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来源于耐铬菌属沙雷氏菌的灵菌红素可预防 DSS 诱导的结肠炎小鼠的炎症并调节肠道微生物组稳态。

Prodigiosin derived from chromium-resistant Serratia sp. prevents inflammation and modulates gut microbiota homeostasis in DSS-induced colitis mice.

机构信息

Department of Health Laboratory Technology, School of Public Health, Chongqing Medical University, No. 61 Daxuecheng Middle Road, Shapingba District, Chongqing 401334, PR China.

Department of Health Laboratory Technology, School of Public Health, Chongqing Medical University, No. 61 Daxuecheng Middle Road, Shapingba District, Chongqing 401334, PR China.

出版信息

Int Immunopharmacol. 2023 Mar;116:109800. doi: 10.1016/j.intimp.2023.109800. Epub 2023 Feb 11.

Abstract

Prodigiosin (PG) is a secondary metabolite of microorganisms with anticancer, antimalarial, antibacterial and immunomodulatory effects. However, the modulatory effects on gut microbiome and intestinal immune microenvironment have never been explored in the ulcerative colitis (UC) mice model. In this study, 2.5% dextran sulfate sodium (DSS) induced UC mice model was constructed to investigate the effects of PG derived from a chromium-resistant Serratia sp. on the intestinal flora and inflammatory response. The results showed that prodigiosin administration attenuated the DSS-induced UC symptoms, including preventing the reduction of colonic length and DSS-induced mortality. Furthermore, prodigiosin ameliorated the DSS-induced gut microbiota community dysbiosis by restoring the abundance of Bacteroidota. At the genus level, the declined abundance of Bifidobacterium, Allobaculum and Akkermannia in UC mice was elevated by the treatment of PG. Pathological results by H&E staining showed that PG prevented the appearance of distortion and atrophy of crypt and neutrophil infiltration in a dose-dependent manner. RT-PCR revealed that the expression levels of the inflammatory factors IL-1β, IL-6 and IL-10 were significantly suppressed, and the expression of the intestinal tight junction protein Claudin-1, Occludin and ZO-1 were upregulted in PG-treated UC mice. Conclusively, our results revealed that prodigiosin effectively prevented inflammatory response and protected intestinal barrier integrity of DSS-induced colitis mice via modulating gut microbiota community structure, suppressing inflammatory factors' expression, and accelerating the expression of intestinal tight junction protein. These results will provide new insights into the interaction of prodigiosin with intestinal microbiota homeostasis and its application in clinical against inflammatory bowel disease.

摘要

灵菌红素(PG)是微生物的次生代谢产物,具有抗癌、抗疟、抗菌和免疫调节作用。然而,其在溃疡性结肠炎(UC)小鼠模型中对肠道微生物组和肠道免疫微环境的调节作用尚未被探索。在本研究中,构建了 2.5%葡聚糖硫酸钠(DSS)诱导的 UC 小鼠模型,以研究来源于耐铬沙雷氏菌的灵菌红素对肠道菌群和炎症反应的影响。结果表明,灵菌红素给药可减轻 DSS 诱导的 UC 症状,包括防止结肠长度缩短和 DSS 诱导的死亡率。此外,灵菌红素通过恢复 Bacteroidota 的丰度改善了 DSS 诱导的肠道微生物群落失调。在属水平上,PG 处理可上调 UC 小鼠中双歧杆菌、Allobaculum 和 Akkermannia 的丰度下降。H&E 染色的病理结果表明,PG 以剂量依赖的方式防止隐窝变形和萎缩以及中性粒细胞浸润的出现。RT-PCR 结果显示,PG 处理可显著抑制炎症因子 IL-1β、IL-6 和 IL-10 的表达水平,并上调 PG 处理 UC 小鼠中肠道紧密连接蛋白 Claudin-1、Occludin 和 ZO-1 的表达。综上,我们的结果表明,灵菌红素通过调节肠道微生物群落结构、抑制炎症因子表达以及加速肠道紧密连接蛋白的表达,有效预防了 DSS 诱导的结肠炎小鼠的炎症反应并保护了肠道屏障完整性。这些结果将为灵菌红素与肠道微生物群稳态的相互作用及其在临床治疗炎症性肠病方面的应用提供新的见解。

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