PAKISTAN
VETERINARY
JOURNAL
     
 
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Total Flavonoids of Lophatherum gracile Alleviate Pseudorabies Virus Induced Inflammation by Modulating NF-κB/MAPK Signaling and TCA Cycle-Related Metabolism
 
Cheng Zeng1†, Xiaodie Lie1†, Liting Cao2, Anchun Cheng1, Zhentao Cheng1, Ying Chen1, Qing Liu3, Luqing Yang1, Jian Yang1* and Xuqin Song1*

1Institute of Veterinary Medicine and Immunology Drugs, Veterinary Department in College of Animal Science, State Key Laboratory of Green Pesticide, GuiZhou University, Guiyang 550025, China; 2Department of Traditional Chinese Veterinary Medicine, College of Veterinary Medicine, Southwest University, Rongchang, Chongqing, 402460, China; 3The Yunnan Key Laboratory of Veterinary Etiological Biology, College of Veterinary Medicine, Yunnan Agricultural University, Kunming, 650201, China. The authors contributed equally to this work

*Corresponding author: yangjian0104@163.com (JY); song1991yi@163.com (XS)

Abstract   

Pseudorabies virus (PRV) infection induces severe inflammatory injury and tissue damage. Total flavonoids of Lophatherum gracile (TFLG) exert excellent anti-inflammation effects, it alleviates the inflammatory damage caused by PRV infection remains unclear. Here, RAW264.7 cells and mouse models were used to evaluate the protective effects of TFLG on PRV-induced inflammatory injury and to clarify its underlying mechanism. Results showed that TFLG had no cytotoxicity at 0.025–0.1mg/mL and significantly improved the viability of PRV-infected cells. In PRV-infected mice, TFLG reduced abnormal increases in inflammatory cells and improved organ indices and histopathological injury. In RAW264.7 cells and mice, TFLG markedly reduced NO release and inhibited the production and mRNA levels of IL-1β, IL-6 and TNF-α. Meanwhile, TFLG increased IL-10 expression. Moreover, TFLG restrained PRV-mediated NF-κB/MAPK pathways activation, accompanied by reduced phosphorylation of p65, IκBα, p38 and JNK. Untargeted metabolomics further revealed that PRV caused marked metabolic disorders in cells and mouse serum, whereas TFLG partially recovered these metabolic changes. TCA cycle was a common metabolic pathway involved in the protective effect of TFLG. The correlation analyses suggested that TFLG may attenuate inflammation by regulating glutamine/glutamate-derived α-ketoglutarate metabolism, thereby relieving the inflammatory activation mediated by NF-κB/MAPK signaling pathway. This study provides new evidence that TFLG alleviates PRV-induced inflammatory injury through regulating metabolic–immune axis, which will contribute to TFLG as a promising natural candidate for the prevention and control of virus-associated inflammatory damage.

To Cite This Article: Zeng C, Lie X, Cao L, Cheng A, Cheng Z, Chen Y, Liu Q, Yang L, Yang J and Song X, 2026. Total flavonoids of Lophatherum gracile alleviate Pseudorabies virus induced inflammation by modulating NF-κB/MAPK signaling and TCA cycle-related metabolism. Pak Vet J, 46(8): 2136-2146. http://dx.doi.org/10.29261/pakvetj/2026.182

 
 
   
 

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



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