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参与突触可塑性的蛋白质在患有并发神经炎症的临床脓毒症婴儿的脑脊液中表达下调。

Proteins Involved in Synaptic Plasticity Are Downregulated in the Cerebrospinal Fluid of Infants With Clinical Sepsis Complicated by Neuroinflammation.

作者信息

Jiang Ping-Ping, Peng Shan-Shan, Pankratova Stanislava, Luo Ping, Zhou Ping, Chen You

机构信息

Department of Veterinary and Animal Sciences, University of Copenhagen, Copenhagen, Denmark.

School of Public Health, Sun Yat-sen University, Guangzhou, China.

出版信息

Front Cell Neurosci. 2022 May 11;16:887212. doi: 10.3389/fncel.2022.887212. eCollection 2022.

Abstract

Newborn infants are prone to sepsis and related inflammation of different organs. Neuroinflammation has been associated with long-term adverse neuronal (neuropsychiatric/neurodegenerative) outcomes, including attention deficit hyperactivity disorder (ADHD) or even Alzheimer's disease. Despite a vast number of findings on sepsis-induced inflammatory responses in the central nervous system (CNS), how neuroinflammation affects brain development remains largely elusive. In this study, neonates with clinical sepsis and screened for meningitis were included and classified by the neuroinflammation status based on cerebrospinal fluid (CSF) parameters (INF vs. NOINF). CSF samples collected from clinical screening were subjected to proteomics analysis. Proteins with differential abundance were subjected to enrichment analysis to reveal affected biological pathways. INF and NOINF infants had similar demographic data and hematological and biochemical parameters in blood and CSF. The CSF proteomes were essentially different between the two groups. All 65 proteins with differential abundance showed lower abundance in the INF group and functionally covered pivotal developmental processes, including axonal and synaptic function and extracellular homeostasis. CSF proteins, PTPRZ1 and IGFBP4, were correlated with C-reactive protein (CRP) and ratios of immature/total neutrophils in blood. In general, a substantial change in the CSF protein profile was found under neuroinflammation, and these changes are related to systemic conditions. The results suggest that changes in CSF proteins may be involved in sepsis-affected neurodevelopment, such as disturbances in circuit formation, which has the potential to predispose neonates to long-term adverse outcomes.

摘要

新生儿易患败血症及不同器官的相关炎症。神经炎症与长期不良的神经元(神经精神/神经退行性)后果有关,包括注意力缺陷多动障碍(ADHD)甚至阿尔茨海默病。尽管在败血症诱导的中枢神经系统(CNS)炎症反应方面有大量研究结果,但神经炎症如何影响大脑发育在很大程度上仍不清楚。在本研究中,纳入了患有临床败血症并接受脑膜炎筛查的新生儿,并根据脑脊液(CSF)参数(炎症组 vs. 非炎症组)的神经炎症状态进行分类。对临床筛查收集的脑脊液样本进行蛋白质组学分析。对丰度有差异的蛋白质进行富集分析,以揭示受影响的生物学途径。炎症组和非炎症组婴儿在人口统计学数据以及血液和脑脊液的血液学和生化参数方面相似。两组之间的脑脊液蛋白质组基本不同。所有65种丰度有差异的蛋白质在炎症组中的丰度均较低,其功能涵盖关键的发育过程,包括轴突和突触功能以及细胞外稳态。脑脊液蛋白质PTPRZ1和IGFBP4与血液中的C反应蛋白(CRP)以及未成熟/总中性粒细胞比率相关。总体而言,在神经炎症状态下发现脑脊液蛋白质谱有实质性变化,且这些变化与全身状况有关。结果表明,脑脊液蛋白质的变化可能参与了败血症影响的神经发育,例如回路形成的紊乱,这有可能使新生儿易出现长期不良后果。

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