INVOLVEMENT OF GLYCINE AND GABA(A) RECEPTORS IN THE PATHOGENESIS OF SPINAL MYOCLONUS - IN-VITRO STUDIES IN THE ISOLATED NEONATAL RODENT SPINAL-CORD

被引:19
作者
SIMON, ES [1 ]
机构
[1] NINCDS,MED NEUROL BRANCH,BETHESDA,MD 20892
关键词
D O I
10.1212/WNL.45.10.1883
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Studies of pathogenetic mechanisms of myoclonus and spinal spasticity have established a strong association between deficient inhibitory glycinergic transmission and pathologic rigidity and tremor. Consistent with known cases in the clinical literature, electrophysiologic data from animal models of myoclonus implicate dysfunction of segmental spinal cord circuitry. The present study sought to further explore pathogenetic mechanisms at the circuit level. In vitro preparations of isolated spinal cord from neonatal rodents allowed for stable recordings of individual cells as well as populations of motoneurons. Blockade of glycine receptors enhanced 5- to 15-Hz sinusoidal oscillations that were synchronous in entire populations of motoneurons as well as along multiple segments of the spinal cord. Oscillations at motoneurons were mediated largely by non-NMDA excitatory synaptic inputs. Blockade of GABA(A) receptors, and not GABA(B) receptors, abolished sinusoidal oscillations, suggesting a critical role for GABA, receptors in the premotoneuronal circuitry responsible for generation or transmission of the sinusoidal oscillations. These data offer new insights into possible pathogenetic mechanisms of spinal myoclonus and may help guide future research leading to specific therapies for hyperkinetic movement disorders of spinal origin.
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页码:1883 / 1892
页数:10
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