Mohammed Sarhan, Çon Ahmet Hilmi
Department of Food Engineering, Faculty of Engineering, Ondokuz Mayis University, 55139 Atakum, Samsun Turkey.
Food Sci Biotechnol. 2024 Jun 23;33(12):2729-2736. doi: 10.1007/s10068-024-01629-6. eCollection 2024 Sep.
In recent years, the term "postbiotics" has become increasingly popular in food microbiology, food science, and commercial products. This importance has been raised due to the safety issues associated with live bacterial cells. Postbiotics are defined as bioactive substances of probiotics. It confers unique health-promoting functions with its chemical structure, safe profile, and long shelf life. Meanwhile, postbiotics nanoparticles (postbiotics-NPs) can be considered novel postbiotic delivery systems to deliver bioactive components with health benefits and therapeutic aims, promote the shelf-life of food products, and develop novel functional foods. The present scientific literature shows that nanotechnology approaches are not yet mature enough to be used in postbiotic delivery systems. For all of that, the potential applications of postbiotics-NPs in the food industry and biomedical fields will be a new trend in the future.
近年来,“后生元”一词在食品微生物学、食品科学和商业产品中越来越流行。由于与活细菌细胞相关的安全问题,后生元的重要性日益凸显。后生元被定义为益生菌的生物活性物质。它凭借其化学结构、安全特性和较长的保质期赋予独特的健康促进功能。同时,后生元纳米颗粒(postbiotics-NPs)可被视为新型后生元递送系统,用于递送具有健康益处和治疗目的的生物活性成分,延长食品保质期,并开发新型功能性食品。目前的科学文献表明,纳米技术方法在用于后生元递送系统方面还不够成熟。尽管如此,后生元纳米颗粒在食品工业和生物医学领域的潜在应用将是未来的一个新趋势。