子痫前期母-子代大脑和组织的串扰:来自大鼠模型的见解。

IF 3.2 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Xiaomin Xu, Haiyin Chen, Lidan Gao, Congcong Sun, Xiaoqing Li, Yanjun Li, Wenhuan Wang, Yanyan Zheng
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引用次数: 0

摘要

本研究旨在探讨先兆子痫(PE)中母体和后代大脑、血清和胎盘组织的差异代谢谱,特别关注于阐明母体-后代大脑和组织的串扰,这可能有助于PE的复杂病理生理。采用一氧化氮合酶抑制剂n -硝基- l -精氨酸甲酯(L-NAME)诱导大鼠PE,模拟早发性PE (EOPE)和晚发性PE (LOPE)。我们利用非靶向质子核磁共振(NMR)代谢组学来表征母亲和后代的血清、胎盘组织提取物和脑组织的代谢谱。采用多变量分析、Spearman相关、基于密度的应用空间聚类与噪声算法、数据驱动的统计预测相关网络分析和组织异质性分析来探索组织特异性代谢特征及其相互作用。在L-NAME诱导后,EOPE和LOPE在各组织中都表现出显著的代谢差异和共享特征,PE的代谢特征具有不同的组织特异性反应。两个PE组血清中色氨酸、异丁酸和乳酸均降低,甜菜碱升高。乳酸在胎盘组织中上调,突出其代谢作用。在所有三个实验组中,在母体大脑、血清、胎盘和后代大脑中检测到广泛的组织内代谢相关性和组织间代谢物交换。EOPE和LOPE表现出明显不同的代谢特征和差异代谢物的轨迹,以及母亲/后代大脑与胎盘之间不同的相互作用模式。这项研究揭示了对子痫前期的多组织代谢重塑,这意味着解决病理生理应激是至关重要的,可能对神经系统预后有潜在的影响。综合分析强调脑-胎盘轴在子痫前期的关键作用,提倡分类诊断和治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maternal-offspring brain and tissue cross-talk in preeclampsia: insights from a rat model.

This study aimed to investigate the differential metabolic profiles across maternal and offspring brains, serum, and placental tissues in preeclampsia (PE), with a particular focus on elucidating the maternal-offspring brain and tissue cross-talk that may contribute to the complex pathophysiology of PE. PE was induced in rats using the nitric oxide synthase inhibitor N-nitro-L-arginine methyl ester (L-NAME) to simulate both early-onset PE (EOPE) and late-onset PE (LOPE). We utilized non-targeted proton nuclear magnetic resonance (NMR) metabolomics to characterize the metabolic profiles of serum, placental tissue extracts, and brain tissues from both mothers and offspring. Multivariate analysis, Spearman correlation, Density-Based Spatial Clustering of Applications with Noise algorithm, Data-Driven Statistical Predictive Correlation network analysis and Tissue heterogeneity analysis were employed to explore tissue-specific metabolic signatures and their interactions. Following L-NAME induction, both EOPE and LOPE presented significant metabolic differences and shared traits across tissues, with distinct tissue-specific responses characterizing the metabolic profile of PE. Serum from both PE groups showed a decrease in tryptophan, isobutyrate, and lactate, with an increase in betaine. Lactate was upregulated in placental tissues, highlighting its metabolic role. Extensive intra-tissue metabolic correlations and inter-tissue metabolite exchanges were detected among the maternal brain, serum, placenta, and offspring brain across all three experimental groups. EOPE and LOPE exhibited distinctly different metabolic characteristics and trajectories of differential metabolites, along with diverse interaction patterns between the maternal/offspring brain and the placenta. This study uncovers the multi-tissue metabolic remodeling in response to preeclampsia, implying that addressing pathophysiological stress is crucial and may have potential implications for neurological outcomes. The comprehensive analysis highlights the pivotal role of the brain-placenta axis in preeclampsia, advocating for a classified diagnostic and management approach.

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来源期刊
Metabolic brain disease
Metabolic brain disease 医学-内分泌学与代谢
CiteScore
5.90
自引率
5.60%
发文量
248
审稿时长
6-12 weeks
期刊介绍: Metabolic Brain Disease serves as a forum for the publication of outstanding basic and clinical papers on all metabolic brain disease, including both human and animal studies. The journal publishes papers on the fundamental pathogenesis of these disorders and on related experimental and clinical techniques and methodologies. Metabolic Brain Disease is directed to physicians, neuroscientists, internists, psychiatrists, neurologists, pathologists, and others involved in the research and treatment of a broad range of metabolic brain disorders.
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