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Synaptic responses of substantia gelatinosa neurones to dorsal column stimulation in rat spinal cord in vitro.

机译:明胶质神经元对大鼠脊髓背柱刺激的突触响应体外。

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摘要

1. To study the mechanism of dorsal column stimulation-induced depression of nociceptive transmission in the spinal cord, synaptic responses evoked in dorsal horn neurones by dorsal column and dorsal root stimulations were examined in a horizontal spinal cord slice of the adult rat. Intracellular recordings were made from substantia gelatinosa (SG) neurones. 2. All SG neurones examined received monosynaptic inputs and/or polysynpatic inputs from both dorsal column and dorsal root. A delta fibres were probably responsible for the synaptic responses. The responses evoked by dorsal column stimulation were similar to those evoked by primary afferent A delta fibre stimulation. 3. Monosynaptic excitatory postsynaptic potentials (EPSPs) evoked by dorsal column A delta fibres were depressed by 6-cyano-7-nitroquinoxaline-2,3-dione, suggesting that these fibres released L-glutamate or a related amino acid as a transmitter. 4. In 38 of 101 SG neurones, dorsal column stimulation evoked an initial EPSP followed by fast and/or slow inhibitory postsynaptic potentials (IPSPs). These IPSPs reversed polarity at a membrane potential of -73 +/- 2 mV. The fast IPSPs observed in 16 of the SG neurones (42%) that received inhibitory inputs were depressed by strychnine, while the slow IPSPs observed in 22 SG neurones were depressed by bicuculline. In a few cells, a long-lasting slow IPSP with a much slower time course was detected; this IPSP was insensitive to strychnine and bicuculline, and reversed polarity at a membrane potential near -90 mV. 5. Repetitive stimulation of the dorsal column depressed the amplitude of monosynaptic EPSPs evoked by dorsal root stimulation. 6. The responses of SG neurones to dorsal column stimulation had configurations and durations similar to responses to dorsal root stimulation, and may be mediated largely by the same A delta fibres. However, a C fibre-mediated response could not be detected in SG neurones from dorsal column stimulation, although dorsal root stimulation could evoke C fibre-mediated monosynaptic EPSPs in 18 of 88 SG neurones (20%). 7. These observations suggest that SG neurones receive abundant A delta but not C fibre inputs from the dorsal column and that dorsal column stimulation inhibits primary afferent transmission in the spinal cord both by reducing transmitter release from primary A delta fibres and by hyperpolarizing SG neurones.
机译:1.为研究背柱刺激引起的脊髓伤害感受传递抑制的机制,在成年大鼠的水平脊髓切片中研究了背柱和背根刺激在背角神经元中引起的突触反应。细胞内记录是由明胶质(SG)神经元制成的。 2.检查的所有SG神经元均从背柱和背根接受单突触输入和/或多突触输入。三角洲纤维可能负责突触反应。背柱刺激引起的反应与原发性A三角纤维刺激引起的反应相似。 3.背柱诱发的单突触兴奋性突触后电位(EPSPs)δ纤维被6-氰基-7-硝基喹喔啉-2,3-二酮抑制,表明这些纤维释放L-谷氨酸或相关氨基酸作为递质。 4.在101个SG神经元中的38个中,背柱刺激引起了初始EPSP,随后是快速和/或缓慢抑制性突触后电位(IPSP)。这些IPSP在-73 +/- 2 mV的膜电位下极性反转。士的宁抑制了在抑制性输入的SG神经元中的16个(42%)中的快速IPSP,而双胆碱抑制了22个SG神经元中的较慢IPSP。在少数几个单元中,检测到了一个持续时间很长的慢IPSP,时间进程也很慢。该IPSP对士的碱和双瓜氨酸不敏感,并且在-90 mV附近的膜电位下极性反转。 5.对背柱的重复刺激抑制了由背根刺激引起的单突触EPSP的幅度。 6. SG神经元对背柱刺激的反应具有类似于对背根刺激的反应的构型和持续时间,并且可能主要由相同的A三角洲纤维介导。然而,尽管背根刺激可以在88个SG神经元中的18个(20%)中引起C纤维介导的单突触EPSP,但在背柱刺激后的SG神经元中未检测到C纤维介导的反应。 7.这些观察结果表明,SG神经元从背柱接收到丰富的A三角洲,但未接收C纤维输入,并且背柱刺激通过减少初级A三角洲纤维的递质释放和超极化SG神经元,抑制了脊髓中的主要传入传递。

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