PAKISTAN
VETERINARY
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Malus toringoides Polysaccharide Alleviates DSS-Induced Colitis in Mice and Is Associated with Gut Microbiota–Metabolite Remodeling and Nrf2/HO-1–NF-κB Signaling
 
Youying Li1#, Qinhong Yang1,2#, Honghui Ren1, Huikang Wang1, Bin Fan1, Zhaobin Xia1, Wenbin Xu1, Qian Deng1, Feng Fan4, Lishuxin Huang 5*, Jianping Wu3* and Wenju Liao1*

1School of Ecology and Agriculture, Sichuan Minzu College, Kangding 626001, Sichuan Province, China; 2The Yunnan Key Laboratory of Veterinary Etiological Biology, College of Veterinary Medicine, Yunnan Agricultural University, Kunming 650201, Yunnan Province, China; 3Animal Husbandry Research Institute, Ganzi Tibetan Autonomous Prefecture, Kangding 626000, Sichuan Province, China; 4Bureau of Agriculture, Animal Husbandry, Rural Affairs, and Science & Technology of Kangding City, Kangding 626000, Sichuan Province, China; 5Key Laboratory of Chemistry in Ethnic Medicinal Resources, State Ethnic Affairs Commission & Ministry of Education, School of Ethnic Medicine, Yunnan Minzu University, Kunming 650504, Yunnan Province, China.

*Corresponding author: huanglishuxin19@163.com (LH); 18011279956@163.com (JW) ; wenjuliao@126.com (WL)

Abstract   

Plant polysaccharides have garnered an increasing amount of attention as potential natural candidates for enhancing intestinal health in animals. The protective effects of Malus toringoides polysaccharide (MTK) against dextran sulphate sodium (DSS) induced colitis in mice were assessed in this study. During a seven-day period of exposure to 3% DSS, sixty male BALB/c rodents were divided into six groups (n=10 per group) and administered MTK at doses of 50, 100, or 200 mg/kg/day. Animals were randomly selected within each group for subset analyses, regardless of disease severity or treatment response. In the CON, MOD, and MTK-H (200 mg/kg/day) groups, histological analyses were undertaken on six mice per group (n=6), while 16S rRNA sequencing and untargeted metabolomics were conducted on three mice per group (n=3). The data were analyzed using one-way ANOVA, followed by Tukey's test or the appropriate nonparametric test. MTK decreased disease activity, body weight loss, and colon shortening, increased IL-10 and SOD, and decreased TNF-α, IL-6, MPO, and MDA (P<0.05). MTK also enhanced the expression of ZO-1, Occludin, and Claudin-3, as well as the PAS-positive area and colonic histopathology. This was accompanied by an increase in the expression of Nrf2 and HO-1 proteins, as well as a decrease in the p-p65/p65 and p-IκBα/IκBα ratios. MTK-associated changes in gut microbial composition and faecal metabolites related to amino acid, bile acid, lipid, and tryptophan/indole metabolism were identified through multi-omics analyses. Additionally, associations among microbial, metabolic, inflammatory, oxidative, and barrier-related variables were identified through integrated analyses. These discoveries substantiate the intestinal protective effectiveness of MTK and establish a foundation for additional mechanistic and veterinary investigations.

To Cite This Article: Li Y, Yang Q, Ren H, Wang H, Fan B, Xia Z, Xu W, Deng Q, Fan F, Huang L, Wu J and Liao W, 2026. Malus toringoides polysaccharide alleviates dss-induced colitis in mice and is associated with gut microbiota–metabolite remodeling and Nrf2/HO-1–NF-κB signaling. Pak Vet J, 46(8): 1945-1957. http://dx.doi.org/10.29261/pakvetj/2026.196

 
 
   
 

ISSN 0253-8318 (Print)
ISSN 2074-7764 (Online)



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