Campolongo Patrizia, Roozendaal Benno, Trezza Viviana, Hauer Daniela, Schelling Gustav, McGaugh James L, Cuomo Vincenzo
Department of Physiology and Pharmacology, Sapienza University of Rome, Piazzale Aldo Moro 5, 00185 Rome, Italy.
Proc Natl Acad Sci U S A. 2009 Mar 24;106(12):4888-93. doi: 10.1073/pnas.0900835106. Epub 2009 Mar 2.
Extensive evidence indicates that the basolateral complex of the amygdala (BLA) modulates the consolidation of memories for emotionally arousing experiences, an effect that involves the activation of the glucocorticoid system. Because the BLA expresses high densities of cannabinoid CB1 receptors, the present experiments investigated whether the endocannabinoid system in the BLA influences memory consolidation and whether glucocorticoids interact with this system. The CB1 receptor agonist WIN55,212-2 (5-50 ng per 0.2 microL per side), infused bilaterally into the BLA of male Sprague-Dawley rats immediately after inhibitory avoidance training, induced dose-dependent enhancement of 48-h retention. Conversely, the CB1 receptor antagonist AM251 (0.07-0.28 ng per 0.2 microL per side) administered after training into the BLA induced inhibitory avoidance retention impairment. Furthermore, intra-BLA infusions of a low and nonimpairing dose of AM251 (0.14 ng per 0.2 microL per side) blocked the memory enhancement induced by concurrent administration of WIN55,212-2. Delayed infusions of WIN55,212-2 or AM251 administered into the BLA 3 h after training or immediate posttraining infusions of these drugs into the adjacent central amygdala did not significantly alter retention performance. Last, intra-BLA infusions of a low and otherwise nonimpairing dose of AM251 (0.14 ng per 0.2 microL per side) blocked the memory-enhancing effect induced by systemic administration of corticosterone (3 mg/kg, s.c.). These findings indicate that endocannabinoids in the BLA enhance memory consolidation and suggest that CB1 activity within this brain region is required for enabling glucocorticoid effects on memory consolidation enhancement.
大量证据表明,杏仁核基底外侧复合体(BLA)调节对情绪唤起经历的记忆巩固,这一效应涉及糖皮质激素系统的激活。由于BLA表达高密度的大麻素CB1受体,本实验研究了BLA中的内源性大麻素系统是否影响记忆巩固,以及糖皮质激素是否与该系统相互作用。在抑制性回避训练后立即双侧向雄性Sprague-Dawley大鼠的BLA注入CB1受体激动剂WIN55,212-2(每侧0.2微升5-50纳克),可诱导48小时记忆保持的剂量依赖性增强。相反,训练后向BLA注入CB1受体拮抗剂AM251(每侧0.2微升0.07-0.28纳克)会导致抑制性回避记忆保持受损。此外,向BLA内注入低剂量且无损害作用的AM251(每侧0.2微升0.14纳克)可阻断同时给予WIN55,212-2所诱导的记忆增强。在训练后3小时向BLA延迟注入WIN55,212-2或AM251,或在训练后立即将这些药物注入相邻的中央杏仁核,均未显著改变记忆保持表现。最后,向BLA内注入低剂量且无其他损害作用的AM251(每侧0.2微升0.14纳克)可阻断全身注射皮质酮(3毫克/千克,皮下注射)所诱导的记忆增强效应。这些发现表明,BLA中的内源性大麻素增强记忆巩固,并表明该脑区内的CB1活性是糖皮质激素对记忆巩固增强作用所必需的。