PAKISTAN
VETERINARY
JOURNAL
     
 
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Coriolus versicolor Polysaccharide Mitigated Liver and Kidney Damage in Mice Exposed to Chromium
 
Jia Wang1, Shiying Liao2*, Bin Shi3,4, Zhonghua Su5, Mikhlid H. Almutairi6, Zhen Yang5*, Kun Li1*

1College of Veterinary Medicine, Nanjing Agricultural University, Nanjing 210095, PR China; 2School of Basic Medicine, Hubei University of Arts and Science, Xiangyang 441053, China; 3Institute of Animal Husbandry and Veterinary Medicine, Xizang Academy of Agricultural and Animal Husbandry Sciences, Lhasa 850009, China; 4Key Laboratory of Animal Genetics and Breeding on Tibetan Plateau, Ministry of Agriculture and Rural Affairs, Lhasa 850009, China; 5Animal Disease Prevention and Control Center of Xizang Autonomous Region, Lhasa Xizang 850000, China; 6Department of Zoology, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi Arabia.

*Corresponding author: liaoshi71@163.com (SL); 1148893256@qq.com (ZY); lik2014@sina.com (KL)

Abstract   

Heavy metal pollution not only causes great harm to the environment but also threatens the health of animals and humans. The current study investigated the effect of Tibetan Coriolus versicolor polysaccharide on mice exposed to Chromium (Cr). Thirty mice (BALB/C) were used in experiments and divided into the following groups, i.e., CCR (control), CMR (Cr model group), and CYR (treatment group). Mice in the CMR and CYR groups were given Potassium dichromate (10mg/kg) daily by gavage for about thirty-five days, and WR mice were treated with CVP (25mg/kg) via gavage. Pathological analysis indicated that CVP could effectively decrease tissue damage and fibrosis in mice. Organ index analysis found that CVP increased indexes of the heart (P<0.05) and kidney (P<0.0001), while reducing indexes of the liver (P<0.0001) and spleen (P<0.05) in mice. Serum biochemical analysis showed that CVP significantly decreased the contents of AST (P<0.0001), ALT (P<0.0001), BUN (P<0.001), and Creatinine (P<0.0001) in mice. CVP up-regulated the expression levels of NQO-1 (P<0.01), Nrf-2 (P<0.01), and IL-10 (P<0.05), and decreased IL-6 (P<0.0001), TNF-α (P<0.01), and Bax (P<0.001) expression. Microbiome analysis found five phyla (Firmicutes A, Firmicutes B, Desulfobacterota I, Firmicutes C, Deferribacterota) and twenty-one genera were different among groups. Those genera were Mailhella, Lawsonibacter, Anaerotruncus, Angelakisella, Merdisoma, Allobaculum, etc. The number of metabolites identified in mice was 3391, with 35 in CCR, CMR, 189 in CMR, CRY, and 180 in CCR and CYR, respectively. We demonstrated that Tibetan Coriolus versicolor polysaccharide could effectively alleviate liver and kidney damage in mice exposed to chromium by regulating antioxidant ability, inflammatory response, apoptosis, and intestinal microbiota in mice.

To Cite This Article: Wang J, Liao S, Shi B, Su Z, Almutairi MH, Yang Z, Li K, 2026. Coriolus versicolor polysaccharide mitigated liver and kidney damage in mice exposed to chromium. Pak Vet J, 46(8): 1920-1933. http://dx.doi.org/10.29261/pakvetj/2026.198

 
 
   
 

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



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