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脊髓板层III/IV中由GABAA受体介导的低阈值传入神经递质释放的短暂性、活动依赖性抑制。

Transient, activity dependent inhibition of transmitter release from low threshold afferents mediated by GABAA receptors in spinal cord lamina III/IV.

作者信息

Betelli Chiara, MacDermott Amy B, Bardoni Rita

机构信息

Department of Biomedical, Metabolic and Neural Sciences, University of Modena and Reggio Emilia, Via Campi, 287, 41125, Modena, Italy.

Departments of Physiology and Cellular Biophysics, Neuroscience, Columbia University, 630 W. 168th Street, New York, NY, 10032, USA.

出版信息

Mol Pain. 2015 Oct 13;11:64. doi: 10.1186/s12990-015-0067-5.

Abstract

BACKGROUND

Presynaptic GABAA receptors (GABAARs) located on central terminals of low threshold afferent fibers are thought to be involved in the processing of touch and possibly in the generation of tactile allodynia in chronic pain. These GABAARs mediate primary afferent depolarization (PAD) and modulate transmitter release. The objective of this study was to expand our understanding of the presynaptic inhibitory action of GABA released onto primary afferent central terminals following afferent stimulation.

RESULTS

We recorded evoked postsynaptic excitatory responses (eEPSCs and eEPSPs) from lamina III/IV neurons in spinal cord slices from juvenile rats (P17-P23, either sex), while stimulating dorsal roots. We investigated time and activity dependent changes in glutamate release from low threshold A fibers and the impact of these changes on excitatory drive. Blockade of GABAARs by gabazine potentiated the second eEPSC during a train of four afferent stimuli in a large subset of synapses. This resulted in a corresponding increase of action potential firing after the second stimulus. The potentiating effect of gabazine was due to inhibition of endogenously activated presynaptic GABAARs, because it was not prevented by the blockade of postsynaptic GABAARs through intracellular perfusion of CsF. Exogenous activation of presynaptic GABAARs by muscimol depressed evoked glutamate release at all synapses and increased paired pulse ratio (PPR).

CONCLUSIONS

These observations suggest that afferent driven release of GABA onto low threshold afferent terminals is most effective following the first action potential in a train and serves to suppress the initial strong excitatory drive onto dorsal horn circuitry.

摘要

背景

位于低阈值传入纤维中枢终末的突触前γ-氨基丁酸A型受体(GABAARs)被认为参与触觉处理,并可能在慢性疼痛的触觉异常性疼痛产生中发挥作用。这些GABAARs介导初级传入去极化(PAD)并调节递质释放。本研究的目的是加深我们对传入刺激后释放到初级传入中枢终末的GABA的突触前抑制作用的理解。

结果

我们在幼年大鼠(P17 - P23,雌雄不限)脊髓切片的Ⅲ/Ⅳ层神经元中记录诱发的突触后兴奋性反应(eEPSCs和eEPSPs),同时刺激背根。我们研究了低阈值A纤维谷氨酸释放的时间和活动依赖性变化以及这些变化对兴奋性驱动的影响。在一大组突触中,在一串四个传入刺激期间,加巴喷丁对GABAARs的阻断增强了第二个eEPSC。这导致第二个刺激后动作电位发放相应增加。加巴喷丁的增强作用是由于抑制内源性激活的突触前GABAARs,因为通过细胞内灌注CsF阻断突触后GABAARs并不能阻止这种作用。蝇蕈醇对外源性突触前GABAARs的激活在所有突触处均抑制诱发的谷氨酸释放并增加配对脉冲比率(PPR)。

结论

这些观察结果表明,在一串刺激中的第一个动作电位之后,传入驱动的GABA释放到低阈值传入终末上最为有效,并有助于抑制对背角回路的初始强烈兴奋性驱动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a998/4605127/c90c3b8b1d90/12990_2015_67_Fig1_HTML.jpg

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