Hypoxic-Ischemic Insult Alters Polyamine and Neurotransmitter Abundance in the Specific Neonatal Rat Brain Subregions

被引:0
作者
Macha, Hynek [1 ,2 ]
Luptakova, Dominika [1 ,3 ,4 ]
Juranek, Ivo [5 ]
Andren, Per E. [3 ]
Havlicek, Vladimir [1 ,2 ]
机构
[1] Czech Acad Sci, Inst Microbiol, Prague 14200, Czech Republic
[2] Palacky Univ, Fac Sci, Dept Analyt Chem, Olomouc 77146, Czech Republic
[3] Uppsala Univ, Dept Pharmaceut Biosci, Sci Life Lab, Spatial Mass Spectrometry, S-75124 Uppsala, Sweden
[4] Slovak Acad Sci, Biomed Res Ctr, Bratislava 84505, Slovakia
[5] Slovak Acad Sci, Ctr Expt Med, Bratislava 84104, Slovakia
来源
ACS CHEMICAL NEUROSCIENCE | 2024年 / 15卷 / 15期
基金
瑞典研究理事会;
关键词
neonatal hypoxic-ischemic encephalopathy; MALDI massspectrometry imaging; metabolome dynamics; histology; cerebrospinal fluid; polyamines; neurotransmitters; MAGNETIC-RESONANCE-SPECTROSCOPY; CEREBRAL-ISCHEMIA; IN-VIVO; INJURY; NEUROPROTECTION; MODELS; ENCEPHALOPATHY; RECEPTORS; OXYGEN;
D O I
10.1021/acschemneuro.4c00190
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Neonatal hypoxic-ischemic (HI) brain insult is a major cause of neonatal mortality and morbidity. To assess the underlying pathological mechanisms, we mapped the spatiotemporal changes in polyamine, amino acid, and neurotransmitter levels, following HI insult (by the Rice-Vannucci method) in the brains of seven-day-old rat pups. Matrix-assisted laser desorption/ionization mass spectrometry imaging of chemically modified small-molecule metabolites by 4-(anthracen-9-yl)-2-fluoro-1-methylpyridin-1-ium iodide revealed critical HI-related metabolomic changes of 22 metabolites in 14 rat brain subregions,Neonatal hypoxic-ischemic (HI) brain insult is a major cause of neonatal mortality and morbidity. To assess the underlying pathological mechanisms, we mapped the spatiotemporal changes in polyamine, amino acid, and neurotransmitter levels, following HI insult (by the Rice-Vannucci method) in the brains of seven-day-old rat pups. Matrix-assisted laser desorption/ionization mass spectrometry imaging of chemically modified small-molecule metabolites by 4-(anthracen-9-yl)-2-fluoro-1-methylpyridin-1-ium iodide revealed critical HI-related metabolomic changes of 22 metabolites in 14 rat brain subregions, much earlier than light microscopy detected signs of neuronal damage. For the first time, we demonstrated excessive polyamine oxidation and accumulation of 3-aminopropanal in HI neonatal brains, which was later accompanied by neuronal apoptosis enhanced by increases in glycine and norepinephrine in critically affected brain regions. Specifically, putrescine, cadaverine, and 3-aminopropanal increased significantly as early as 12 h postinsult, mainly in motor and somatosensory cortex, hippocampus, and midbrain, followed by an increase in norepinephrine 24 h postinsult, which was predominant in the caudate putamen, the region most vulnerable to HI. The decrease of gamma-aminobutyric acid (GABA) and the continuous dysregulation of the GABAergic system together with low taurine levels up to 36 h sustained progressive neurodegenerative cellular processes. The molecular alterations presented here at the subregional rat brain level provided unprecedented insight into early metabolomic changes in HI-insulted neonatal brains, which may further aid in the identification of novel therapeutic targets for the treatment of neonatal HI encephalopathy. much earlier than light microscopy detected signs of neuronal damage. For the first time, we demonstrated excessive polyamine oxidation and accumulation of 3-aminopropanal in HI neonatal brains, which was later accompanied by neuronal apoptosis enhanced by increases in glycine and norepinephrine in critically affected brain regions. Specifically, putrescine, cadaverine, and 3-aminopropanal increased significantly as early as 12 h postinsult, mainly in motor and somatosensory cortex, hippocampus, and midbrain, followed by an increase in norepinephrine 24 h postinsult, which was predominant in the caudate putamen, the region most vulnerable to HI. The decrease of gamma-aminobutyric acid (GABA) and the continuous dysregulation of the GABAergic system together with low taurine levels up to 36 h sustained progressive neurodegenerative cellular processes. The molecular alterations presented here at the subregional rat brain level provided unprecedented insight into early metabolomic changes in HI-insulted neonatal brains, which may further aid in the identification of novel therapeutic targets for the treatment of neonatal HI encephalopathy.
引用
收藏
页码:2811 / 2821
页数:11
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