环磷酰胺通过 SMAD2 通路激活铁蛋白沉积诱导的 Leydig 细胞功能障碍。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Senlin Liao, Cun Wei, Guanyang Wei, Haoyu Liang, Fan Peng, Lei Zhao, Ziguang Li, Cundong Liu, Qizhao Zhou
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引用次数: 0

摘要

环磷酰胺(CP)是临床上广泛使用的化疗药物和免疫抑制剂,由CP引起的雄激素过低也越来越受到关注。有研究发现,铁凋亡是一种与化疗药物密切相关的细胞死亡新机制,在调节生殖损伤中起着关键作用。本研究的目的是探讨嗜铁细胞在睾丸雷迪格细胞功能障碍中的作用及其相关分子机制。在本研究中,CP 诱导的睾丸 Leydig 细胞功能障碍小鼠模型中的铁蛋白沉积水平显著升高,并进一步影响睾酮的合成。铁蛋白沉积抑制剂铁前列素-1和铁螯合剂去铁胺可改善CP诱导的损伤。免疫组化结果显示,铁前列素-1和去铁胺能改善CP引起的曲细精管结构紊乱和睾丸组织中Leydig细胞数量的减少。免疫荧光和免疫印迹证实,铁前列素-1和去铁胺能改善睾酮合成关键酶的表达。Smad2(SMAD家族成员2)/Cdkn1a(细胞周期蛋白依赖性激酶抑制剂1A)通路的激活可改善CP诱导的Leydig细胞的铁突变,保护Leydig细胞的功能。通过抑制 Smad2/Cdkn1a 信号通路,CP 可调节铁凋亡,导致睾丸 Leydig 细胞功能障碍。本研究从理论上解释了氯化石蜡诱导的雄激素过少症,并提供了一种潜在的治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cyclophosphamide activates ferroptosis-induced dysfunction of Leydig cells via SMAD2 pathway†.

Cyclophosphamide (CP) is a widely used chemotherapeutic drug and immunosuppressant in the clinic, and the hypoandrogenism caused by CP is receiving more attention. Some studies found that ferroptosis is a new mechanism of cell death closely related to chemotherapeutic drugs and plays a key role in regulating reproductive injuries. The purpose of this study is to explore ferroptosis' role in testicular Leydig cell dysfunction and molecular mechanisms relating to it. In this study, the level of ferroptosis in the mouse model of testicular Leydig cell dysfunction induced by CP was significantly increased and further affected testosterone synthesis. The ferroptosis inhibitors ferrostatin-1 (Fer-1) and iron chelator deferoxamine (DFO) can improve injury induced by CP. The results of immunohistochemistry showed that Fer-1 and DFO could improve the structural disorder of seminiferous tubules and the decrease of the number of Leydig cells in testicular tissue induced by CP. Immunofluorescence and western blot confirmed that Fer-1 and DFO could improve the expression of key enzymes in testosterone synthesis. The activation of SMAD family member 2 (Smad2)/cyclin-dependent kinase inhibitor 1A (Cdkn1a) pathway can improve the ferroptosis of Leydig cells induced by CP and protect the function of Leydig cells. By inhibiting the Smad2/Cdkn1a signal pathway, CP can regulate ferroptosis, resulting in testicular Leydig cell dysfunction. In this study, CP-induced hypoandrogenism is explained theoretically and a potential therapeutic strategy is provided.

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CiteScore
7.20
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4.30%
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