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基质细胞衰老导致子宫内膜蜕膜化受损和与滋养层细胞的相互作用缺陷。

Stromal cell senescence contributes to impaired endometrial decidualization and defective interaction with trophoblast cells.

机构信息

Mechanisms of Cellular Senescence Group, Institute of Cytology of the Russian Academy of Sciences, Saint-Petersburg, Russia.

出版信息

Hum Reprod. 2022 Jun 30;37(7):1505-1524. doi: 10.1093/humrep/deac112.

Abstract

STUDY QUESTION

What are the consequences of endometrial stromal cell (EnSC) senescence for endometrial function?

SUMMARY ANSWER

Senescence of EnSC contributes to impaired endometrial decidualization and impaired interaction with trophoblast cells but application of senomorphics diminishes the adverse effects of senescent EnSC on decidualization and implantation.

WHAT IS KNOWN ALREADY

A prolonged and highly disordered pro-inflammatory secretory profile of EnSC, which resembles the senescence-associated secretory phenotype, is associated with implantation failure. Furthermore, it has been suggested that implantation failure may be associated with increased EnSC senescence during the proliferative phase of the menstrual cycle.

STUDY DESIGN, SIZE, DURATION: Primary EnSC cell cultures were isolated from endometrial biopsies taken from four patients without any endometrial complications planning to undergo IVF. EnSC senescence was induced by oxidative stress (1 h exposure to 200 µM H2O2) followed by 14 days culture but some results were confirmed in a replicative senescence model (after 25 passages). The decidual reaction was evaluated with routine methods and a genetic tool previously designed by us that estimates integral decidual response by fluorescence of a reporter protein. Time-course RNA-sequencing of control and senescent EnSC before and during decidualization was performed using four replicates for each state. To extend our findings, we applied several publicly available datasets. To model implantation in vitro, the choriocarcinoma cell line BeWo b30 was used. To reduce the senescent phenotype of EnSC, two classical senomorphics were applied-rapamycin and metformin.

PARTICIPANTS/MATERIALS, SETTING, METHODS: EnSC cultures were used to investigate the effects of senescence on decidualization and on an in vitro implantation model using spheroids derived from BeWo cells. Co-culture models (2D and 3D) were used to explore the effect of senescent cells on neighbouring control cells. The following methods were used to assess cell function, RNA-sequencing, bioinformatic analysis, CRISPR/Cas9 genome editing, FACS, western blotting, RT-PCR, immunofluorescence, molecular cloning, lentiviral transduction and ELISA.

MAIN RESULTS AND THE ROLE OF CHANCE

Premature senescence of EnSC could be a cause of impaired decidualization. Hormone-induced decidual transformation of EnSC cultures was negatively affected by senescence. Bioinformatics revealed crucial disturbances in the decidual reaction of senescent EnSC which could affect embryo invasion, alter the 'meta-signature' of human endometrial receptivity, disturb the emergence of mature and senescent decidual cells subpopulations, impair ligand-receptor interaction with trophoblasts and modify the architecture of extracellular matrix. These predictions were functionally validated using an in vitro implantation model. Moreover, we observed that senescent EnSC, likely via the altered secretome, caused 'bystander' quenching of the decidual reaction in adjacent cells, reinforcing dysfunction of the stromal compartment. Application of senomorphics that reduced the senescence phenotype diminished adverse effects of senescent EnSC on decidualization and implantation.

LARGE SCALE DATA

The data used in this study are available in the GEO database (GEO identifier GSE160702).

LIMITATIONS, REASONS FOR CAUTION: The present study was based on in vitro cell cultures derived from only four women. Further studies involving patients with impaired implantation are needed to confirm our findings.

WIDER IMPLICATIONS OF THE FINDINGS

The presence of senescent EnSC within the stromal compartment of the endometrium may be a risk-factor for the failure of embryo implantation. Application of senomorphics during the proliferative phase of the menstrual cycle is a promising strategy to alleviate negative effects of senescent EnSC and to improve embryo implantation rates.

STUDY FUNDING/COMPETING INTEREST(S): This study was funded by the Russian Science Foundation (# 19-74-10038). The authors do not have any competing interests to declare.

摘要

研究问题

子宫内膜基质细胞(EnSC)衰老对子宫内膜功能有何影响?

总结答案

EnSC 的衰老导致子宫内膜蜕膜化受损和与滋养层细胞的相互作用受损,但应用衰老模拟物可减轻衰老 EnSC 对蜕膜化和植入的不良影响。

已知情况

类似于衰老相关分泌表型的 EnSC 持续且高度紊乱的促炎分泌谱与着床失败有关。此外,有人提出,在月经周期的增殖期,子宫内膜基质细胞衰老增加可能与着床失败有关。

研究设计、规模、持续时间:从计划接受 IVF 的四名无任何子宫内膜并发症的患者的子宫内膜活检中分离出原代 EnSC 细胞培养物。通过氧化应激(暴露于 200µM H2O2 1 小时)诱导 EnSC 衰老,然后进行 14 天培养,但一些结果在复制性衰老模型(经过 25 个传代后)中得到了证实。使用我们之前设计的常规方法和遗传工具评估蜕膜反应,该工具通过报告蛋白的荧光估计整体蜕膜反应。使用每个状态的四个重复,对对照和衰老 EnSC 在蜕膜化之前和期间进行时间过程 RNA 测序。为了扩展我们的发现,我们应用了几个公开可用的数据集。使用绒毛膜癌细胞系 BeWo b30 进行体外植入模型。为了减少 EnSC 的衰老表型,应用了两种经典的衰老模拟物-雷帕霉素和二甲双胍。

参与者/材料、设置、方法:使用 EnSC 培养物研究衰老对蜕膜化和使用源自 BeWo 细胞的球体的体外植入模型的影响。使用 2D 和 3D 共培养模型探索衰老细胞对相邻对照细胞的影响。使用以下方法评估细胞功能、RNA 测序、生物信息学分析、CRISPR/Cas9 基因组编辑、FACS、western blot、RT-PCR、免疫荧光、分子克隆、慢病毒转导和 ELISA。

主要结果和机会的作用

EnSC 的过早衰老可能是蜕膜化受损的原因。激素诱导的 EnSC 培养物蜕膜转化受到衰老的负面影响。生物信息学揭示了衰老 EnSC 蜕膜反应的关键干扰,这可能影响胚胎入侵,改变人类子宫内膜容受性的“元签名”,干扰成熟和衰老蜕膜细胞亚群的出现,损害与滋养层的配体-受体相互作用,并改变细胞外基质的结构。这些预测使用体外植入模型进行了功能验证。此外,我们观察到衰老的 EnSC 可能通过改变的分泌组,导致相邻细胞的蜕膜反应“旁观者”抑制,从而增强基质区室的功能障碍。应用衰老模拟物,降低衰老表型,可减轻衰老 EnSC 对蜕膜化和植入的不良影响。

大规模数据

本研究中使用的数据可在 GEO 数据库(GEO 标识符 GSE160702)中获得。

限制、谨慎的原因:本研究基于仅来自四名女性的体外细胞培养物。需要进一步研究患有植入不良的患者,以确认我们的发现。

更广泛的影响

子宫内膜基质细胞中衰老的 EnSC 的存在可能是胚胎植入失败的一个风险因素。在月经周期的增殖期应用衰老模拟物是一种有前途的策略,可以减轻衰老 EnSC 的负面影响,提高胚胎植入率。

研究资金/竞争利益:本研究由俄罗斯科学基金会(#19-74-10038)资助。作者没有任何竞争利益需要申报。

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