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Título
Optimization of Enzymatic Extraction of Melanoidins from Bread by-Products: Bioactivity and Microbiota Modulation
Autor
Publicado en
Biology and Life Sciences Forum. 2023, V. 26, n. 1, p. 25
Editorial
MDPI
Fecha de publicación
2023-10
ISSN
2673-9976
DOI
10.3390/Foods2023-15102
Descripción
Comunicación presentada en: The 4th International Electronic Conference on Foods 2023, durante los días 15-30 de octubre de forma online.
Resumen
The bakery industry generates substantial food waste, leading to global environment pollution and economic losses. However, these by-products contain valuable bioactive compounds, such as melanoidins, which are brown pigmented compounds with significant antioxidant, antimicrobial and anti-inflammatory properties, making them ideal functional ingredient. This study aimed to evaluate the optimal enzymatic extraction of melanoidins from bread crust using different proteolytic enzymes: pronase E, serine-endo-protease (SP), metalloenzyme protease (MP) and endoprotease papain enzyme (EP). While the yield of melanoidins from MP and EP was lower than that of pronase E, SP yield was significantly higher. No cytotoxicity of bioaccessible, gastrointestinal and colonic fractions was observed in the cell lines Caco-2, HUVEC and SHSY5Y. The antioxidant properties and ability to stabilize the hydroxyl radical were characterized in bioaccessible fractions of the four melanoidins extracts. Moreover, melanoidins positively influenced the intestinal microbiota by increasing beneficial bacteria like Bifidobacterium and Lactobacillus, while reducing non-beneficial bacteria such as Bacteroides spp. and Clostridium leptum, with particularly significant results for SP and EP enzyme extracts. In conclusion, SP and EP enzymes appear to be viable alternatives to pronase E for obtaining melanoidin extracts as functional ingredients. These enzymes offer potential cost advantages and contribute to the sustainable utilization of bakery by-product melanoidins in various food applications. Implementing these alternatives could help to reduce food waste, environmental pollution and economic losses in the bakery industry while promoting the use of valuable bioactive compounds.
Palabras clave
Melanoidins
Bioactive compounds
Antioxidant
Materia
Biotecnología
Biotechnology
Biotecnología alimentaria
Food-Biotechnology
Bioquímica
Biochemistry
Versión del editor
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