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川芎嗪通过NRF2/ARE途径调节铁代谢来抑制脊髓损伤中的铁死亡。

Tetramethylpyrazine inhibits ferroptosis in spinal cord injury by regulating iron metabolism through the NRF2/ARE pathway.

作者信息

Tao Jingwei, Zhou Jingya, Zhu Hanjie, Xu Lin, Yang Jizhou, Mu Xiaohong, Fan Xiao

机构信息

Orthopedic Surgery Center, Dongzhimen Hospital Beijing University of Chinese Medicine, Beijing, China.

Beijing University of Chinese Medicine, Beijing, China.

出版信息

Front Pharmacol. 2024 Nov 15;15:1503064. doi: 10.3389/fphar.2024.1503064. eCollection 2024.

Abstract

BACKGROUND

Tetramethylpyrazine (TMP) is a natural alkaloid compound with antioxidant and neuroprotective effects. We hypothesized that TMP could exert neuroprotective effects by inhibiting ferroptosis through modulating iron metabolism, but its mechanism is unclear. Through and experiments, we have explored how TMP can regulate neurons' iron metabolism through the NRF2/ARE pathway to Inhibit ferroptosis.

METHODS

In the experiment, the effects of TMP on nerve function and secondary spinal cord injury were observed through behavioral tests and morphology staining. Transmission electron microscopy, molecular biology tests and immunofluorescence staining were used to investigate the role of TMP in the regulation of iron metabolism and ferroptosis through the Nrf2/ARE pathway. Using experiments to investigate the mechanism of TMP in inhibiting ferroptosis through the Nrf2/ARE pathway.

RESULTS

Firstly, through experiments, we found that TMP improves motor function of rats with spinal cord injury, reduces spinal cord tissue damage and nerve cell death caused by secondary injury. Moreover, neuronal death and the formation of spinal cord cavities are inhibited by TMP. By regulating lipid peroxidation, TMP can inhibit mitochondrial damage and reduce ROS accumulation. Our study also demonstrated that TMP regulates iron metabolism through the NRF2/ARE pathway to inhibit ferroptosis and repair spinal cord injury. To further explore the regulatory mechanisms of TMP we down-regulating Nrf2 expression in subsequent experiments. We find that a key ferroptosis pathway, lipid peroxidation, can be regulated by TMP. Additionally, TMP inhibits iron overload-mediated ferroptosis by increasing Nrf2 transcriptional activity.

CONCLUSION

A regulatory effect of TMP on the NRF2/ARE pathway was found in both and experiments. It promotes the transcription and translation of iron metabolizing and antioxidant molecules. Our study explored the inhibitory effect of TMP on ferroptosis from the iron metabolism pathway and provided new ideas for the treatment of SCI.

摘要

背景

川芎嗪(TMP)是一种具有抗氧化和神经保护作用的天然生物碱化合物。我们推测TMP可能通过调节铁代谢抑制铁死亡来发挥神经保护作用,但其机制尚不清楚。通过[具体实验1]和[具体实验2]实验,我们探讨了TMP如何通过NRF2/ARE途径调节神经元的铁代谢以抑制铁死亡。

方法

在[具体实验1]实验中,通过行为测试和形态学染色观察TMP对神经功能和继发性脊髓损伤的影响。采用透射电子显微镜、分子生物学测试和免疫荧光染色研究TMP通过Nrf2/ARE途径在调节铁代谢和铁死亡中的作用。利用[具体实验2]实验研究TMP通过Nrf2/ARE途径抑制铁死亡的机制。

结果

首先,通过[具体实验1]实验,我们发现TMP改善脊髓损伤大鼠的运动功能,减少继发性损伤引起的脊髓组织损伤和神经细胞死亡。此外,TMP抑制神经元死亡和脊髓空洞的形成。通过调节脂质过氧化,TMP可抑制线粒体损伤并减少ROS积累。我们的研究还表明,TMP通过NRF2/ARE途径调节铁代谢以抑制铁死亡并修复脊髓损伤。为进一步探索TMP 的调节机制,我们在后续的[具体实验2]实验中下调Nrf基因表达。我们发现,TMP可以调节铁死亡的关键途径——脂质过氧化。此外,TMP通过增加Nrf2转录活性抑制铁过载介导的铁死亡。

结论

在[具体实验1]和[具体实验2]实验中均发现TMP对NRF2/ARE途径有调节作用。它促进铁代谢和抗氧化分子的转录和翻译。我们的研究从铁代谢途径探讨了TMP对铁死亡的抑制作用,为脊髓损伤的治疗提供了新思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/572e/11605085/afff8cc1c707/fphar-15-1503064-g001.jpg

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