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Both synaptic and intrinsic mechanisms underlie the different properties of population bursts in the hippocampal CA3 area of immature versus adult rats

机译:突触和内在机制均是未成年大鼠与成年大鼠海马CA3区群体爆发不同特性的基础

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摘要

Pharmacological blockade of GABAA receptors on CA3 pyramidal cells in hippocampal slices from immature rats (i.e. second to third postnatal weeks), compared to CA3 slices from adult rats, is known to cause prolonged burst discharges (i.e. several seconds vs. tens of milliseconds). Synaptic and intrinsic mechanisms responsible for this developmental difference in burst duration were analysed in isolated minislices of the CA3 area. The frequency and amplitude of spontaneous EPSCs in CA3 pyramidal cells were greater in slices from immature than mature rats. In the presence of GABAA- and GABAB-receptor antagonists, the burst discharges of immature CA3 pyramidal cells were still prolonged in thinner slices (350 μm, vs. 450 μm in adults, to compensate for developmental differences in neuronal density) and in NMDA- and mGlu1-receptor antagonists. The AMPA receptor antagonist DNQX blocked the remaining burst discharges, suggesting that differences in recurrent excitatory circuits contributed to the prolonged bursts of immature CA3 pyramidal cells. In slices from immature versus adult rats, the CA3 recurrent synaptic responses showed potentiation to repetitive stimulation, suggestive of a lower transmitter release probability. The intrinsic firing ability was greater in CA3 pyramidal neurons from immature than adult rats, and the medium-duration afterhyperpolarization was smaller. These data suggest that, compared to adults, the CA3 area of immature rats contains a more robust recurrent excitatory synaptic network, greater intrinsic membrane excitability, and an increased capacity for sustained transmitter release, which together may account for the more prolonged network bursts in immature versus adult CA3.
机译:与成年大鼠的CA3切片相比,未成年大鼠(即产后第二至第三周)海马切片的CA3锥体细胞上GABAA受体的药理阻断作用已知会导致爆发放电时间延长(即几秒钟对数十毫秒)。在CA3区域的孤立小切片中分析了导致持续时间这种发育差异的突触和内在机制。未成熟切片中CA3锥体细胞中自发EPSC的频率和幅度要大于成熟大鼠。在存在GABAA和GABAB受体拮抗剂的情况下,未成熟的CA3锥体细胞的爆发放电仍在较薄的切片中得以延长(成人为350μm,而成人为450μm,以补偿神经元密度的发育差异)和NMDA-和mGlu1-受体拮抗剂。 AMPA受体拮抗剂DNQX阻止了其余的爆发放电,表明复发性兴奋回路的差异导致未成熟CA3锥体细胞的爆发延长。在未成熟大鼠与成年大鼠的切片中,CA3反复突触反应显示出对重复刺激的增强作用,提示较低的递质释放概率。未成熟的CA3锥体神经元的内在放电能力比成年大鼠更大,超极化后的中位持续时间较小。这些数据表明,与成年大鼠相比,未成熟大鼠的CA3区域包含更强大的复发性兴奋性突触网络,更大的内在膜兴奋性以及持续释放递质的能力增强,这可能共同解释了未成熟大鼠的网络爆发时间更长与成人CA3。

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