短链脂肪酸(SCFAs)改善tnbs诱导的斑马鱼结肠炎

Q4 Immunology and Microbiology Current research in immunology Pub Date : 2021-01-01 DOI:10.1016/j.crimmu.2021.08.003
Camila Morales Fénero PhD , Mariana Abrantes Amaral , Izabella Karina Xavier , Barbara Nunes Padovani , Lais Cavalieri Paredes Msc , Tatiana Takiishi PhD , Mônica Lopes-Ferreira PhD , Carla Lima PhD , Alicia Colombo PhD , Niels Olsen Saraiva Câmara MD. PhD
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引用次数: 14

摘要

短链脂肪酸(SCFAs)是肠道菌群中细菌产生的膳食纤维和氨基酸发酵的代谢物。最丰富的SCFAs,醋酸酯、丙酸酯和丁酸酯,由于其抗炎特性,已被提议作为炎症性肠病(IBDs)的治疗方法。本工作旨在分析三种联合SCFAs对tnbs诱导的斑马鱼幼虫肠道炎症的治疗作用。在这里,我们证明了SCFAs显著提高了TNBS暴露的幼虫的存活率,保留了肠道内吞功能,降低了TNBS引起的炎症细胞因子的表达和肠道中性粒细胞的募集。然而,SCFAs治疗似乎并没有避免tnbs诱导的肠壁组织损伤,也没有恢复产生粘液的杯状细胞的数量。最后,暴露于TNBS诱导菌群失调,β变形菌群和放线菌群增加,而scfa处理使这些菌群保持与对照组相似的水平。因此,我们证明了三种联合SCFAs的治疗具有先前在哺乳动物中发现的抗炎特性,这为利用斑马鱼探索这些和其他代谢物治疗炎症的潜在益处提供了机会。
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Short chain fatty acids (SCFAs) improves TNBS-induced colitis in zebrafish

The short-chain fatty acids (SCFAs) are metabolites originated from the fermentation of dietary fibers and amino acids produced by the bacteria of the intestinal microbiota. The most abundant SCFAs, acetate, propionate, and butyrate, have been proposed as a treatment for inflammatory bowel diseases (IBDs) due to their anti-inflammatory properties. This work aimed to analyze the effects of the treatment of three combined SCFAs in TNBS-induced intestinal inflammation in zebrafish larvae. Here, we demonstrated that SCFAs significantly increased the survival of TNBS-exposed larvae, preserved the intestinal endocytic function, reduced the expression of inflammatory cytokines and the intestinal recruitment of neutrophils caused by TNBS. However, SCFAs treatment did not appear to avoid TNBS-induced tissue damage in the intestinal wall and did not restore the number of mucus-producing goblet cells. Finally, exposure to TNBS induced dysbiosis of the microbiota with an increase in Betaproteobacteria and Actinobacteria, while the treatment with SCFAs maintained these population levels similar to control. Thus, we demonstrate that the treatment of three combined SCFAs presented anti-inflammatory properties previously seen in mammals, opening an opportunity to use zebrafish to explore the potential benefit of these and other metabolites to treat inflammation.

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