Hassinger T D, Guthrie P B, Atkinson P B, Bennett M V, Kater S B
Department of Neurobiology and Anatomy, University of Utah, Salt Lake City 84132, USA.
Proc Natl Acad Sci U S A. 1996 Nov 12;93(23):13268-73. doi: 10.1073/pnas.93.23.13268.
Focally evoked calcium waves in astrocyte cultures have been thought to propagate by gap-junction-mediated intercellular passage of chemical signal(s). In contrast to this mechanism we observed isolated astrocytes, which had no physical contact with other astrocytes in the culture, participating in a calcium wave. This observation requires an extracellular route of astrocyte signaling. To directly test for extracellular signaling we made cell-free lanes 10-300 microns wide in confluent cultures by deleting astrocytes with a glass pipette. After 4-8 hr of recovery, regions of confluent astrocytes separated by lanes devoid of cells were easily located. Electrical stimulation was used to initiate calcium waves. Waves crossed narrow (< 120 microns) cell-free lanes in 15 of 36 cases, but failed to cross lanes wider than 120 microns in eight of eight cases. The probability of crossing narrow lanes was not correlated with the distance from the stimulation site, suggesting that cells along the path of the calcium wave release the extracellular messenger(s). Calculated velocity across the acellular lanes was not significantly different from velocity through regions of confluent astrocytes. Focal superfusion altered both the extent and the direction of calcium waves in confluent regions. These data indicate that extracellular signals may play a role in astrocyte-astrocyte communication in situ.
星形胶质细胞培养物中局部诱发的钙波一直被认为是通过间隙连接介导的化学信号在细胞间传递来传播的。与这种机制不同的是,我们观察到在培养物中与其他星形胶质细胞没有物理接触的孤立星形胶质细胞也参与了钙波。这一观察结果表明存在星形胶质细胞信号传导的细胞外途径。为了直接测试细胞外信号传导,我们用玻璃移液管去除汇合培养物中的星形胶质细胞,制造出宽度为10 - 300微米的无细胞通道。恢复4 - 8小时后,很容易定位被无细胞通道隔开的汇合星形胶质细胞区域。使用电刺激来引发钙波。在36例中有15例钙波穿过了狭窄(< 120微米)的无细胞通道,但在8例中,钙波未能穿过宽度超过120微米的通道。穿过狭窄通道的概率与距刺激位点的距离无关,这表明沿着钙波路径的细胞释放了细胞外信使。计算得出的穿过无细胞通道的速度与通过汇合星形胶质细胞区域的速度没有显著差异。局部灌注改变了汇合区域中钙波的范围和方向。这些数据表明细胞外信号可能在原位星形胶质细胞 - 星形胶质细胞通讯中发挥作用。