Gao Jie, Jiang Shuoqi, Li Zehao, Liu Shoufeng, Gu Qiuya, Yu Xiaobin
Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, 1800 Li-Hu Road, Wuxi, Jiangsu, 214122, People's Republic of China.
Int Microbiol. 2025 Mar 28. doi: 10.1007/s10123-025-00653-8.
This study aimed to develop a selenium nanoparticles (SeNPs)-enriched probiotic strain with potential anti-hangover effects. Pediococcus acidilactici JW-015 was screened for its high tolerance to inorganic selenium (up to 80 mM sodium selenite) and efficient synthesis of SeNPs, achieving a selenium accumulation concentration of 6974 ± 90.71 μg/g, with SeNPs accounting for 86.54% ± 2.48%. Safety and probiotic properties were evaluated, confirming that JW-015 is a safe probiotic strain and that selenium enrichment enhanced its probiotic properties. Furthermore, JW-015 demonstrated significant anti-hangover efficacy, with selenium enrichment improving the oxidative stress capacity, alcohol tolerance, alcohol degradation ability, and relevant enzyme activities (ADH and ALDH) of the strain. This study provides a promising bio-carrier for SeNPs transformation and expands the applications of selenium-enriched LAB.
本研究旨在开发一种具有潜在解酒作用的富硒纳米硒(SeNPs)益生菌菌株。筛选出嗜酸乳杆菌JW-015,其对无机硒具有高耐受性(高达80 mM亚硒酸钠)且能高效合成SeNPs,硒积累浓度达到6974±90.71μg/g,其中SeNPs占86.54%±2.48%。评估了其安全性和益生菌特性,证实JW-015是一种安全的益生菌菌株,且富硒增强了其益生菌特性。此外,JW-015表现出显著的解酒功效,富硒提高了该菌株氧化应激能力、酒精耐受性、酒精降解能力以及相关酶活性(ADH和ALDH)。本研究为SeNPs转化提供了一种有前景的生物载体,并拓展了富硒乳酸菌的应用。