Gurunathan Sangiliyandi, Thangaraj Pratheep, Kim Jin-Hoi
Department of Biotechnology, Rathinam College of Arts and Science, Eachanari, Coimbatore 641021, Tamil Nadu, India.
Department of Stem Cell and Regenerative Biotechnology, Konkuk University, Seoul 05029, Republic of Korea.
Foods. 2023 Dec 26;13(1):89. doi: 10.3390/foods13010089.
Postbiotics are (i) "soluble factors secreted by live bacteria, or released after bacterial lysis, such as enzymes, peptides, teichoic acids, peptidoglycan-derived muropeptides, polysaccharides, cell-surface proteins and organic acids"; (ii) "non-viable metabolites produced by microorganisms that exert biological effects on the hosts"; and (iii) "compounds produced by microorganisms, released from food components or microbial constituents, including non-viable cells that, when administered in adequate amounts, promote health and wellbeing". A probiotic- and prebiotic-rich diet ensures an adequate supply of these vital nutrients. During the anaerobic fermentation of organic nutrients, such as prebiotics, postbiotics act as a benevolent bioactive molecule matrix. Postbiotics can be used as functional components in the food industry by offering a number of advantages, such as being added to foods that are harmful to probiotic survival. Postbiotic supplements have grown in popularity in the food, cosmetic, and healthcare industries because of their numerous health advantages. Their classification depends on various factors, including the type of microorganism, structural composition, and physiological functions. This review offers a succinct introduction to postbiotics while discussing their salient features and classification, production, purification, characterization, biological functions, and applications in the food industry. Furthermore, their therapeutic mechanisms as antibacterial, antiviral, antioxidant, anticancer, anti-diabetic, and anti-inflammatory agents are elucidated.
(i)“活细菌分泌的或细菌裂解后释放的可溶性因子,如酶、肽、磷壁酸、肽聚糖衍生的胞壁肽、多糖、细胞表面蛋白和有机酸”;(ii)“微生物产生的对宿主发挥生物学作用的非活性代谢产物”;以及(iii)“微生物产生的、从食物成分或微生物成分中释放的化合物,包括非活性细胞,当适量施用时可促进健康和幸福”。富含益生菌和益生元的饮食可确保这些重要营养素的充足供应。在有机营养素(如益生元)的厌氧发酵过程中,后生元充当有益的生物活性分子基质。后生元可作为功能性成分用于食品工业,具有许多优点,例如可添加到对益生菌存活有害的食品中。后生元补充剂因其众多健康益处而在食品、化妆品和医疗保健行业中越来越受欢迎。它们的分类取决于多种因素,包括微生物类型、结构组成和生理功能。本综述在讨论后生元的显著特征、分类、生产、纯化、表征、生物学功能以及在食品工业中的应用的同时,对后生元进行了简要介绍。此外,还阐明了它们作为抗菌、抗病毒、抗氧化、抗癌、抗糖尿病和抗炎剂的治疗机制。