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1.
Brain Behav Immun ; 114: 383-406, 2023 11.
Article in English | MEDLINE | ID: mdl-37689276

ABSTRACT

Psychological stress confers an increased risk for several diseases including psychiatric conditions. The susceptibility to psychological stress is modulated by various factors, many of them being modifiable lifestyle choices. The ketogenic diet (KD) has emerged as a dietary regime that offers positive outcomes on mood and health status. Psychological stress and elevated inflammation are common features of neuropsychiatric disorders such as certain types of major depressive disorder. KD has been attributed anti-inflammatory properties that could underlie its beneficial consequences on the brain and behavior. Microglia are the main drivers of inflammation in the central nervous system. They are known to respond to both dietary changes and psychological stress, notably by modifying their production of cytokines and relationships among the brain parenchyma. To assess the interactions between KD and the stress response, including effects on microglia, we examined adult male mice on control diet (CD) versus KD that underwent 10 days of repeated social defeat (RSD) or remained non-stressed (controls; CTRLs). Through a social interaction test, stressed mice were classified as susceptible (SUS) or resistant (RES) to RSD. The mouse population fed a KD tended to have a higher proportion of individuals classified as RES following RSD. Microglial morphology and ultrastructure were then analyzed in the ventral hippocampus CA1, a brain region known to present structural alterations as a response to psychological stress. Distinct changes in microglial soma and arborization linked to the KD, SUS and RES phenotypes were revealed. Ultrastructural analysis by electron microscopy showed a clear reduction of cellular stress markers in microglia from KD fed animals. Furthermore, ultrastructural analysis showed that microglial contacts with synaptic elements were reduced in the SUS compared to the RES and CTRL groups. Hippocampal lipidomic analyses lastly identified a distinct lipid profile in SUS animals compared to CTRLs. These key differences, combined with the distinct microglial responses to diet and stress, indicate that unique metabolic changes may underlie the stress susceptibility phenotypes. Altogether, our results reveal novel mechanisms by which a KD might improve the resistance to psychological stress.


Subject(s)
Depressive Disorder, Major , Diet, Ketogenic , Mice , Male , Animals , Microglia/metabolism , Social Behavior , Social Defeat , Depressive Disorder, Major/metabolism , Lipidomics , Hippocampus , Inflammation/metabolism , Stress, Psychological/metabolism , Mice, Inbred C57BL
2.
Depress Anxiety ; 35(1): 32-42, 2018 01.
Article in English | MEDLINE | ID: mdl-28833952

ABSTRACT

BACKGROUND: Risk for posttraumatic stress disorder (PTSD) is thought to be mediated by gene × environment (G × E) interactions that affect core cognitive processes such as fear learning. The catechol-O-methyltransferase (COMT) val158met polymorphism has been associated with risk for PTSD and impaired fear inhibition. We used a large, relatively homogenous population to (1) replicate previous findings of poor fear inhibition in COMT Met/Met carriers with PTSD; (2) determine if COMT association with fear inhibition is moderated by childhood trauma (CT), an environmental risk factor for PTSD; and (3) determine if COMT is associated with altered fear processes after recent exposure to combat trauma. METHODS: Male Marines and Navy Corpsmen of European-American ancestry were assessed prior to (n = 714) and 4-6 months after deployment to Afghanistan (n = 452). Acquisition and extinction of fear-potentiated startle, childhood and combat trauma history, and PTSD diagnosis were assessed at both time points. RESULTS: Before deployment, Met/Met genotype was associated with fear inhibition deficits in participants with current PTSD; however, this association was dependent on CT exposure. After deployment, combat trauma was associated with a modest reduction in fear extinction in Met/Met compared with Val/Val carriers. There were no associations of COMT genotype with fear extinction within healthy and non-traumatized individuals. CONCLUSIONS: These findings support the hypothesis that G × E interactions underlie associations of COMT val158met with fear inhibition deficits. These studies confirm that Met/Met carriers with PTSD have poor fear inhibition, and support further research in understanding how this polymorphism might impact response to extinction-based therapies.


Subject(s)
Adult Survivors of Child Adverse Events , Catechol O-Methyltransferase/genetics , Conditioning, Psychological/physiology , Extinction, Psychological/physiology , Fear/physiology , Gene-Environment Interaction , Stress Disorders, Post-Traumatic/physiopathology , Adult , Humans , Male , Military Personnel , Polymorphism, Genetic , Young Adult
3.
J Expo Sci Environ Epidemiol ; 33(3): 1-7, 2023 05.
Article in English | MEDLINE | ID: mdl-35079108

ABSTRACT

BACKGROUND: Little is known about sources of residential exposure to carbonaceous aerosols, which include black carbon (BC), the elemental carbon core of combustion particles, and organic compounds from biomass combustion (delta carbon). OBJECTIVE: Assess the impact of residential characteristics on indoor BC and delta carbon when known sources of combustion (e.g., smoking) are minimized. METHODS: Between November 2012-December 2014, 125 subjects (129 homes) in Northeast USA were recruited and completed a residential characteristics questionnaire. Every 3 months, participants received an automated sampler to measure fine particulate matter (PM2.5) in their home during a weeklong period (N = 371 indoor air samples) and were also questioned about indoor exposures. The samples were analyzed using a transmissometer at 880 nm (reflecting BC) and at 370 nm. The difference between the two wavelengths estimates delta carbon. Outdoor BC and delta carbon were measured using a central site aethalometer. RESULTS: Geometric mean indoor concentrations of BC and delta carbon (0.65 µg/m³ and 0.19 µg/m³, respectively), were greater than central site concentrations (0.53 µg/m³ and 0.02 µg/m³, respectively). Multivariable analysis showed that greater indoor concentrations of BC were associated with infrequent candle use, multi-family homes, winter season, lack of air conditioning, and central site BC. For delta carbon, greater indoor concentrations were associated with apartments, spring season, and central site concentrations. SIGNIFICANCE: In addition to outdoor central site concentrations, factors related to the type of housing, season, and home exposures are associated with indoor exposure to carbonaceous aerosols. Recognition of these characteristics should enable greater understanding of indoor exposures and their sources.


Subject(s)
Air Pollutants , Air Pollution, Indoor , Humans , Air Pollutants/analysis , Air Pollution, Indoor/analysis , Environmental Monitoring , Particulate Matter/analysis , New England , Surveys and Questionnaires , Aerosols/analysis , Carbon/analysis , Soot/analysis
4.
Brain Res Bull ; 195: 120-129, 2023 04.
Article in English | MEDLINE | ID: mdl-36822271

ABSTRACT

Altered immune function in patients with posttraumatic stress disorder (PTSD) may play a role in the disorder pathophysiology and onset. Women are more likely to develop PTSD, suggesting potential sex-specific inflammatory mechanisms underlying the dichotomous prevalence and risk of PTSD in men and women. In this review we examine the available literature to better assess the state of knowledge in the field. In humans, increased systemic inflammation is found in both men and women with PTSD, but seems to be at a greater extend in women. Despite the existence of few clinical studies taking account of sex as a factor in the observed immune changes in PTSD, challenges in the study of sex-specific immune function in humans include: controlling for confounding variates such as the type of trauma and the ethnicity; and limited methodologies available to study central nervous system (CNS)-relevant changes. Thus, preclinical studies are a valuable tool to provide us with key insights on sex-specific peripheral and CNS immune mechanisms underlying PTSD. Available preclinical studies reported increased systemic and CNS inflammation, as well as elevated trafficking of monocytes from the periphery to the brain in both male and female rodents. To date, psychological trauma-induced inflammation is more robust in female vs male rodents. Limitations of preclinical studies include animal models hardly applicable to female rodents, and hormonal changes across estrus phases that may affect immune function. The present review: (1) highlights the key findings from both human and animal studies, (2) provides guidance to address limitations; and (3) discusses the gap of knowledge on the complex intertwined interaction between the brain, neurovascular, and systemic units.


Subject(s)
Stress Disorders, Post-Traumatic , Animals , Humans , Male , Female , Inflammation , Brain , Monocytes , Central Nervous System
5.
bioRxiv ; 2023 Aug 29.
Article in English | MEDLINE | ID: mdl-37693370

ABSTRACT

Psychological stress confers an increased risk for several diseases including psychiatric conditions. The susceptibility to psychological stress is modulated by various factors, many of them being modifiable lifestyle choices. The ketogenic diet (KD) has emerged as a dietary regime that offers positive outcomes on mood and health status. Psychological stress and elevated inflammation are common features of neuropsychiatric disorders such as certain types of major depressive disorder. KD has been attributed anti-inflammatory properties that could underlie its beneficial consequences on the brain and behavior. Microglia are the main drivers of inflammation in the central nervous system. They are known to respond to both dietary changes and psychological stress, notably by modifying their production of cytokines and relationships among the brain parenchyma. To assess the interactions between KD and the stress response, including effects on microglia, we examined adult male mice on control diet (CD) versus KD that underwent 10 days of repeated social defeat (RSD) or remained non-stressed (controls; CTRLs). Through a social interaction test, stressed mice were classified as susceptible (SUS) or resistant (RES) to RSD. The mouse population fed a KD tended to have a higher proportion of individuals classified as RES following RSD. Microglial morphology and ultrastructure were then analyzed in the ventral hippocampus CA1, a brain region known to present structural alterations as a response to psychological stress. Distinct changes in microglial soma and arborization linked to the KD, SUS and RES phenotypes were revealed. Ultrastructural analysis by electron microscopy showed a clear reduction of cellular stress markers in microglia from KD fed animals. Furthermore, ultrastructural analysis showed that microglial contacts with synaptic elements were reduced in the SUS compared to the RES and CTRL groups. Hippocampal lipidomic analyses lastly identified a distinct lipid profile in SUS animals compared to CTRLs. These key differences, combined with the distinct microglial responses to diet and stress, indicate that unique metabolic changes may underlie the stress susceptibility phenotypes. Altogether, our results reveal novel mechanisms by which a KD might improve the resistance to psychological stress.

6.
J Pediatr Endocrinol Metab ; 25(9-10): 977-81, 2012.
Article in English | MEDLINE | ID: mdl-23426829

ABSTRACT

Twenty-one-hydroxylase deficient congenital adrenal hyperplasia (CAH) causes glucocorticoid and mineralocorticoid deficiency, hyperandrogenism and short stature. Management of the pubertal CAH patient is particularly challenging. The purpose of this retrospective chart review study was to determine if pubertal males and females with simple virilizing CAH (SVCAH) required different glucocorticoid dosages at progressive Tanner stages. The relationship between hydrocortisone dose and height was also assessed. Twenty females and seventeen males with SVCAH were identified and followed throughout all stages of pubertal development. Males received an average hydrocortisone dose of 16.4±4.8 mg/m2/day and for females, 13.7±4.6 mg/m2/day. The glucocorticoid dosage in males was significantly higher than in females at Tanner stages 3 through 5. Higher doses were associated with a shorter (9.6 cm) achieved than anticipated adult height.


Subject(s)
Adrenal Hyperplasia, Congenital/drug therapy , Hydrocortisone/therapeutic use , Adolescent , Adrenal Hyperplasia, Congenital/blood , Adrenal Hyperplasia, Congenital/physiopathology , Body Height , Child , Dexamethasone/therapeutic use , Female , Humans , Male , Sex Characteristics , Treatment Outcome
7.
Synapse ; 65(4): 321-31, 2011 Apr.
Article in English | MEDLINE | ID: mdl-20730801

ABSTRACT

Most antipsychotic (AP) drugs are dopamine (DA) D2 receptor (DRD2) antagonists and remain the main pharmacological treatment of schizophrenia. Long-term AP use can give rise to tardive dyskinesia. It has been reported that chronic treatment with APs induces DRD2 upregulation and oxidative stress, which have been associated with tardive dyskinesia. We showed previously that H2O2-induced oxidative stress increased DRD2 expression in human SH-SY5Y neuroblastoma cells. We report here the effects of AP drugs on DRD2 expression levels in the same cell line and the effects of the inhibition of oxidative phenomena by (±)-α-lipoic acid treatment. Haloperidol, a first-generation AP, induced an increase in DRD2 protein and mRNA levels, whereas amisulpride, a second-generation AP, had no significant effect. (±)-α-Lipoic acid pretreatment reversed the haloperidol-induced DRD2 upregulation in mRNA and protein levels. Furthermore, haloperidol induced a larger increase of oxidative stress biomarkers (protein carbonylation, lipid peroxidation, and superoxide anion production) than amisulpride. (±)-α-Lipoic acid also attenuated AP-induced oxidative stress. Inhibition of catecholamine synthesis by α-methyl-DL-tyrosine (AMPT) increased DRD2 expression and prevented further increase by APs. Our results suggest that haloperidol-induced DRD2 upregulation is linked to oxidative stress and provide potential mechanisms by which (±)-α-lipoic acid can be considered as a therapeutic agent to prevent and treat side effects related to the use of first-generation APs.


Subject(s)
Antipsychotic Agents/pharmacology , Dopamine D2 Receptor Antagonists , Neuroblastoma/metabolism , Receptors, Dopamine D2/biosynthesis , Thioctic Acid/pharmacology , Up-Regulation/drug effects , Cell Line, Tumor , Cell Survival/drug effects , Cell Survival/physiology , Humans , Neuroblastoma/pathology , Up-Regulation/physiology
8.
Psychiatry Res Neuroimaging ; 304: 111137, 2020 10 30.
Article in English | MEDLINE | ID: mdl-32731113

ABSTRACT

Increased corticotroping releasing factor (CRF) contributes to brain circuit abnormalities associated with stress-related disorders including posttraumatic stress disorder. However, the causal relationship between CRF hypersignaling and circuit abnormalities associated with stress disorders is unclear. We hypothesized that increased CRF exposure induces changes in limbic circuit morphology and functions. An inducible, forebrain-specific overexpression of CRF (CRFOE) transgenic mouse line was used to longitudinally investigate its chronic effects on behaviors and microstructural integrity of several brain regions. Behavioral and diffusion tensor imaging studies were performed before treatment, after 3-4 wks of treatment, and again 3 mo after treatment ended to assess recovery. CRFOE was associated with increased perseverative movements only after 3 wks of treatment, as well as reduced fractional anisotropy at 3 wks in the medial prefrontal cortex and increased fractional anisotropy in the ventral hippocampus at 3 mo compared to the control group. In the dorsal hippocampus, mean diffusivity was lower in CRFOE mice both during and after treatment ended. Our data suggest differential response and recovery patterns of cortical and hippocampal subregions in response to CRFOE. Overall these findings support a causal relationship between CRF hypersignaling and microstructural changes in brain regions relevant to stress disorders.


Subject(s)
Corticotropin-Releasing Hormone/metabolism , Gray Matter/diagnostic imaging , Prosencephalon/diagnostic imaging , Prosencephalon/metabolism , Animals , Diffusion Tensor Imaging , Hippocampus/diagnostic imaging , Hippocampus/pathology , Humans , Male , Mice , Prefrontal Cortex/diagnostic imaging , Prefrontal Cortex/pathology
9.
Neurobiol Stress ; 12: 100204, 2020 May.
Article in English | MEDLINE | ID: mdl-32258253

ABSTRACT

The kynurenine pathway (KP) is the dominant pathway for tryptophan degradation in the mammalian body and emerging evidence suggests that acute episodes of sleep deprivation (SD) disrupt tryptophan metabolism via the KP. Increases in the neuroactive KP metabolite kynurenic acid (KYNA) during pregnancy may lead to a higher risk for disrupted neurodevelopment in the offspring. As pregnancy is a critical period during which several factors, including sleep disruptions, could disrupt the fetal environment, we presently explored the relationship between maternal SD and KP metabolism and immune pathways in maternal, placenta, and fetal tissues. Pregnant Wistar rat dams were sleep deprived by gentle handling for 5 h from zeitgeber time (ZT) 0 to ZT 5. Experimental cohorts included: i) controls, ii) one session of SD on embryonic day (ED) 18 or iii) three sessions of SD occurring daily on ED 16, ED 17 and ED 18. Maternal (plasma, brain), placental and fetal (plasma, brain) tissues were collected immediately after the last session of SD or after 24 h of recovery from SD. Respective controls were euthanized at ZT 5 on ED 18 or ED 19. Maternal plasma corticosterone and fetal brain KYNA were significantly elevated only after one session of SD on ED 18. Importantly, maternal plasma corticosterone levels correlated significantly with fetal brain KYNA levels. In addition, placental levels of the proinflammatory cytokines interleukin-1ß (IL-1ß) and interleukin-6 (IL-6) were increased following maternal SD, suggesting a relationship between placental immune response to SD and fetal brain KYNA accumulation. Collectively, our results demonstrate that sleep loss during the last week of gestation can adversely impact maternal stress, placental immune function, and fetal brain KYNA levels. We introduce KYNA as a novel molecular target influenced by sleep loss during pregnancy.

10.
Perspect Med Educ ; 9(1): 31-40, 2020 02.
Article in English | MEDLINE | ID: mdl-31953654

ABSTRACT

INTRODUCTION: Low physician workplace satisfaction may negatively impact patient care. Dissatisfaction may begin during residency training, where trainees face lower autonomy and less control over work conditions. The theoretical and empirical literature on trainees is couched mainly in terms of burnout. Theories of satisfaction, a different construct, are derived from studies of independent physicians. Identifying specific correlates of trainee satisfaction may be a clearer path to preparing a sustainable physician workforce. METHODS: We surveyed 3300 residents and fellows (response rate of 7.2% to 46,574 surveys sent) across multiple specialties and institutions in the US. The instrument was adapted from a previous large-scale survey of physician satisfaction, with changes reflecting factors theorized to specifically affect trainee satisfaction. We applied generalized linear regression to identify correlates of higher satisfaction. RESULTS: A total of 1444 (44%) residents/fellows reported they were very satisfied and 1311 (40%) reported being somewhat satisfied. Factors associated with satisfaction included positive perceptions of supporting clinical staff, the electronic health record, and stability of personal mental health. Surprisingly, a strong negative perception of completing insurance and/or disability forms was also associated with higher satisfaction. Factors often presumed to correlate with satisfaction, such as duty hours, debt load, and specialty, did not show significant associations. DISCUSSION: Multiple workplace factors are correlated with trainee satisfaction, but they are not the factors (such as financial debt) that we initially hypothesized. The factors we identified, including clinical staff support and personal mental health, may be targets for further study and/or pilot interventions aimed at improving satisfaction.


Subject(s)
Job Satisfaction , Workplace/standards , Burnout, Professional/prevention & control , Burnout, Professional/psychology , Educational Technology/standards , Educational Technology/trends , Humans , Mental Health Services , Psychosocial Support Systems , Surveys and Questionnaires , Workplace/psychology
11.
Front Behav Neurosci ; 13: 111, 2019.
Article in English | MEDLINE | ID: mdl-31164811

ABSTRACT

Alterations in cortical catecholamine signaling pathways can modulate acute and enduring responses to trauma. Heritable variation in catecholamine signaling is produced by a common functional polymorphism in the catechol-O-methyltransferase (COMT), with Val carriers exhibiting greater degradation of catecholamines than Met carriers. Furthermore, it has recently been suggested that drugs enhancing cortical catecholamine signaling may be a new therapeutic approach for posttraumatic stress disorder (PTSD) patients. We hypothesized that heritable differences in catecholamine signaling regulate the behavioral response to trauma, and that methylphenidate (MPD), a drug that preferentially blocks catecholamine reuptake in the prefrontal cortex (PFC), exerts COMT-dependent effects on trauma-induced behaviors. We first examined the contribution of the functional mutation COMTval158met to modulate enduring behavioral responses to predator stress in a unique "humanized" COMTval158met mouse line. Animals were exposed to a predator (cat) for 10 min and enduring avoidance behaviors were examined in the open field, light-dark box, and "trauma-reminder" tests 1-2 weeks later. Second, we examined the efficacy of chronic methylphenidate to reverse predator stress effects and if these effects were modulated by COMTval158met genotype. Mice were exposed to predator stress and began treatment with either saline or methylphenidate (3 mg/kg/day) 1 week after stress until the end of the testing [avoidance behaviors, working memory, and social preference (SP)]. In males, predator stress and COMTval158met had an additive effect on enduring anxiety-like behavior, with Val stressed mice showing the strongest avoidance behavior after stress compared to Met carriers. No effect of COMT genotype was observed in females. Therefore methylphenidate effects were investigated only in males. Chronic methylphenidate treatment reversed the stress-induced avoidance behavior and increased social investigation independently of genotype. Methylphenidate effects on working memory, however, were genotype-dependent, decreasing working memory in non-stressed Met carriers, and improving stress-induced working memory deficit in Val carriers. These results suggest that heritable variance in catecholamine signaling modulates the avoidance response to an acute trauma. This work supports recent human findings that methylphenidate might be a therapeutic alternative for PTSD patients and suggests that methylphenidate effects on anxiety (generalized avoidance, social withdrawal) vs. cognitive (working memory) symptoms may be modulated through COMT-independent and dependent mechanisms, respectively.

12.
Biol Psychiatry ; 83(10): 895-907, 2018 05 15.
Article in English | MEDLINE | ID: mdl-29338843

ABSTRACT

Increasing predictability of animal models of posttraumatic stress disorder (PTSD) has required active collaboration between clinical and preclinical scientists. Modeling PTSD is challenging, as it is a heterogeneous disorder with ≥20 symptoms. Clinical research increasingly utilizes objective biological measures (e.g., imaging, peripheral biomarkers) or nonverbal behaviors and/or physiological responses to complement verbally reported symptoms. This shift toward more-objectively measurable phenotypes enables refinement of current animal models of PTSD, and it supports the incorporation of homologous measures across species. We reviewed >600 articles to examine the ability of current rodent models to probe biological phenotypes of PTSD (e.g., sleep disturbances, hippocampal and fear-circuit dysfunction, inflammation, glucocorticoid receptor hypersensitivity) in addition to behavioral phenotypes. Most models reliably produced enduring generalized anxiety-like or depression-like behaviors, as well as hyperactive fear circuits, glucocorticoid receptor hypersensitivity, and response to long-term selective serotonin reuptake inhibitors. Although a few paradigms probed fear conditioning/extinction or utilized peripheral immune, sleep, and noninvasive imaging measures, we argue that these should be incorporated more to enhance translation. Data on female subjects, on subjects at different ages across the life span, or on temporal trajectories of phenotypes after stress that can inform model validity and treatment study design are needed. Overall, preclinical (and clinical) PTSD researchers are increasingly incorporating homologous biological measures to assess markers of risk, response, and treatment outcome. This shift is exciting, as we and many others hope it not only will support translation of drug efficacy from animal models to clinical trials but also will potentially improve predictability of stage II for stage III clinical trials.


Subject(s)
Behavior, Animal , Disease Models, Animal , Mood Disorders/etiology , Stress Disorders, Post-Traumatic/complications , Translational Research, Biomedical/methods , Animals , Extinction, Psychological , Humans , Phenotype , Stress Disorders, Post-Traumatic/therapy
13.
Physiol Behav ; 191: 65-72, 2018 07 01.
Article in English | MEDLINE | ID: mdl-29630964

ABSTRACT

Death by suicide is 5 times higher among schizophrenia patients than in the general population. There is now compelling evidence suggesting that the pathophysiology of suicide in schizophrenia does not involve central serotonergic neurotransmission disturbances, as has been shown in other contexts. We recently developed and characterized a murine Two-Hit Model of Suicide-related behavior in a schizophrenia-like context (THMS) (gestational inflammation with polyI:C at gestational day 12 followed by post-weaning social isolation). In this THMS model, we have recently shown that the atypical antipsychotic clozapine normalized the prepulse inhibition (PPI) deficits as well suicide-related, impulsive aggressive and anxiety-like behaviors. While the mechanisms underlying the suicide-reducing benefits of clozapine in schizophrenic patients are not well understood, previous works have revealed that clozapine alters brain levels of neurosteroids, such as allopregnanolone. In the present study, we thus investigated the role of endogenous neurosteroids in clozapine action by evaluating whether the 5α-reductase inhibitor finasteride could overturn the ability of clozapine to reduce suicide-related behaviors. We found that clozapine significantly improved the PPI deficits in THMS mice, which could not be reversed by finasteride treatment. However, finasteride counteracted the ability of clozapine to decrease the exploratory behaviors in the open-field test. In the resident-intruder test, THMS mice showed exacerbated aggressiveness and impulsivity following finasteride alone. In this resident-intruder paradigm, clozapine alone effectively blocked the finasteride-enhanced effects on aggression and impulsivity. Altogether, these findings support the existence of a complex interaction between clozapine and neurosteroids in THMS mice. Further investigations are now required to clarify the details of the molecular mechanisms involved.


Subject(s)
5-alpha Reductase Inhibitors/pharmacology , Aggression/drug effects , Finasteride/pharmacology , Schizophrenia/physiopathology , Schizophrenic Psychology , Suicide/psychology , Acoustic Stimulation , Animals , Animals, Newborn , Antipsychotic Agents/therapeutic use , Clozapine/therapeutic use , Disease Models, Animal , Exploratory Behavior/drug effects , Female , Interpersonal Relations , Male , Mice , Mice, Inbred C57BL , Polydeoxyribonucleotides/toxicity , Reflex, Startle/drug effects , Schizophrenia/chemically induced , Schizophrenia/drug therapy
14.
Curr Opin Behav Sci ; 14: 123-132, 2017 Apr.
Article in English | MEDLINE | ID: mdl-28758144

ABSTRACT

Post-traumatic stress disorder (PTSD) is characterized by persistent re-experiencing of a traumatic event, avoidance, and increased arousal. The approved pharmacological treatments for PTSD have limited efficacy (~60% treatment response), supporting the need for identification of biomarkers and novel pharmacological therapies. Mounting evidence suggests increased inflammatory markers and altered immune gene expression correlate with the severity of symptoms in PTSD patients. However a causal role of immune signaling in development and maintenance of PTSD symptoms is not clear, as inflammation may also be an epiphenomenon related to metabolic and behavioral effects of stress. Animal studies have been critical in understanding the potential causal role of immune signaling in PTSD. In this review we will present the most recent evidence, primarily focusing on the last 3 years, for inflammatory dysfunction both preceding and following PTSD, and how animal models of PTSD have contributed to our understanding of immune mechanisms involved in enduring anxiety after trauma. We will particularly focus on the role of peripheral vs. central immune signaling, the differences between single vs. chronic stress models of PTSD and recent utilization of these models to investigate novel anti-inflammatory treatments. We also highlight some current gaps in the literature including models of TBI/PTSD comorbidity, lack of translational peripheral markers of inflammation and the relatively incomplete understanding of the inflammatory trajectory after severe stress.

15.
J Grad Med Educ ; 9(4): 551-554, 2017 Aug.
Article in English | MEDLINE | ID: mdl-28824785

ABSTRACT

BACKGROUND: Mentorship of residents by more senior colleagues has been identified as important for stress management and creating an ideal learning environment. OBJECTIVE: We set out to define the attributes of an ideal resident mentor and explore ways to develop these attributes during residency training. METHODS: A 28-member, multi-specialty counsel of residents and fellows used 2 phases of a small group exercise. In the first phase, the group developed desirable attributes of resident mentors and explored means of developing these attributes. In the second phase, the group identified trends in the results, and in a second small group exercise with participants at a major national conference, refined these trends into Resident Mentorship Milestones. RESULTS: The exercises identified 3 common themes: availability, competence, and support of the mentee. We defined milestones for mentorship in each of these areas. CONCLUSIONS: The Resident Mentorship Milestones, developed by a national panel of residents, describe 3 key dimensions of mentorship: availability, defined as making time for mentorship; competence for and success in mentoring; and support of the mentee. These milestones may serve as a novel tool to develop and assess successful resident mentorship models.


Subject(s)
Internship and Residency , Mentoring , Mentors , Physicians/psychology , Exercise , Humans
16.
Behav Brain Res ; 323: 117-123, 2017 04 14.
Article in English | MEDLINE | ID: mdl-28159589

ABSTRACT

The prevalence of posttraumatic stress disorder (PTSD) is high in the armed services, with a rate up to 20%. Multiple studies have associated markers of inflammatory signaling prior to trauma with increased risk of PTSD, suggesting a potential role of the immune system in the development of this psychiatric disorder. One question that arises is if "priming" the immune system before acute trauma alters the stress response and increases enduring effects of trauma. We investigated the time course of inflammatory response to predator stress, a robust stressor that induces enduring PTSD-like behaviors, and the modulation of these effects via prior immune activation with the bacterial endotoxin, lipopolysaccharide (LPS), a Toll-like receptor 4 (TLR4) agonist. Mice exposed to predator stress exhibited decreased pro-/anti-inflammatory balance in the brain 6h after stress, suggesting that predator exposure acutely suppressed the immune system by increasing anti-inflammatory cytokines levels. Acute immune activation with LPS before a single predator stress did not alter the enduring avoidance behavior in stressed mice. Our findings suggest that acute inflammation, at least via TLR4 activation, is not sufficient to increase susceptibility for PTSD-like behaviors in this model. Future studies will examine if chronic inflammation is required to induce similar immune changes to those observed in PTSD patients in this model.


Subject(s)
Brain/immunology , Inflammation/immunology , Lipopolysaccharides/administration & dosage , Stress Disorders, Post-Traumatic/immunology , Animals , Anxiety/immunology , Avoidance Learning , Brain/drug effects , Brain/metabolism , C-Reactive Protein/metabolism , Cytokines/metabolism , Inflammation/chemically induced , Inflammation/metabolism , Male , Mice , Mice, Inbred C57BL , Stress Disorders, Post-Traumatic/metabolism , Stress, Psychological/immunology , Stress, Psychological/metabolism
17.
J Mol Neurosci ; 59(4): 440-51, 2016 Aug.
Article in English | MEDLINE | ID: mdl-27034067

ABSTRACT

Schizophrenia is a chronic mental illness in which mitochondrial dysfunction has been suggested. Our laboratory recently developed a juvenile murine two-hit model (THM) of schizophrenia based on the combination of gestational inflammation, followed by juvenile restraint stress. We previously reported that relevant behaviors and neurochemical disturbances, including oxidative stress, were reversed by the antioxidant lipoic acid (LA), thereby pointing to the central role played by oxidative abnormalities and prompting us to investigate mitochondrial function. Mitochondrial activity was determined with the MitoXpress® commercial kit in two schizophrenia-relevant regions (prefrontal cortex (PFC) and striatum). Measurements were performed in state 3, with substrates for complex I- and complex II-induced respiratory activity (IRA). We observed an increase in complex I IRA in the PFC and striatum in both sexes but an increase in complex II activity only in males. LA treatment prevented this increase only in complex II IRA in males. Expression levels of the different respiratory chain complexes, as well as fission/fusion proteins and protein carbonylation, were unchanged. In conclusion, our juvenile schizophrenia THM shows an increase in mitochondrial activity reversed by LA, specifically in complex II IRA in males. Further investigations are required to determine the mechanisms of these modifications.


Subject(s)
Cell Respiration , Mitochondria/metabolism , Schizophrenia/metabolism , Animals , Corpus Striatum/metabolism , Electron Transport Complex I/metabolism , Electron Transport Complex II/metabolism , Female , Male , Mice , Mice, Inbred C57BL , Mitochondria/drug effects , Oxidative Stress , Prefrontal Cortex/metabolism , Protein Carbonylation , Sex Factors , Thioctic Acid/pharmacology
18.
Physiol Behav ; 156: 48-58, 2016 Mar 15.
Article in English | MEDLINE | ID: mdl-26772420

ABSTRACT

Schizophrenia patients show a high rate of premature mortality due to suicide. The pathophysiological mechanisms of these suicidal behaviors in schizophrenia do not appear to involve serotonergic neurotransmission as found in the general population. Our aim was to develop an in vivo model of schizophrenia presenting suicide-trait-related behaviors such as aggressiveness, impulsivity, anxiety and helplessness. We opted for a two-hit model: C57BL/6 dams were injected with polyI:C on gestational day 12. The pups were submitted to social isolation for 4weeks after weaning. During the last week of social isolation and 30min before behavioral testing, the mice received vehicle, lithium chloride or clozapine. Lithium chloride is well known for its suicide preventive effects in the non-schizophrenic population, while clozapine is the antipsychotic with the best-established suicide preventive effect. The two-hit model induced several schizophrenia-related and suicide-trait-related behaviors in male, but not female, mice. Additionally, lithium chloride improved prepulse inhibition, aggressiveness, impulsivity and anxiety-like behavior in socially isolated mice only, whereas clozapine prevented behavioral abnormalities mainly in mice prenatally exposed to polyI:C and submitted to isolated rearing. The distinct effects of lithium chloride and clozapine suggested that mice prenatally exposed to polyI:C and submitted to social isolation presented a distinct phenotype from that of mice submitted to social isolation only. Because diagnosing suicidal risk in patients is a challenge for psychiatrists given the lack of specific clinical predictors, our in vivo model could help in gaining a better understanding of the mechanisms underlying suicidal behavior in the context of schizophrenia.


Subject(s)
Antipsychotic Agents/pharmacology , Clozapine/pharmacology , Lithium Chloride/pharmacology , Schizophrenic Psychology , Social Isolation , Aggression/drug effects , Animals , Anxiety , Disease Models, Animal , Female , Mice , Mice, Inbred C57BL , Phenotype , Schizophrenia/drug therapy , Suicidal Ideation , Suicide Prevention
19.
Int J Dev Neurosci ; 55: 1-8, 2016 Dec.
Article in English | MEDLINE | ID: mdl-27616300

ABSTRACT

BACKGROUND: Despite the recent introduction of hypothermia as a mandatory standard of care, the incidence of neonatal encephalopathy in full-term newborns and its devastating neuro-behavioral outcomes continues to be a major individual, familial and social issue. Neonatal encephalopathy is mainly due to the compounding and interacting effects of hypoxia-ischemia and inflammation resulting from placental and other perinatal infections. It is unclear why hypothermia is effective in alleviating neonatal encephalopathy in some, but not all, full-term newborns. However, newborns exposed to inflammatory-sensitized hypoxia-ischemia seem to have less therapeutic benefit from hypothermia than those exposed to hypoxia-ischemia alone. OBJECTIVES: To clarify this uncertainty, we tested the efficacy of hypothermia in a double-hit model of neonatal encephalopathy induced by inflammatory-sensitized hypoxia-ischemia. METHODS: Using a rat preclinical model of endotoxin plus hypoxia-ischemia-induced neonatal encephalopathy of term newborns, we assessed the following in pups exposed (or not) to hypothermia: the extent of brain injuries and the expressions of molecules implicated in neural cell death, namely: pro-inflammatory cytokines, matrix metalloproteinase-9, antioxidant enzymes, as well as receptor-interacting protein-3. RESULTS: Hypothermia was neuroprotective on inflammatory-sensitized hypoxia-ischemia-induced penumbra, but not core, brain injuries. This beneficial effect was associated with a hypothermia-induced increase of antioxidant enzymes (superoxide dismutase-1, glutathione peroxidase-1), but was not associated with any variations of the other inflammatory mediators tested, namely: interleukin-1ß, interleukin-1 receptor antagonist, tumor necrosis factor-α and matrix metalloproteinase-9. CONCLUSION: Hypothermia is neuroprotective against inflammatory-sensitized hypoxia-ischemia possibly through a hypothermia-induced increase of antioxidant enzymes. This neuroprotective effect seems to be independent of the interleukin-1 system.


Subject(s)
Gene Expression Regulation, Developmental/physiology , Hypothermia, Induced/methods , Hypoxia-Ischemia, Brain/complications , Hypoxia-Ischemia, Brain/therapy , Inflammation/complications , Animals , Animals, Newborn , Body Temperature/drug effects , Body Temperature/physiology , Catalase/metabolism , Cytokines/metabolism , Disease Models, Animal , Gene Expression Regulation, Developmental/drug effects , Glutathione Peroxidase/metabolism , Inflammation/chemically induced , Lipopolysaccharides/toxicity , Rats , Rats, Inbred Lew , Receptor-Interacting Protein Serine-Threonine Kinases/metabolism , Superoxide Dismutase-1/metabolism , Time Factors , Glutathione Peroxidase GPX1
20.
Neuropsychopharmacology ; 41(6): 1681-90, 2016 May.
Article in English | MEDLINE | ID: mdl-26538448

ABSTRACT

Although early-life stress is a significant risk factor for developing anxiety disorders, including posttraumatic stress disorder (PTSD), the underlying mechanisms are unclear. Corticotropin releasing hormone (CRH) is disrupted in individuals with PTSD and early-life stress and hence may mediate the effects of early-life stress on PTSD risk. We hypothesized that CRH hyper-signaling in the forebrain during early development is sufficient to increase response to trauma in adulthood. To test this hypothesis, we induced transient, forebrain-specific, CRH overexpression during early-life (pre-puberty, CRHOEdev) in double-mutant mice (Camk2a-rtta2 × tetO-Crh) and tested their behavioral and gene expression responses to the predator stress model of PTSD in adulthood. In one cohort of CRHOEdev exposed and unexposed mice, avoidance and arousal behaviors were examined 7-15 days after exposure to predator stress. In another cohort, gene expression changes in Crhr1, Crhr2, and Fkbp51 in forebrain of CRHOEdev exposed and unexposed mice were examined 7 days after predator stress. CRHOEdev induced robust increases in startle reactivity and reductions in startle inhibition independently of predator stress in both male and female mice. Avoidance behaviors after predator stress were highly dependent on sex and CRHOEdev exposure. Whereas stressed females exhibited robust avoidance responses that were not altered by CRHOEdev, males developed significant avoidance only when exposed to both CRHOEdev and stress. Quantitative real-time-PCR analysis indicated that CRHOEdev unexposed males exhibit significant changes in Crhr2 expression in the amygdala and bed nucleus stria terminalis in response to stress, whereas males exposed to CRHOEdev did not. Similar to CRHOEdev males, females exhibited no significant Crhr2 gene expression changes in response to stress. Cortical Fkbp51 expression was also significantly reduced by stress and CRHOEdev exposure in males, but not in females. These findings indicate that forebrain CRH hyper-signaling in early-life is sufficient to increase enduring effects of adult trauma and attenuate Crhr2 expression changes in response to stress in males. These data support growing evidence for significant sex differences in response to trauma, and support further study of CRHR2 as a candidate mechanism for PTSD risk.


Subject(s)
Corticotropin-Releasing Hormone/physiology , Prosencephalon/physiology , Stress, Psychological/physiopathology , Age Factors , Animals , Female , Gene Expression/physiology , Male , Mice , Mice, Mutant Strains , Motor Activity/physiology , Real-Time Polymerase Chain Reaction , Receptors, Corticotropin-Releasing Hormone/physiology , Reflex, Startle/physiology , Stress Disorders, Post-Traumatic/etiology , Stress Disorders, Post-Traumatic/physiopathology , Stress, Psychological/etiology
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