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首页> 外文期刊>The Journal of Physiology >Does modulation of the endocannabinoid system have potential therapeutic utility in cerebellar ataxia?
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Does modulation of the endocannabinoid system have potential therapeutic utility in cerebellar ataxia?

机译:调节内源性大麻素系统在小脑性共济失调中具有潜在的治疗作用吗?

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摘要

Cerebellar ataxias represent a spectrum of disorders which are, however, linked by common symptoms of motor incoordination and typically associated with deficiency in Purkinje cell firing activity and, often, degeneration. Cerebellar ataxias currently lack a curative agent. The endocannabinoid (eCB) system includes eCB compounds and their associated metabolic enzymes, together with cannabinoid receptors, predominantly the cannabinoid CB1 receptor (CB1R) in the cerebellum; activation of this system in the cerebellar cortex is associated with deficits in motor coordination characteristic of ataxia, effects which can be prevented by CB1R antagonists. Of further interest are various findings that CB1R deficits may also induce a progressive ataxic phenotype. Together these studies suggest that motor coordination is reliant on maintaining the correct balance in eCB system signalling. Recent work also demonstrates deficient cannabinoid signalling in the mouse 'ducky(2J)' model of ataxia. In light of these points, the potential mechanisms whereby cannabinoids may modulate the eCB system to ameliorate dysfunction associated with cerebellar ataxias are considered.
机译:小脑共济失调代表了一系列疾病,但是,这些疾病与运动不协调的常见症状有关,通常与浦肯野细胞着火活性不足(通常是变性)有关。小脑性共济失调目前缺乏治疗剂。内源性大麻素(eCB)系统包括eCB化合物及其相关的代谢酶,以及大麻素受体,主要是小脑中的大麻素CB1受体(CB1R);小脑皮层中该系统的激活与共济失调的运动协调功能缺陷有关,这种作用可通过CB1R拮抗剂预防。进一步有趣的是,各种发现表明CB1R缺乏也可能诱发进行性共济失调表型。这些研究共同表明,运动协调取决于维持eCB系统信号的正确平衡。最近的工作还证明了共济失调的小鼠“ ducky(2J)”模型中的大麻素信号不足。根据这些观点,考虑了大麻素可能调节eCB系统以改善与小脑共济失调相关的功能障碍的潜在机制。

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