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干预措施揭示了鱼类肠道分离菌FW2产生的左聚糖型胞外多糖的健康益处。

and Interventions Reveal the Health Benefits of Levan-Type Exopolysaccharide Produced by a Fish Gut Isolate FW2.

作者信息

Ahmad Waqar, Nasir Anam, Prakash Satya, Hayat Azam, Rehman Mujaddad Ur, Khaliq Shazia, Akhtar Kalsoom, Anwar Munir Ahmad, Munawar Nayla

机构信息

Industrial Biotechnology Division, National Institute for Biotechnology and Genetic Engineering College, Pakistan Institute of Engineering and Applied Sciences (NIBGE-C, PIEAS), Faisalabad 38000, Pakistan.

Biomedical Technology and Cell Therapy Research Laboratory, Department of Biomedical Engineering, Faculty of Medicine, McGill University, 3775 University Street, Montreal, QC H3A 2B4, Canada.

出版信息

Life (Basel). 2025 Jan 13;15(1):89. doi: 10.3390/life15010089.

Abstract

Microorganisms synthesize diverse types of exopolysaccharides (EPSs). EPSs with varying structural and physical properties can demonstrate unique health benefits, which allow for their tailored applications as functional foods such as prebiotics. Levan, a fructose-based EPS, is gaining considerable attention as an effective prebiotic to support the growth of beneficial gut bacteria. Consequently, this enhances digestive health, boosts the immune system, and reduces the risk of chronic diseases. Unfortunately, limited studies are available on levan-type EPSs to demonstrate their role as prebiotics. Therefore, in this study, we conducted in vitro and in vivo experiments, concerning intestinal cell integrity and metabolic syndrome, to assess the therapeutic potential of levan derived from FW2. The in vitro experimental results revealed that levan improved the survival of impaired HT-29 epithelial cells of the intestine and also exerted antioxidant effects. In the in vivo experiments, mice fed with levan-supplemented feed exhibited low body weight gain, blood glucose, and serum cholesterol levels compared to the control group. These findings highlight the biotherapeutic potential of FW2-derived levan for improving metabolic syndrome and its associated aspects. It also signifies the need for a further detailed investigation based on clinical trials to include levan in dietary supplements for improved health and well-being.

摘要

微生物能合成多种类型的胞外多糖(EPSs)。具有不同结构和物理性质的EPSs可展现出独特的健康益处,这使其能够作为益生元等功能性食品进行定制应用。果聚糖是一种基于果糖的EPS,作为一种有效的益生元,能够促进有益肠道细菌的生长,因而备受关注。因此,这有助于增强消化健康、提升免疫系统并降低患慢性病的风险。遗憾的是,关于果聚糖型EPSs作为益生元的作用,现有研究有限。所以,在本研究中,我们针对肠道细胞完整性和代谢综合征进行了体外和体内实验,以评估源自FW2的果聚糖的治疗潜力。体外实验结果表明,果聚糖提高了受损的肠道HT - 29上皮细胞的存活率,并且还发挥了抗氧化作用。在体内实验中,与对照组相比,喂食添加了果聚糖饲料的小鼠体重增加、血糖和血清胆固醇水平较低。这些发现凸显了源自FW2的果聚糖在改善代谢综合征及其相关方面的生物治疗潜力。这也意味着需要基于临床试验进行进一步详细研究,以便将果聚糖纳入膳食补充剂中,从而改善健康状况和提升幸福感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9606/11767011/f36477f31783/life-15-00089-g001.jpg

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