羊膜内炎症对大鼠胎盘-胎儿脑轴色氨酸代谢的影响

IF 3.7 3区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Reproduction Pub Date : 2025-04-01 DOI:10.1530/REP-24-0378
Cilia Abad, Ivana Musilova, Eva Cifkova, Ramon Portillo, Fiona Kumnova, Rona Karahoda, Martin Sterba, Miroslav Lisa, Marian Kacerovsky, Jaroslav Stranik, Ales Stuchlik, František Štaud
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引用次数: 0

摘要

胎盘作为一个动态的内分泌器官,在母体生理和胎儿发育中起着至关重要的作用。它对子宫内环境的微小变化反应迅速,以促进胎儿存活。胎盘功能的破坏越来越被认为是神经发育障碍起源的关键因素。在本研究中,我们采用先进的技术,通过超声引导下将LPS注入妊娠囊,诱导宫内炎症。然后,我们评估了其对TRP代谢相关酶基因表达的影响,并对Wistar大鼠胎盘和胎脑代谢组进行了全面的LC/MS分析。我们的研究结果表明,羊膜内注射LPS诱导了强烈的炎症反应,导致TRP代谢的显著改变,包括胎盘中色氨酸羟化酶(TPH)的下调,导致血清素(5-HT)水平下降。同样,在胎儿大脑中,暴露于LPS导致TPH表达降低,单胺氧化酶表达增加,表明5-HT合成减少,降解增加。此外,在胎盘和胎儿大脑中都观察到犬尿氨酸通路的上调。此外,我们检测到神经毒性的转变,神经保护和神经毒性代谢物之间的不平衡证明了这一点,包括胎儿大脑中犬尿氨酸水平下降和犬尿氨酸单加氧酶上调。总之,我们的研究结果揭示了子宫内炎症后TRP代谢的显著改变,可能导致神经发育障碍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of intraamniotic inflammation on tryptophan metabolism in the placenta-fetal brain axis in rats.

The placenta plays a crucial role beyond nutrient transfer, acting as a dynamic endocrine organ that significantly influences maternal physiology and fetal development. It responds rapidly to even slight changes in the in utero environment to promote fetal survival. Disruptions in placental function are increasingly recognized as key contributors to the origins of neurodevelopmental disorders. In this study, we employed advanced technology to induce intrauterine inflammation through ultrasound-guided administration of LPS into gestational sacs. We then evaluated its effects on the gene expression of enzymes involved in TRP metabolism and conducted a comprehensive LC/MS analysis of the metabolome in the placenta and fetal brain of Wistar rats. Our results show that intraamniotic injection of LPS induces a robust inflammatory response leading to significant alterations in TRP metabolism, including downregulation of tryptophan hydroxylase (TPH) in the placenta, resulting in a decrease in serotonin (5-HT) levels. Similarly, in the fetal brain, exposure to LPS led to reduced TPH expression and increased monoamine oxidase expression, suggesting a decrease in 5-HT synthesis and an increase in its degradation. Furthermore, an upregulation of the kynurenine pathway was observed in both the placenta and fetal brain. Moreover, we detected a shift towards neurotoxicity, evidenced by an imbalance between neuroprotective and neurotoxic metabolites, including decreased levels of kynurenic acid and upregulation of kynurenine monooxygenase in the fetal brain. In conclusion, our findings reveal significant alterations in TRP metabolism following intrauterine inflammation, potentially contributing to neurodevelopmental disorders.

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来源期刊
Reproduction
Reproduction 生物-发育生物学
CiteScore
7.40
自引率
2.60%
发文量
199
审稿时长
4-8 weeks
期刊介绍: Reproduction is the official journal of the Society of Reproduction and Fertility (SRF). It was formed in 2001 when the Society merged its two journals, the Journal of Reproduction and Fertility and Reviews of Reproduction. Reproduction publishes original research articles and topical reviews on the subject of reproductive and developmental biology, and reproductive medicine. The journal will consider publication of high-quality meta-analyses; these should be submitted to the research papers category. The journal considers studies in humans and all animal species, and will publish clinical studies if they advance our understanding of the underlying causes and/or mechanisms of disease. Scientific excellence and broad interest to our readership are the most important criteria during the peer review process. The journal publishes articles that make a clear advance in the field, whether of mechanistic, descriptive or technical focus. Articles that substantiate new or controversial reports are welcomed if they are noteworthy and advance the field. Topics include, but are not limited to, reproductive immunology, reproductive toxicology, stem cells, environmental effects on reproductive potential and health (eg obesity), extracellular vesicles, fertility preservation and epigenetic effects on reproductive and developmental processes.
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