Valorization of Spent Brewer’s Yeast Bioactive Components via an Optimized Ultrasonication Process

Author:

Ciobanu Livia Teodora12,Constantinescu-Aruxandei Diana1ORCID,Tritean Naomi13ORCID,Lupu Carmen1,Negrilă Radian Nicolae4,Farcasanu Ileana Cornelia2ORCID,Oancea Florin15ORCID

Affiliation:

1. Bioresources Department, National Institute for Research & Development in Chemistry and Petrochemistry—ICECHIM, Spl. Independentei No. 202, Sector 6, 060021 Bucharest, Romania

2. Interdisciplinary School of Doctoral Studies ISDS—UB, University of Bucharest, Bd. Mihail Kogalniceanu No. 36–46, 050107 Bucharest, Romania

3. Faculty of Biology, University of Bucharest, Splaiul Independentei No. 91–95, 050095 Bucharest, Romania

4. SC Agsira Srl, Str. Nicolae Bălcescu No. 54, Hala 2, 207340 Ișalnița, Dolj County, Romania

5. Faculty of Biotechnologies, University of Agronomic Sciences and Veterinary Medicine of Bucharest, Bd. Mărăști No. 59, Sector 1, 011464 Bucharest, Romania

Abstract

The increasing need for sustainable waste management and food fortification requires continuous agri-food biotechnological innovation. Spent brewer’s yeast (SBY) is a mass-produced underutilized by-product of the brewery industry and has elevated bioactive potential. The current study presents a streamlined ultrasonic SBY cell lysis method, with the main goal of bioactive compound valorization. The influence of selected ultrasonication parameters on protein release and, implicitly, on the cell disruption efficiency, was assessed. The SBY derivatives resulting from the ultrasonic cell lysis were SBY extracts (SBYEs) and cell walls (SBYCWs), which were evaluated in terms of protein content, antioxidant activity (AOA) and total polyphenol content. Scanning electron microscopy (SEM) and FT-IR spectroscopy were used to characterize SBYCWs in relation to the morphological and chemical transformations that follow ultrasonic yeast cell disruption. The optimal ultrasonication conditions of 6.25% SBY concentration, 40 °C and 33.33% duty cycle (DC) ensured the most efficient lysis. The SBY derivatives with the most elevated antioxidant activity were obtained at temperatures below 60 °C. SBYCWs had the highest polyphenol content and a relatively high content of β-glucan under these parameters. Optical microscopy and SEM confirmed the release of intracellular content and separation of SBYCWs.

Funder

cohesion funds of the European Union

Publisher

MDPI AG

Subject

Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Food Science

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