations
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