Neonatal ketamine exposure impairs infrapyramidal bundle pruning and causes lasting increase in excitatory synaptic transmission in hippocampal CA3 neurons

被引:6
|
作者
Cabrera, Omar Hosea [1 ]
Useinovic, Nemanja [1 ]
Maksimovic, Stefan [1 ]
Near, Michelle [1 ]
Quillinan, Nidia [1 ,3 ]
Todorovic, Slobodan M. [1 ,3 ]
Jevtovic-Todorovic, Vesna [1 ,2 ]
机构
[1] Univ Colorado, Dept Anesthesiol, Sch Med, Anschutz Med Campus, Aurora, CO 80045 USA
[2] Univ Colorado, Dept Pharmacol, Sch Med, Anschutz Med Campus, Aurora, CO 80045 USA
[3] Univ Colorado, Neurosci Grad Program, Sch Med, Anschutz Med Campus, Aurora, CO USA
关键词
Glutamate; hippocampus; Neonate; Neurotoxicity; Neurotransmission; GENERAL-ANESTHESIA; SPONTANEOUS NEUROTRANSMISSION; APOPTOTIC NEURODEGENERATION; NEUROTROPHIC FACTOR; PRENATAL EXPOSURE; ETHANOL; BRAIN; AXON; CELLS; ORGANIZATION;
D O I
10.1016/j.nbd.2022.105923
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Preclinical models demonstrate that nearly all anesthetics cause widespread neuroapoptosis in the developing brains of infant rodents and non-human primates. Anesthesia-induced developmental apoptosis is succeeded by prolonged neuropathology in the surviving neurons and lasting cognitive impairments, suggesting that anes-thetics interfere with the normal developmental trajectory of the brain. However, little is known about effects of anesthetics on stereotyped axonal pruning, an important developmental algorithm that sculpts neural circuits for proper function. Here, we proposed that neonatal ketamine exposure may interfere with stereotyped axonal pruning of the infrapyramidal bundle (IPB) of the hippocampal mossy fiber system and that impaired pruning may be associated with alterations in the synaptic transmission of CA3 neurons. To test this hypothesis, we injected postnatal day 7 (PND7) mouse pups with ketamine or vehicle over 6 h and then studied them at different developmental stages corresponding to IPB pruning (PND20-40). Immunohistochemistry with synaptoporin (a marker of mossy fibers) revealed that in juvenile mice treated with ketamine at PND7, but not in vehicle-treated controls, positive IPB fibers extended farther into the stratum pyramidale of CA3 region. Furthermore, immu-nofluorescent double labeling for synaptoporin and PSD-95 strongly suggested that the unpruned IPB caused by neonatal ketamine exposure makes functional synapses. Importantly, patch-clamp electrophysiology for minia-ture excitatory postsynaptic currents (mEPSCs) in acute brain slices ex vivo revealed increased frequency and amplitudes of mEPSCs in hippocampal CA3 neurons in ketamine-treated groups when compared to vehicle controls. We conclude that neonatal ketamine exposure interferes with normal neural circuit development and that this interference leads to lasting increase in excitatory synaptic transmission in hippocampus.
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页数:10
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