Altered fear learning is a strong behavioral component of anxiety disorders such as post-traumatic stress disorder (PTSD). Recent efforts have attempted to combine exposure therapies with drugs that target fear memory retrieval and memory reconsolidation, in order to improve treatment efficacy. The noradrenergic (NA) signaling system is of particular interest, due to its role in regulating the stress response and its involvement in fear and learning processes. Importantly, propranolol (P), a non-selective β-adrenergic antagonist, has shown the potential in decreasing exaggerated fear in both humans and animal models. In a previous study, we utilized an activity-dependent tagging murine model to determine the neural mechanisms by which propranolol attenuates learned fear. We found that propranolol acutely decreased memory trace reactivation specifically in the dorsal dentate gyrus (dDG), but not in CA3 or CA1. Here, we extended our previous study by investigating whether propranolol additionally altered activity in the hilus, a polymorphic layer that consists of neurons, mossy cells, and GABAergic interneurons. We found that propranolol acutely reduced overall hilar activity in both the dorsal and ventral hilus. Moreover, we report that propranolol significantly altered the activity of parvalbumin (PV) cells in the ventral (vDG), but not dorsal DG (dDG). Together, these results suggest that a β-adrenergic blockade may affect the activity of excitatory and inhibitory cell types in the hilar layer of the DG, and that these alterations may contribute to manipulating fear memory traces.
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http://dx.doi.org/10.3389/fnbeh.2022.919831 | DOI Listing |
Aust J Rural Health
February 2025
Western Australian Centre for Rural Health, University of Western Australia, Crawley, Western Australia, Australia.
Objective: To explore changes to rural nursing and allied health placements during the latter stage of the COVID-19 public health emergency.
Setting: Regional, rural and remote Australia.
Participants: Nursing and allied health students with a scheduled University Department of Rural Health (UDRH) facilitated rural placement between 1 January 2022 and 31 October 2022.
J Neurosci
December 2024
Department of Neuroscience, Baylor College of Medicine, Houston, TX, USA
Excitatory synapses and the actin-rich dendritic spines on which they reside are indispensable for information processing and storage in the brain. In the adult hippocampus, excitatory synapses must balance plasticity and stability to support learning and memory. However, the mechanisms governing this balance remain poorly understood.
View Article and Find Full Text PDFBehav Res Ther
December 2024
School of Applied Psychology, Griffith University, Australia.
Presenting unpaired unconditional stimuli (US) during extinction training reduces the renewal of conditional fear due to context change. The present study investigated whether this reduced return of fear is specific to the aversive US presented during acquisition or can also be observed after extinction with unpaired presentations of another aversive or of a non-aversive US. Using an ABA renewal paradigm that trained extinction in a context different from that of the acquisition, renewal and re-acquisition test phases, participants received five unpaired presentations of either the aversive US used during acquisition (Group Aversive-Same), an aversive US not presented during acquisition (Group Aversive-Different) or a non-aversive US (Group Non-aversive) during extinction training.
View Article and Find Full Text PDFFront Behav Neurosci
December 2024
Department of Neuroscience, Developmental, and Regenerative Biology, University of Texas at San Antonio, San Antonio, TX, United States.
Safety learning during threat and adversity is critical for behavioral adaptation, resiliency, and survival. Using a novel mouse paradigm involving thermal threat, we recently demonstrated that safety learning is highly susceptible to social isolation stress. Yet, our previous study primarily considered male mice and did not thoroughly scrutinize the relative impacts of stress on potentially distinct defensive mechanisms implemented by males and females during the thermal safety task.
View Article and Find Full Text PDFCurr Biol
December 2024
Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, VA 20147, USA. Electronic address:
Animals need to rapidly learn to recognize and avoid predators. This ability may be especially important for young animals due to their increased vulnerability. It is unknown whether, and how, nascent vertebrates are capable of such rapid learning.
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