Panic disorder is a common psychiatric illness with a lifetime prevalence of about 4.5%. The hallmark of the disorder is recurring panic attacks, which can appear suddenly and unexpectedly, consisting of pronounced fear, as well as cardiovascular and respiratory responses. The initial pathology in these patients appears to be an alteration somewhere in the central neural pathways regulating normal panic responses, thus rendering the patients susceptible to unprovoked panic symptoms when exposed to ordinarily mild interoceptive stressors. Understanding the neuronal underpinnings of panic attacks would significantly improve the outcomes and treatment. The neurotransmitter hypocretin (Hcrt), also known as orexin, has been recently linked to hyperarousal, anxiety and panic, but the specific effector circuits are unknown. Anatomical and functional evidence suggests that one of the possible Hcrt/orexin targets are norepinephrine (NE)-containing neurons in the brainstem. Here, we will test the overall hypothesis that Hcrt/orexin acts through ventral norepinephrine A2 neurons and their efferents to produce different components of the anxiety and panic responses. We will use anatomical tracing and optogenetic tools to obtain a functional map of the neuronal circuitry connecting A2 neurons with several of its anatomical targets, namely the paraventricular hypothalamic nucleus (PVN) and the bed nucleus of the stria terminalis (BNST). We will also determine the connectivity between these circuits and the arousal promoting Hcrt/orexin neurons in the lateral hypothalamus. Our experiments will increase our understanding of the circuitry associated with anxiety with cellular specificity and may lead to potentially more selective treatments for anxiety and panic disorders.

Public Health Relevance

We will test the overall hypothesis that Hcrt/orexin acts through ventral norepinephrine A2 neurons and their efferents to produce different components of the anxiety and panic responses. Our experiments will increase our understanding of the circuitry associated with anxiety with cellular specificity and may lead to potentially more selective treatments for anxiety and panic disorders.

Agency
National Institute of Health (NIH)
Institute
National Institute of Mental Health (NIMH)
Type
Research Project (R01)
Project #
5R01MH102638-02
Application #
8896066
Study Section
Special Emphasis Panel (ZRG1)
Program Officer
Winsky, Lois M
Project Start
2014-07-22
Project End
2019-05-31
Budget Start
2015-07-01
Budget End
2016-05-31
Support Year
2
Fiscal Year
2015
Total Cost
Indirect Cost
Name
Stanford University
Department
Psychiatry
Type
Schools of Medicine
DUNS #
009214214
City
Stanford
State
CA
Country
United States
Zip Code
94304
Yamaguchi, Hiroshi; Hopf, F Woodward; Li, Shi-Bin et al. (2018) In vivo cell type-specific CRISPR knockdown of dopamine beta hydroxylase reduces locus coeruleus evoked wakefulness. Nat Commun 9:5211
Giardino, William J; Eban-Rothschild, Ada; Christoffel, Daniel J et al. (2018) Parallel circuits from the bed nuclei of stria terminalis to the lateral hypothalamus drive opposing emotional states. Nat Neurosci 21:1084-1095
Yamaguchi, Hiroshi; de Lecea, Luis (2018) In vivo cell type-specific CRISPR gene editing for sleep research. J Neurosci Methods :
Tyree, Susan M; de Lecea, Luis (2017) Lateral Hypothalamic Control of the Ventral Tegmental Area: Reward Evaluation and the Driving of Motivated Behavior. Front Syst Neurosci 11:50
Eban-Rothschild, Ada; Giardino, William J; de Lecea, Luis (2017) To sleep or not to sleep: neuronal and ecological insights. Curr Opin Neurobiol 44:132-138
Schaich Borg, Jana; Srivastava, Sanvesh; Lin, Lizhen et al. (2017) Rat intersubjective decisions are encoded by frequency-specific oscillatory contexts. Brain Behav 7:e00710
Tyree, Susan M; de Lecea, Luis (2017) Optogenetic Investigation of Arousal Circuits. Int J Mol Sci 18:
Eban-Rothschild, Ada; Rothschild, Gideon; Giardino, William J et al. (2016) VTA dopaminergic neurons regulate ethologically relevant sleep-wake behaviors. Nat Neurosci 19:1356-66
Bonnavion, Patricia; Jackson, Alexander C; Carter, Matthew E et al. (2015) Antagonistic interplay between hypocretin and leptin in the lateral hypothalamus regulates stress responses. Nat Commun 6:6266
Sorooshyari, Siamak; Huerta, Ramón; de Lecea, Luis (2015) A Framework for Quantitative Modeling of Neural Circuits Involved in Sleep-to-Wake Transition. Front Neurol 6:32