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Notch2通过激活Wnt2/β-连环蛋白信号通路改善卵巢早衰颗粒细胞功能。

Notch2 improves granulosa cell functions in premature ovarian failure by activating the Wnt2/β-catenin pathway.

作者信息

Liang Xia, Li Nina, Wu Senyan

机构信息

Midwifery Program, Quzhou College of Technology, Quzhou, 324000, China.

Department of Vascular Surgery, Quzhou People's Hospital, No. 100, Minjiang Avenue, Kecheng District, Quzhou, 324000, Zhejiang, China.

出版信息

J Ovarian Res. 2025 Jul 30;18(1):169. doi: 10.1186/s13048-025-01745-9.

Abstract

BACKGROUND

Notch2 and Wnt2/β-catenin pathway improve granulosa cell (GC) functions, and there are interactions between Notch and Wnt/β-catenin in some cells. We aimed to investigate whether Notch2 improves GC functions in premature ovarian failure (POF) by activating the Wnt2/β-catenin pathway.

METHODS

Notch2 expression was interfered in mice or KGN cells, then, mice were treated with cyclophosphamide and busulfan intraperitoneally, and KGN cells were exposed to cyclophosphamide to establish POF models. In vivo, the number of follicles at different stages was counted, and interactions between Notch2 and Wnt2 were detected. In vitro, cell viability and cycle were measured. Additionally, hormone levels, oxidative stress (OS) degrees, cell apoptosis, Notch2 and Wnt2/β-catenin pathway-related genes were detected in vivo and in vitro. Finally, Wnt/β-catenin pathway inhibitor (IWR-1), agonist (SKL2001) and β-catenin knockdown were used.

RESULTS

Notch2 overexpression not only improved hormone levels, follicular development, OS degree and ovarian cell apoptosis, but also activated Wnt2/β-catenin pathway for POF mice. Moreover, Notch2 interacted with Wnt2 in POF mice. In vitro, Notch2 knockdown decreased cell viability, disrupted cell cycle, increased cell apoptosis, worsened hormone levels, promoted OS degree and inhibited Wnt2/β-catenin pathway for POF. Importantly, the protective effects of Notch2 overexpression and the worsening impacts of Notch2 knockdown on POF were reversed by IWR-1 and SKL2001. β-Catenin knockdown further impaired GC functions in POF models that underwent Notch2 and β-catenin knockdown.

CONCLUSION

Notch2 may improve GC functions in POF by activating the Wnt2/β-catenin pathway, suggesting that the Notch2-mediated Wnt2/β-catenin pathway is a novel therapeutic target for POF.

摘要

背景

Notch2和Wnt2/β-连环蛋白通路可改善颗粒细胞(GC)功能,且在某些细胞中Notch与Wnt/β-连环蛋白之间存在相互作用。我们旨在研究Notch2是否通过激活Wnt2/β-连环蛋白通路来改善卵巢早衰(POF)中的颗粒细胞功能。

方法

在小鼠或KGN细胞中干扰Notch2表达,然后,小鼠腹腔注射环磷酰胺和白消安,KGN细胞暴露于环磷酰胺以建立POF模型。在体内,计数不同阶段的卵泡数量,并检测Notch2与Wnt2之间的相互作用。在体外,测量细胞活力和细胞周期。此外,在体内和体外检测激素水平、氧化应激(OS)程度、细胞凋亡、Notch2和Wnt2/β-连环蛋白通路相关基因。最后,使用Wnt/β-连环蛋白通路抑制剂(IWR-1)、激动剂(SKL2001)和β-连环蛋白敲低。

结果

Notch2过表达不仅改善了POF小鼠的激素水平、卵泡发育、OS程度和卵巢细胞凋亡,还激活了Wnt2/β-连环蛋白通路。此外,Notch2与POF小鼠中的Wnt2相互作用。在体外,Notch2敲低降低了POF的细胞活力、破坏了细胞周期、增加了细胞凋亡、恶化了激素水平、促进了OS程度并抑制了Wnt2/β-连环蛋白通路。重要的是,IWR-1和SKL2001逆转了Notch2过表达的保护作用以及Notch2敲低对POF的恶化影响。β-连环蛋白敲低进一步损害了Notch2和β-连环蛋白敲低的POF模型中的颗粒细胞功能。

结论

Notch2可能通过激活Wnt2/β-连环蛋白通路来改善POF中的颗粒细胞功能,提示Notch2介导的Wnt2/β-连环蛋白通路是POF的一个新的治疗靶点。

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