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Article

Valorization of Brewer’s Spent Grains via Aspergillus oryzae Solid-State Fermentation: Production of Lignocellulolytic Enzymes for Biorefinery Applications

by
Anahid Esparza-Vasquez
,
Sara Saldarriaga-Hernandez
,
Rosa Leonor González-Díaz
,
Tomás García-Cayuela
and
Danay Carrillo-Nieves
*
Tecnologico de Monterrey, Escuela de Ingeniería y Ciencias, Av. General Ramón Corona 2514, Nuevo México, Zapopan 45138, Jalisco, Mexico
*
Author to whom correspondence should be addressed.
Fermentation 2026, 12(4), 197; https://doi.org/10.3390/fermentation12040197
Submission received: 14 March 2026 / Revised: 8 April 2026 / Accepted: 9 April 2026 / Published: 14 April 2026
(This article belongs to the Special Issue Valorization of Food Waste Using Solid-State Fermentation Technology)

Abstract

Brewer’s spent grain (BSG) is an abundant lignocellulosic by-product whose valorization can support circular bioeconomy strategies. This study evaluated BSG bioconversion by Aspergillus oryzae ATCC 10124 under solid-state fermentation (SSF) to produce lignocellulolytic enzymes and release second-generation (2G) sugars relevant to biorefinery applications. SSF was monitored over 0–10 days, and FPase, endo-cellulase, β-glucosidase, xylanase, mannanase, amylase, and ligninolytic enzyme activities were quantified. Enzymatic crude extracts were further assessed in SDS-PAGE analysis. Glucose, cellobiose, xylose and arabinose release and consumption were tracked throughout fermentation, and substrate transformation was supported by FTIR. The secretome exhibited a predominantly hydrolytic profile, with maximal hemicellulolytic and cellulolytic activity around days 2–4, as well as sustained amylase activity. Ligninolytic activity was not detected. Sugar profiles indicated rapid early hydrolysis of glucose, followed by progressive pentose release. The stabilization and decline were consistent with fungal uptake. Changes in the carbohydrate fingerprint and SDS–PAGE banding supported structural polysaccharide remodeling and hydrolytic protein secretion. Thus, this SSF platform confirmed certain potential for low-cost cellulolytic and hemicellulolytic enzyme generation. However, because sugar accumulation was temporary and followed by consumption, this system is best interpreted as a biological pretreatment and enzyme-generation step that supports subsequent downstream valorization.
Keywords: saccharification; second-generation sugars; enzyme extract; solid-state fermentation; circular bioeconomy saccharification; second-generation sugars; enzyme extract; solid-state fermentation; circular bioeconomy
Graphical Abstract

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MDPI and ACS Style

Esparza-Vasquez, A.; Saldarriaga-Hernandez, S.; González-Díaz, R.L.; García-Cayuela, T.; Carrillo-Nieves, D. Valorization of Brewer’s Spent Grains via Aspergillus oryzae Solid-State Fermentation: Production of Lignocellulolytic Enzymes for Biorefinery Applications. Fermentation 2026, 12, 197. https://doi.org/10.3390/fermentation12040197

AMA Style

Esparza-Vasquez A, Saldarriaga-Hernandez S, González-Díaz RL, García-Cayuela T, Carrillo-Nieves D. Valorization of Brewer’s Spent Grains via Aspergillus oryzae Solid-State Fermentation: Production of Lignocellulolytic Enzymes for Biorefinery Applications. Fermentation. 2026; 12(4):197. https://doi.org/10.3390/fermentation12040197

Chicago/Turabian Style

Esparza-Vasquez, Anahid, Sara Saldarriaga-Hernandez, Rosa Leonor González-Díaz, Tomás García-Cayuela, and Danay Carrillo-Nieves. 2026. "Valorization of Brewer’s Spent Grains via Aspergillus oryzae Solid-State Fermentation: Production of Lignocellulolytic Enzymes for Biorefinery Applications" Fermentation 12, no. 4: 197. https://doi.org/10.3390/fermentation12040197

APA Style

Esparza-Vasquez, A., Saldarriaga-Hernandez, S., González-Díaz, R. L., García-Cayuela, T., & Carrillo-Nieves, D. (2026). Valorization of Brewer’s Spent Grains via Aspergillus oryzae Solid-State Fermentation: Production of Lignocellulolytic Enzymes for Biorefinery Applications. Fermentation, 12(4), 197. https://doi.org/10.3390/fermentation12040197

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