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腺苷A1受体激活可调节大脑中的N-甲基-D-天冬氨酸(NMDA)预处理表型。

Adenosine A1 receptor activation modulates N-methyl-d-aspartate (NMDA) preconditioning phenotype in the brain.

作者信息

Constantino Leandra C, Pamplona Fabrício A, Matheus Filipe C, Ludka Fabiana K, Gomez-Soler Maricel, Ciruela Francisco, Boeck Carina R, Prediger Rui D, Tasca Carla I

机构信息

Departamento de Bioquímica, Centro de Ciências Biológicas, Universidade Federal de Santa Catarina, UFSC, Campus Trindade, 88040-900 Florianópolis, SC, Brazil.

D'Or Institute for Research and Education (IDOR), Rio de Janeiro, RJ, Brazil.

出版信息

Behav Brain Res. 2015 Apr 1;282:103-10. doi: 10.1016/j.bbr.2014.12.056. Epub 2014 Dec 31.

Abstract

N-methyl-d-aspartate (NMDA) preconditioning is induced by subtoxic doses of NMDA and it promotes a transient state of resistance against subsequent lethal insults. Interestingly, this mechanism of neuroprotection depends on adenosine A1 receptors (A1R), since blockade of A1R precludes this phenomenon. In this study we evaluated the consequences of NMDA preconditioning on the hippocampal A1R biology (i.e. expression, binding properties and functionality). Accordingly, we measured A1R expression in NMDA preconditioned mice (75mg/kg, i.p.; 24h) and showed that neither the total amount of receptor, nor the A1R levels in the synaptic fraction was altered. In addition, the A1R binding affinity to the antagonist [(3)H] DPCPX was slightly increased in total membrane extracts of hippocampus from preconditioned mice. Next, we evaluated the impact of NMDA preconditioning on A1R functioning by measuring the A1R-mediated regulation of glutamate uptake into hippocampal slices and on behavioral responses in the open field and hot plate tests. NMDA preconditioning increased glutamate uptake into hippocampal slices without altering the expression of glutamate transporter GLT-1. Interestingly, NMDA preconditioning also induced antinociception in the hot plate test and both effects were reversed by post-activation of A1R with the agonist CCPA (0.2mg/kg, i.p.). NMDA preconditioning or A1R modulation did not alter locomotor activity in the open field. Overall, the results described herein provide new evidence that post-activation of A1R modulates NMDA preconditioning-mediated responses, pointing to the importance of the cross-talk between glutamatergic and adenosinergic systems to neuroprotection.

摘要

N-甲基-D-天冬氨酸(NMDA)预处理由亚毒性剂量的NMDA诱导,可促进对后续致死性损伤的短暂抵抗状态。有趣的是,这种神经保护机制依赖于腺苷A1受体(A1R),因为阻断A1R可消除此现象。在本研究中,我们评估了NMDA预处理对海马A1R生物学特性(即表达、结合特性和功能)的影响。相应地,我们测量了经NMDA预处理的小鼠(75mg/kg,腹腔注射;24小时)中A1R的表达,结果显示受体总量及突触部分的A1R水平均未改变。此外,预处理小鼠海马总膜提取物中A1R与拮抗剂[(3)H] DPCPX的结合亲和力略有增加。接下来,我们通过测量A1R介导的海马切片中谷氨酸摄取调节以及旷场试验和热板试验中的行为反应,评估了NMDA预处理对A1R功能的影响。NMDA预处理增加了海马切片中谷氨酸的摄取,而未改变谷氨酸转运体GLT-1的表达。有趣的是,NMDA预处理在热板试验中还诱导了抗伤害感受,且这两种效应均被激动剂CCPA(0.2mg/kg,腹腔注射)激活A1R后逆转。NMDA预处理或A1R调节并未改变旷场试验中的运动活性。总体而言,本文所述结果提供了新的证据,即A1R的激活后调节可调节NMDA预处理介导的反应,表明谷氨酸能系统与腺苷能系统之间的相互作用对神经保护具有重要意义。

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