Rossato Janine I, Köhler Cristiano A, Radiske Andressa, Bevilaqua Lia R M, Cammarota Martín
Memory Research Laboratory, Brain Institute, Federal University of Rio Grande do Norte, Av. Nascimento de Castro 2155, RN 59056-450, Natal, Brazil.
Memory Research Laboratory, Brain Institute, Federal University of Rio Grande do Norte, Av. Nascimento de Castro 2155, RN 59056-450, Natal, Brazil.
Neurobiol Learn Mem. 2015 Nov;125:146-51. doi: 10.1016/j.nlm.2015.09.001. Epub 2015 Sep 5.
Active memories can incorporate new information through reconsolidation. However, the notion that memory retrieval is necessary for reconsolidation has been recently challenged. Non-reinforced retrieval induces hippocampus and medial prefrontal cortex (mPFC)-dependent reconsolidation of spatial memory in the Morris water maze (MWM). We found that the effect of protein synthesis inhibition on this process is abolished when retrieval of the learned spatial preference is hindered through mPFC inactivation but not when it is blocked by deactivation of dorsal CA1. Our results do not fully agree with the hypothesis that retrieval is unneeded for reconsolidation. Instead, they support the idea that a hierarchic interaction between the hippocampus and the mPFC controls spatial memory in the MWM, and indicate that this cortex is sufficient to retrieve the information essential to reconsolidate the spatial memory trace, even when the hippocampus is inactivated.
活跃记忆可通过重新巩固纳入新信息。然而,记忆提取对于重新巩固是必要的这一观念最近受到了挑战。在莫里斯水迷宫(MWM)中,非强化提取会诱导海马体和内侧前额叶皮质(mPFC)依赖的空间记忆重新巩固。我们发现,当通过mPFC失活阻碍对所学空间偏好的提取时,蛋白质合成抑制对这一过程的影响就会消除,但当通过背侧CA1失活来阻断提取时,这种影响不会消除。我们的结果并不完全支持重新巩固不需要提取的假设。相反,它们支持这样一种观点,即海马体和mPFC之间的层级相互作用控制着MWM中的空间记忆,并表明即使海马体失活,该皮质也足以提取重新巩固空间记忆痕迹所必需的信息。