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基于H-MRS- Tau蛋白和突触相关蛋白的时间依赖性行为及突触结构分析的新生仔猪缺氧缺血性脑损伤后的神经可塑性

Neuroplasticity After Hypoxic-Ischemic Brain Injury in Neonatal Pigs Based on Time-Dependent Behavior of H-MRS-Tau Protein and Synaptic Associated Proteins and Synaptic Structure Analysis.

作者信息

Zhao Sijia, Zheng Yang

机构信息

Department of Radiology, Shengjing Hospital of China Medical University, No. 36, Sanhao Street, Heping District, Shenyang, 110004, PR China.

出版信息

Neurochem Res. 2025 May 23;50(3):169. doi: 10.1007/s11064-025-04421-y.

Abstract

This study investigated the effects of hypoxic-ischemic (HI) injury on neonatal neuroplasticity using the following approaches: Magnetic Resonance Spectroscopy (H-MRS) imaging to analyze dynamic changes in tau protein levels, immunofluorescence staining to evaluate synaptophysin (SYP), neurocan (Neu), and tau protein, and utilizing transmission electron microscopy (TEM) to examine synaptic ultrastructure at multiple time points. A total of 59 healthy neonatal pigs were included, with 10 in the control group and 43 in the HI model group. The results demonstrated that SYP immunostaining intensity peaked at 6-12 h after HI before declining. Neu expression exhibited an initial decrease, followed by a transient increase and subsequent reduction, reaching its lowest level at 6-12 h after HI. Tau protein levels increased initially after HI, peaked at 24-48 h after HI, and subsequently decreased. SYP was negatively correlated with Neu with a correlation coefficient of -0.877. SYP was not correlated with Tau, neither was Neu with Tau. Compared with the control group, the number of synaptic vesicles decreased, and Post-Synaptic Density (PSD) thickness increased 6-12 h after HI. At 12-24 h after HI, the number of synaptic vesicles increased, and PSD thickness slightly decreased. At 24-48 h after HI, the vesicle number decreased, PSD became thinner, interrupting continuity, mitochondria swelled, and mitochondrial cristae blurred and disappeared. The findings suggest that the expression of Tau, SYP, and Neu is linked to alterations in synaptic and myelin structures, reflecting varying aspects of neural plasticity following HI injury.

摘要

本研究采用以下方法探究缺氧缺血(HI)损伤对新生仔猪神经可塑性的影响:利用磁共振波谱(H-MRS)成像分析tau蛋白水平的动态变化,采用免疫荧光染色评估突触素(SYP)、神经黏蛋白(Neu)和tau蛋白,并运用透射电子显微镜(TEM)在多个时间点检测突触超微结构。共纳入59只健康新生仔猪,其中对照组10只,HI模型组43只。结果表明,HI后6 - 12小时SYP免疫染色强度达到峰值,随后下降。Neu表达最初下降,随后短暂升高,之后又降低,在HI后6 - 12小时达到最低水平。HI后tau蛋白水平最初升高,在HI后24 - 48小时达到峰值,随后下降。SYP与Neu呈负相关,相关系数为-0.877。SYP与Tau不相关,Neu与Tau也不相关。与对照组相比,HI后6 - 12小时突触小泡数量减少,突触后致密部(PSD)厚度增加。HI后12 - 24小时,突触小泡数量增加,PSD厚度略有下降。HI后24 - 48小时,小泡数量减少,PSD变薄,连续性中断,线粒体肿胀,线粒体嵴模糊并消失。这些发现表明,Tau、SYP和Neu的表达与突触和髓鞘结构的改变有关,反映了HI损伤后神经可塑性的不同方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83df/12102000/f0e7ee62df14/11064_2025_4421_Fig1_HTML.jpg

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