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Cannabinoids decrease excitatory synaptic transmission and impair long-term depression in rat cerebellar Purkinje cells

机译:大麻素减少大鼠小脑Purkinje细胞的兴奋性突触传递并损害长期抑郁

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摘要

class="enumerated" style="list-style-type:decimal">CB-1 cannabinoid receptors are strongly expressed in the molecular layer of the cerebellar cortex. We have analysed, in patch-clamped Purkinje cells (PCs) in rat cerebellar slices, the effect of the selective CB-1 agonists WIN55,212-2 and CP55,940 and of the selective CB-1 antagonist SR141716-A on excitatory synaptic transmission and synaptic plasticity.Bath application of both agonists markedly depressed parallel fibre (PF) EPSCs. This effect was reversed by SR141716-A. In contrast, responses of PCs to ionophoretic application of glutamate were not affected by WIN55,212-2.The coefficient of variation and the paired-pulse facilitation of these PF-mediated EPSCs increased in the presence of WIN55,212-2.WIN55,212-2 decreased the frequency of miniature EPSCs and of asynchronous synaptic events evoked in the presence of strontium in the bath, but did not affect their amplitude.WIN55,212-2 did not change the excitability of PFs.WIN55,212-2 impaired long-term depression induced by pairing protocols in PCs. This effect was antagonized by SR141716-A. The same impairment of LTD was produced by 2-chloroadenosine, a compound that decreases the probability of release of glutamate at PF-PC synapses.The present study demonstrates that cannabinoids inhibit synaptic transmission at PF-PC synapses by decreasing the probability of release of glutamate, and thereby impair LTD. These two effects might represent a plausible cellular mechanism underlying cerebellar dysfunction caused by cannabinoids.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> CB-1大麻素受体在小脑皮层的分子层中强烈表达。我们已经在大鼠小脑切片的膜片钳浦肯野细胞(PC)中分析了选择性CB-1激动剂WIN55,212-2和CP55,940以及选择性CB-1拮抗剂SR141716-A对兴奋性突触的影响传递和突触可塑性。 两种激动剂在浴中的应用均显着抑制了平行纤维(PF)EPSC。 SR141716-A可以逆转此效果。相比之下,WIN55,212-2不会影响PC对离子载体应用谷氨酸的反应。 在WIN55存在下,这些PF介导的EPSC的变异系数和成对脉冲促进作用增加。 ,212-2。 WIN55,212-2降低了微型EPSC的频率以及在浴中存在锶时引发的异步突触事件的频率,但没有影响其振幅。 < li> WIN55,212-2并没有改变PF的兴奋性。 WIN55,212-2损害了配对协议在PC中引起的长期抑郁。 SR141716-A拮抗了这种作用。 2-氯腺苷会降低LTD在PF-PC突触中释放谷氨酸的可能性。 本研究表明,大麻素可通过以下方式抑制PF-PC突触在PF-PC突触中的突触传递:降低谷氨酸释放的可能性,从而损害LTD。这两种作用可能代表了由大麻素引起的小脑功能障碍的可能的细胞机制。

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