首页> 外文期刊>Frontiers in Veterinary Science >Treatment With Hydrolyzed Diet Supplemented With Prebiotics and Glycosaminoglycans Alters Lipid Metabolism in Canine Inflammatory Bowel Disease
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Treatment With Hydrolyzed Diet Supplemented With Prebiotics and Glycosaminoglycans Alters Lipid Metabolism in Canine Inflammatory Bowel Disease

机译:用益生元和糖胺聚糖补充水解饮食的治疗改变了犬炎症肠病的脂质代谢

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Canine inflammatory bowel disease (IBD) is a chronic, immunologically mediated intestinal disorder, resulting from the complex interaction of genetic, environmental and immune factors. Hydrolyzed diets are used in dogs with food-responsive diarrhea (FRD) to reduce adverse responses to immunostimulatory proteins. Prebiotics (PRBs) and glycosaminoglycans (GAGs) have previously been demonstrated to show anti-inflammatory activity in the intestinal mucosa. Notably, hydrolyzed diets combined with the administration of PRBs and GAGs offer a promising approach for the treatment of canine IBD. Our aim was to investigate the effects of hydrolyzed diet and GAG+PRB co-treatment on the serum metabolomic profile of IBD dogs. Dogs with IBD randomly received either hydrolyzed diet supplemented with GAGs and PRBs (treatment 1) or hydrolyzed diet alone (treatment 2) for ten weeks. A targeted metabolomics approach using mass spectrometry was performed to quantify changes in the serum metabolome before and after treatment and between treatment 1 and 2. Principal component analysis (PCA), partial least squares-discriminant analysis (PLS-DA), hierarchical cluster analysis (HCA) and univariate statistics were used to identify differences between the treatment groups. PCA, PLS-DA and HCA showed a clear clustering of IBD dogs before and after hydrolyzed diet, indicating that the treatment impacted the serum metabolome. Univariate analysis revealed that most of the altered metabolites were involved in lipid metabolism. The most impacted lipid classes were components of cell membranes, including glycerophospholipids, sphingolipids, and di- and triglycerides. In addition, changes in serum metabolites after GAG+PRB co-treatment suggested a possible additional beneficial effect on the lipid metabolism in IBD dogs. In conclusion, the present study showed a significant increase in metabolites that protect gut cell membrane integrity in response to hydrolyzed diet alone or in combination with GAG+PRB co-treatment. Administration of such treatment over 70 days improved selected serum biomarkers of canine IBD, possibly indicating improved intestinal membrane integrity.
机译:犬炎症性肠病(IBD)是一种慢性免疫介导的肠道疾病,由遗传,环境和免疫因子的复杂相互作用引起。水解饮食用于食物响应性腹泻(FRD)的狗中用于减少对免疫刺激蛋白的不良反应。先前已经证明了益生元(PRBs)和糖氨基氨基(GAG)在肠粘膜中显示出抗炎活性。值得注意的是,水解的饮食与PRBS和GAG的给药相结合,提供了治疗犬IBD的有希望的方法。我们的目的是探讨水解饮食和GAG + PRB合作对IBD犬血清代谢概况的影响。随机接受IBD的狗,无论是水解的饮食,还是单独使用GAG和PRBS(治疗1)或单独水解饮食(治疗2)持续十周。使用质谱法进行靶向的代谢组合方法以在治疗前后的血清代谢物中的变化和治疗1和2.主要成分分析(PCA),局部最小二乘判别分析(PLS-DA),分层聚类分析( HCA)和单变量统计用于识别治疗组之间的差异。 PCA,PLS-DA和HCA显示了水解饮食前后IBD犬的清晰聚类,表明治疗影响血清代谢物。单变量分析显示,大多数改变的代谢物都参与了脂质代谢。最受影响的脂质类是细胞膜的组分,包括甘油磷脂,鞘脂和二甘油酯。此外,GAG + PRB合作后血清代谢物的变化表明对IBD犬的脂质代谢可能的额外有益效果。总之,本研究表明代谢物的显着增加,以保护肠细胞膜完整性响应于单独的水解饮食或与GAG + PRB共同处理组合。施用此类治疗70天改善了犬IBD的选定血清生物标志物,可能表明改善的肠膜完整性。

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