揭示硫氧还蛋白-1在早发性子痫前期中的作用:滋养层母细胞铁突变的关键角色

IF 2.9 3区 医学 Q3 IMMUNOLOGY
Jiachun Wei , Di Qiu , Xiaofeng Yang , Jian Wang , Meiting Shi , Lu Sun , Xinyao Lu , Caihong Wang , Haizhi Liu , Ruiman Li
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引用次数: 0

摘要

子痫前期(PE)是导致产科并发症和孕产妇死亡的重要原因之一,但其发病机理和机制尚不十分清楚。众所周知,硫氧还蛋白-1(SRXN1)具有抗氧化活性,可抵御氧化应激;它还与多种癌症有关。然而,SRXN1 在 PE 中的作用仍不清楚。我们的研究发现,早发型子痫前期(EOPE)患者血清和胎盘组织中的 SRXN1 水平明显下降。同样,PE-like 小鼠模型也显示 SRXN1 表达减少。我们的体外实验表明,减少 SRXN1 会损害滋养层细胞的活力、减少侵袭和迁移,并导致细胞死亡,主要是通过铁凋亡。这些结果与 EOPE 患者胎盘组织的分析结果一致。总之,妊娠期 SRXN1 水平降低会导致滋养层细胞铁凋亡,从而可能影响 EOPE 的发生和发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unraveling the role of sulfiredoxin-1 in early-onset preeclampsia: A key player in trophoblast ferroptosis

Preeclampsia (PE) significantly contributes to obstetric complications and maternal mortality, yet its pathogenesis and mechanisms are not well understood. Sulfiredoxin-1 (SRXN1) is known for its antioxidant activity and its role in defending against oxidative stress; it is also linked to various cancers. However, the role of SRXN1 in PE remains unclear. Our study found a significant decrease in SRXN1 levels in the serum and placental tissues of patients with early-onset preeclampsia (EOPE). Similarly, a PE-like mouse model showed reduced SRXN1 expression. Our in vitro experiments showed that reducing SRXN1 impaired trophoblast viability, decreased invasion and migration, and led to cell death, primarily through ferroptosis. These results are consistent with analyses of placental tissues from EOPE patients. In summary, lower SRXN1 levels during pregnancy contribute to trophoblast ferroptosis, potentially affecting the development and progression of EOPE.

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来源期刊
CiteScore
6.30
自引率
5.90%
发文量
162
审稿时长
10.6 weeks
期刊介绍: Affiliated with the European Society of Reproductive Immunology and with the International Society for Immunology of Reproduction The aim of the Journal of Reproductive Immunology is to provide the critical forum for the dissemination of results from high quality research in all aspects of experimental, animal and clinical reproductive immunobiology. This encompasses normal and pathological processes of: * Male and Female Reproductive Tracts * Gametogenesis and Embryogenesis * Implantation and Placental Development * Gestation and Parturition * Mammary Gland and Lactation.
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