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益生元和益生菌补充剂对犬肠道微生物群的调节作用:一项使用新型结肠发酵模型的长期体外研究。

Modulation of Canine Gut Microbiota by Prebiotic and Probiotic Supplements: A Long-Term In Vitro Study Using a Novel Colonic Fermentation Model.

作者信息

Gramenzi Alessandro, Clerico Luana, Belà Benedetta, Di Leonardo Meri, Fusaro Isa, Pignataro Giulia

机构信息

Department of Veterinary Medicine, University of Teramo, 64100 Teramo, Italy.

Independent Researcher, 17100 Savona, Italy.

出版信息

Animals (Basel). 2024 Nov 20;14(22):3342. doi: 10.3390/ani14223342.

Abstract

The gut microbiota plays a crucial role in dogs' health, influencing immune function, digestion, and protection against pathogens. This study evaluates the effects of three canine dietary supplements-Microbiotal (prebiotic), (probiotic), and a combination of both-on the gut microbiota composition of a healthy canine donor using an in vitro colonic fermentation model. The SCIME™ platform, adapted to simulate the canine gastrointestinal tract, was used to monitor microbial shifts in the luminal and mucosal environments of the proximal and distal colon over a 2-week treatment period. The microbial communities were analyzed using 16S rRNA sequencing to assess changes at various taxonomic levels. Alpha- and beta-diversity indices were calculated, while LEfSe and treeclimbR were employed to identify taxa-driving microbial shifts. Results indicated that all treatments led to significant modulations in key microbial groups, with enrichment of , , , and . These changes suggest improved saccharolytic fermentation and butyrate production, particularly when prebiotics and probiotics were co-administered. This study highlights the promising benefits of combined prebiotic and probiotic supplementation in promoting gut health and microbial diversity, providing a basis for future studies targeting the metabolic activity of the gut microbiota using the same supplements and technology.

摘要

肠道微生物群在犬类健康中起着至关重要的作用,影响免疫功能、消化以及对病原体的防御。本研究使用体外结肠发酵模型,评估了三种犬用膳食补充剂——微生物群制剂(益生元)、(益生菌)以及两者的组合——对健康犬类供体肠道微生物群组成的影响。采用适用于模拟犬类胃肠道的SCIME™平台,在为期2周的治疗期内监测近端和远端结肠腔和粘膜环境中的微生物变化。使用16S rRNA测序分析微生物群落,以评估不同分类水平上的变化。计算了α-和β-多样性指数,同时使用LEfSe和treeclimbR来识别驱动微生物变化的分类群。结果表明,所有处理均导致关键微生物群的显著调节,其中 、 、 和 富集。这些变化表明糖解发酵和丁酸盐生成得到改善,尤其是在同时施用益生元和益生菌时。本研究突出了联合补充益生元和益生菌在促进肠道健康和微生物多样性方面的潜在益处,为未来使用相同补充剂和技术针对肠道微生物群代谢活性的研究提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6b8/11591024/6d8146202eaa/animals-14-03342-g001.jpg

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