Hoogland Tycho M, Kuhn Bernd, Göbel Werner, Huang Wenying, Nakai Junichi, Helmchen Fritjof, Flint Jane, Wang Samuel S-H
Department of Molecular Biology and Princeton Neuroscience Institute, Princeton University, Lewis Thomas Laboratory, Washington Road, Princeton, NJ 08544, USA.
Proc Natl Acad Sci U S A. 2009 Mar 3;106(9):3496-501. doi: 10.1073/pnas.0809269106. Epub 2009 Feb 11.
Multicellular glial calcium waves may locally regulate neural activity or brain energetics. Here, we report a diffusion-driven astrocytic signal in the normal, intact brain that spans many astrocytic processes in a confined volume without fully encompassing any one cell. By using 2-photon microscopy in rodent cerebellar cortex labeled with fluorescent indicator dyes or the calcium-sensor protein G-CaMP2, we discovered spontaneous calcium waves that filled approximately ellipsoidal domains of Bergmann glia processes. Waves spread in 3 dimensions at a speed of 4-11 microm/s to a diameter of approximately 50 microm, slowed during expansion, and were reversibly blocked by P2 receptor antagonists. Consistent with the hypothesis that ATP acts as a diffusible trigger of calcium release waves, local ejection of ATP triggered P2 receptor-mediated waves that were refractory to repeated activation. Transglial waves represent a means for purinergic signals to act with local specificity to modulate activity or energetics in local neural circuits.
多细胞胶质钙波可能局部调节神经活动或脑能量代谢。在此,我们报告在正常完整大脑中一种由扩散驱动的星形胶质细胞信号,该信号在有限体积内跨越许多星形胶质细胞突起,但未完全覆盖任何一个细胞。通过在标记有荧光指示剂染料或钙传感器蛋白G-CaMP2的啮齿动物小脑皮质中使用双光子显微镜,我们发现自发钙波填充了伯格曼胶质细胞突起的大致椭圆形区域。波以4 - 11微米/秒的速度在三维空间中传播至直径约50微米,在扩展过程中变慢,并被P2受体拮抗剂可逆性阻断。与ATP作为钙释放波的可扩散触发剂这一假设一致,局部注射ATP触发了对重复激活具有不应性的P2受体介导的波。跨胶质波代表了嘌呤能信号以局部特异性方式作用于局部神经回路以调节活动或能量代谢的一种方式。