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Biomedical subjects

J D Coplan

Publications and source records attributed to J D Coplan.

At least 37 records · Page 2Linked to original sources

The noradrenergic system in pathological anxiety: a focus on panic with relevance to generalized anxiety and phobias.

Over the past three decades of psychiatric research, abnormalities in the noradrenergic system have been identified in particular anxiety disorders such as panic disorder. Simultaneously, neuroscience research on fear pathways and the stress response have delineated central functions for the noradrenergic system. This review focuses on the noradrenergic system in anxiety spectrum disorders such as panic disorder, generalized anxiety disorder, and phobias for the purpose of elucidating current conceptualizations of the pathophysiologies. Neuroanatomic pathways that are theoretically relevant in anxiogenesis are discussed and the implications for treatment reviewed.

Amygdala↗

Panic induced by carbon dioxide inhalation and lack of hypothalamic-pituitary-adrenal axis activation.

It has been hypothesized that spontaneous panic is distinct from anticipatory anxiety, which activates the hypothalamic-pituitary-adrenal (HPA) axis. Panic attacks characterized by prominent respiratory symptoms, such as those induced by sodium lactate, are not associated with increases in cortisol. We examined blood cortisol responses to CO2-induced panic. Cortisol levels did not increase and actually decreased significantly in 10 panicking subjects with panic disorder. No reductions were noted after 20 min of CO2 inhalation in either eight normal comparison subjects or six non-panicking panic disorder patients. These results lend support to the hypothesis that the pathophysiological mechanism underlying CO2-induced panic is different from that underlying general or anticipatory anxiety.

Adult↗

Plasma anti-serotonin and serotonin anti-idiotypic antibodies are elevated in panic disorder.

The psychoneuroimmunology of panic disorder is relatively unexplored. Alterations within brain stress systems that secondarily influence the immune system have been documented. A recent report indicated elevations of serotonin (5-HT) and ganglioside antibodies in patients with primary fibromyalgia, a condition with documented associations with panic disorder. In line with our interest in dysregulated 5-HT systems in panic disorder (PD), we wished to assess if antibodies directed at the 5-HT system were elevated in patients with PD in comparison to healthy volunteers. Sixty-three patients with panic disorder and 26 healthy volunteers were diagnosed by the SCID. Employing ELISA, we measured anti-5-HT and 5-HT anti-idiotypic antibodies (which are directed at 5-HT receptors). To include all subjects in one experiment, three different batches were run during the ELISA. Plasma serotonin anti-idiotypic antibodies: there was a significant group effect [patients > controls (p = .007)] and batch effect but no interaction. The mean effect size for the three batches was .76. Following Z-score transformation of each separate batch and then combining all scores, patients demonstrated significantly elevated levels of plasma serotonin anti-idiotypic antibodies. Neither sex nor age as covariates affected the significance of the results. There was a strong correlation between anti-serotonin antibody and serotonin anti-idiotypic antibody measures. Plasma anti-serotonin antibodies: there was a significant diagnosis effect [patients > controls (p = .037)]. Mean effect size for the three batches was .52. Upon Z-score transformation, there was a diagnosis effect with antibody elevations in patients. Covaried for sex and age, the result falls below significance to trend levels. The data raise the possibility that psychoimmune dysfunction, specifically related to the 5-HT system, may be present in PD. Potential interruption of 5-HT neurotransmission through autoimmune mechanisms may be of pathophysiologic significance in certain patients with panic disorder. It remains to be demonstrated if the peripheral autoimmunity is representative of CNS 5-HT neuronal alterations. Replication appears warranted.

Adult↗

Brain circuits in panic disorder.

This paper reviews the pathophysiology of panic disorder (PD), within the context of newly described "fear circuitries," which have been well characterized in preclinical models. Substantial advances in the neurosciences have made it possible for clinical neuroscientists to refine our understanding of the pathophysiology of PD and the mechanisms of currently effective treatment. These advances have in turn helped generate testable hypotheses for future neurobiological and psychopharmacologic research. Perturbation of mutual modulation ("cross talk") between key brain transmitter systems (serotonin, norepinephrine, gamma-aminobutyric acid, corticotropin-releasing factor, and others) may underlie the pathogenesis of panic-anxiety. Restoration of normal homeostasis may be an important therapeutic component of antipanic therapy and may provide information about underlying neurocircuits. Neuroimaging, an important new tool, has already begun to bridge the gap between the preclinical and clinical neurosciences through confirmation of hypothesized dysfunction of the complex human prefrontal cortex and its subcortical components. In higher species, such as humans, dysfunction of cortical inhibition or excessive cortical activation of caudal limbic structures is postulated to lead to activation of the phylogenetically conserved amygdalofugal pathways. Consistent with probable subtypes of PD, overlapping theoretical models of panic neurocircuitries are proposed, including ventilatory dysregulation, which is coupled with neurovascular instability in a critical area of the panic neurocircuitry--the amygdalohippocampus. Neuroimaging appears a critical tool in guiding further elaboration of the interaction of cortical and subcortical components of the panic neurocircuitry, whereas challenge studies appear crucial in gathering further information regarding brain stem dysfunction.

Animals↗

Clinical utility of the selective serotonin reuptake inhibitors in the spectrum of anxiety.

The selective serotonin reuptake inhibitors (SSRIs) are now being employed in the treatment of the full spectrum of anxiety disorders. In comparative trials, the SSRIs are proving to be equal or superior in efficacy to traditional antianxiety medications. Due to their favorable side effect profile, safety, and tolerability, they are rapidly replacing older agents in the treatment of anxiety. Neuroanatomical pathways that may be important in the antianxiety effect of the SSRIs are outline and discussed, followed by a review of the clinical evidence supporting the efficacy of this class of medications in the treatment of anxiety disorders.

Anti-Anxiety Agents↗

Ventilatory physiology of children and adolescents with anxiety disorders.

BACKGROUND: Abnormalities in ventilatory physiology have been noted in adults with panic disorder. We tested the hypothesis that abnormalities in ventilatory physiology differentiate children and adolescents with anxiety disorders from psychiatrically healthy children. METHODS: Ventilatory physiology was monitored with a canopy apparatus during room-air breathing and 15 minutes of carbon dioxide exposure in 33 children and adolescents comprising 18 probands with an anxiety disorder and 15 psychiatrically healthy children. RESULTS: During room-air breathing, probands had significantly larger minute ventilation, larger tidal volumes, and more variable breathing patterns than healthy comparisons, but the groups did not differ in end-tidal carbon dioxide or respiratory rate. During carbon dioxide challenge, probands exhibited larger minute ventilation and respiratory rate responses relative to comparisons. CONCLUSION: These findings on the association between ventilatory physiology and anxiety disorders in children and adolescents are consistent with results from studies of adults with panic disorder.

Adolescent↗

Plasma cortisol concentrations preceding lactate-induced panic. Psychological, biochemical, and physiological correlates.

BACKGROUND: We evaluated the role of plasma cortisol levels in determining sodium lactate-induced panic by reporting psychological, physiological, and biochemical data collected from an extended sample of 214 subjects during the "placebo" infusion (isotonic saline solution) immediately preceding the lactate infusion procedure. METHODS: One hundred seventy patients with panic disorder, 101 (59%) of whom were assessed to have panicked (P group), and 69 (41%) who were assessed not to have panicked (NP group) with lactate infusion; and 44 normal healthy volunteer controls (1 of whom panicked with lactate infusion) were studied. RESULTS: Before the lactate infusion, the P group exhibited hypothalamic-pituitary-adrenal (HPA) axis activation (high plasma cortisol levels) and evidence of hyperventilation (low PCO2 levels) in comparison with NP and control groups. Self-reported fear, dyspnea, and diastolic blood pressure were highest in the P group, intermediate in the NP group, and lowest in the control group. Within the P group, baseline fear scores correlated inversely with PCO2 levels and positively with cortisol levels while PCO2 levels correlated negatively with cortisol levels. Significant predictors of lactate-induced panic were prelactate infusion fear and the interaction of high cortisol levels and low PCO2 levels. CONCLUSION: Combined data suggest that synchronized elevations of HPA axis activity, self-reported fear, and hyperventilation during the period before lactate infusion predisposes to lactate-induced panic.

Acute Disease↗

Cerebrospinal fluid concentrations of somatostatin and biogenic amines in grown primates reared by mothers exposed to manipulated foraging conditions.

BACKGROUND: In an earlier study, infant primates were nursed by mothers randomly assigned to variable foraging demand (VFD) or nonvariable foraging conditions (non-VFD). A group of grown VFD-reared subjects demonstrated elevations of cisternal cerebrospinal fluid (CSF) corticotropin-releasing factor concentrations and decreased CSF cortisol levels vs non-VFD counterparts. To further characterize neurobiological sequelae of disturbed early rearing, CSF concentrations of serotonin, dopamine, and norepinephrine metabolites (5-hydroxyindoleacetic acid, homovanillic acid, and 3-methoxy-4-hydroxyphenethyleneglycol [MHPG], respectively) and of somatostatin were determined. METHODS: Second CSF taps were obtained from the previously studied cohort of 30 subjects and from 28 age-matched ad libitum-reared control subjects. Relevant assays were performed. RESULTS: All neurochemicals assayed except MHPG were elevated in the VFD-reared compared with non-VFD subjects. In the VFD group, statistically significant positive correlations between corticotropin-releasing factor and each neurochemical was found, except for MHPG. In the non-VFD subjects, no significant correlations with corticotropin-releasing factor were observed. No effect of age was evident. CONCLUSIONS: Reducing the predictability of maternal foraging demand during early rearing was associated with elevations of cisternal somatostatin and of serotonin and dopamine metabolite concentrations in grown offspring. The corticotropin-releasing factor elevations reported previously were positively correlated with all the elevated CSF parameters of the current study. The findings support the notion that adverse early rearing experiences in primates have longstanding and complex effects on a range of neurochemicals relevant to emotional regulation. Replication in prospective age-controlled studies is warranted.

Animals↗

Hemodynamic response to respiratory challenges in panic disorder.

This study compares the hemodynamic response to panic disorder subjects with that of normal controls during respiratory challenges. Panic patients meeting DSM-IIIR criteria for panic disorder and normal controls were challenged with room air hyperventilation, 5% CO2 breathing, and 7% CO2 breathing. Measurements of pulse and blood pressure were taken at resting baseline and before and at the end of each respiratory challenge. Panic attack to each challenge was determined by using raters blinded to subject diagnosis and each subject's self-rating of panic. Significantly larger systolic and diastolic blood pressure increases were found in patients who panicked with room air hyperventilation than nonpanicking patients or normal controls. No significant blood pressure differences were found with 7% or 5% CO2 challenges, but higher pulse rates were found in the patient group. It may be possible that panic with room air hyperventilation causes a significant increase in systolic and diastolic blood pressure, or that a subgroup of panic disorder patients has a hyperactive vascular response to hypocapnia. These patients panic with room air hyperventilation and develop greater vasoconstriction and/or increased blood pressure response.

Administration, Inhalation↗

Psychoneuroendocrinology of anxiety disorders.

This article focuses on neuroendocrine measures in anxiety disorders and their relationships to neurotransmitter and neuroendocrine function. In particular, the hypothalamic-pituitary-somatotropin and the hypothalamic-pituitary-adrenal (HPA) axes are emphasized, and a role for extrahypothalamic corticotropin releasing factor is proposed. Additional neuroactive hormones are also considered. A nonhuman primate model of anxiety is discussed in terms of its neuroendocrine relevance. And, throughout, a hypothetical functional-anatomic model for anxiety and panic is proposed using the findings of cognitive neuroscience fear research. Finally, an effort is made to synthesize existing psychoneuroendocrinologic data into a current conceptualization of the pathophysiology of anxiety disorders.

Adrenal Cortex Hormones↗

Heart period variability and psychopathology in urban boys at risk for delinquency.

To examine associations between heart period variability (HPV) and psychopathology in young urban boys at risk for delinquency, a series of 697-11-year-old younger brothers of adjudicated delinquents received a standardized psychiatric evaluation and an assessment of heart period variability (HPV). Psychiatric symptoms were rated in two domains: externalizing and internalizing psychopathology. Continuous measures of both externalizing and internalizing psychopathology were associated with reductions in HPV components related to parasympathetic activity. These associations could not be explained by a number of potentially confounding variables, such as age, ethnicity, social class, body size, or family history of hypertension. Although familial hypertension predicted reduced HPV and externalizing psychopathology, associations between externalizing psychopathology and HPV were independent of familial hypertension. Psychiatric symptoms are associated with reduced HPV in young urban boys at risk for delinquency.

Blood Pressure↗

Low-dose venlafaxine treatment in panic disorder.

Venlafaxine, a structurally novel antidepressant that combines mechanisms of action of both the cyclic antidepressants and SSRIs, may be effective in the treatment of panic disorder. Thirteen patients with DSM-IV panic disorder with or without agoraphobia participated in an open-label, fixed-flexible dose treatment study with venlafaxine. All patients who completed the 10-week trial exhibited statistically significant decreases in scores on anxiety symptoms as well as complete cessation of panic attacks at an effective mean daily dose of 47 mg per day. Venlafaxine was well tolerated in all completers. Venlafaxine may be an effective antipanic agent, even at lower than typical antidepressant dosages.

Adult↗

Effect of antipanic treatment on response to carbon dioxide.

BACKGROUND: Disordered breathing among patients with panic disorder, including hyperventilation during attacks and increased anxiogenic response to carbon dioxide (CO2) inhalation, is well established. We wished to assess whether there is a change in the physiological response to CO2 after patients have undergone antipanic therapy with either tricyclic antidepressants or cognitive behavioral therapy (CBT). METHODS: Twenty-nine patients with panic disorder underwent baseline CO2 sensitivity testing using the traditional Read rebreathing method and then received either antidepressant treatment (n = 21) or CBT (n = 8). After completing treatment, CO2 testing was repeated. A comparison sample of 14 normal volunteers also had two CO2 sensitivity tests, separated by an average of 21.6 (SD = 8.8) weeks. RESULTS: Using a liberal standard, in which all CO2 sensitivity tests whose correlations between minute ventilation and end-tidal CO2 were at least .75 were used, patients, but not controls, demonstrated a significant reduction in CO2 sensitivity between the first and second test. Using a more conservative .90 correlation standard reduced the sample size available and resulted in trend reduction in patients but no significant change in controls. There was a suggestion that the change was most pronounced in treatment responders, although the number of patient nonresponders is extremely small in this sample. CONCLUSIONS: These data indicate that treatment reduces CO2 sensitivity in patients with panic disorder. We speculate that manipulation of the serotonergic and noradrenergic neurotransmission systems, both known to play a role in the control of respiration, may have a specific effect in reducing respiratory hyperactivity in panic disorder.

Administration, Inhalation↗

Clinical improvement with fluoxetine therapy and noradrenergic function in patients with panic disorder.

BACKGROUND: Central noradrenergic (NA) dysregulation has provided a major theoretical framework for understanding the pathogenesis of panic disorder (PD). Using clonidine, an alpha 2-adrenergic receptor agonist, as a probe of NA function, we investigated the hypothesis that the antipanic efficacy of the selective serotonin reuptake inhibitors may be associated with normalization of a putatively dysregulated NA system. METHODS: We report further analyses on data from 17 subjects with PD and 16 healthy volunteers who underwent measurement of the plasma NA metabolite 3-methoxy-4-hydroxyphenylglycol (MHPG) immediately before and after oral clonidine administration. Thirteen patients with PD were rechallenged after 12 weeks during open fluoxetine hydrochloride treatment using the same clonidine paradigm; 13 healthy volunteers were rechallenged at 12 weeks, not having received treatment between challenges. RESULTS: Patients with PD, compared with healthy volunteers, have markedly elevated plasma MHPG volatility during the first clonidine challenge. Volatility describes the magnitude of within-subject plasma MHPG oscillatory activity as assessed by the root of the mean square successive difference. A greater degree of clinical global improvement was predicted by a greater magnitude of basal MHPG reduction with fluoxetine treatment. Antipanic response to fluoxetine was accompanied by a significant decrease of MHPG volatility to volunteer levels. Volunteer MHPG volatility remained unchanged from the first to second clonidine challenge. CONCLUSIONS: Further evidence is provided for the hypothesis of NA dysregulation in PD as reflected by elevations of within-subjects plasma MHPG volatility during clonidine challenge. Effective selective serotonin reuptake inhibitor-antipanic treatment in this clinical sample was paralleled by normalization of dysregulated NA function.

Adult↗

Neuroendocrine response to fenfluramine challenge in boys. Associations with aggressive behavior and adverse rearing.

BACKGROUND: There is evidence of relationships among serotonin, aggressive behavior, and a childhood history of socially adverse-rearing conditions. This study examines the prolactin response to fenfluramine hydrochloride challenge in young boys who show clinically significant aggressive behavior or who are raised in a social environment that is conducive to the development of chronic aggression. METHODS: A series of 34 younger brothers of convicted delinquents underwent standardized psychiatric and observation-based assessments of their social-rearing environments that were conducted during home visits. Approximately 2 years later, these boys underwent a reassessment of psychiatric status and an assessment of central serotonergic activity using the fenfluramine challenge procedure. RESULTS: Increasing degrees of aggressive behavior at either assessment were positively correlated with the prolactin response to fenfluramine challenge. Furthermore, adverse-rearing circumstances that were conducive to the development of aggressive behavior also exhibited positive correlations with the prolactin response. This association between adverse rearing and the prolactin response was statistically independent of that between aggression and the prolactin response. CONCLUSION: In young boys, aggressive behavior and social circumstances that are conducive to the development of aggressive behavior are positively correlated with a marker of central serotonergic activity.

Aggression↗

Respiratory psychophysiology of panic disorder: three respiratory challenges in 98 subjects.

OBJECTIVE: Respiratory abnormalities may play a central role in the pathophysiology of panic disorder. The current study was undertaken to examine the respiratory response in the largest series of subjects to date during three respiratory challenges that used improved methodology. METHOD: Fifty-nine patients with DSM-III-R panic disorder and 39 normal volunteers were challenged with 5% and 7% CO2 inhalation and room air hyperventilation separated by room air breathing with continuous spirometry. RESULTS: Patients with panic disorder were more sensitive to the anxiogenic effects of CO2 than were normal subjects, and CO2 was a more potent stimulus to panic than hyperventilation. Patients increased their respiratory rate more quickly during CO2 inhalation than did comparison subjects, and this increase preceded the panic attacks. Patients who panicked in response to 5% CO2 demonstrated continued rise in end-tidal CO2, while the end-tidal CO2 of the comparison groups stabilized. Low end-tidal CO2 and high variance in minute ventilation at baseline predicted panic attacks during CO2 inhalation. Following CO2 or hyperventilation challenges, respiratory rate dropped sharply, while tidal volume remained elevated longer in patients than in comparison subjects. CONCLUSIONS: The findings confirm the greater behavioral and physiological sensitivity of patients with panic disorder to CO2 inhalation and identify a series of respiratory abnormalities. Panic attacks in panic disorder may be explained by inefficient compensatory mechanisms, primarily of respiratory rate.

Administration, Inhalation↗

The neuroanatomy of 5-HT dysregulation and panic disorder.

The advent of highly effective antipanic medications with specific serotonin reuptake inhibition as a mechanism of action has prompted the need for new pathophysiological models of panic disorder. The authors attempt an integration of the emerging basic science literature regarding the neuro-anatomy and physiology of the mammalian central serotonin nervous system, its influence on neural substrates that underlie fear and defense responses, and the clinical literature pertaining to serotonin-related abnormalities in panic disorder. A neuro-anatomical model for the potential sites of action of the specific serotonin reuptake inhibitors in panic disorder is proposed.

Afferent Pathways↗