Title Multi-stage bioprocessing of bee pollen by LAB fermentation and enzymatic hydrolysis: enhancing phenolic and flavonoid content and bioactivity
Authors Kaškonienė, Vilma ; Damulienė, Vaida ; Kaškonas, Paulius
DOI 10.3390/foods15173056
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Is Part of Foods.. Basel : MDPI. 2026, vol. 15, iss. 17, art. no. 3056, p. 1-26.. ISSN 2304-8158
Keywords [eng] multi-stage bioprocessing ; lactic acid fermentation ; enzymatic hydrolysis ; antioxidants ; bioactivity
Abstract [eng] Bee pollen is a rich natural source of phenolic compounds and other bioactive constituents; however, the resistant pollen cell wall restricts the release of these compounds. This study investigated the effect of multi-stage bioprocessing involving bacterial fermentation, spontaneous fermentation, and enzymatic hydrolysis on the recovery of bioactive compounds from ten bee pollen collected from different regions of Lithuania. First-stage treatments included fermentation with Lactobacillus acidophilus, L. rhamnosus, L. reuteri, Bifidobacterium animalis, spontaneous fermentation, or enzymatic hydrolysis using Viscozyme® L, cellulase, or Clara-diastase. Second-stage bioprocessing combined the initial treatment with either bacterial fermentation or enzymatic hydrolysis. Total phenolic content (TPC), total flavonoid content (TFC), radical scavenging activity (RSA), and inhibition of heat-induced bovine serum albumin (BSA) denaturation (BSA-DI) were determined using spectrophotometric assays. Statistical analysis demonstrated that multi-stage bioprocessing significantly enhanced the chemical composition and bioactivity of bee pollen compared with single-stage treatments. The greatest improvements were achieved when enzymatic hydrolysis preceded bacterial fermentation, resulting in increases of up to 5.0-, 4.2-, 6.3-, and 5.3-fold in TPC, TFC, RSA, and BSA-DI activity, respectively. These findings suggest that combining enzymatic hydrolysis with bacterial fermentation may be a promising approach for improving the recovery of bioactive compounds and selected functional properties of bee pollen.
Published Basel : MDPI
Type Journal article
Language English
Publication date 2026
CC license CC license description