Kassam Sameera M, Herman Patrick M, Goodfellow Nathalie M, Alves Nyresa C, Lambe Evelyn K
Departments of Physiology and Obstetrics and Gynaecology, University of Toronto, Toronto, Ontario, Canada.
J Neurosci. 2008 Aug 27;28(35):8756-64. doi: 10.1523/JNEUROSCI.2645-08.2008.
In this study, we show robust nicotinic excitation of pyramidal neurons in layer VI of prefrontal cortex. This layer contains the corticothalamic neurons, which gate thalamic activity and play a critical role in attention. Our experiments tested nicotinic excitation across postnatal development, using whole-cell recordings in prefrontal brain slices from rats. These experiments showed that layer VI neurons have peak nicotinic currents during the first postnatal month, a time period of intensive cortical development in rodents. We demonstrate that these currents are mediated directly by postsynaptic nicotinic receptors and can be suppressed by a competitive antagonist of alpha(4)beta(2)* nicotinic receptors. To record from identified corticothalamic neurons, we performed stereotaxic surgery to label the neurons projecting to medial dorsal thalamus. As hypothesized, recordings from these retrogradely labeled neurons in layer VI showed prominent nicotinic currents. Finally, we examined the effects of the drug nicotine on layer VI neurons and probed for the potential involvement of the accessory subunit, alpha(5), in their receptors. A level of nicotine similar to that found in the blood of smokers elicits a stable inward current in layer VI neurons, yet this exposure desensitizes approximately 50% of the subsequent current elicited by acetylcholine. An allosteric modulator of alpha(4)beta(2)alpha(5) receptors resulted in a 2.5-fold potentiation of submaximal nicotinic currents. This result is consistent with the expression of the relatively rare alpha(5) nicotinic subunit in layer VI. In summary, we show that layer VI corticothalamic neurons can be strongly excited during development by an unusual subtype of nicotinic receptor.
在本研究中,我们展示了前额叶皮层VI层锥体细胞强大的烟碱样兴奋作用。该层包含皮质丘脑神经元,它们控制丘脑活动并在注意力方面发挥关键作用。我们的实验利用大鼠前额叶脑片的全细胞记录,测试了出生后发育过程中的烟碱样兴奋作用。这些实验表明,VI层神经元在出生后的第一个月有烟碱样电流峰值,这是啮齿动物皮层密集发育的时期。我们证明这些电流由突触后烟碱样受体直接介导,并且可被α(4)β(2)*烟碱样受体的竞争性拮抗剂抑制。为了记录已识别的皮质丘脑神经元,我们进行了立体定位手术以标记投射到内侧背侧丘脑的神经元。如所假设的那样,对这些VI层逆行标记神经元的记录显示出明显的烟碱样电流。最后,我们研究了药物尼古丁对VI层神经元的影响,并探究了辅助亚基α(5)在其受体中的潜在作用。与吸烟者血液中发现的尼古丁水平相似的尼古丁浓度会在VI层神经元中引发稳定的内向电流,但这种暴露会使随后由乙酰胆碱引发的电流约50%脱敏。α(4)β(2)α(5)受体的变构调节剂使次最大烟碱样电流增强了2.5倍。这一结果与VI层中相对罕见的α(5)烟碱样亚基的表达一致。总之,我们表明VI层皮质丘脑神经元在发育过程中可被一种不寻常的烟碱样受体亚型强烈兴奋。