Araque A, Parpura V, Sanzgiri R P, Haydon P G
Laboratory of Cellular Signaling, Dept of Zoology and Genetics, Iowa State University, Ames, IA 50011, USA.
Trends Neurosci. 1999 May;22(5):208-15. doi: 10.1016/s0166-2236(98)01349-6.
According to the classical view of the nervous system, the numerically superior glial cells have inferior roles in that they provide an ideal environment for neuronal-cell function. However, there is a wave of new information suggesting that glia are intimately involved in the active control of neuronal activity and synaptic neurotransmission. Recent evidence shows that glia respond to neuronal activity with an elevation of their internal Ca2+ concentration, which triggers the release of chemical transmitters from glia themselves and, in turn, causes feedback regulation of neuronal activity and synaptic strength. In view of these new insights, this article suggests that perisynaptic Schwann cells and synaptically associated astrocytes should be viewed as integral modulatory elements of tripartite synapses.
根据神经系统的经典观点,数量上占优势的神经胶质细胞所起的作用较小,因为它们为神经元细胞功能提供了理想的环境。然而,新的信息表明,神经胶质细胞密切参与神经元活动和突触神经传递的主动控制。最近的证据表明,神经胶质细胞会随着内部钙离子浓度的升高对神经元活动做出反应,这会触发神经胶质细胞自身释放化学递质,进而对神经元活动和突触强度产生反馈调节。鉴于这些新的见解,本文认为突触周围的施万细胞和与突触相关的星形胶质细胞应被视为三方突触的组成性调节元件。