Searched for: person:wilsod05
Effects of ethanol exposure in neonatal mice on retinoic acid signaling in forebrain neurons and astrocytes
Saito, Mariko; Park, Jungann; Nalluri, Anusha; Marino, Brandon; Williams, Colin R O; Wilson, Donald A; Das, Bhaskar C; Smiley, John F
Toxicity of prenatal ethanol leading to fetal alcohol spectrum disorders (FASDs) has been linked to disturbances in retinoic acid (RA) signaling necessary for embryonic development. While ethanol exposure in the postnatal day 7 (P7) mice, which induces immediate neurodegeneration and long-lasting GABAergic cell loss and behavioral deficits, has been used for the third trimester FASD model, involvement of RA signaling in the process has not been well explored. Using RARE-LacZ reporter mice that express β-galactosidase (β-Gal) under the control of retinoic acid response element (RARE), we examined RA signaling activity of the forebrains of P8 and P30 mice with or without P7 ethanol treatment. In all experimental groups, β-Gal was expressed mainly in the hippocampus with the strongest expression in the granule cell layer of dentate gyrus. In addition, β-Gal was expressed in pyramidal neurons and parvalbumin (PV) neurons in CA1-3 pyramidal layer and in astrocytes scattered around the CA1-3 region although PV neurons were only examined at P30 because of the low PV expression at P8. β-Gal was also expressed in the anteroventral/anteromedial (AV/AM) thalamus and the retrosplenial (Rs) and Tbr1-positive (+) layer 6 cortices. β-Gal-expressing PV neurons were also found in the cortex such as Rs, while β-Gal was barely detected in somatostatin neurons in any brain regions examined. Such region and cell specific β-Gal expression was significantly higher in P8 brains than P30 brains in various brain regions. P7 ethanol reduced β-Gal expression in the CA1-3 pyramidal layer, Tbr1 + cortical layer 6, and the AV/AM thalamus at P8 or P30 or both. Although P7 ethanol decreased PV cells in CA2-3 pyramidal layers as reported, it decreased β-Gal+ PV cells more drastically. The active RA signaling found in PV neurons and the effects of P7 ethanol on the signaling suggest that reduced RA signaling by P7 ethanol may disturb PV cell maturation and enhance long-lasting brain abnormalities.
PMCID:13240825
PMID: 42254759
ISSN: 2667-2421
CID: 6048042
Spatial segregation of piriform output neurons toward cognitive and emotional networks
Chen, Chien-Fu F; Wilson, Donald A
The piriform cortex (PCx), commonly considered to be the primary olfactory sensory cortex, differs from other mammalian sensory cortices by not displaying a stimulus-specific spatial organization but rather displaying widely distributed odor-evoked activity. However, there is evidence of a PCx spatial organization based on output neuron targeting. Here, we performed double-labeled retrograde tracing to reveal neuronal populations of PCx output neurons that project to two regions affiliated with different behavioral significance, the basolateral amygdala (BLA) and lateral orbitofrontal (LO) cortex networks. We found that PCx neurons projecting to BLA and LO are distinct in spatial distribution with minimal overlap, supporting the hypothesis that while odor input is distributed randomly across the PCx, PCx output neurons are organized into target-specific neuronal populations that potentially serve as functional units for odor encoding and odor-guided behavior.
PMCID:12917545
PMID: 41726307
ISSN: 2752-6542
CID: 6009612
Obesity in children and adolescents
Berman, Casey; Kohn, Brenda; Wilson, Don
BACKGROUND:The obesity epidemic in the United States affects not only adults, but children and adolescents. SOURCES OF MATERIAL/UNASSIGNED:An extensive review of the literature including 85 articles has been completed with the aim of providing the most current definitions and recommendations for this chronic condition. ABSTACT OF FINDINGS/UNASSIGNED:This article reviews the definition of pediatric obesity, the increasing prevalence of obesity in children and adolescents, genetic and environmental risk factors, as well as the unique aspects and implications of this condition and its associated comorbidities for this population in comparison to adults. Current management recommendations are also discussed which include Intensive Health Behavioral and Lifestyle Treatment (IHBLT), metabolic surgery, and pharmacologic therapy including glucago-like peptide-1 receptor agonists (GLP-1RAs). CONCLUSION/CONCLUSIONS:Childhood obesity is a unique condition in its progression and management requirements, and should be approached with a focus on prevention as well as on the high-risk individual.
PMID: 41708218
ISSN: 1933-2874
CID: 6004832
Devaluation of response-produced safety signals reveals circuits for goal-directed versus habitual avoidance in dorsal striatum
Sears, Robert M; Andrade, Erika C; Samels, Shanna B; Laughlin, Lindsay C; Moloney, Danielle M; Wilson, Donald A; Alwood, Matthew R; Moscarello, Justin M; Cain, Christopher K
Active avoidance responses (ARs) are instrumental behaviors that prevent harm. Adaptive ARs may contribute to active coping, whereas maladaptive avoidance habits are implicated in anxiety and obsessive-compulsive disorders. The AR learning mechanism has remained elusive, as successful avoidance trials produce no obvious reinforcer. We used a novel outcome-devaluation procedure in rats to show that ARs are positively reinforced by response-produced feedback cues that develop into safety signals during training. Males were sensitive to feedback devaluation after moderate training, but not overtraining, consistent with a transition from goal-directed to habitual avoidance. Using chemogenetics and feedback devaluation, we also show that goal-directed vs. habitual ARs depend on dorsomedial vs. dorsolateral striatum, suggesting a significant overlap between the mechanisms of avoidance and rewarded instrumental behavior. Females were insensitive to feedbackdevaluation due to a remarkable context-dependence of counterconditioning. However, degrading the contingency between avoidance and feedback suggests that both sexes rely on safety signals to perform goal-directed ARs.
PMID: 41663373
ISSN: 2041-1723
CID: 6001832
Methionine Aminopeptidase 2 (MetAP2) Inhibitor BL6 Attenuates Inflammation in Cultured Microglia and in a Mouse Model of Alzheimer's Disease
Zhang, Xiuli; Subbanna, Shivakumar; Williams, Colin R O; Canals-Baker, Stefanie; Hashim, Audrey; Wilson, Donald A; Weiss, Louis M; Shukla, Srushti; Chokkalingam, Parthiban; Das, Sasmita; Das, Bhaskar C; Saito, Mariko
Methionine aminopeptidase 2 (MetAP2) plays an important role in the regulation of protein synthesis and post-translational processing. Preclinical/clinical applications of MetAP2 inhibitors for the treatment of various diseases have been explored because of their antiangiogenic, anticancer, antiobesity, antidiabetic, and immunosuppressive properties. However, the effects of MetAP2 inhibitors on CNS diseases are rarely examined despite the abundant presence of MetAP2 in the brain. Previously, we synthesized a novel boron-containing MetAP2 inhibitor, BL6, and found that it suppressed angiogenesis and adipogenesis yet improved glucose uptake. Here, we studied the anti-inflammatory effects of BL6 in SIM-A9 microglia and in a mouse model of Alzheimer's disease generated by the intracerebroventricular (icv) injection of streptozotocin (STZ). We found that BL6 reduced proinflammatory molecules, such as nitric oxide, iNOS, IL-1β, and IL-6, together with phospho-Akt and phospho-NF-κB p65, which were elevated in lipopolysaccharide (LPS)-activated microglial SIM-A9 cells. However, the LPS-induced reduction in Arg-1 and CD206 was attenuated by BL6, suggesting that BL6 promotes microglial M1 to M2 polarization. BL6 also decreased glial activation along with a reduction in phospho-tau and an elevation in synaptophysin in the icv-STZ mouse model. Thus, our experiments demonstrate an anti-neuroinflammatory action of BL6, suggesting possible clinical applications of MetAP2 inhibitors for brain disorders in which neuroinflammation is involved.
PMCID:11820257
PMID: 39942725
ISSN: 1420-3049
CID: 5793722
Early-life prefrontal cortex inhibition and early-life stress lead to long-lasting behavioral, transcriptional, and physiological impairments
Menezes, Edênia C; Geiger, Heather; Abreu, Fabiula F; Rachmany, Lital; Wilson, Donald A; Alldred, Melissa J; Castellanos, Francisco X; Fu, Rui; Sargin, Derya; Corvelo, André; Teixeira, Cátia M
Early-life stress has been linked to multiple neurodevelopmental and neuropsychiatric deficits. Our previous studies have linked maternal presence/absence from the nest in developing rat pups to changes in prefrontal cortex (PFC) activity. Furthermore, we have shown that these changes are modulated by serotonergic signaling. Here we test whether changes in PFC activity during early life affect the developing cortex leading to behavioral alterations in the adult. We show that inhibiting the PFC of mouse pups leads to cognitive deficits in the adult comparable to those seen following maternal separation. Moreover, we show that activating the PFC during maternal separation can prevent these behavioral deficits. To test how maternal separation affects the transcriptional profile of the PFC we performed single-nucleus RNA-sequencing. Maternal separation led to differential gene expression almost exclusively in inhibitory neurons. Among others, we found changes in GABAergic and serotonergic pathways in these interneurons. Interestingly, both maternal separation and early-life PFC inhibition led to changes in physiological responses in prefrontal activity to GABAergic and serotonergic antagonists that were similar to the responses of more immature brains. Prefrontal activation during maternal separation prevented these changes. These data point to a crucial role of PFC activity during early life in behavioral expression in adulthood.
PMID: 38486048
ISSN: 1476-5578
CID: 5644132
Devaluation of response-produced safety signals reveals circuits for goal-directed versus habitual avoidance in dorsal striatum
Sears, Robert M; Andrade, Erika C; Samels, Shanna B; Laughlin, Lindsay C; Moloney, Danielle M; Wilson, Donald A; Alwood, Matthew R; Moscarello, Justin M; Cain, Christopher K
Active avoidance responses (ARs) are instrumental behaviors that prevent harm. Adaptive ARs may contribute to active coping, whereas maladaptive avoidance habits are implicated in anxiety and obsessive-compulsive disorders. The AR learning mechanism has remained elusive, as successful avoidance trials produce no obvious reinforcer. We used a novel outcome-devaluation procedure in rats to show that ARs are positively reinforced by response-produced feedback (FB) cues that develop into safety signals during training. Males were sensitive to FB-devaluation after moderate training, but not overtraining, consistent with a transition from goal-directed to habitual avoidance. Using chemogenetics and FB-devaluation, we also show that goal-directed vs. habitual ARs depend on dorsomedial vs. dorsolateral striatum, suggesting a significant overlap between the mechanisms of avoidance and rewarded instrumental behavior. Females were insensitive to FB-devaluation due to a remarkable context-dependence of counterconditioning. However, degrading the AR-FB contingency suggests that both sexes rely on safety signals to perform goal-directed ARs.
PMCID:10871355
PMID: 38370659
CID: 5633992
DEVELOPMENTAL ALCOHOL EXPOSURE IS EXHAUSTING: SLEEP AND THE ENDURING CONSEQUENCES OF ALCOHOL EXPOSURE DURING DEVELOPMENT
Wilson, Donald A; Sullivan, Regina M; Smiley, John F; Saito, Mariko; Raineki, Charlis
Prenatal alcohol exposure is the leading nongenetic cause of human intellectual impairment. The long-term impacts of prenatal alcohol exposure on health and well-being are diverse, including neuropathology leading to behavioral, cognitive, and emotional impairments. Additionally negative effects also occur on the physiological level, such as the endocrine, cardiovascular, and immune systems. Among these diverse impacts is sleep disruption. In this review, we describe how prenatal alcohol exposure affects sleep, and potential mechanisms of those effects. Furthermore, we outline the evidence that sleep disruption across the lifespan may be a mediator of some cognitive and behavioral impacts of developmental alcohol exposure, and thus may represent a promising target for treatment.
PMID: 38309498
ISSN: 1873-7528
CID: 5627042
Neuroscience: Building better cognition through smell [Comment]
Wilson, Donald A; Sullivan, Regina M
Developmental neural activity organizes sensory system development. New evidence in mice suggests postnatal olfactory bulb activity also modulates development of the structure and function of hippocampal-cortical circuits. Reducing cell-specific olfactory bulb output during an infant sensitive period impairs later-life cognition.
PMID: 37875078
ISSN: 1879-0445
CID: 5708342
Homeostatic NREM sleep and salience network function in adult mice exposed to ethanol during development
Shah, Prachi; Kaneria, Aayush; Fleming, Gloria; Williams, Colin R O; Sullivan, Regina M; Lemon, Christian H; Smiley, John; Saito, Mariko; Wilson, Donald A
Developmental exposure to ethanol is a leading cause of cognitive, emotional and behavioral problems, with fetal alcohol spectrum disorder (FASD) affecting more than 1:100 children. Recently, comorbid sleep deficits have been highlighted in these disorders, with sleep repair a potential therapeutic target. Animal models of FASD have shown non-REM (NREM) sleep fragmentation and slow-wave oscillation impairments that predict cognitive performance. Here we use a mouse model of perinatal ethanol exposure to explore whether reduced sleep pressure may contribute to impaired NREM sleep, and compare the function of a brain network reported to be impacted by insomnia-the Salience network-in developmental ethanol-exposed mice with sleep-deprived, saline controls. Mice were exposed to ethanol or saline on postnatal day 7 (P7) and allowed to mature to adulthood for testing. At P90, telemetered cortical recordings were made for assessment of NREM sleep in home cage before and after 4 h of sleep deprivation to assess basal NREM sleep and homeostatic NREM sleep response. To assess Salience network functional connectivity, mice were exposed to the 4 h sleep deprivation period or left alone, then immediately sacrificed for immunohistochemical analysis of c-Fos expression. The results show that developmental ethanol severely impairs both normal rebound NREM sleep and sleep deprivation induced increases in slow-wave activity, consistent with reduced sleep pressure. Furthermore, the Salience network connectome in rested, ethanol-exposed mice was most similar to that of sleep-deprived, saline control mice, suggesting a sleep deprivation-like state of Salience network function after developmental ethanol even without sleep deprivation.
PMCID:10682725
PMID: 38033546
ISSN: 1662-4548
CID: 5616972