Malus toringoides
Polysaccharide Alleviates DSS-Induced Colitis in Mice
and Is Associated with Gut Microbiota–Metabolite
Remodeling and Nrf2/HO-1–NF-κB Signaling
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