Hydrogen Sulfide Inhibits Homocysteine-Induced Neuronal Senescence by Up-Regulation of SIRT1

Xuan Kang, Cheng Li, Xi Xie, Ke‐Bin Zhan, San‐Qiao Yang, Yiyun Tang, Wei Zou, Ping Zhang, Xiao‐Qing Tang

International Journal of Medical Sciences · 2020 · 15 citations · 44 references

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Abstract

Homocysteine (Hcy) accelerates neuronal senescence and induces age-related neurodegenerative diseases. Silence signal regulating factor 1 (SIRT1) prolongs lifespan and takes neuroprotective effects. We have previously demonstrated that hydrogen sulfide (H<sub>2</sub>S) prevents Hcy-induced apoptosis of neuronal cells and has neuroprotective effect. In the present work, we aimed to investigate whether H<sub>2</sub>S protects HT22 cells against Hcy-induced neuronal senescence and whether SIRT1 mediates this role of H<sub>2</sub>S. We found that Hcy induced cellular senescence in HT22 cells, as determined by β-galactosidase staining, expressions of P16<sup>INK4a</sup>, P21<sup>CIPL</sup>, and trypan blue Staining, which are the markers of cellular senescence. However, sodium hydrosulfide (NaHS, the donor of H<sub>2</sub>S) significantly reversed Hcy-induced cellular senescence. Interestingly, NaHS not only up-regulated the expression of SIRT1 in HT22 cells but also reversed Hcy-downregulated the expression of SIRT1 in HT22 cells. Furthermore, we found that pretreatment with Sirtinol (an inhibitor of SIRT1) markedly reversed the protection of NaHS against Hcy-induced HT22 cells senescence and apoptosis. Our findings illustrated that H<sub>2</sub>S protects HT22 cells against Hcy-induced senescence by up-regulating SIRT1.

References

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