Your browser doesn't support javascript.
loading
: 20 | 50 | 100
1 - 20 de 500
1.
Psychopharmacology (Berl) ; 241(3): 627-635, 2024 Mar.
Article En | MEDLINE | ID: mdl-38363344

RATIONALE: Although the study of emotions can look back to over 100 years of research, it is unclear which information the brain uses to construct the subjective experience of an emotion. OBJECTIVE: In the current study, we assess the role of the peripheral and central adrenergic system in this respect. METHODS: Healthy volunteers underwent a double inhalation of 35% CO2, which is a well-validated procedure to induce an intense emotion, namely panic. In a randomized, cross-over design, 34 participants received either a ß1-blocker acting selectively in the peripheral nervous system (atenolol), a ß1-blocker acting in the peripheral and central nervous system (metoprolol), or a placebo before the CO2 inhalation. RESULTS: Heart rate and systolic blood pressure were reduced in both ß-blocker conditions compared to placebo, showing effective inhibition of the adrenergic tone. Nevertheless, the subjective experience of the induced panic was the same in all conditions, as measured by self-reported fear, discomfort, and panic symptom ratings. CONCLUSIONS: These results indicate that information from the peripheral and central adrenergic system does not play a major role in the construction of the subjective emotion.


Adrenergic beta-Antagonists , Carbon Dioxide , Emotions , Nervous System , Panic , Humans , Adrenergic beta-Antagonists/pharmacology , Carbon Dioxide/pharmacology , Emotions/drug effects , Emotions/physiology , Fear/drug effects , Fear/physiology , Heart Rate/drug effects , Panic/drug effects , Panic/physiology , Nervous System/drug effects
2.
J Neurosci Res ; 102(2): e25300, 2024 Feb.
Article En | MEDLINE | ID: mdl-38361409

Environment enrichment (EE) is a well-known eustress model showing beneficial effects in different psychiatric diseases, but its positive properties in panic disorders are not yet established. The confrontation between prey and predator in complex arenas has been validated as a putative panic attack model. The principal aim of this work was to investigate the role of the EE on panic-like defensive responses elicited by mice threatened by venomous snakes. After 6 weeks of exposure either to an enriched or standard environments, 36 male mice were habituated in a complex polygonal arena for snakes containing an artificial burrow and elevated platforms for escape. The animals were confronted by Bothrops jararaca for 5 min, and the following antipredatory responses were recorded: defensive attention, stretched attend posture, flat back approach, prey versus predator interaction, oriented escape behavior, time spent in a safe place, and number of crossings. Mice threatened by snakes displayed several antipredatory reactions as compared to the exploratory behavior of those animals submitted to a nonthreatening situation (toy snake) in the same environment. Notably, EE causes anxiolytic- and panicolytic-like effects significantly decreasing the defensive attention and time spent in safe places and significantly increasing both prey versus predator interaction and exploratory behavior. In conclusion, our data demonstrate that EE can alter the processing of fear modulation regarding both anxiety- and panic-like responses in a dangerous condition, significantly modifying the decision-making defensive strategy.


Crotalinae , Panic Disorder , Mice , Male , Animals , Bothrops jararaca , Fear , Panic/physiology
3.
Transl Psychiatry ; 14(1): 60, 2024 Jan 25.
Article En | MEDLINE | ID: mdl-38272876

The serotonin (5-HT) system is heavily implicated in the regulation of anxiety and trauma-related disorders such as panic disorder and post-traumatic stress disorder, respectively. However, the neural mechanisms of how serotonergic neurotransmission regulates innate panic and fear brain networks are poorly understood. Our earlier studies have identified that orexin (OX)/glutamate neurons within the perifornical hypothalamic area (PFA) play a critical role in adaptive and pathological panic and fear. While site-specific and electrophysiological studies have shown that intracranial injection and bath application of 5-HT inhibits PFA neurons via 5-HT1a receptors, they largely ignore circuit-specific neurotransmission and its physiological properties that occur in vivo. Here, we investigate the role of raphe nuclei 5-HT inputs into the PFA in panic and fear behaviors. We initially confirmed that photostimulation of glutamatergic neurons in the PFA of rats produces robust cardioexcitation and flight/aversive behaviors resembling panic-like responses. Using the retrograde tracer cholera toxin B, we determined that the PFA receives discrete innervation of serotonergic neurons clustered in the lateral wings of the dorsal (lwDRN) and in the median (MRN) raphe nuclei. Selective lesions of these serotonergic projections with saporin toxin resulted in similar panic-like responses during the suffocation-related CO2 challenge and increased freezing to fear-conditioning paradigm. Conversely, selective stimulation of serotonergic fibers in the PFA attenuated both flight/escape behaviors and cardioexcitation responses elicited by the CO2 challenge and induced conditioned place preference. The data here support the hypothesis that PFA projecting 5-HT neurons in the lwDRN/MRN represents a panic/fear-off circuit and may also play a role in reward behavior.


Carbon Dioxide , Serotonin , Rats , Animals , Serotonin/physiology , Rats, Wistar , Fear/physiology , Panic/physiology , Serotonergic Neurons
4.
J Psychiatr Res ; 165: 225-232, 2023 09.
Article En | MEDLINE | ID: mdl-37517243

Repeated panic attacks are the core symptom of panic disorder and severely stressful for patients. Additional to the psychological response, the physiological symptoms are an important aspect of the experienced panic. However, data on the extent of hypothalamic-pituitary-adrenal (HPA)-axis activation during panic attacks is inconsistent. Therefore, in the present study, we aimed at investigating the stress-axis activity in more detail by including Copeptin (CoP) as a stable surrogate parameter for the vasopressinergic hypothalamic activity during experimentally induced panic attacks in healthy adults (N = 21). During a placebo-controlled panic challenge with 35% CO2 compared to normal air inhalation, we measured CoP and the peripheral effector hormones Adrenocorticotropic Releasing Hormone (ACTH) and cortisol in plasma along with the psychological response to panic anxiety. We analyzed hormonal secretion patterns, their correlations and individual panic ratings over time and explored differences between female and male participants. We found a significant CO2-induced increase of CoP plasma levels and psychological panic symptoms after CO2-administration, while no positive correlations of CoP levels with the peripheral HPA-axis hormones and with panic symptoms were present. No differences between female and male participants concerning their psychological response nor their baseline CoP levels, the release of CoP or its increase during the experiment were found. CoP could be a sensitive indicator for an organism's physiologic acute hypothalamic response during stress and panic attacks.


Carbon Dioxide , Panic Disorder , Humans , Male , Adult , Female , Adrenocorticotropic Hormone , Panic/physiology , Panic Disorder/diagnosis , Hydrocortisone , Hypothalamo-Hypophyseal System/metabolism , Pituitary-Adrenal System/metabolism
5.
Acta Neurobiol Exp (Wars) ; 82(2): 217-225, 2022.
Article En | MEDLINE | ID: mdl-35833821

The lateral hypothalamus (LH) sends neural pathways to structures involved on predator­related defensive behaviours, escape and antinociception. The aim of this study was to investigate the role played by µ-opioid receptors located on LH neurons in defensive behaviour and unconditioned fear­induced antinociception elicited by electric stimulation of LH. To achieve the goals, the µ1-opioid receptor selective antagonist naloxonazine was administered at different concentrations in the LH, and the defensive behaviour and fear­induced antinociception elicited by electrical stimulation of LH were evaluated. The electrical stimulation of LH caused escape behaviour followed by defensive antinociception. Microinjections of naloxonazine in a concentration of 5.0 µg/0.2 µL in the LH decreased the aversive stimulus­induced escape behaviour thresholds, but diminished defensive antinociception. These findings suggest that µ-opioid receptors of LH can be critical to panic attack­related symptoms and facilitate the unconditioned fear­induced antinociception produced by LH neurons activation.


Behavior, Animal , Hypothalamic Area, Lateral , Panic Disorder , Receptors, Opioid, mu , Animals , Behavior, Animal/drug effects , Behavior, Animal/physiology , Bicuculline/pharmacology , Fear/physiology , Hypothalamic Area, Lateral/drug effects , Hypothalamic Area, Lateral/metabolism , Naloxone/analogs & derivatives , Naloxone/pharmacology , Narcotic Antagonists/pharmacology , Nociception , Panic/physiology , Panic Disorder/metabolism , Panic Disorder/psychology , Rats , Rats, Wistar , Receptors, Opioid, mu/antagonists & inhibitors , Receptors, Opioid, mu/metabolism
6.
Eur J Neurosci ; 55(1): 32-48, 2022 01.
Article En | MEDLINE | ID: mdl-34850475

Anxiety-related diseases are more than twice as common in women than in men, and in women, symptoms may be exacerbated during the late luteal phase of the menstrual cycle. Despite this, most research into the underlying mechanisms, which drives drug development, have been carried out using male animals. In an effort to redress this imbalance, we compared responses of male and female Wistar rats during exposure to two unconditioned threatening stimuli that evoke panic-related defensive behaviours: confrontation with a predator (Bothrops alternatus) and acute exposure to hypoxia (7% O2 ). Threatened by venomous snake, male and female rats initially displayed defensive attention, risk assessment, and cautious interaction with the snake, progressing to defensive immobility to overt escape. Both males and females displayed higher levels of risk assessment but less interaction with the predator. They also spent more time in the burrow, displaying inhibitory avoidance, and more time engaged in defensive attention, and non-oriented escape behaviour. In females, anxiety-like behaviour was most pronounced in the oestrous and proestrus phases whereas panic-like behaviour was more pronounced during the dioestrus phase, particularly during late dioestrus. Acute hypoxia evoked panic-like behaviour (undirected jumping) in both sexes, but in females, responsiveness in late dioestrus was significantly greater than at other stages of the cycle. The results reveal that females respond in a qualitatively similar manner to males during exposure to naturally occurring threatening stimuli, but the responses of females is oestrous cycle dependent with a significant exacerbation of panic-like behaviour in the late dioestrus phase.


Bothrops , Crotalinae , Animals , Female , Humans , Hypoxia , Male , Panic/physiology , Rats , Rats, Wistar
7.
Behav Brain Res ; 408: 113296, 2021 06 25.
Article En | MEDLINE | ID: mdl-33862061

Changes in 5-HT1A receptor (5-HT1AR)-mediated neurotransmission in the hippocampus have been associated with anxiety, depression and in the mode of action of antidepressant drugs. It has been commonly accepted that whereas the dorsal pole of the hippocampus (DH) is involved in cognitive processing, the ventral pole (VH) is associated with emotional regulation. However, to date, only a few studies have directly addressed the role played by VH 5-HT1ARs in anxiety and panic processing, and their results are conflicting. Here we report that intra-VH administration of the 5-HT1A receptor agonist 8-OH-DPAT, the endogenous agonist serotonin (5-HT), or the standard anxiolytic benzodiazepine midazolam impaired the acquisition of inhibitory avoidance in the elevated T-maze (ETM) of male Wistar rats, indicating an anxiolytic effect. Conversely, local injection of the 5-HT1AR antagonist WAY-100635 caused the opposite effect. These results were equally found in the Vogel conflict test. None of these drugs interfered with locomotor activity in the open-field test, nor did they alter the expression of the escape response in the ETM, a defensive behavior associated with panic. Pre-injection of a sub-effective dose of WAY-100635 in the VH blocked the anxiolytic effect of 5-HT or 8-OH-DPAT in the Vogel test, confirming the involvement of 5-HT1AR for this behavioral effect. The effect in this test was anxiety-selective as none of the drugs affected water consumption or nociception. In conclusion, our results suggest that 5-HT1ARs in the VH play a tonic inhibitory role in anxiety processing. These receptors, however, are not involved in the regulation of panic-related escape behavior.


Anxiety , Behavior, Animal/physiology , Hippocampus , Panic/physiology , Receptor, Serotonin, 5-HT1A/physiology , Animals , Anxiety/metabolism , Anxiety/physiopathology , Behavior, Animal/drug effects , Disease Models, Animal , Hippocampus/drug effects , Hippocampus/metabolism , Hippocampus/physiopathology , Male , Panic/drug effects , Rats , Rats, Wistar , Serotonin Antagonists/pharmacology
8.
PLoS One ; 16(1): e0246339, 2021.
Article En | MEDLINE | ID: mdl-33503049

The over-purchasing and hoarding of necessities is a common response to crises, especially in developed economies where there is normally an expectation of plentiful supply. This behaviour was observed internationally during the early stages of the Covid-19 pandemic. In the absence of actual scarcity, this behaviour can be described as 'panic buying' and can lead to temporary shortages. However, there have been few psychological studies of this phenomenon. Here we propose a psychological model of over-purchasing informed by animal foraging theory and make predictions about variables that predict over-purchasing by either exacerbating or mitigating the anticipation of future scarcity. These variables include additional scarcity cues (e.g. loss of income), distress (e.g. depression), psychological factors that draw attention to these cues (e.g. neuroticism) or to reassuring messages (eg. analytical reasoning) or which facilitate over-purchasing (e.g. income). We tested our model in parallel nationally representative internet surveys of the adult general population conducted in the United Kingdom (UK: N = 2025) and the Republic of Ireland (RoI: N = 1041) 52 and 31 days after the first confirmed cases of COVID-19 were detected in the UK and RoI, respectively. About three quarters of participants reported minimal over-purchasing. There was more over-purchasing in RoI vs UK and in urban vs rural areas. When over-purchasing occurred, in both countries it was observed across a wide range of product categories and was accounted for by a single latent factor. It was positively predicted by household income, the presence of children at home, psychological distress (depression, death anxiety), threat sensitivity (right wing authoritarianism) and mistrust of others (paranoia). Analytic reasoning ability had an inhibitory effect. Predictor variables accounted for 36% and 34% of the variance in over-purchasing in the UK and RoI respectively. With some caveats, the data supported our model and points to strategies to mitigate over-purchasing in future crises.


COVID-19/psychology , Consumer Behavior/economics , Pandemics/economics , Panic/physiology , Adult , Aged , Anxiety/psychology , COVID-19/economics , Depression/psychology , Female , Hoarding/psychology , Humans , Ireland , Male , Middle Aged , Models, Psychological , SARS-CoV-2/isolation & purification , Stress, Psychological/epidemiology , Stress, Psychological/psychology , Surveys and Questionnaires , United Kingdom
9.
Article En | MEDLINE | ID: mdl-32623021

Clinical and pre-clinical evidence demonstrates divergent psychotropic effects of THC vs. CBD. While THC can induce perceptual distortions and anxiogenic effects, CBD displays antipsychotic and anxiolytic properties. A key brain region responsible for regulation of cognition and affect, the medial prefrontal cortex (PFC), is strongly modulated by cannabinoids, suggesting that these dissociable THC/CBD-dependent effects may involve functional and molecular interplay within the PFC. The primary aim of this study was to investigate potential interactions and molecular substrates involved in PFC-mediated effects of THC and CBD on differential cognitive and affective behavioural processing. Male Sprague Dawley rats received intra-PFC microinfusions of THC, CBD or their combination, and tested in the latent inhibition paradigm, spontaneous oddity discrimination test, elevated T-maze and open field. To identify local, drug-induced molecular modulation in the PFC, PFC samples were collected and processed with Western Blotting. Intra-PFC THC induced strong panic-like responses that were counteracted with CBD. In contrast, CBD did not affect panic-like behaviours but blocked formation of associative fear memories and impaired latent inhibition and oddity discrimination performance. Interestingly, these CBD effects were dependent upon 5-HT1A receptor transmission but not influenced by THC co-administration. Moreover, THC induced robust phosphorylation of ERK1/2 that was prevented by CBD, while CBD decreased phosphorylation of p70S6K, independently of THC. These results suggest that intra-PFC infusion of THC promotes panic-like behaviour associated with increased ERK1/2 phosphorylation. In contrast, CBD impairs perceptive functions and latent inhibition via activation of 5-HT1A receptors and reduced phosphorylation of p70S6K.


Cannabidiol/administration & dosage , Dronabinol/administration & dosage , Inhibition, Psychological , Panic/drug effects , Perception/drug effects , Prefrontal Cortex/drug effects , Animals , Anticonvulsants/administration & dosage , Discrimination Learning/drug effects , Discrimination Learning/physiology , Infusions, Intraventricular , Male , Panic/physiology , Perception/physiology , Prefrontal Cortex/physiology , Psychotropic Drugs/administration & dosage , Rats , Rats, Sprague-Dawley
10.
Behav Brain Res ; 401: 112996, 2021 03 05.
Article En | MEDLINE | ID: mdl-33171147

Cannabinoid receptor type 1 (CB1R) is widely distributed in the substantia nigra pars reticulata (SNpr). However, the role of CB1R at the SNpr level in threatening situations is poorly understood. We investigated the role of CB1R in the SNpr on the expression of fear responses in mice confronted with urutu-cruzeiro pit vipers. First, a bidirectional neurotracer was injected into the SNpr; then, immunostaining of the vesicular GABA transporter was conducted at the levels of the striatum (CPu) and deep layers of the superior colliculus (dlSC). In addition, CB1R immunostaining and GABA labelling were performed in the SNpr. Using a prey-versus-snake paradigm, mice were pretreated with the CB1R antagonist AM251 (100 pmol) and treated with the endocannabinoid anandamide (AEA, 5 pmol) in the SNpr, followed by bicuculline (40 ng) in the dlSC, and were then confronted with a snake. Bidirectional neural tract tracers associated with immunofluorescence showed the GABAergic striatonigral disinhibitory and nigrotectal inhibitory pathways. Furthermore, we showed that CB1R labelling was restricted to axonal fibres surrounding SNpr GABAergic cells. We also demonstrated a decrease in the defensive behaviours of mice treated with AEA in the SNpr, but this effect was blocked by pre-treatment with AM251 in this structure. Taken together, our results show that the panicolytic consequences of the AEA enhancement in the SNpr are signalled by CB1R, suggesting that CB1R localised in axon terminals of CPu GABAergic neurons in the SNpr modulates the activity of the nigrotectal GABAergic pathway during the expression of defensive behaviours in threatening situations.


Behavior, Animal/drug effects , Cannabinoid Receptor Agonists/pharmacology , Cannabinoid Receptor Antagonists/pharmacology , Corpus Striatum/metabolism , Food Chain , Panic/physiology , Pars Reticulata/metabolism , Receptor, Cannabinoid, CB1/metabolism , Superior Colliculi/metabolism , Vesicular Inhibitory Amino Acid Transport Proteins/metabolism , Animals , Arachidonic Acids/pharmacology , Cannabinoid Receptor Agonists/administration & dosage , Cannabinoid Receptor Antagonists/administration & dosage , Crotalinae , Endocannabinoids/pharmacology , Male , Mice , Mice, Inbred C57BL , Neural Pathways/metabolism , Neuroanatomical Tract-Tracing Techniques , Piperidines/pharmacology , Polyunsaturated Alkamides/pharmacology , Pyrazoles/pharmacology , Receptor, Cannabinoid, CB1/antagonists & inhibitors , Staining and Labeling
11.
Int J Psychophysiol ; 153: 127-134, 2020 07.
Article En | MEDLINE | ID: mdl-32417225

Anxiety disorders and symptoms disproportionately impact women relative to men, but it is unclear what mechanism(s) contribute to this phenomenon. The present study examined sensitivity to unpredictable threat as a potential mechanism of gender differences in panic symptoms. The sample included 67 participants (35 women) who completed the no, predictable, and unpredictable threat (NPU-threat) startle paradigm with electric shocks as the aversive stimulus. Participants also completed the self-report Inventory of Depression and Anxiety Symptoms to assess current panic and depression symptoms. Results indicated that women, relative to men, reported greater panic symptoms and demonstrated increased startle potentiation in anticipation of predictable and unpredictable threat. Furthermore, across all participants increased startle potentiation in anticipation of unpredictable (but not predictable) threat was associated with greater panic symptoms, but there was no relationship with depression symptoms. Finally, the gender difference in panic symptoms was mediated by startle potentiation in anticipation of unpredictable (but not predictable) threat. The present study suggests that a heightened sensitivity to unpredictable threat might be a mechanism that contributes to increased anxiety in women.


Anticipation, Psychological/physiology , Anxiety/physiopathology , Fear/physiology , Reflex, Startle/physiology , Adolescent , Adult , Female , Humans , Male , Panic/physiology , Sex Characteristics , Sex Factors , Young Adult
12.
Brain Res ; 1731: 145942, 2020 03 15.
Article En | MEDLINE | ID: mdl-30205108

Orexin has been implicated in a number of physiological functions, including arousal, regulation of sleep, energy metabolism, appetitive behaviors, stress, anxiety, fear, panic, and cardiovascular control. In this review, we will highlight research focused on orexin system in the medial hypothalamic regions of perifornical (PeF) and dorsomedial hypothalamus (DMH), and describe the role of this hypothalamic neuropeptide in the behavioral expression of panic and consequent fear and avoidance responses, as well as sympathetic regulation and possible development of chronic hypertension. We will also outline recent data highlighting the clinical potential of single and dual orexin receptor antagonists for neuropsychiatric conditions including panic, phobia, and cardiovascular conditions, such as in hypertension.


Hypertension/physiopathology , Hypothalamus, Middle/physiology , Orexins/physiology , Panic/physiology , Phobic Disorders/physiopathology , Animals , Brain/drug effects , Brain/physiology , Humans , Hypertension/prevention & control , Neural Pathways/drug effects , Neural Pathways/physiology , Orexin Receptor Antagonists/administration & dosage , Panic/drug effects , Phobic Disorders/prevention & control , Stress, Psychological/physiopathology
13.
Mol Psychiatry ; 25(2): 442-460, 2020 02.
Article En | MEDLINE | ID: mdl-30108314

Recurrent panic attacks (PAs) are a common feature of panic disorder (PD) and post-traumatic stress disorder (PTSD). Several distinct brain regions are involved in the regulation of panic responses, such as perifornical hypothalamus (PeF), periaqueductal gray, amygdala and frontal cortex. We have previously shown that inhibition of GABA synthesis in the PeF produces panic-vulnerable rats. Here, we investigate the mechanisms by which a panic-vulnerable state could lead to persistent fear. We first show that optogenetic activation of glutamatergic terminals from the PeF to the basolateral amygdala (BLA) enhanced the acquisition, delayed the extinction and induced the persistence of fear responses 3 weeks later, confirming a functional PeF-amygdala pathway involved in fear learning. Similar to optogenetic activation of PeF, panic-prone rats also exhibited delayed extinction. Next, we demonstrate that panic-prone rats had altered inhibitory and enhanced excitatory synaptic transmission of the principal neurons, and reduced protein levels of metabotropic glutamate type 2 receptor (mGluR2) in the BLA. Application of an mGluR2-positive allosteric modulator (PAM) reduced glutamate neurotransmission in the BLA slices from panic-prone rats. Treating panic-prone rats with mGluR2 PAM blocked sodium lactate (NaLac)-induced panic responses and normalized fear extinction deficits. Finally, in a subset of patients with comorbid PD, treatment with mGluR2 PAM resulted in complete remission of panic symptoms. These data demonstrate that a panic-prone state leads to specific reduction in mGluR2 function within the amygdala network and facilitates fear, and mGluR2 PAMs could be a targeted treatment for panic symptoms in PD and PTSD patients.


Amygdala/metabolism , Fear/physiology , Panic/physiology , Animals , Basolateral Nuclear Complex/metabolism , Brain/metabolism , Extinction, Psychological/physiology , Frontal Lobe/metabolism , Glutamic Acid/metabolism , Inhibition, Psychological , Male , Optogenetics/methods , Rats , Rats, Sprague-Dawley , Receptors, Metabotropic Glutamate/metabolism , Synaptic Transmission/physiology
14.
Brain Res ; 1725: 146468, 2019 12 15.
Article En | MEDLINE | ID: mdl-31541642

Dorsal raphe nucleus (DRN) neurons are reciprocally connected to the locus coeruleus (LC) and send neural pathways to the medial hypothalamus (MH). The aim of this work was to investigate whether the blockade of α1-, α2- or ß-noradrenergic receptors in the DRN or the inactivation of noradrenergic neurons in the LC modify defensive behaviours organised by MH neurons. For this purpose, Wistar male rats received microinjections of WB4101, RX821002, propranolol (α1-, α2- and ß-noradrenergic receptor antagonists, respectively) or physiological saline in the DRN, followed 10 min later by MH GABAA receptor blockade. Other groups of animals received DSP-4 (a noradrenergic neurotoxin), physiological saline or only a needle insertion (sham group) into the LC, and 5 days later, bicuculline or physiological saline was administered in the MH. In all these cases, after MH treatment, the frequency and duration of defensive responses were recorded over 15 min. An anterograde neural tract tracer was also deposited in the DRN. DRN neurons send pathways to lateral and dorsomedial hypothalamus. Blockade of α1- and ß-noradrenergic receptors in the DRN decreased escape reactions elicited by bicuculline microinjections in the MH. In addition, a significant increase in anxiety-like behaviours was observed after the blockade of α2-noradrenergic receptors in the DRN. LC pretreatment with DSP-4 decreased both anxiety- and panic attack-like behaviours evoked by GABAA receptor blockade in the MH. In summary, the present findings suggest that the norepinephrine-mediated system modulates defensive reactions organised by MH neurons at least in part via noradrenergic receptors recruitment on DRN neurons.


Dorsal Raphe Nucleus/physiology , Hypothalamus, Middle/physiology , Neurons/physiology , Panic/physiology , Receptors, Adrenergic, alpha/physiology , Receptors, Adrenergic, beta/physiology , Adrenergic alpha-Antagonists/administration & dosage , Animals , Anxiety/physiopathology , Dorsal Raphe Nucleus/drug effects , Hypothalamus, Middle/drug effects , Male , Neural Pathways/drug effects , Neural Pathways/physiology , Neurons/drug effects , Panic/drug effects , Rats, Wistar
15.
Australas Emerg Care ; 22(4): 216-220, 2019 Dec.
Article En | MEDLINE | ID: mdl-31530499

Anxiety and panic symptoms are widespread in the general population. The physical manifestations of anxiety and panic commonly account for people presenting to Emergency Departments (EDs). It is therefore important for ED clinicians to be informed of the numerous causes of anxiety and panic and equipped to respond effectively. This paper describes the underlying pathophysiology of the physical symptoms of anxiety and panic and differential diagnoses to consider. Organic conditions that are associated with symptoms of anxiety and panic are highlighted. Brief interventions are tabled for ED clinicians to use when explaining symptoms, and to promote individual self-management.


Anxiety/etiology , Emergency Service, Hospital , Panic/physiology , Anxiety/diagnosis , Anxiety/therapy , Breathing Exercises/methods , Diagnosis, Differential , Escape Reaction/physiology , Humans , Hyperventilation/etiology , Life Style , Medical History Taking/methods , Patient Education as Topic , Physical Examination , Relaxation Therapy/methods , Self Care/methods , Stress, Psychological/etiology , Stress, Psychological/therapy
16.
Neuropsychobiology ; 78(4): 209-217, 2019.
Article En | MEDLINE | ID: mdl-31437853

BACKGROUND: The 35% CO2 challenge is a well-established method triggering panic attacks under laboratory-controlled conditions. There is an ongoing debate whether single or the joined effects of the instructional set and anxiety sensitivity (AS) can alter the outcome of the challenge. OBJECTIVES: The present study investigated the effects of instruction manipulation and AS on panic-like response to the 35% CO2 challenge. METHODS: Eighty healthy subjects, with high or low levels of AS, were randomized into 4 groups based on standard/manipulated instructional sets as well as 35% CO2 mixture/room air inhalation. Subjects filled in the Visual Analogue Scale of Anxiety (VAAS), the Visual Analogue Scale of Fear (VAS-F), the VAS of Discomfort (VAS-D), and the Panic Symptom List (PSL). Blood pressure and heart rate were measured at pre- and posttest. RESULTS: Hierarchical multiple regression analyses showed greater psychological responses at VAAS, VAS-F, VAS-D, and PSL and higher systolic blood pressure under 35% CO2 challenge if compared to room air inhalation while instructional set and AS did not influence the response. CONCLUSIONS: The present study confirms that neither instructional test nor AS alter the outcome of the 35% CO2 challenge.


Anticipation, Psychological/physiology , Anxiety/psychology , Panic Disorder/psychology , Panic/physiology , Administration, Inhalation , Adolescent , Adult , Aged , Carbon Dioxide/administration & dosage , Female , Healthy Volunteers , Humans , Male , Middle Aged , Panic/drug effects , Young Adult
17.
Behav Brain Res ; 364: 99-105, 2019 05 17.
Article En | MEDLINE | ID: mdl-30768992

Although the etiology of panic disorder (PD) remains elusive, accumulating evidence suggests a key role for the dorsal periaqueductal gray matter (dPAG). There is also evidence that this midbrain area is critically involved in mediation of the panicolytic effect of antidepressants, which with high potency benzodiazepines (e.g. alprazolam and clonazepam) are first line treatment for PD. Whether the dPAG is also implicated in the antipanic effect of the latter drugs is, however, still unknown. We here investigated the consequences of blocking GABAA or benzodiazepine receptors within the dPAG, with bicuculline (5 pmol) and flumazenil (80 nmol), respectively, on the panicolytic and anxiolytic effects of alprazolam (4 mg/kg). Microinjection of these antagonists fully blocked the anti-escape effect, considered as a panicolytic-like action, caused by a single systemic injection of alprazolam in male Wistar rats submitted to the elevated T-maze. These antagonists, however, did not affect the anxiolytic effect of the benzodiazepine on inhibitory avoidance acquisition and punished responding, measured in the elevated T-maze and Vogel conflict tests, respectively. Altogether, our findings show the involvement of GABAA/benzodiazepine receptors of the dPAG in the panicolytic, but not the anxiolytic effect caused by alprazolam. They also implicate the dPAG as the fulcrum of the effects of different classes of clinically effective antipanic drugs.


Alprazolam/pharmacology , Panic/drug effects , Periaqueductal Gray/drug effects , Animals , Anti-Anxiety Agents/pharmacology , Antidepressive Agents/pharmacology , Anxiety/drug therapy , Anxiety/metabolism , Benzodiazepines/pharmacology , Bicuculline/pharmacology , Escape Reaction/drug effects , Flumazenil/pharmacology , GABA-A Receptor Antagonists/pharmacology , Male , Panic/physiology , Panic Disorder/drug therapy , Periaqueductal Gray/metabolism , Rats , Rats, Wistar , Receptors, GABA-A/metabolism , gamma-Aminobutyric Acid/pharmacology
18.
Article En | MEDLINE | ID: mdl-30742862

Exposure of rats to an environment with low O2 levels evokes a panic-like escape behavior and recruits the dorsal periaqueductal gray (dPAG), which is considered to be a key region in the pathophysiology of panic disorder. The neurochemical basis of this response is, however, currently unknown. We here investigated the role played by nitric oxide (NO) within the dPAG in mediation of the escape reaction induced by hypoxia exposure. The results showed that exposure of male Wistar rats to 7% O2 increased nitrite levels, a NO metabolite, in the dPAG but not in the amygdala or hypothalamus. Nitrite levels in the dPAG were correlated with the number of escape attempts during the hypoxia challenge. Injections of the NO synthesis inhibitor NPA, the NO-scavenger c- PTIO, or the NMDA receptor antagonist AP-7 into the dorsolateral column of the periaqueductal gray (dlPAG) inhibited escape expression during hypoxia, without affecting the rats' locomotion. Intra-dlPAG administration of c-PTIO had no effect on the escape response evoked by the elevated-T maze, a defensive behavior that has also been associated with panic attacks. Altogether, our results suggest that NO plays a critical role in mediation of the panic-like defensive response evoked by exposure to low O2 concentrations.


Escape Reaction/physiology , Hypoxia/physiopathology , Nitric Oxide/physiology , Panic/physiology , Periaqueductal Gray/physiology , 2-Amino-5-phosphonovalerate/administration & dosage , 2-Amino-5-phosphonovalerate/analogs & derivatives , 2-Amino-5-phosphonovalerate/pharmacology , Amygdala/metabolism , Animals , Arginine/administration & dosage , Arginine/analogs & derivatives , Arginine/pharmacology , Escape Reaction/drug effects , Hypothalamus/metabolism , Male , Maze Learning/drug effects , Microinjections , Motor Activity/drug effects , Nitrites/metabolism , Periaqueductal Gray/metabolism , Rats
19.
Psychopharmacology (Berl) ; 236(6): 1863-1874, 2019 Jun.
Article En | MEDLINE | ID: mdl-30694375

RATIONALE: The endocannabinoid system plays an important role in the organization of panic-like defensive behavior. Threatening situations stimulate brain areas, such as the dorsomedial hypothalamus (DMH). However, there is a lack of studies addressing the role of the DMH endocannabinoid system in panic-like responses. OBJECTIVES: We aimed to verify which mechanisms underlie anandamide-mediated responses in the DMH. METHODS: To test the hypothesis that the anandamide produces panicolytic-like effects, we treated mice with intra-DMH microinjections of vehicle or increasing doses of anandamide (0.5, 5, or 50 pmol) and then performed confrontation with the South American snake Epicrates cenchria assisi. RESULTS: Intra-DMH anandamide treatment yielded a U-shaped dose-response curve with no effect of the lowest (0.5 pmol) or the highest (50 pmol) dose and significant inhibition of panic-like responses at the intermediate (5 pmol) dose. In addition, this panicolytic-like effect was prevented by pretreatment of the DMH with the CB1 receptor antagonist AM251 (100 pmol). However, pretreatment of the DMH with the TRPV1 receptor antagonist 6-iodo-nordihydrocapsaicin (3 nmol) restored the panicolytic-like effect of the highest dose of anandamide. Immunohistochemistry revealed that CB1 receptors were present primarily on axonal fibers, while TRPV1 receptors were found almost exclusively surrounding the perikarya in DMH. CONCLUSIONS: The present results suggest that anandamide exerts a panicolytic-like effect in the DMH by activation of CB1 receptors and that TRPV1 receptors are related to the lack of effect of the highest dose of anandamide.


Arachidonic Acids/administration & dosage , Cannabinoid Receptor Agonists/administration & dosage , Dorsomedial Hypothalamic Nucleus/metabolism , Endocannabinoids/administration & dosage , Panic/physiology , Polyunsaturated Alkamides/administration & dosage , Receptor, Cannabinoid, CB1/biosynthesis , TRPV Cation Channels/biosynthesis , Animals , Boidae , Brazil , Dorsomedial Hypothalamic Nucleus/drug effects , Dose-Response Relationship, Drug , Injections, Intraventricular , Male , Mice , Mice, Inbred C57BL , Panic/drug effects , Piperidines/administration & dosage , Pyrazoles/administration & dosage , Rats , Receptor, Cannabinoid, CB1/agonists , Receptor, Cannabinoid, CB1/antagonists & inhibitors , TRPV Cation Channels/antagonists & inhibitors
20.
Epilepsy Behav ; 92: 206-212, 2019 03.
Article En | MEDLINE | ID: mdl-30684800

OBJECTIVES: Psychogenic nonepileptic seizures (PNES) resemble seizures but are psychological in origin. The etiology of PNES remains poorly understood, yet several theories argue for the importance of autonomic dysregulation in its pathophysiology. We therefore conducted a retrospective study to investigate autonomic dynamics leading up to a seizure to inform their mechanistic relevance. METHODS: One hundred one patients with PNES and 45 patients with epileptic seizure (ES) were analyzed for preictal heart rate (HR) and respiratory rate (RR) at baseline and at minute intervals from 5 min to onset. RESULTS: Patients with PNES showed rising HR (p < 0.001, repeated-measures analysis of variance (ANOVA)) and rising RR (p = 0.012, repeated-measures ANOVA) from baseline to the onset of their seizures. Patients with ES did not exhibit significant preictal HR or RR increase. Patients with PNES had nonsignificantly higher preictal HR and RR than patients with ES. SIGNIFICANCE: Patients with PNES exhibit increasing autonomic arousal prior to seizure events unlike patients with epilepsy. This may reflect increasing levels of preictal anxiety, and future studies could study patients' subjective experiences of the preictal period, and more definitive measures of ventilation to see if this supported a model of PNES as "panic without panic".


Heart Rate/physiology , Respiratory Rate/physiology , Seizures/physiopathology , Seizures/psychology , Adolescent , Adult , Aged , Aged, 80 and over , Arousal/physiology , Autonomic Nervous System/physiopathology , Electroencephalography/methods , Female , Humans , Male , Middle Aged , Panic/physiology , Retrospective Studies , Seizures/diagnosis , Young Adult
...