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大鼠脊髓切片中已鉴定神经胶质细胞内谷氨酸、红藻氨酸和N-甲基-D-天冬氨酸诱发的膜电流

Glutamate-, kainate- and NMDA-evoked membrane currents in identified glial cells in rat spinal cord slice.

作者信息

Ziak D, Chvátal A, Syková E

机构信息

Department of Neuroscience, Institute of Experimental Medicine, Academy of Sciences of the Czech Republic, Prague, Czech Republic.

出版信息

Physiol Res. 1998;47(5):365-75.

Abstract

The effect of L-glutamate, kainate and N-methyl-D-aspartate (NMDA) on membrane currents of astrocytes, oligodendrocytes and their respective precursors was studied in acute spinal cord slices of rats between the ages of postnatal days 5 and 13 using the whole-cell patch-clamp technique. L-glutamate (10(-3) M), kainate (10(-3) M), and NMDA (2x10(-3) M) evoked inward currents in all glial cells. Kainate evoked larger currents in precursors than in astrocytes and oligodendrocytes, while NMDA induced larger currents in astrocytes and oligodendrocytes than in precursors. Kainate-evoked currents were blocked by the AMPA/kainate receptor antagonist CNQX (10(-4) M) and were, with the exception of the precursors, larger in dorsal than in ventral horns, as were NMDA-evoked currents. Currents evoked by NMDA were unaffected by CNQX and, in contrast to those seen in neurones, were not sensitive to Mg2+. In addition, they significantly decreased during development and were present when synaptic transmission was blocked in a Ca2+-free solution. NMDA-evoked currents were not abolished during the block of K+ inward currents in glial cells by Ba2+; thus they are unlikely to be mediated by an increase in extracellular K+ during neuronal activity. We provide evidence that spinal cord glial cells are sensitive to the application of L-glutamate, kainate and transiently, during postnatal development, to NMDA.

摘要

采用全细胞膜片钳技术,研究了L-谷氨酸、海人酸和N-甲基-D-天冬氨酸(NMDA)对出生后5至13日龄大鼠急性脊髓切片中星形胶质细胞、少突胶质细胞及其各自前体细胞的膜电流的影响。L-谷氨酸(10⁻³M)、海人酸(10⁻³M)和NMDA(2×10⁻³M)在所有神经胶质细胞中均诱发内向电流。海人酸在前体细胞中诱发的电流大于在星形胶质细胞和少突胶质细胞中诱发的电流,而NMDA在星形胶质细胞和少突胶质细胞中诱发的电流大于在前体细胞中诱发的电流。海人酸诱发的电流被AMPA/海人酸受体拮抗剂CNQX(10⁻⁴M)阻断,除前体细胞外,背角中的电流大于腹角中的电流,NMDA诱发的电流也是如此。NMDA诱发的电流不受CNQX影响,与神经元中的情况不同,对Mg²⁺不敏感。此外,它们在发育过程中显著降低,并且在无Ca²⁺溶液中阻断突触传递时仍然存在。在Ba²⁺阻断神经胶质细胞中K⁺内向电流期间,NMDA诱发的电流并未消除;因此,它们不太可能由神经元活动期间细胞外K⁺的增加介导。我们提供的证据表明,脊髓神经胶质细胞对L-谷氨酸、海人酸的应用敏感,并且在出生后发育过程中对NMDA短暂敏感。

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