Kumar Anand, Green Katelyn M, Rawat Manmeet
Biochemistry and Biotechnology Group, Los Alamos National Laboratory, Bioscience Division, Los Alamos, NM 87545, USA.
Department of Medicine, The Penn State University College of Medicine, Hershey, PA 17033, USA.
Foods. 2024 Sep 17;13(18):2937. doi: 10.3390/foods13182937.
The increasing interest in postbiotics, a term gaining recognition alongside probiotics and prebiotics, aligns with a growing number of clinical trials demonstrating positive outcomes for specific conditions. Postbiotics present several advantages, including safety, extended shelf life, ease of administration, absence of risk, and patentability, making them more appealing than probiotics alone. This review covers various aspects, starting with an introduction, terminology, classification of postbiotics, and brief mechanisms of action. It emphasizes microbial metabolomics as the initial step in discovering novel postbiotics. Commonly employed techniques such as NMR, GC-MS, and LC-MS are briefly outlined, along with their application principles and limitations in microbial metabolomics. The review also examines existing research where these techniques were used to identify, isolate, and characterize postbiotics derived from different microbial sources. The discovery section concludes by highlighting challenges and future directions to enhance postbiotic discovery. In the second half of the review, we delve deeper into numerous published postbiotic clinical trials to date. We provide brief overviews of system-specific trial applications, their objectives, the postbiotics tested, and their outcomes. The review concludes by highlighting ongoing applications of postbiotics in extended clinical trials, offering a comprehensive overview of the current landscape in this evolving field.
对后生元的兴趣日益增加,后生元这一术语与益生菌和益生元一同获得认可,这与越来越多的临床试验结果相符,这些试验表明后生元对特定病症具有积极效果。后生元具有若干优势,包括安全性、保质期长、易于给药、无风险以及可专利性,这使得它们比单一的益生菌更具吸引力。本综述涵盖多个方面,首先是引言、术语、后生元的分类以及简要的作用机制。它强调微生物代谢组学是发现新型后生元的第一步。简要概述了核磁共振(NMR)、气相色谱 - 质谱联用(GC - MS)和液相色谱 - 质谱联用(LC - MS)等常用技术,以及它们在微生物代谢组学中的应用原理和局限性。该综述还审视了利用这些技术来鉴定、分离和表征源自不同微生物来源的后生元的现有研究。发现部分通过强调增强后生元发现的挑战和未来方向来结束。在综述的后半部分,我们更深入地探讨了迄今为止众多已发表的后生元临床试验。我们简要概述了特定系统的试验应用、其目标、所测试的后生元及其结果。综述最后强调了后生元在扩展临床试验中的持续应用,全面概述了这个不断发展领域的当前状况。