Environmental Biotechnology and Genomics Division, CSIR-National Environmental Engineering Research Institute, Nagpur, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, India.
Biotechnol Genet Eng Rev. 2023 Oct;39(2):465-510. doi: 10.1080/02648725.2022.2152627. Epub 2023 Jan 30.
Prebiotics as a part of dietary nutrition can play a crucial role in structuring the composition and metabolic function of intestinal microbiota and can thus help in managing a clinical scenario by preventing diseases and/or improving health. Among the different prebiotics, non-digestible carbohydrates are molecules that selectively enrich a typical class of bacteria with probiotic potential. This review summarizes the current knowledge about the different aspects of prebiotics, such as its production, characterization and purification by various techniques, and its link to novel product development at an industrial scale for wide-scale use in diverse range of health management applications. Furthermore, the path to effective valorization of agricultural residues in prebiotic production has been elucidated. This review also discusses the recent developments in application of genomic tools in the area of prebiotics for providing new insights into the taxonomic characterization of gut microorganisms, and exploring their functional metabolic pathways for enzyme synthesis. However, the information regarding the cumulative effect of prebiotics with beneficial bacteria, their colonization and its direct influence through altered metabolic profile is still getting established. The future of this area lies in the designing of clinical condition specific functional foods taking into consideration the host genotypes, thus facilitating the creation of balanced and required metabolome and enabling to maintain the healthy status of the host.
作为饮食营养的一部分,益生元可以在构建肠道微生物群落的组成和代谢功能方面发挥关键作用,从而可以通过预防疾病和/或改善健康状况来帮助管理临床情况。在不同的益生元中,不可消化的碳水化合物是一类选择性地富集具有益生菌潜力的典型细菌的分子。这篇综述总结了关于益生元的不同方面的最新知识,例如其通过各种技术的生产、特性和纯化,以及其与新型产品开发的联系,以便在广泛的健康管理应用中大规模使用。此外,阐明了在农业残留物的有效增值途径,用于生产益生元。本文还讨论了基因组工具在益生元领域应用的最新进展,为肠道微生物的分类特征提供了新的见解,并探索了其功能代谢途径,用于酶的合成。然而,关于有益细菌与益生元的累积效应、它们的定植及其通过改变代谢谱的直接影响的信息仍在建立中。该领域的未来在于设计针对特定临床情况的功能性食品,考虑到宿主基因型,从而促进平衡和所需代谢组的创建,并维持宿主的健康状态。