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GABAB receptors-mediated tonic inhibition of glutamate release from Aβ fibers in rat laminae III/IV of the spinal cord dorsal horn

机译:GABA B受体介导的大鼠背角III / IV板层中的Aβ纤维释放谷氨酸的强直抑制

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摘要

Presynaptic GABAB receptors (GABABRs) are highly expressed in dorsal root ganglion neurons and spinal cord dorsal horn. GABABRs located in superficial dorsal horn play an important antinociceptive role, by acting at both pre- and postsynaptic sites. GABABRs expressed in deep dorsal horn could be involved in the processing of touch sensation and possibly in the generation of tactile allodynia in chronic pain. The objective of this study was to characterize the morphological and functional properties of GABABRs expressed on Aβ fibers projecting to lamina III/IV and to understand their role in modulating excitatory synaptic transmission. We performed high-resolution electron microscopic analysis, showing that GABAB2 subunit is expressed on 71.9% of terminals in rat lamina III-IV. These terminals were engaged in axodendritic synapses and, for the 46%, also expressed glutamate immunoreactivity. Monosynaptic excitatory postsynaptic currents, evoked by Aβ fiber stimulation and recorded from lamina III/IV neurons in spinal cord slices, were strongly depressed by application of baclofen (0.1–2.5 µM), acting as a presynaptic modulator. Application of the GABABR antagonist CGP 55845 caused, in a subpopulation of neurons, the potentiation of the first of two excitatory postsynaptic currents recorded with the paired-pulse protocol, showing that GABABRs are endogenously activated. A decrease in the paired-pulse ratio accompanied the effect of CGP 55845, implying the involvement of presynaptic GABABRs. CGP 55845 facilitated only the first excitatory postsynaptic current also during a train of four consecutive stimuli applied to Aβ fibers. These results suggest that GABABRs tonically inhibit glutamate release from Aβ fibers at a subset of synapses in deep dorsal horn. This modulation specifically affects only the early phase of synaptic excitation in lamina III-IV neurons.
机译:突触前GABA B受体(GABABR)在背根神经节神经元和脊髓背角中高表达。位于突触后表面的GABABRs在突触前和突触后部位均起重要的镇痛作用。在深背角表达的GABABRs可能参与触摸感觉的处理,并可能参与慢性疼痛的触觉性异常性疼痛的产生。这项研究的目的是表征GABABRs的形态和功能特性,这些蛋白在投射到层板III / IV的Aβ纤维上表达,并了解它们在调节兴奋性突触传递中的作用。我们进行了高分辨率的电子显微镜分析,表明GABAB2亚基在大鼠椎板III-IV的71.9%的末端表达。这些末端参与了轴突突触,并且对于46%的人也表达了谷氨酸的免疫反应性。应用巴氯芬(0.1–2.5μm)作为突触前调节剂,可强烈抑制Aβ纤维刺激引起的单突触兴奋性突触后电流,并记录在脊髓切片的III / IV层神经元中。 GABABR拮抗剂CGP 55845的应用在神经元亚群中导致了以成对脉冲协议记录的两个兴奋性突触后突触电流中第一个的增强,表明GABABR被内源性激活。配对脉冲比率的降低伴随着CGP 55845的作用,这暗示了突触前GABABR的参与。在对Aβ纤维施加四个连续刺激的过程中,CGP 55845仅促进了第一个兴奋性突触后电流。这些结果表明,GABABRs在深部背角突触的一个子集上能抑制谷氨酸从Aβ纤维的释放。这种调制只影响层板III-IV神经元中突触兴奋的早期阶段。

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