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金针菇多糖通过调节肠道炎症、肠道微生物群和肠道屏障来拮抗镉诱导的小鼠肠道损伤。

Flammulina velutipes polysaccharide counteracts cadmium-induced gut injury in mice via modulating gut inflammation, gut microbiota and intestinal barrier.

机构信息

College of Food Science and Engineering, Shandong Agricultural University, Key Laboratory of Food Nutrition and Human Health in Universities of Shandong, Taian 271018, People's Republic of China.

Jinan Fruit Research Institute of All China Federation of Supply & Marketing Cooperatives, 16001 East Road Jingshi, Jinan 250220, Shandong, People's Republic of China.

出版信息

Sci Total Environ. 2023 Jun 15;877:162910. doi: 10.1016/j.scitotenv.2023.162910. Epub 2023 Mar 17.

Abstract

Cadmium (Cd), as Group I carcinogen, can induce damage to various organs including the gut. It is of great importance to meet the rising demand for effective therapies against Cd-induced damage and investigate the mechanism. Flammulina velutipes is a popular edible mushroom, despite the well-known health benefits of Flammulina velutipes, little is known about the effect of its polysaccharide (FVP) against CdCl-intestinal injury. In this study, a FVP (uronic acid, 5.10 %; degree of methylation, 41.24 %) was produced via hot water extraction (85 °C) and ethanol precipitation. The FVP contained eight major monosaccharides and exhibited good thermal stability at temperatures lower than 139.73 °C. FVP (100 mg/kg b. w., gavage for 4 weeks) alleviated CdCl (1.5 mg/kg b. w., gavage for 4 weeks)-induced intestinal inflammation and apoptosis, intestinal permeability alteration and intestinal barrier disruption. FVP increased the abundance of Bacteroides, whilst decreasing the abundance of Desulfovibrionales and Clostridium. FVP also restored the levels of short-chain fatty acids (SCFAs), including acetic, propionic, isobutyric, butyric, isovaleric and valeric acids. Correlation analysis indicated the interplays among the FVP, gut microbes, SCFAs, intestinal barrier/cells and gut inflammation. FVP enhances the metabolic functions of gut microbiota via functional pathways analyzed by KEGG database. Furthermore, gut microbial transplantation of FVP + CdCl group mice partially alleviated CdCl caused-gut damage. Thus, FVP may be an effective therapeutic agent against CdCl-induced gut damage via SCFA-mediated regulation of intestinal inflammation and gut microbiota-related energy metabolism. This study may open a new avenue for developing alternative strategies to prevent CdCl-caused injury.

摘要

镉(Cd)作为 I 类致癌物,可导致包括肠道在内的各种器官损伤。满足对有效治疗 Cd 诱导损伤的需求并研究其机制非常重要。金针菇是一种受欢迎的食用菌,尽管金针菇具有众所周知的健康益处,但人们对其多糖(FVP)对 CdCl 肠道损伤的作用知之甚少。在这项研究中,通过热水提取(85°C)和乙醇沉淀生产了一种 FVP(糖醛酸,5.10%;甲基化程度,41.24%)。FVP 含有八种主要单糖,在低于 139.73°C 的温度下表现出良好的热稳定性。FVP(100mg/kg bw,灌胃 4 周)缓解了 CdCl(1.5mg/kg bw,灌胃 4 周)诱导的肠道炎症和细胞凋亡、肠道通透性改变和肠道屏障破坏。FVP 增加了拟杆菌的丰度,同时降低了脱硫弧菌和梭菌的丰度。FVP 还恢复了短链脂肪酸(SCFAs)的水平,包括乙酸、丙酸、异丁酸、丁酸、异戊酸和戊酸。相关分析表明,FVP、肠道微生物、SCFAs、肠道屏障/细胞和肠道炎症之间存在相互作用。FVP 通过 KEGG 数据库分析的功能途径增强了肠道微生物群的代谢功能。此外,FVP+CdCl 组小鼠的肠道微生物移植部分缓解了 CdCl 引起的肠道损伤。因此,FVP 可能通过 SCFA 介导的肠道炎症和肠道微生物相关能量代谢调节,成为一种有效的治疗 CdCl 诱导肠道损伤的药物。本研究为开发预防 CdCl 损伤的替代策略开辟了新途径。

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