School of Life and Health Sciences, Aston Triangle, Aston University, Birmingham, UK.
Eur J Neurosci. 2010 Jul;32(1):29-40. doi: 10.1111/j.1460-9568.2010.07281.x.
The rodent ventrobasal (VB) thalamus receives sensory inputs from the whiskers and projects to the cortex, from which it receives reciprocal excitatory afferents. Much is known about the properties and functional roles of these glutamatergic inputs to thalamocortical neurons in the VB, but no data are available on how these afferents can affect thalamic glial cells. In this study, we used combined electrophysiological recordings and intracellular calcium (Ca(2+)) imaging to investigate glial cell responses to synaptic afferent stimulation. VB thalamus glial cells can be divided into two groups based on their Ca(2+) and electrophysiological responses to sensory and corticothalamic stimulation. One group consists of astrocytes, which stain positively for S100B and preferentially load with SR101, have linear current-voltage relations and low input resistance, show no voltage-dependent Ca(2+) responses, but express mGluR5-dependent Ca(2+) transients following stimulation of the sensory and/or corticothalamic excitatory afferent pathways. Cells of the other glial group, by contrast, stain positively for NG2, and are characterized by high input resistance, the presence of voltage-dependent Ca(2+) elevations and voltage-gated inward currents. There were no synaptically induced Ca(2+) elevations in these cells under control conditions. These results show that thalamic glial cell responses to synaptic input exhibit different properties to those of thalamocortical neurons. As VB astrocytes can respond to synaptic stimulation and signal to neighbouring neurons, this glial cell organization may have functional implications for the processing of somatosensory information and modulation of behavioural state-dependent thalamocortical network activities.
鼠类腹侧基底(VB)丘脑接收来自胡须的感觉输入,并投射到皮层,皮层从中接收交互兴奋性传入。VB 丘脑神经元的这些谷氨酸能传入的特性和功能作用已经有很多了解,但关于这些传入如何影响丘脑胶质细胞的数据尚不清楚。在这项研究中,我们使用了联合电生理记录和细胞内钙离子(Ca(2+))成像来研究胶质细胞对突触传入刺激的反应。VB 丘脑胶质细胞可以根据它们对感觉和皮质丘脑刺激的Ca(2+)和电生理反应分为两组。一组由星形胶质细胞组成,这些细胞对 S100B 呈阳性染色,优先加载 SR101,具有线性电流-电压关系和低输入电阻,对感觉和/或皮质丘脑兴奋性传入通路的刺激没有电压依赖性Ca(2+)反应,但表达 mGluR5 依赖性Ca(2+)瞬变。相比之下,另一个胶质细胞群的细胞对 NG2 呈阳性染色,其特征是高输入电阻、存在电压依赖性Ca(2+)升高和电压门控内向电流。在对照条件下,这些细胞中没有突触诱导的Ca(2+)升高。这些结果表明,丘脑胶质细胞对突触输入的反应与丘脑皮质神经元的反应具有不同的特性。由于 VB 星形胶质细胞可以对突触刺激作出反应并向邻近神经元发出信号,因此这种胶质细胞组织可能对感觉信息的处理和行为状态相关的丘脑皮质网络活动的调制具有功能意义。