Institute of Neuroinformatics, ETH and University of Zurich, Zurich, Switzerland.
Glia. 2013 Apr;61(4):601-10. doi: 10.1002/glia.22458. Epub 2013 Jan 22.
Astrocytes play a crucial role in maintaining neuronal function and monitoring their activity. According to neuronal activity maps, the body is represented topographically in the somatosensory cortex. In rats, neighboring cortical areas receive forelimb (FL) and hindlimb (HL) sensory inputs. Whether astrocytic activity is also restricted to the cortical area receiving the respective peripheral sensory inputs is not known. Using wide field optical imaging we measured changes in the concentration of astrocytic calcium within the FL and HL sensorimotor cortex in response to peripheral sensory inputs. Mapping the calcium signals upon electrical stimulation of the forepaw and hindpaw we found activity largely restricted to the FL and HL area, respectively. In comparison to neuronal activity the time course of the astrocytic calcium activity was considerably slower. The signal took 6 s to peak after the onset of a 2 Hz and 2 s long electrical stimulation of the hindpaw and 8 s for a 4 s stimulation. The astrocytic signals were delayed relative to cerebral blood flow measured using laser speckle imaging. The intensity of both the astrocytic and neuronal signals in the HL sensorimotor cortex declined with increase in stimulation frequency. Moreover, blocking neuronal input by tetrodotoxin abolished astrocytic calcium signals. We suggest that the topographical representation of the body is not only true for cortical neurons but also for astrocytes. The maps and the frequency-dependent activations reflect strong reciprocal neuroglial communication and provide a new experimental approach to explore the role of astrocytes in health and disease.
星形胶质细胞在维持神经元功能和监测其活动方面起着至关重要的作用。根据神经元活动图谱,身体在躯体感觉皮层中呈拓扑分布。在大鼠中,相邻的皮质区接收前肢(FL)和后肢(HL)的感觉输入。星形胶质细胞的活动是否也仅限于接收相应外周感觉输入的皮质区尚不清楚。使用宽场光学成像,我们测量了对外周感觉输入的反应,在前肢和后肢感觉运动皮层中星形胶质细胞钙浓度的变化。在手掌和后掌电刺激时绘制钙信号图,我们发现活动主要局限于相应的 FL 和 HL 区域。与神经元活动相比,星形胶质细胞钙活动的时程要慢得多。在后肢 2 Hz 和 2 s 长电刺激开始后,信号在 6 s 达到峰值,而在 4 s 刺激后,信号在 8 s 达到峰值。与使用激光散斑成像测量的脑血流相比,星形胶质细胞信号存在延迟。HL 感觉运动皮层中星形胶质细胞和神经元信号的强度随着刺激频率的增加而降低。此外,用河豚毒素阻断神经元输入会消除星形胶质细胞钙信号。我们认为,身体的拓扑表示不仅适用于皮质神经元,也适用于星形胶质细胞。这些图谱和频率依赖性激活反映了强烈的神经胶质相互作用,并提供了一种新的实验方法来探索星形胶质细胞在健康和疾病中的作用。