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龟嗅球切片中二尖瓣细胞树突-树突突触活动的全细胞钳研究。

A whole-cell clamp study of dendrodendritic synaptic activities in mitral cells of turtle olfactory bulb slices.

作者信息

Kirillova V, Lin J W

机构信息

Department of Biology, Boston University, MA 02215, USA.

出版信息

Neuroscience. 1998 Nov;87(1):255-64. doi: 10.1016/s0306-4522(98)00146-8.

Abstract

A procedure for preparing slices from the turtle olfactory bulb is described in this report. Individual layers of the bulb could be identified in the slices which enabled visual identification of cell types. Mitral cells retained extensive dendritic arborizations in slices of typical thickness, 300-400 microm. The presence of extensive dendritic processes was consistent with the difficulties we encountered in our attempt to achieve adequate space clamp. On the few occasions where an adequate space clamp of a mitral cell was achieved, calcium current exhibited a threshold of - 50 mV and reached its maximal level at - 10 mV. In all cases where calcium current was analysed (n=46), the current exhibited little inactivation. Depolarizing steps in 50% of the mitral cells triggered a burst of feedback synaptic activity after termination of the step. The intensity of feedback activity correlated closely with the amplitude of the depolarizing step, reaching its maximal level at - 10 mV and declining with further depolarization. The bell-shaped relationship between the feedback activity and mitral cell depolarization is consistent with the hypothesis that the feedback activity is mediated by reciprocal synapses on the mitral cell dendrite. This hypothesis is further supported by the inhibitory nature of the feedback synaptic activity: (i) the polarity of the feedback synaptic current could be inverted at the predicted chloride equilibrium potential, (ii) the feedback activity could be completely blocked by 10 microM bicuculline. The analysis of spontaneous synaptic activity showed that it was mostly inhibitory because its polarity could be reversed at the predicted chloride equilibrium potential. In some mitral cells, the frequency of spontaneous activity was noticeably increased when the holding potential was depolarized. This correlation could be attributed to the activation of dendrodendritic synapses. Results shown in this report demonstrate that dendrodendritic synapses are viable in turtle olfactory bulb slices. In addition, the suppression of feedback inhibition by large depolarizing steps of mitral cells suggests that the control of mitral cell dendritic potential is adequate to suppress calcium influx during large depolarizing steps.

摘要

本报告描述了一种从龟的嗅球制备切片的方法。在切片中可以识别出嗅球的各个层,这使得能够直观地识别细胞类型。在典型厚度为300 - 400微米的切片中,二尖瓣细胞保留了广泛的树突分支。广泛的树突过程的存在与我们在尝试实现足够的空间钳制时遇到的困难一致。在少数成功实现二尖瓣细胞空间钳制的情况下,钙电流的阈值为 - 50 mV,并在 - 10 mV时达到最大值。在所有分析钙电流的情况(n = 46)中,电流几乎没有失活。50%的二尖瓣细胞在去极化步骤终止后触发一阵反馈突触活动。反馈活动的强度与去极化步骤的幅度密切相关,在 - 10 mV时达到最大值,并随着进一步去极化而下降。反馈活动与二尖瓣细胞去极化之间的钟形关系与反馈活动由二尖瓣细胞树突上的相互突触介导的假设一致。这一假设进一步得到反馈突触活动抑制性质的支持:(i)反馈突触电流的极性可以在预测的氯离子平衡电位处反转,(ii)反馈活动可以被10 microM荷包牡丹碱完全阻断。对自发突触活动的分析表明,它主要是抑制性的,因为其极性可以在预测的氯离子平衡电位处反转。在一些二尖瓣细胞中,当钳制电位去极化时,自发活动的频率明显增加。这种相关性可归因于树突 - 树突突触的激活。本报告所示结果表明,树突 - 树突突触在龟嗅球切片中是可行的。此外,二尖瓣细胞的大去极化步骤对反馈抑制的抑制表明,对二尖瓣细胞树突电位的控制足以在大去极化步骤期间抑制钙内流。

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