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硫酸软骨素二糖在健康和应激条件下改变了小鼠肠道微生物组的结构和功能。

Chondroitin sulfate disaccharides modified the structure and function of the murine gut microbiome under healthy and stressed conditions.

机构信息

College of Food Science and Engineering, Ocean University of China, Qingdao, 266003, China.

United States Department of Agriculture, Agriculture Research Service (USDA-ARS), Animal Genomics and Improvement Laboratory, Beltsville, MD, 20705, USA.

出版信息

Sci Rep. 2017 Jul 28;7(1):6783. doi: 10.1038/s41598-017-05860-6.

Abstract

Chondroitin sulfate (CS) has been widely used for medical and nutraceutical purposes due to its roles in maintaining tissue structural integrity. We investigated if CS disaccharides may act as a bioactive compound and modulate gut microbial composition in mice. Our data show that CS disaccharides supplementation for 16 days significantly reduced blood LPS in the mice experiencing exhaustive exercise stress. CS disaccharides partially restored total fecal short-chain fatty acids from the level significantly repressed in mice under the stress. Our findings demonstrated that CS was likely butyrogenic and resulted in a significant increase in fecal butyrate concentration. CS disaccharides had a profound impact on gut microbial composition, affecting the abundance of 13.6% and 7.3% Operational Taxonomic Units in fecal microbial communities in healthy and stressed mice, respectively. CS disaccharides reduced the prevalence of inflammatory Proteobacteria. Together, our findings demonstrated that CS may ameliorate stress-induced intestinal inflammation. Furthermore, CS significantly increased intestinal Bacteroides acidifaciens population, indirectly exerting its immunomodulatory effect on the intestine. CS disaccharides had a significant impact on a broad range of biological pathways under stressed condition, such as ABC transporters, two-component systems, and carbohydrate metabolism. Our results will facilitate the development of CS as a bioactive nutraceutical.

摘要

硫酸软骨素(CS)因其在维持组织结构完整性方面的作用,已被广泛用于医学和营养保健品。我们研究了 CS 二糖是否可以作为一种生物活性化合物,调节小鼠肠道微生物组成。我们的数据表明,CS 二糖补充 16 天可显著降低经历剧烈运动应激的小鼠血液中的 LPS。CS 二糖部分恢复了应激小鼠中显著受抑制的总粪便短链脂肪酸水平。我们的研究结果表明 CS 可能具有丁酸生成作用,并导致粪便中丁酸浓度显著增加。CS 二糖对肠道微生物组成有深远影响,分别影响健康和应激小鼠粪便微生物群落中 13.6%和 7.3%操作分类单元的丰度。CS 二糖降低了炎症性变形菌的流行。总之,我们的研究结果表明 CS 可能改善应激引起的肠道炎症。此外,CS 显著增加了肠道拟杆菌属嗜酸菌的数量,从而对肠道发挥间接的免疫调节作用。CS 二糖在应激条件下对广泛的生物学途径产生了重大影响,如 ABC 转运蛋白、双组分系统和碳水化合物代谢。我们的研究结果将有助于将 CS 开发为一种具有生物活性的营养保健品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0861/5533764/dcb7a24c348c/41598_2017_5860_Fig1_HTML.jpg

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