Ao Bo, Du Qingquan, Liu Decheng, Shi Xiaoshan, Tu Junming, Xia Xian
Hubei Key Laboratory of Edible Wild Plants Conservation & Utilization, Hubei Engineering Research Center of Characteristic Wild Vegetable Breeding and Comprehensive Utilization Technology, Huangshi Key Laboratory of Lake Environmental Protection and Sustainable Utilization of Resources, Hubei Normal University, Huangshi, China.
Front Microbiol. 2023 Jul 13;14:1229838. doi: 10.3389/fmicb.2023.1229838. eCollection 2023.
Effective control of foodborne pathogen contamination is a significant challenge to the food industry, but the development of new antibacterial nanotechnologies offers new opportunities. Notably, selenium nanoparticles have been extensively studied and successfully applied in various food fields. Selenium nanoparticles act as food antibacterial agents with a number of benefits, including selenium as an essential trace element in food, prevention of drug resistance induction in foodborne pathogens, and improvement of shelf life and food storage conditions. Compared to physical and chemical methods, biogenic selenium nanoparticles (Bio-SeNPs) are safer and more multifunctional due to the bioactive molecules in Bio-SeNPs. This review includes a summarization of (1) biosynthesized of Bio-SeNPs from different sources (plant extracts, fungi and bacteria) and their antibacterial activity against various foodborne bacteria; (2) the antibacterial mechanisms of Bio-SeNPs, including penetration of cell wall, damage to cell membrane and contents leakage, inhibition of biofilm formation, and induction of oxidative stress; (3) the potential antibacterial applications of Bio-SeNPs as food packaging materials, food additives and fertilizers/feeds for crops and animals in the food industry; and (4) the cytotoxicity and animal toxicity of Bio-SeNPs. The related knowledge contributes to enhancing our understanding of Bio-SeNP applications and makes a valuable contribution to ensuring food safety.
有效控制食源性病原体污染是食品行业面临的一项重大挑战,但新型抗菌纳米技术的发展提供了新的机遇。值得注意的是,硒纳米颗粒已得到广泛研究,并成功应用于各个食品领域。硒纳米颗粒作为食品抗菌剂具有诸多益处,包括硒作为食品中的必需微量元素、防止食源性病原体产生耐药性以及延长保质期和改善食品储存条件。与物理和化学方法相比,生物源硒纳米颗粒(Bio-SeNPs)由于其生物活性分子而更安全且功能更丰富。本综述包括以下内容的总结:(1)从不同来源(植物提取物、真菌和细菌)生物合成Bio-SeNPs及其对各种食源细菌的抗菌活性;(2)Bio-SeNPs的抗菌机制,包括细胞壁穿透、细胞膜损伤和内容物泄漏、生物膜形成抑制以及氧化应激诱导;(3)Bio-SeNPs作为食品包装材料、食品添加剂以及食品工业中作物和动物的肥料/饲料的潜在抗菌应用;(4)Bio-SeNPs的细胞毒性和动物毒性。相关知识有助于增进我们对Bio-SeNP应用的理解,并为确保食品安全做出宝贵贡献。