Human extinction learning is accelerated by an angiotensin antagonist via ventromedial prefrontal cortex and its connections with basolateral amygdala

Author:

Zhou Feng,Geng Yayuan,Xin Fei,Li Jialin,Feng Pan,Liu Congcong,Zhao Weihua,Feng Tingyong,Guastella Adam J.,Kendrick Keith M.,Becker BenjaminORCID

Abstract

AbstractRecent translational research suggests a role of the renin-angiotensin (RA) system in threat extinction and underlying neuroplasticity; however, whether and how pharmacological modulation of the RA system influences physiological and neural manifestations of threat during extinction learning in humans is unclear. Here we report that pre-extinction administration of losartan, an angiotensin II type 1 receptor antagonist, accelerated attenuation of physiological threat expression. During early extinction, losartan enhanced threat-signal specific ventromedial prefrontal cortex (vmPFC) activation and its coupling with the basolateral amygdala. Multivoxel pattern analysis revealed that losartan reduced whole brain, particularly vmPFC, threat expression and voxel-wise mediation analyses further confirmed that losartan-accelerated extinction crucially involved vmPFC processing. Overall the results provide initial evidence for a critical role of the RA system in extinction learning in humans and suggest that adjunct losartan administration may facilitate the efficacy of extinction-based therapies.ClinicalTrials.gov, Identifier: NCT03396523

Publisher

Cold Spring Harbor Laboratory

Reference72 articles.

1. Neural mechanisms of extinction learning and retrieval;Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology,2008

2. FROM THE NEUROBIOLOGY OF EXTINCTION TO IMPROVED CLINICAL TREATMENTS

3. Neurons in medial prefrontal cortex signal memory for fear extinction

4. Fear Extinction as a Model for Translational Neuroscience: Ten Years of Progress

5. The role of the medial prefrontal cortex in the conditioning and extinction of fear;Frontiers in behavioral neuroscience,2015

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