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首页> 外文期刊>The European Journal of Neuroscience >Silent synapses onto interneurons in the rat CA1 stratum radiatum.
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Silent synapses onto interneurons in the rat CA1 stratum radiatum.

机译:沉默突触到大鼠CA1辐射层的中间神经元上。

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Glutamate transmission to gamma-aminobutyric acid (GABA)ergic interneurons and to principal neurons differs in various important respects. Whether these differences exist from an early developmental stage, or result from differential development from a more common state, is unclear. In the hippocampal CA1 area, glutamate transmission to the developing, but not to the adult, principal neurons is characterized by the presence of alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) silent synapses and of AMPA silencing induced by test pulse stimulation (0.03-1 Hz). In the present study, we examined whether this developmental difference in AMPA signaling is also true for glutamate transmission to CA1 stratum radiatum interneurons. We found that AMPA silent synapses onto these interneurons also exist, and that they can be generated by test pulse stimulation. In marked contrast to AMPA silencing in principal neurons, AMPA silencing in interneurons was not developmentally restricted, but was observed to the same extent after the first postnatal month as in the second postnatal week. In addition, we found that glutamate synapses onto these interneurons can also be N-methyl-d-aspartate (NMDA)-silent, that is, only AMPA-signaling. After test pulse stimulation, the AMPA-silent, the NMDA-silent and the AMPA/NMDA-signaling synapses onto the developing interneurons were estimated to be about equally frequent. These results highlight a diversity of glutamate signaling to CA1 stratum radiatum interneurons, and they indicate that the glutamate synapses onto pyramidal neurons and to interneurons can mature differentially.
机译:谷氨酸向γ-氨基丁酸(GABA)增能中神经元和主要神经元的传递在各个重要方面有所不同。这些差异是否存在于早期的发展阶段,还是来自较普遍状态的不同发展所导致的,尚不清楚。在海马CA1区,谷氨酸向发育中的而不是向成年人传播,主要神经元的特征是存在α-氨基-3-羟基-5-甲基-5-甲基-4-异恶唑丙酸(AMPA)沉默突触和AMPA。测试脉冲刺激(0.03-1 Hz)引起的沉默。在本研究中,我们检查了在AMPA信号传递中的这种发育差异是否也适用于谷氨酸向CA1层放射性中间神经元的传递。我们发现,在这些中间神经元上还存在AMPA沉默突触,并且可以通过测试脉冲刺激来生成它们。与主要神经元中的AMPA沉默形成鲜明对比的是,中间神经元中的AMPA沉默不受发育限制,但在产后第一个月后和产后第二周中观察到的程度相同。此外,我们发现这些中间神经元上的谷氨酸突触也可能是N-甲基-d-天冬氨酸(NMDA)沉默的,也就是说,只有AMPA信号传导。在测试脉冲刺激后,估计正在发育的中间神经元上的AMPA沉默,NMDA沉默和AMPA / NMDA信号突触大约同样频繁。这些结果突出了向CA1层放射状中间神经元发出的谷氨酸信号的多样性,并且表明谷氨酸突触到锥体神经元和中间神经元上可以分化成熟。

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