Laboratorio de Neurobiología de la Memoria, Departamento de Fisiología y Biología Molecular y Celular, IFIBYNE-CONICET, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires, C1428EHA, Argentina.
Eur J Neurosci. 2013 Nov;38(9):3302-13. doi: 10.1111/ejn.12328. Epub 2013 Aug 5.
There is growing interest in the neurobiological mechanisms involved in the extinction of aversive memory. This cognitive process usually occurs after repeated or prolonged presentation of a conditioned stimulus that was previously associated with an unconditioned stimulus. If extinction is considered to be a new memory, the role of the γ-aminobutyric acid system (GABAergic system) during extinction memory consolidation should be similar to that described for the original trace. It is also accepted that negative modulation of the GABAergic system before testing can impair extinction memory expression. However, it seems possible to speculate that inhibitory mechanisms may be required in order to acquire a memory that is inhibitory in nature. Using a combination of behavioral protocols, such as weak and robust extinction training procedures, and pharmacological treatments, such as the systemic administration of GABAA agonist (muscimol) and antagonist (bicuculline), we investigated the role of the GABAergic system in the different phases of the extinction memory in the crab Neohelice granulata. We show that the stimulation of the GABAergic system impairs and its inactivation facilitates the extinction memory consolidation. Moreover, fine variations in the GABAergic tone affect its expression at testing. Finally, an active GABAergic system is necessary for the acquisition of the extinction memory. This detailed description may contribute to the understanding of the role of the GABAergic system in diverse aspects of the extinction memory.
人们对涉及厌恶记忆消除的神经生物学机制越来越感兴趣。这个认知过程通常发生在条件刺激反复或长时间呈现之后,而条件刺激之前与非条件刺激相关联。如果消除被认为是一种新的记忆,那么在消除记忆巩固过程中,γ-氨基丁酸系统(GABA 能系统)的作用应该与原始痕迹描述的相似。人们也接受这样的观点,即在测试前对 GABA 能系统进行负向调节会损害消除记忆的表达。然而,似乎可以推测,为了获得具有抑制性质的记忆,可能需要抑制机制。通过结合行为方案,如弱和强的消除训练程序,以及药理学处理,如全身给予 GABA A 激动剂(muscimol)和拮抗剂(bicuculline),我们研究了 GABA 能系统在蟹 Neohelice granulata 消除记忆的不同阶段中的作用。我们表明,GABA 能系统的刺激会损害其功能,而其失活则会促进消除记忆的巩固。此外,GABA 能系统的细微变化会影响其在测试时的表达。最后,一个活跃的 GABA 能系统对于获得消除记忆是必要的。这一详细描述可能有助于理解 GABA 能系统在消除记忆的各个方面的作用。