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Pharmacological manipulation of cannabinoid neurotransmission reduces neuroinflammation associated with normal aging

机译:大麻素神经传递的药理处理可减少与正常衰老相关的神经炎症

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We have previously demonstrated that antagonism of glutamate NMDA receptors or activation of endocannabinoid receptors could reduce experimentally induced neuroinflammation within the hippocampus of young rats. In the current study, we investigated whether pharmacological manipulation of glutamate or endocannabinoid neurotransmission could reduce naturally-occurring neuroinflammation within the hippocampus of aged rats. We investigated whether UCM707, an inhibitor of endocannabinoid re-uptake, WIN- 55,212-2, an endocannabinoid receptor agonist, and URB597, an inhibitor of endocannabinoid catabolism, or memantine, a non-competitive, low-affinity, inhibitor of the open NMDA receptor channel, could reduce the number of MHC II-IR microglia within the hippocampus. All of the drugs, except URB597, reduced the number of reactive microglia, as compared to vehicle treated rats. The current results suggest potential pharmacological approaches that may mitigate the pathological consequences of chronic brain inflammation associated with numerous neurodegenerative diseases.
机译:我们先前已经证明,谷氨酸NMDA受体的拮抗作用或内源性大麻素受体的激活可以减少实验性诱导的幼鼠海马内的神经炎症。在当前的研究中,我们调查了谷氨酸或内源性大麻素神经传递的药理处理是否可以减少衰老大鼠海马内自然发生的神经炎症。我们研究了内源性大麻素再摄取抑制剂UCM707,内源性大麻素受体激动剂WIN- 55212-2和内源性大麻素分解代谢抑制剂URB597还是美金刚(非竞争性,低亲和力的开放NMDA抑制剂)受体通道可以减少海马内MHC II-IR小胶质细胞的数量。与溶媒治疗的大鼠相比,除URB597以外的所有药物均减少了反应性小胶质细胞的数量。目前的结果表明潜在的药理方法可以减轻与许多神经退行性疾病相关的慢性脑部炎症的病理后果。

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