铜中毒介导铜诱导的睾丸生精细胞死亡

Asian journal of andrology Pub Date : 2024-05-01 Epub Date: 2024-01-26 DOI:10.4103/aja202383
Jing-Yi Zhang, Xu-Jun Yu, Jun-Jun Li, Yao Xiao, Guang-Sen Li, Fang Yang, Liang Dong
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引用次数: 0

摘要

铜中毒是一种程序性细胞死亡的新机制,但在生精细胞方面尚未得到充分探讨。本研究利用铜超载小鼠模型研究了铜氧化酶在生精细胞死亡中的潜在参与。60只雄性癌症研究所(ICR)小鼠被随机分为四组,连续42天每天口服氯化钠(对照组)或硫酸铜(CuSO4),剂量分别为50毫克/千克-1、100毫克/千克-1或200毫克/千克-1。铜超载的小鼠表现出铜平衡紊乱。此外,睾丸组织细胞凋亡率显著上升的同时,关键铜中毒因子的表达也明显上调。免疫组化分析显示,在睾丸发育的不同阶段,Sertoli细胞、Leydig细胞和生精细胞中都存在铁毒素1(Fdx1),铜超载小鼠的Fdx1阳性染色面积显著增加。此外,还观察到线粒体功能障碍和三磷酸腺苷水平降低,这进一步表明铜中毒会导致线粒体损伤。进一步的分析表明,铜超标小鼠的睾丸组织出现病变和血睾屏障破坏,同时精子浓度和活力下降。总之,我们的研究结果表明,铜负荷过重的小鼠睾丸组织中铜平衡失调,铜中毒参与了生精细胞的死亡。这些发现为了解生精细胞死亡的致病机制提供了新的视角,并为睾丸中发生杯突症提供了初步的实验证据。
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Cuproptosis mediates copper-induced testicular spermatogenic cell death.

Cuproptosis, a novel mechanism of programmed cell death, has not been fully explored in the context of spermatogenic cells. This study investigated the potential involvement of cuproptosis in spermatogenic cell death using a mouse model of copper overload. Sixty male Institute of Cancer Research (ICR) mice were randomly divided into four groups that received daily oral gavage with sodium chloride (control) or copper sulfate (CuSO 4 ) at 50 mg kg -1 , 100 mg kg -1 , or 200 mg kg -1 , for 42 consecutive days. Mice subjected to copper overload exhibited a disruption in copper homeostasis. Additionally, significant upregulated expression of key cuproptosis factors was accompanied by a significant rise in the rates of testicular tissue cell apoptosis. Immunohistochemical analysis revealed the presence of ferredoxin 1 (Fdx1) in Sertoli cells, Leydig cells, and spermatogenic cells at various stages of testicular development, and the Fdx1-positive staining area was significantly increased in copper-overloaded mice. Mitochondrial dysfunction and decreased adenosine triphosphate levels were also observed, further implicating mitochondrial damage under cuproptosis. Further analyses revealed pathological lesions and blood-testis barrier destruction in the testicular tissue, accompanied by decreased sperm concentration and motility, in copper-overloaded mice. In summary, our results indicate that copper-overloaded mice exhibit copper homeostasis disorder in the testicular tissue and that cuproptosis participates in spermatogenic cell death. These findings provide novel insights into the pathogenic mechanisms underlying spermatogenic cell death and provide initial experimental evidence for the occurrence of cuproptosis in the testis.

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