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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Glutamate pretreatment affects Ca2+ signaling in processes of astrocyte pairs.
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Glutamate pretreatment affects Ca2+ signaling in processes of astrocyte pairs.

机译:谷氨酸盐预处理会影响星形胶质细胞对过程中的Ca2 +信号传导。

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Simultaneous somatic patch-pipette recording of a single astrocyte to evoke voltage-gated calcium currents, and Ca(2+) imaging, were used to study the spatial and temporal profiles of depolarization-induced changes in intracellular Ca(2+) ([Ca(2+)](i)) in the processes of cultured rat cortical astrocytes existing as pairs. Transient Ca(2+) changes locked to depolarization were observed as microdomains in the processes of the astrocyte pairs, and the responses were more pronounced in the adjoining astrocyte. Considering the functional significance of higher concentrations of glutamate observed in certain pathological conditions, Ca(2+) transients were recorded following pretreatment of cells with glutamate (500 microM for 20 min). This showed distance-dependent incremental scaling and attenuation in the presence of the metabotropic glutamate receptor (mGluR) antagonist, alpha-methyl(4-carboxy-phenyl) glycine (MCPG). Estimation of local Ca(2+) diffusion coefficients in the astrocytic processes indicated higher values in the adjoining astrocyte of the glutamate pretreated group. Intracellular heparin introduced into the depolarized astrocyte did not affect the Ca(2+) transients in the heparin-loaded astrocyte but attenuated the [Ca(2+)](i) responses in the adjoining astrocyte, suggesting that inositol 1,4,5 triphosphate (IP(3)) may be the transfer signal. The uncoupling agent, 1-octanol, attenuated the [Ca(2+)](i) responses in both the control and glutamate pretreated astrocytes, indicating the role of gap junctional communication. Our studies indicate that individual astrocytes have distinct functional domains, and that the glutamate-induced alterations in Ca(2+) signaling involve a sequence of intra- and intercellular steps in which phospholipase C (PLC), IP(3), internal Ca(2+) stores, VGCC and gap junction channels appear to play an important role.
机译:同时体细胞贴片移液器记录单个星形胶质细胞引起电压门控钙电流和Ca(2+)成像,用于研究去极化诱导的细胞内Ca(2+)变化的时空分布([Ca (2 +)](i))在成对存在的大鼠皮质星形胶质细胞的培养过程中。瞬态Ca(2+)锁定为去极化的变化被观察为星形胶质细胞对过程中的微区,并且在相邻的星形胶质细胞中反应更为明显。考虑到在某些病理条件下观察到更高浓度的谷氨酸盐的功能重要性,在用谷氨酸盐预处理细胞(500 microM,20分钟)后记录了Ca(2+)瞬变。这表明在代谢型谷氨酸受体(mGluR)拮抗剂,α-甲基(4-羧基-苯基)甘氨酸(MCPG)存在下,距离依赖的增量缩放和衰减。星形细胞过程中局部Ca(2+)扩散系数的估计表明谷氨酸预处理组的相邻星形胶质细胞中较高的值。引入去极化星形胶质细胞内的肝素不会影响肝素负载的星形胶质细胞中的Ca(2+)瞬变,但会减弱相邻星形胶质细胞中的[Ca(2 +)](i)反应,表明肌醇1,4,5三磷酸酯(IP(3))可能是转移信号。解偶联剂1-辛醇在对照和谷氨酸预处理的星形胶质细胞中均减弱[Ca(2 +)](i)反应,表明间隙连接通讯的作用。我们的研究表明,单个星形胶质细胞具有不同的功能域,并且谷氨酸诱导的Ca(2+)信号转导涉及细胞内和细胞间步骤的序列,其中磷脂酶C(PLC),IP(3),内部Ca( 2+)库,VGCC和间隙连接通道似乎起着重要作用。

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