4.7 Article

Soy Isoflavones Protect Neuronal PC12 Cells against Hypoxic Damage through Nrf2 Activation and Suppression of p38 MAPK and AKT-mTOR Pathways

期刊

ANTIOXIDANTS
卷 11, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/antiox11102037

关键词

phenolic compounds; neuroprotective effects; apoptosis; cell cycle; molecular docking analysis

资金

  1. National Natural Science Foundation of China [82104700]
  2. Jiangsu Agriculture Science and Technology Innovation Fund [CX(21)2003]

向作者/读者索取更多资源

Isoflavones, derived from soybeans, have shown potential neuroprotective effects by increasing cell viability, decreasing reactive oxygen species levels, inhibiting apoptosis, and regulating the cell cycle. They activate Nrf2 protein, inhibit p38 MAPK and AKT-mTOR pathways, and compete with Keap1, suggesting isoflavones could be a potent neuroprotective phytochemical in soybeans and their products.
Isoflavones are a class of major phenolic compounds, derived from soybeans, that possess unique therapeutic and biological properties. The possible mechanisms of isoflavone-mediated protection of neuronal PC12 cells against hypoxic damage was investigated in this study. Isoflavones showed potential neuroprotective effects by increasing cell viability, decreasing the level of reactive oxygen species (ROS), and inhibiting apoptosis and cell cycle arrest in cobalt chloride (CoCl2)-induced hypoxic damage. A Western blot analysis indicated that isoflavones decreased apoptosis by up-regulating the Bcl-xL protein and down-regulating the Bax protein. They further reduced the S-phase fraction of the cell cycle by down-regulating the p21 protein and up-regulating the cyclin A protein levels. Additionally, isoflavones activated Nrf2 protein translocation and inhibited the p38 MAPK and AKT-mTOR pathways. A molecular docking analysis further revealed that isoflavones displayed a potential competitive interaction with the Nrf2 protein for Keap1. Our findings suggest that isoflavones could be a potent neuroprotective phytochemical in soybeans and their products.

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