Mesima, Sanghwang · 2022 · Research Support, Non U.S. Gov'T
Medium relevanceHispolon alleviates oxidative damage by stimulating the Nrf2 signaling pathway in PC12 cells.
Phellinus linteus
Key points
- Natural products derived from the daily diet are garnering increasing attention for neurodegenerative disease (ND) treatment
- Here, we evaluated its protective effect on a neuron-like rat pheochromocytoma cell line (PC12)
- Nuclear factor-erythroid 2 (NF-E2)-related factor 2 (Nrf2) plays a significant role in maintaining cellular redox homeostasis
- After treatment with His, some Nrf2-governed antioxidant genes were upregulated in a dose-dependent manner
- However, the protective effect of His on PC12 cells was easily terminated by Nrf2 knockdown, demonstrating that Nrf2 is a critical component in this cytoprotective process
- Taken together, our study showed that His was not only an effective activator of Nrf2 but also a promising candidate for ND treatment
Metadata-grounded summary
Citation abstract
Natural products derived from the daily diet are garnering increasing attention for neurodegenerative disease (ND) treatment. Hispolon (His), a small molecule from Phellinus linteus, has been reported to have various pharmacological activities. Here, we evaluated its protective effect on a neuron-like rat pheochromocytoma cell line (PC12). Results showed that His could restore cell death induced by oxidative damage. Nuclear factor-erythroid 2 (NF-E2)-related factor 2 (Nrf2) plays a significant role in maintaining cellular redox homeostasis. After treatment with His, some Nrf2-governed antioxidant genes were upregulated in a dose-dependent manner. However, the protective effect of His on PC12 cells was easily terminated by Nrf2 knockdown, demonstrating that Nrf2 is a critical component in this cytoprotective process. Taken together, our study showed that His was not only an effective activator of Nrf2 but also a promising candidate for ND treatment.
Citation
Peng S, Hou Y, Chen Z (2022). Hispolon alleviates oxidative damage by stimulating the Nrf2 signaling pathway in PC12 cells. Archives of biochemistry and biophysics https://doi.org/10.1016/j.abb.2022.109303 PMID: 35660410
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