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枸杞多糖通过NRF2/SLC7A11/GPX4通路减轻支持细胞铁死亡,并改善邻苯二甲酸二(2-乙基己基)酯诱导的小鼠雄性生殖损伤。

Lycium barbarum polysaccharide alleviates ferroptosis in Sertoli cells through NRF2/SLC7A11/GPX4 pathway and ameliorates DEHP-induced male reproductive damage in mice.

作者信息

Yang Hong, Ding Liyang, Xu Bo, Zhang Zhen, Dai Wenjie, He Tiantian, Liu Ling, Du Xing, Fu Xufeng

机构信息

Key Laboratory of Fertility Preservation and Maintenance of Ministry of Education, School of Basic Medical Sciences, Ningxia Medical University, Yinchuan 750004, China.

Key Laboratory of Fertility Preservation and Maintenance of Ministry of Education, School of Basic Medical Sciences, Ningxia Medical University, Yinchuan 750004, China.

出版信息

Int J Biol Macromol. 2024 Dec;282(Pt 5):137241. doi: 10.1016/j.ijbiomac.2024.137241. Epub 2024 Nov 6.

Abstract

Di-(2-ethylhexyl)phthalate (DEHP) is a common plasticizer that has been shown to significantly negatively affect male reproductive health. On the other hand, Lycium barbarum polysaccharide (LBP) has been shown to improve reproductive function. Therefore, we hypothesized that LBP may ameliorate DEHP-induced male reproductive damage. Herein, we found that LBP could alleviate DEHP-induced testicular damage and sperm abnormalities. Furthermore, histomorphological analysis of mice testis revealed that LBP primarily ameliorated the DEHP-induced male reproductive damage by targeting Sertoli cells. Moreover, the detection of the function-related genes of Sertoli cells confirmed this finding. The serum of mice in the Control, DEHP, and DEHP+LBP groups was analyzed using non-targeted metabolomics to further elucidate the mechanism of action of LBP in improving DEHP-induced male reproductive damage. According to the results, the differential metabolites were mainly enriched in the glutamate metabolism pathway, implying that LBP may alleviate the ferroptosis-related DEHP-induced testicular injury. Related ferroptosis markers were also found in mice testis. These findings collectively suggest that LBP may ameliorate DEHP-induced testicular injury via alleviating ferroptosis in Sertoli cells. To clarify the specific mechanism, we constructed a cell model in vitro by treating TM4 cells (the Sertoli cell line) with LBP and MEHP (the in vivo DEHP metabolite). Our findings revealed that LBP can improve the function of DEHP-affected Sertoli cells. Furthermore, the analysis of lipid peroxidation, Fe content, and ferroptosis-related protein expressions demonstrated that LBP could ameliorate MEHP-induced ferroptosis in TM4 cells. To clarify the specific mechanism, glutamate metabolism-related proteins involved in the ferroptosis pathway were detected. According to the results, there were significant changes in the expression of NRF2, SLC7A11 and GPX4 proteins, which are involved in the ferroptosis glutamate metabolism pathway. Furthermore, supplementation of NRF2, SLC7A11, and GPX4 inhibitors (ML385, Erastin, and RSL3, respectively) blocked the therapeutic effect of LBP in alleviating MEHP-induced ferroptosis in TM4 cells, implying that LBP could also ameliorate MEHP-induced ferroptosis via the NRF2/SLC7A11/GPX4 pathway. In summary, these findings show that LBP can alleviate DEHP/MEHP-induced ferroptosis through the NRF2/SLC7A11/GPX4 pathway, ameliorating Sertoli cell dysfunction and improving the DEHP-induced male reproductive damage. Therefore, the clinical administration of LBP could be an effective strategy for preventing DEHP-induced male reproductive injury.

摘要

邻苯二甲酸二(2-乙基己基)酯(DEHP)是一种常见的增塑剂,已被证明会对男性生殖健康产生显著负面影响。另一方面,枸杞多糖(LBP)已被证明可改善生殖功能。因此,我们推测LBP可能会改善DEHP诱导的男性生殖损伤。在此,我们发现LBP可以减轻DEHP诱导的睾丸损伤和精子异常。此外,对小鼠睾丸的组织形态学分析表明,LBP主要通过靶向支持细胞来改善DEHP诱导的男性生殖损伤。此外,对支持细胞功能相关基因的检测证实了这一发现。使用非靶向代谢组学分析对照组、DEHP组和DEHP+LBP组小鼠的血清,以进一步阐明LBP改善DEHP诱导的男性生殖损伤的作用机制。根据结果,差异代谢物主要富集在谷氨酸代谢途径中,这意味着LBP可能减轻与铁死亡相关的DEHP诱导的睾丸损伤。在小鼠睾丸中也发现了相关的铁死亡标志物。这些发现共同表明,LBP可能通过减轻支持细胞中的铁死亡来改善DEHP诱导的睾丸损伤。为了阐明具体机制,我们通过用LBP和MEHP(体内DEHP代谢物)处理TM4细胞(支持细胞系)构建了体外细胞模型。我们的研究结果表明,LBP可以改善受DEHP影响的支持细胞的功能。此外,对脂质过氧化、铁含量和铁死亡相关蛋白表达的分析表明,LBP可以减轻MEHP诱导的TM4细胞铁死亡。为了阐明具体机制,检测了铁死亡途径中与谷氨酸代谢相关的蛋白。根据结果,参与铁死亡谷氨酸代谢途径的NRF2、SLC7A11和GPX4蛋白的表达有显著变化。此外,分别补充NRF2、SLC7A11和GPX4抑制剂(分别为ML385、厄拉斯丁和RSL3)可阻断LBP减轻MEHP诱导的TM4细胞铁死亡的治疗作用,这意味着LBP也可以通过NRF2/SLC7A11/GPX4途径减轻MEHP诱导的铁死亡。总之,这些发现表明,LBP可以通过NRF2/SLC7A11/GPX4途径减轻DEHP/MEHP诱导的铁死亡,改善支持细胞功能障碍并改善DEHP诱导的男性生殖损伤。因此,临床应用LBP可能是预防DEHP诱导的男性生殖损伤的有效策略。

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