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首页> 外文期刊>Brain research >Hyperpolarization-activated current (I(h)): A characterization of subicular neurons in brain slices from socially and individually housed rats.
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Hyperpolarization-activated current (I(h)): A characterization of subicular neurons in brain slices from socially and individually housed rats.

机译:超极化激活电流(I(h)):来自社交和单独饲养的大鼠的脑片中亚皮层神经元的特征。

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The hyperpolarization and cyclic nucleotide activated current I(h) is thought to have a role in rhythmic brain activity that is important in complex behaviors and might be perturbed in some neuropsychiatric diseases. We have used whole-cell voltage and current clamp techniques to characterize I(h) in neurons from the subiculum-the major output region of the hippocampal formation. Subicular projection neurons are themselves classifiable as intrinsically bursting (IB) or regular spiking (RS) and I(h) is present in both. Given the possible involvement of I(h) in neuropsychiatric diseases, we have also characterized I(h) in subicular neurons from rats that have been housed in individual cages (though still able to see, smell, and hear other rats) as these rats can display behavioral changes similar to those seen in schizophrenia. Individual housing is associated with a 4.4-mV depolarization of the I(h) activation curve (P = 0.0027) and an increase in mean firing rate measured in response to current injection (P = 0.037) specifically in RS neurons and a change in the relative amplitude of I(h) between IB and RS neurons. Thus, we have shown significant changes in a current thought to be relevant to psychiatric disease in a partial model of schizophrenia. Its further investigation might reveal chemical targets for novel antipsychotic drugs.
机译:超极化和环状核苷酸激活电流I(h)被认为在节律性脑活动中起作用,这在复杂行为中很重要,在某些神经精神疾病中可能会受到干扰。我们已经使用全细胞电压和电流钳技术来表征下丘脑(海马结构的主要输出区域)的神经元中的I(h)。亚投射性神经元本身可分为固有爆发(IB)或常规爆发(RS),并且两者中都存在I(h)。考虑到I(h)可能与神经精神疾病有关,我们还对这些大鼠的亚皮层神经元中的I(h)进行了表征,这些大鼠被关在单个笼子中(尽管仍然能够看见,闻到和听到其他大鼠的声音)可以显示出与精神分裂症相似的行为变化。单个外壳与I(h)激活曲线的4.4 mV去极化(P = 0.0027)和响应电流注入而测得的平均放电速率增加(P = 0.037)有关,特别是在RS神经元中,并且IB和RS神经元之间I(h)的相对振幅。因此,我们在精神分裂症的部分模型中显示了与精神疾病有关的当前思想的重大变化。其进一步的研究可能揭示新型抗精神病药的化学靶标。

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