炎症性早产的代谢组学分析以及代谢物在调节宫颈过早成熟中的潜在作用。

Yan Yan, Zhuorong Gu, Baihe Li, Xirong Guo, Zhongxiao Zhang, Runjie Zhang, Zheng Bian, Jin Qiu
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引用次数: 2

摘要

背景:早产(PTB)是婴儿发病和死亡的主要原因。此外,先前的研究已经确定PTB与宫颈早熟有关。然而,潜在的机制仍有待阐明。本研究旨在鉴定PTB中差异表达的代谢物并研究其潜在的生物学功能。方法:对C57BL/6 J孕鼠分别给予LPS和生理盐水处理,染色检测分娩前宫颈病变。通过非靶向代谢组学分析检测PTB小鼠和对照小鼠血浆代谢谱,对人宫颈光滑细胞进行定量聚合酶链反应和免疫荧光染色。结果:研究表明,与CTL组相比,PTB小鼠颈平滑肌细胞α-SMA、SM-22和钙钙蛋白mRNA和蛋白水平均降低,OR mRNA和蛋白水平均升高。共分析了181个差异表达代谢物,其中PTB组96个表达上调,85个表达下调。差异表达的代谢物可能在STAT3、RhoA、mTOR、TGF-β和NK-κB信号通路中发挥作用。此外,牛磺酸处理后,人颈平滑肌细胞α-SMA和SM-22水平升高,而连接蛋白43水平降低。结论:我们的研究强调了PTB前外周血代谢物的变化,并揭示了这些差异表达的代谢物可能参与了宫颈早熟的发展。牛磺酸是调节人颈部平滑肌细胞的重要代谢物。我们的研究为肺结核患者宫颈过早成熟的机制提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Metabonomics profile analysis in inflammation-induced preterm birth and the potential role of metabolites in regulating premature cervical ripening.

Metabonomics profile analysis in inflammation-induced preterm birth and the potential role of metabolites in regulating premature cervical ripening.

Metabonomics profile analysis in inflammation-induced preterm birth and the potential role of metabolites in regulating premature cervical ripening.

Metabonomics profile analysis in inflammation-induced preterm birth and the potential role of metabolites in regulating premature cervical ripening.

Background: Preterm birth (PTB) is the primary cause of infant morbidity and mortality. Moreover, previous studies have established that PTB is related to premature cervical ripening. However, the underlying mechanism remains to be elucidated. This study sought to identify differentially expressed metabolites and investigate their potential biological functions in PTB.

Methods: Pregnant C57BL/6 J mice were treated with either LPS or normal saline and cervical alterations before labor were detected by staining. Metabolic profiles in the plasma of PTB and control mice were examined through non-targeted metabonomics analyses, quantitative polymerase chain reaction and immunofluorescence staining were performed on human cervical smooth cells.

Results: The study demonstrated that the mRNA and protein levels of α-SMA, SM-22, and calponin in cervical smooth muscle cells of PTB mice were lower while OR was higher at both mRNA and protein levels compared to the CTL group. A total of 181 differentially expressed metabolites were analyzed, among them, 96 were upregulated, while 85 were downregulated in the PTB group. Differentially expressed metabolites may play a role in STAT3, RhoA, mTOR, TGF-β, and NK-κB signaling pathways. Furthermore, when treated with taurine, the levels of α-SMA and SM-22 in human cervical smooth muscle cells were elevated, whereas that of connexin-43 was decreased.

Conclusion: Our study highlighted the changes of metabolites in the peripheral blood changed prior to PTB and revealed that these differentially expressed metabolites might participate in the development of premature cervical ripening. Taurine was identified as an important metabolite may modulate human cervical smooth muscle cells. Our study provided new insights into the mechanism underlying premature cervical ripening in PTB.

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