Department of Neuroscience, University of Minnesota, Minneapolis, Minnesota, USA.
Glia. 2022 Mar;70(3):508-521. doi: 10.1002/glia.24119. Epub 2021 Nov 12.
The brain requires an adequate supply of oxygen and nutrients to maintain proper function as neuronal activity varies. This is achieved, in part, through neurovascular coupling mechanisms that mediate local increases in blood flow through the dilation of arterioles and capillaries. The role of astrocytes in mediating this functional hyperemia response is controversial. Specifically, the function of astrocyte Ca signaling is unclear. Cortical arterioles dilate in the absence of astrocyte Ca signaling, but previous work suggests that Ca increases are necessary for capillary dilation. This question has not been fully addressed in vivo, however, and we have reexamined the role of astrocyte Ca signaling in vessel dilation in the barrel cortex of awake, behaving mice. We recorded evoked vessel dilations and astrocyte Ca signaling in response to whisker stimulation. Experiments were carried out on WT and IP3R2 KO mice, a transgenic model where astrocyte Ca signaling is substantially reduced. Compared to WT mice at rest, Ca signaling in astrocyte endfeet contacting capillaries increased by 240% when whisker stimulation evoked running. In contrast, Ca signaling was reduced to 9% of WT values in IP3R2 KO mice. In all three conditions, however, the amplitude of capillary dilation was largely unchanged. In addition, the latency to the onset of astrocyte Ca signaling lagged behind dilation onset in most trials, although a subset of rapid onset Ca events with latencies as short as 0.15 s occurred. In summary, we found that whisker stimulation-evoked capillary dilations occurred independent of astrocyte Ca increases in the cerebral cortex.
大脑需要充足的氧气和营养供应来维持神经元活动变化时的正常功能。这部分是通过神经血管耦合机制来实现的,该机制通过动脉和毛细血管的扩张来介导局部血流量的增加。星形胶质细胞在介导这种功能充血反应中的作用存在争议。具体来说,星形胶质细胞 Ca 信号的功能尚不清楚。皮质动脉在没有星形胶质细胞 Ca 信号的情况下扩张,但之前的工作表明 Ca 增加对于毛细血管扩张是必要的。然而,这个问题在体内尚未得到充分解决,我们重新检查了星形胶质细胞 Ca 信号在清醒、行为小鼠大脑皮层血管扩张中的作用。我们记录了对胡须刺激的诱发血管扩张和星形胶质细胞 Ca 信号。实验在 WT 和 IP3R2 KO 小鼠上进行,后者是一种星形胶质细胞 Ca 信号显著降低的转基因模型。与休息时的 WT 小鼠相比,当胡须刺激引起奔跑时,与毛细血管接触的星形胶质细胞终足的 Ca 信号增加了 240%。相比之下,在 IP3R2 KO 小鼠中,Ca 信号降低到 WT 值的 9%。然而,在所有三种情况下,毛细血管扩张的幅度基本保持不变。此外,在大多数试验中,星形胶质细胞 Ca 信号的起始与扩张起始之间存在延迟,尽管在一小部分快速起始的 Ca 事件中,延迟时间短至 0.15 秒。总之,我们发现,在大脑皮层中,胡须刺激引起的毛细血管扩张独立于星形胶质细胞 Ca 的增加。