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Ento-A alleviates DSS-induced experimental colitis in mice by remolding intestinal microbiota to regulate SCFAs metabolism and the Th17 signaling pathway - 05/01/24

Doi : 10.1016/j.biopha.2023.115985 
Hairong Zhao a, b, 1, Qian Wang a, b, 1, Jie Zhao a, b, Dexiao Wang a, b, Heng Liu a, b, Pengfei Gao a, b, Yongmei Shen c, Taoqing Wu c, Xiumei Wu a, b, Yu Zhao a, b, Chenggui Zhang a, b,
a Yunnan Provincial Key Laboratory of Entomological Biopharmaceutical R&D, College of Pharmacy, Dali University, Dali, Yunnan, PR China 
b National-Local Joint Engineering Research Center of Entomoceutics, Dali, PR China 
c Sichuan Key Laboratory of Medicinal American Cockroach, Good doctor Pharmaceutical Group, Chengdu 610000, China 

Corresponding author at: Yunnan Provincial Key Laboratory of Entomological Biopharmaceutical R&D College of Pharmacy, Dali University, Dali, Yunnan, PR China.Yunnan Provincial Key Laboratory of Entomological Biopharmaceutical R&D College of Pharmacy, Dali UniversityDaliYunnanPR China

Abstract

Ulcerative colitis (UC) is a chronic inflammatory bowel disease characterized by changes in the metabolism of short chain fatty acids (SCFAs), dysregulation of gut microbiota, and an imbalance of Treg/Th17. Herein, we explore the effects of the Ento-A (an alcohol extract of Periplaneta americana L.) on a mouse model of UC. First, a chronic and recurrent UC model was constructed in BALB/c mice by 2.2% DSS administration. UC mice were continuously treated for 14 days with Ento-A (50, 100, 200 mg/kg, i.g.) or a negative control. Ento-A alleviated many of the pathological changes observed in UC mice, such as body weight loss, disease activity index, changes in colon length, and colonic mucosal damage index. Ento-A also decreased levels of proinflammatory cytokines (IL-1β, IL-6, IL-17A, and TNF-α), increased levels of anti-inflammatory cytokines (IL-10 and TGF-β1) and repaired the intestinal mucosal barrier. Additionally, Ento-A regulated the proportions of Th17 cells, and Treg cells in mesenteric lymph nodes harvested from treated mice (as assessed by Flow cytometry), and the expression levels of IL-17A and Foxp3 in colon (as assessed by immunohistochemistry). 16 S rRNA gene sequencing revealed that Ento-A regulated gut microbiota. GC-MS analysis demonstrated that Ento-A also restored SCFAs content in the intestinal tract. Finally, transcriptomic analysis revealed that Ento-A regulated the IL-17 signaling pathway. In summary, Ento-A regulates the diversity and abundance of intestinal flora in UC mice, enhancing the secretion of SCFAs, subsequently regulating the IL-17 signaling pathway, and ultimately repairing the intestinal mucosal barrier.

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Graphical Abstract




 : 

Mechanisms of Ento-A repair of the intestinal mucosal barrier in UC mice. UC mice exhibit a characteristic imbalance in intestinal flora, a decrease of beneficial bacteria (Firmicutes), and an increase in harmful bacteria (Bacteroidetes and Proteobacteria). As a consequence, short-chain fatty acid secretion is decreased, and the Th17/Treg ratio becomes unbalanced. These changes ultimately damage the intestinal mucosa. However, these pathological signs can be reversed by Ento-A treatment.


Mechanisms of Ento-A repair of the intestinal mucosal barrier in UC mice. UC mice exhibit a characteristic imbalance in intestinal flora, a decrease of beneficial bacteria (Firmicutes), and an increase in harmful bacteria (Bacteroidetes and Proteobacteria). As a consequence, short-chain fatty acid secretion is decreased, and the Th17/Treg ratio becomes unbalanced. These changes ultimately damage the intestinal mucosa. However, these pathological signs can be reversed by Ento-A treatment.ga1

Le texte complet de cet article est disponible en PDF.

Highlights

The Ento-A (an alcohol extract of Periplaneta americana L.) could repaire the intestinal mucosal barrier in UC mice.
Ento-A regulates the diversity and abundance of intestinal flora in UC mice.
Ento-A enhances the secretion of SCFAs such as acetic acid and propionic acid.
Ento-A regulates the IL-17 signaling pathway.

Le texte complet de cet article est disponible en PDF.

Abbreviations : CMDI, DAI, DSS, Foxp3, IBD, IL, MLNs, SCFAs, TNF-α, Tregs, TGF-β, ZO-1, UC

Keywords : Short chain fatty acids, Acetic acid, Propionic acid, Gut microbiota, Treg/Th17 cells, Intestinal barrier


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© 2023  The Authors. Publié par Elsevier Masson SAS. Tous droits réservés.
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