Prajapati Nidhi, Patel Jinil, Singh Sachidanand, Yadav Virendra Kumar, Joshi Chinmayi, Patani Anil, Prajapati Dharmendra, Sahoo Dipak Kumar, Patel Ashish
Department of Biotechnology, Smt. S. S. Patel Nootan Science and Commerce College, Sankalchand Patel University, Visnagar, Gujarat, India.
Department of Microbiology, Smt. S. S. Patel Nootan Science and Commerce College, Sankalchand Patel University, Visnagar, Gujarat, India.
Front Microbiol. 2023 Dec 19;14:1306192. doi: 10.3389/fmicb.2023.1306192. eCollection 2023.
Postbiotics, which are bioactive substances derived from the metabolic processes of beneficial microbes, have received considerable attention in the field of microbiome science in recent years, presenting a promising path for exploration and innovation. This comprehensive analysis looks into the multidimensional terrain of postbiotic production, including an extensive examination of diverse postbiotic classes, revealing their sophisticated mechanisms of action and highlighting future applications that might significantly affect human health. The authors thoroughly investigate the various mechanisms that support postbiotic production, ranging from conventional fermentation procedures to cutting-edge enzyme conversion and synthetic biology approaches. The review, as an acknowledgment of the field's developing nature, not only highlights current achievements but also navigates through the problems inherent in postbiotic production. In order to successfully include postbiotics in therapeutic interventions and the production of functional food ingredients, emphasis is given to critical elements, including improving yields, bolstering stability, and assuring safety. The knowledge presented herein sheds light on the expanding field of postbiotics and their potential to revolutionize the development of novel therapeutics and functional food ingredients.
后生元是源自有益微生物代谢过程的生物活性物质,近年来在微生物组科学领域受到了广泛关注,为探索和创新提供了一条充满希望的途径。这项综合分析深入研究了后生元生产的多维度领域,包括对多种后生元类别进行广泛考察,揭示其复杂的作用机制,并突出可能对人类健康产生重大影响的未来应用。作者全面研究了支持后生元生产的各种机制,从传统发酵程序到前沿的酶转化和合成生物学方法。作为对该领域不断发展性质的认可,这篇综述不仅突出了当前的成就,还梳理了后生元生产中固有的问题。为了成功地将后生元纳入治疗干预和功能性食品成分的生产中,重点关注了关键要素,包括提高产量、增强稳定性和确保安全性。本文所呈现的知识为后生元这一不断扩展的领域及其在革新新型治疗方法和功能性食品成分开发方面的潜力提供了启示。
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