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整合网络药理学和转录组学研究表明,补肾活血方通过调节早发性卵巢功能不全小鼠颗粒细胞中的PI3K/Akt信号通路,改善细胞铁死亡和凋亡。

Integrating network pharmacology and transcriptomics reveals that Bushen Huoxue recipe ameliorates ferroptosis and apoptosis in granulosa cells by regulating PI3K/Akt signaling pathway in premature ovarian insufficiency mice.

作者信息

Huang Yanjing, Zhu Mengdi, Zhang Zhuo, Liu Zhuo, Li Fan, Hu Runan, Geng Yuli, Song Yufan, Ma Wenwen, Dong Haoxu, Xu Lijun, Zhang Mingmin, Song Kunkun

机构信息

Institute of Integrated Traditional Chinese and Western Medicine, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China.

Department of Integrated Traditional Chinese and Western Medicine, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China.

出版信息

J Ethnopharmacol. 2025 Jul 24;351:120057. doi: 10.1016/j.jep.2025.120057. Epub 2025 Jun 3.

Abstract

ETHNOPHARMACOLOGICAL RELEVANCE

Bushen Huoxue recipe (BHR), from records of Jingyue Quanshu, commonly prescribed to treat irregular menstruation, premature ovarian insufficiency (POI), and infertility. BHR has been shown excellent efficacy in improving ovarian function. However, the core mechanisms have yet to be fully clarified.

AIM OF THE STUDY

The objective of the study was to investigate the influence of BHR on cyclophosphamide (CTX)-induced POI in mice and to identify the mechanisms involved.

MATERIALS AND METHODS

CTX administration induced the establishment of a POI murine model. Different groups of mice were administered distilled water, BHR, and dehydroepiandrosterone for 28 days, respectively. Ovarian function was evaluated based on ovarian index, estrous cyclicity, ovarian morphology, follicular development, and hormone levels. Tunel assays and flow cytometry were used to evaluate apoptosis. Western blotting and q-PCR were employed to detect the molecules related to ferroptosis and apoptosis. An integrated approach combining network pharmacology with transcriptomic analysis elucidated therapeutic targets, subsequently validated through molecular techniques and cellular assays.

RESULTS

BHR administration effectively ameliorated estrous cyclicity irregularity, hormonal imbalances, follicular development disorders, increased follicular atresia, and decreased ovarian reserve in POI mice. Transcriptomic analyses illustrated that BHR might enhance ovarian function in POI mice by inhibiting ferroptosis. Significant inhibition of heme oxygenase 1 (Hmox1) was observed concomitant with increased glutathione peroxidase 4 (GPX4) and solute carrier family 7a member 11 (SLC7A11) expression following BHR administration. Meanwhile, BHR administration effectively attenuated oxidative stress disorders in granulosa cells (GCs). Additionally, BHR effectively inhibited apoptosis in GCs. According to network pharmacology and transcriptomic analyses, the beneficial effects of BHR on POI might be due to the PI3K/Akt pathway, which confirms previous results. Furthermore, we verified this conclusion through in vitro experiments.

CONCLUSION

BHR effectively ameliorated ovarian function in CTX-induced POI mice by suppressing ferroptosis and apoptosis in GCs. This effect is mechanistically mediated by the activation of the PI3K/Akt signaling pathway. Furthermore, the Hmox1/GPX4 axis may be associated with BHR-mediated inhibition of ferroptosis.

摘要

民族药理学相关性

补肾活血方(BHR)源自《景岳全书》记载,常用于治疗月经不调、卵巢早衰(POI)和不孕症。BHR在改善卵巢功能方面已显示出卓越疗效。然而,其核心机制尚未完全阐明。

研究目的

本研究旨在探讨BHR对环磷酰胺(CTX)诱导的小鼠POI的影响,并确定其中涉及的机制。

材料与方法

给予CTX诱导建立POI小鼠模型。不同组小鼠分别给予蒸馏水、BHR和脱氢表雄酮,持续28天。基于卵巢指数、动情周期、卵巢形态、卵泡发育和激素水平评估卵巢功能。采用Tunel检测和流式细胞术评估细胞凋亡。运用蛋白质免疫印迹法和q-PCR检测与铁死亡和凋亡相关的分子。采用网络药理学与转录组分析相结合的综合方法阐明治疗靶点,随后通过分子技术和细胞实验进行验证。

结果

给予BHR有效改善了POI小鼠的动情周期紊乱、激素失衡、卵泡发育障碍、卵泡闭锁增加和卵巢储备减少。转录组分析表明,BHR可能通过抑制铁死亡增强POI小鼠的卵巢功能。给予BHR后,观察到血红素加氧酶1(Hmox1)显著抑制,同时谷胱甘肽过氧化物酶4(GPX4)和溶质载体家族7a成员11(SLC7A11)表达增加。同时,给予BHR有效减轻了颗粒细胞(GCs)中的氧化应激紊乱。此外,BHR有效抑制了GCs中的细胞凋亡。根据网络药理学和转录组分析,BHR对POI的有益作用可能归因于PI3K/Akt途径,这证实了先前的结果。此外,我们通过体外实验验证了这一结论。

结论

BHR通过抑制GCs中的铁死亡和细胞凋亡有效改善了CTX诱导的POI小鼠的卵巢功能。这种作用在机制上是由PI3K/Akt信号通路的激活介导的。此外,Hmox1/GPX4轴可能与BHR介导的铁死亡抑制有关。

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