Polysaccharides from Phellinus linteus (Phps) Protect against Doxorubicin-Induced Myocardial Inflammatory Injury in Mice through PI3K/Akt/mTOR Signaling Pathway

Indian Journal of Pharmaceutical Education and Research

  • Xiaoyu Ren1Institute of Molecular Medicine, Medical College of Liaodong University, Dandong, Liaoning, CHINA.
  • Jinfeng Wang2The Second People’s Hospital of Yichang, China Three Gorges University, Yichang, CHINA.
  • Yuan Zhou1Institute of Molecular Medicine, Medical College of Liaodong University, Dandong, Liaoning, CHINA.
  • Lili Jiang1Institute of Molecular Medicine, Medical College of Liaodong University, Dandong, Liaoning, CHINA.
  • Fei Liu1Institute of Molecular Medicine, Medical College of Liaodong University, Dandong, Liaoning, CHINA.
  • Qingxian Mei3Three Gorges University Hospital of Traditional Chinese Medicine & Yichang Hospital of Traditional Chinese, Yichang, Hubei, CHINA.

Volume 60 Issue 4 Pages 1572-1578

DOI: 10.5530/ijper.20261835

Abstract

Aim/Background: To study the improvement effect of Phellinus linteus polysaccharides (Phps) on doxorubicin-induced myocarditis injury in mice. Materials and Methods: The mice were randomly divided into 5 groups, namely blank control group, model group, and Phps low-, medium-, high-dose groups. The model group and Phps groups were induced by doxorubicin to establish a myocardial injury model of mice. After 7 days, the physiological status of the mice was observed and the cardiac function indicators of each group (+dp/dtmax,-dp/dtmax,-dp/ dtmax, BP, EF, FS, HR) were measured. The activities of myocardial enzymes (AST, CK, LDH) were detected using a fully automated biochemical analyzer. The levels of inflammatory factors (IL-6, IL-1 β, TNF-α) in myocardial tissue were detected with ELISA kits. The pathological changes in myocardial tissue were detected using HE staining method. The mRNA expression levels of PI3K, Akt, and mTOR in myocardial tissue were detected using Real-time PCR. Results and Conclusion: Compared with the blank control group, the model group mice showed poorer states, with significant reductions in blood pressure, ejection fraction, and heart rate (p<0.05), the serum myocardial enzyme activity and inflammatory factor levels were significantly increased (p<0.05), and myocardial cells were thickened and swollen and deformed. Compared with the model group, the above indicators in treatment groups were effectively improved (p<0.05). Phps may mainly inhibit myocarditis through the PI3K/Akt/mTOR signaling pathway, thus effectively improving doxorubicin-induced myocardial injury in mice.

Keywords

  • Phellinus linteus polysaccharides
  • Doxorubicin
  • Myocardial injury
  • Inflammatory reaction
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