Basolateral amygdala noradrenergic activity is required for enhancement of object recognition memory by histone deacetylase inhibition in the anterior insular cortex

2018 ◽  
Vol 141 ◽  
pp. 32-41 ◽  
Author(s):  
Yanfen Chen ◽  
Areg Barsegyan ◽  
Nael Nadif Kasri ◽  
Benno Roozendaal
2014 ◽  
Vol 578 ◽  
pp. 192-196 ◽  
Author(s):  
Lesley D. O’Brien ◽  
Martin A. Sticht ◽  
Krista A. Mitchnick ◽  
Cheryl L. Limebeer ◽  
Linda A. Parker ◽  
...  

Author(s):  
Fabien Naneix ◽  
Ioannis Bakoyiannis ◽  
Marianela Santoyo-Zedillo ◽  
Clémentine Bosch-Bouju ◽  
Gustavo Pacheco-Lopez ◽  
...  

1ABSTRACTIn addition to numerous metabolic comorbidities, obesity is associated with several adverse neurobiological outcomes, especially learning and memory alterations. Obesity prevalence is rising dramatically in youth and is persisting in adulthood. This is especially worrying since adolescence is a crucial period for the maturation of certain brain regions playing a central role in memory processes such as the hippocampus and the amygdala. We previously showed that periadolescent exposure to obesogenic high-fat diet (HFD) had opposite effects on hippocampus- and amygdala-dependent memory, impairing the former and enhancing the latter. However, the causal role of these two brain regions in periadolescent HFD-induced memory alterations remains unclear. Here, we first showed that periadolescent HFD induced long-term, but not short-term, object recognition memory deficits, specifically when rats were exposed to a novel context. Using chemogenetic approaches to inhibit targeted brain regions, we then demonstrated that recognition memory deficits are dependent on the activity of the ventral hippocampus, but not the basolateral amygdala. On the contrary, the HFD-induced enhancement of conditioned odor aversion requires specifically amygdala activity. Taken together, these findings suggest that HFD consumption throughout adolescence impairs long-term object recognition memory through the overactivation of the ventral hippocampus during memory acquisition. Moreover, these results further highlight the bidirectional effects of adolescent HFD on hippocampal and amygdala functions.


2008 ◽  
Vol 90 (3) ◽  
pp. 576-579 ◽  
Author(s):  
Benno Roozendaal ◽  
Nicholas A. Castello ◽  
Gustavo Vedana ◽  
Areg Barsegyan ◽  
James L. McGaugh

2021 ◽  
Vol 187 ◽  
pp. 108493
Author(s):  
Gerardo Ramirez-Mejia ◽  
Elvi Gil-Lievana ◽  
Oscar Urrego-Morales ◽  
Ernesto Soto-Reyes ◽  
Federico Bermúdez-Rattoni

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