4.7 Review

Synthesis of bioactive oligosaccharides and their potential health benefits

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TAYLOR & FRANCIS INC
DOI: 10.1080/10408398.2023.2222805

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Oligosaccharides; Healthy benefits; Artificial strategies; Biosynthesis; Multi-omics

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Oligosaccharides, with various physiological activities, are being widely used in food and medical fields. Due to limited natural resources, there is a need to study un-natural oligosaccharides for their potential benefits. Different artificial strategies have been used to develop various oligosaccharides, with a focus on their effects against diabetes, obesity, aging, virus, and gut microbiota. Multi-omics approaches can be applied to study the dynamic changes of oligosaccharides and their effects on different diseases.
Oligosaccharides, a low polymerization degree of carbohydrate, possess various physiological activities, such as anti-diabetes, anti-obesity, anti-aging, anti-viral, and gut microbiota regulation, having a widely used in food and medical fields. However, due to the limited natural oligosaccharides, many un-natural oligosaccharides from complex polysaccharides are being studied for amplifying the available pool of oligosaccharides. More recently, various oligosaccharides were developed by using several artificial strategies, such as chemical degradation, enzyme catalysis, and biosynthesis, then they can be applied in various sectors. Moreover, it has gradually become a trend to use biosynthesis to realize the synthesis of oligosaccharides with clear structure. Emerging research has found that un-natural oligosaccharides exert more comprehensive effects against various human diseases through multiple mechanisms. However, these oligosaccharides from various routes have not been critical reviewed and summarized. Therefore, the purpose of this review is to present the various routes of oligosaccharides preparations and healthy effects, with a focus on diabetes, obesity, aging, virus, and gut microbiota. Additionally, the application of multi-omics for these natural and un-natural oligosaccharides has also been discussed. Especially, the multi-omics are needed to apply in various disease models to find out various biomarkers to respond to the dynamic change process of oligosaccharides.

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