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小脑皮质中的5-羟色胺能神经调节:细胞、突触及分子基础

Serotonergic neuromodulation in the cerebellar cortex: cellular, synaptic, and molecular basis.

作者信息

Dieudonné S

机构信息

Department of Biology, Ecole Normale Superieure, Paris, France.

出版信息

Neuroscientist. 2001 Jun;7(3):207-19. doi: 10.1177/107385840100700306.

DOI:10.1177/107385840100700306
PMID:11499400
Abstract

The cerebellum, like most sensorimotor areas of the brain, receives a serotonergic innervation from neurons of the reticular formation. It is well established that local application of serotonin modulates the firing rate of cerebellar Purkinje cells in vivo and in vitro, but the mechanisms by which serotonin affects the cerebellar function are still poorly understood. Whereas interactions between serotonin, glutamate, and GABA have been reported to increase or decrease the firing frequency of Purkinje cells, there is little evidence for a modulation of excitatory and inhibitory synapses by serotonin in the cerebellar cortex. Changes in the intrinsic electrical properties of Purkinje cells upon application of serotonin have also been reported, but their impact on Purkinje cell firing is unclear. The recent finding that serotonin specifically modulates the activity of Lugaro cells, a class of inhibitory interneurons of the cerebellar cortex, offers new insights on the action of this neuromodulator. The peculiar axonal projection and specific interneuronal targets of the Lugaro cells suggest that the action of serotonin might occur upstream of Purkinje cells through a resetting of the computational properties of the cerebellar cortex. Understanding the mechanisms of the serotonergic modulation of the cerebellar cortex is of clinical relevance, as abnormal serotonin metabolism has been observed in animal models and pathological cases of motor disorders involving the cerebellum, and as chronic intravenous administration of L-5-hydroxytryptophan (5-HTP), a precursor of serotonin, was the first treatment shown to improve significantly cerebellar symptoms.

摘要

小脑与大脑的大多数感觉运动区域一样,接受来自网状结构神经元的5-羟色胺能神经支配。已有充分证据表明,在体内和体外,局部应用5-羟色胺可调节小脑浦肯野细胞的放电频率,但5-羟色胺影响小脑功能的机制仍知之甚少。虽然有报道称5-羟色胺、谷氨酸和γ-氨基丁酸之间的相互作用会增加或降低浦肯野细胞的放电频率,但几乎没有证据表明5-羟色胺能调节小脑皮质的兴奋性和抑制性突触。也有报道称,应用5-羟色胺后浦肯野细胞的内在电特性会发生变化,但其对浦肯野细胞放电的影响尚不清楚。最近的研究发现,5-羟色胺特异性调节小脑皮质一类抑制性中间神经元——卢加罗细胞的活性,这为这种神经调质的作用提供了新的见解。卢加罗细胞独特的轴突投射和特定的中间神经元靶点表明,5-羟色胺的作用可能通过重置小脑皮质的计算特性在浦肯野细胞上游发生。了解5-羟色胺能对小脑皮质的调节机制具有临床意义,因为在涉及小脑的运动障碍动物模型和病理病例中观察到5-羟色胺代谢异常,而且作为5-羟色胺的前体,L-5-羟色氨酸(5-HTP)的慢性静脉给药是首个被证明能显著改善小脑症状的治疗方法。

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