Gouty-Colomer Laurie-Anne, Michel François J, Baude Agnès, Lopez-Pauchet Catherine, Dufour Amandine, Cossart Rosa, Hammond Constance
INSERM U901, Marseille, France.
Aix-Marseille University, UMR 901, Marseille, France.
J Comp Neurol. 2018 Feb 1;526(2):275-284. doi: 10.1002/cne.24334. Epub 2017 Oct 13.
The neuronal population of the subthalamic nucleus (STN) has the ability to prolong incoming cortical excitation. This could result from intra-STN feedback excitation. The combination of inducible genetic fate mapping techniques with in vitro targeted patch-clamp recordings, allowed identifying a new type of STN neurons that possess a highly collateralized intrinsic axon. The time window of birth dates was found to be narrow (E10.5-E14.5) with very few STN neurons born at E10.5 or E14.5. The fate mapped E11.5-12.5 STN neuronal population included 20% of neurons with profuse axonal branching inside the nucleus and a dendritic arbor that differed from that of STN neurons without local axon collaterals. They had intrinsic electrophysiological properties and in particular, the ability to generate plateau potentials, similar to that of STN neurons without local axon collaterals and more generally to that of classically described STN neurons. This suggests that a subpopulation of STN neurons forms a local glutamatergic network, which together with plateau potentials, allow amplification of hyperdirect cortical inputs and synchronization of the STN neuronal population.
丘脑底核(STN)的神经元群体具有延长传入皮层兴奋的能力。这可能源于STN内的反馈兴奋。可诱导的遗传命运图谱技术与体外靶向膜片钳记录相结合,使得能够鉴定出一种具有高度侧支化固有轴突的新型STN神经元。发现出生日期的时间窗口很窄(E10.5 - E14.5),在E10.5或E14.5出生的STN神经元很少。命运图谱显示,E11.5 - 12.5的STN神经元群体中,有20%的神经元在核内有丰富的轴突分支,其树突分支与没有局部轴突侧支的STN神经元不同。它们具有内在的电生理特性,特别是产生平台电位的能力,这与没有局部轴突侧支的STN神经元类似,更普遍地与经典描述的STN神经元类似。这表明STN神经元的一个亚群形成了一个局部谷氨酸能网络,该网络与平台电位一起,能够放大超直接皮层输入并使STN神经元群体同步。