Search Results - "Vaidya, V. A."
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Thyroid Hormone Accelerates the Differentiation of Adult Hippocampal Progenitors
Published in Journal of neuroendocrinology (01-09-2012)“…Disrupted thyroid hormone function evokes severe physiological consequences in the immature brain. In adulthood, although clinical reports document an effect…”
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Hippocampal mossy fiber sprouting induced by chronic electroconvulsive seizures
Published in Neuroscience (01-03-1999)“…Stress, which can precipitate and exacerbate depression, causes atrophy and in severe cases death of hippocampal neurons. Atrophy of the hippocampus has also…”
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Glucocorticoid regulation of brain-derived neurotrophic factor: Relevance to hippocampal structural and functional plasticity
Published in Neuroscience (03-06-2013)“…Graphical abstract Highlights ► Glucocorticoids and BDNF exert opposing effects on hippocampal plasticity. ► Glucocorticoids modulate BDNF transcription and…”
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Cyclic AMP response element binding protein and brain-derived neurotrophic factor: molecules that modulate our mood?
Published in Journal of biosciences (01-09-2006)“…Depression is the major psychiatric ailment of our times, afflicting approximately 20% of the population. Despite its prevalence, the pathophysiology of this…”
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Early Stress History Alters Serum Insulin-Like Growth Factor-1 and Impairs Muscle Mitochondrial Function in Adult Male Rats
Published in Journal of neuroendocrinology (01-09-2016)“…Early‐life adversity is associated with an enhanced risk for adult psychopathology. Psychiatric disorders such as depression exhibit comorbidity for metabolic…”
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Role of 5-HT2A receptors in the stress-induced down-regulation of brain-derived neurotrophic factor expression in rat hippocampus
Published in Neuroscience letters (26-02-1999)“…Immobilization stress decreases the expression of BDNF mRNA in the rat hippocampus, and this effect could contribute to the atrophy of hippocampal neurons…”
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Chronic Lithium Treatment Enhances the Number of Quiescent Neural Progenitors but Not the Number of DCX-Positive Immature Neurons
Published in The international journal of neuropsychopharmacology (01-05-2015)“…Background: The term adult neurogenesis constitutes a series of developmental steps including the birth, survival, differentiation, maturation, and even death…”
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Regulation of CREB expression: in vivo evidence for a functional role in morphine action in the nucleus accumbens
Published in The Journal of pharmacology and experimental therapeutics (01-01-1996)“…Previous work has shown that chronic opiate administration regulates protein components of the cAMP signaling pathway, specifically in the nucleus accumbens…”
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Thyroid hormone regulates hippocampal neurogenesis in the adult rat brain
Published in Molecular and cellular neuroscience (01-07-2005)“…We have examined the influence of thyroid hormone on adult hippocampal neurogenesis, which encompasses the proliferation, survival and differentiation of…”
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10
Stress, depression and hippocampal damage
Published in Journal of biosciences (01-06-2000)Get full text
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Neurotransmitter regulation of adult neurogenesis: putative therapeutic targets
Published in CNS & neurological disorders drug targets (01-10-2007)“…The evidence that new neuron addition takes place in the mammalian brain throughout adult life has dramatically altered our perspective of the potential for…”
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Selective serotonin depletion does not regulate hippocampal neurogenesis in the adult rat brain: Differential effects of p-chlorophenylalanine and 5,7-dihydroxytryptamine
Published in Brain research (23-02-2006)“…Serotonin is suggested to regulate adult hippocampal neurogenesis, and previous studies with serotonin depletion reported either a decrease or no change in…”
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5-HT2A Receptor-Mediated Regulation of Brain-Derived Neurotrophic Factor mRNA in the Hippocampus and the Neocortex
Published in The Journal of neuroscience (15-04-1997)“…The influence of 5-HT receptor agonists on the expression of BDNF in brain was determined. Administration of a hallucinogenic 5-HT2A /2C receptor agonist, but…”
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Electroconvulsive seizure increases the expression of CREM (cyclic AMP response element modulator) and ICER (inducible cyclic AMP early repressor) in rat brain
Published in Journal of neurochemistry (01-01-1996)“…Rapid expression of ICER (inducible cyclic AMP early repressor), an inducible member of the CREM (cyclic AMP response element modulator) family of…”
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Molecular and cellular actions of chronic electroconvulsive seizures
Published in The journal of ECT (01-09-1998)“…Recent studies have begun to examine the influence of electroconvulsive shock (ECS) on the expression of growth factors in brain, as well as alterations in the…”
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Influence of thyroid hormone on 5-HT(1A) and 5-HT(2A) receptor-mediated regulation of hippocampal BDNF mRNA expression
Published in Neuropharmacology (2001)“…The aim of the present study was to determine the influence of thyroid hormone, T3, on the regulation of hippocampal BDNF expression by 5-HT receptor agonists…”
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Essential Role of the fosB Gene in Molecular, Cellular, and Behavioral Actions of Chronic Electroconvulsive Seizures
Published in The Journal of neuroscience (01-09-1998)“…The role of Fos-like transcription factors in neuronal and behavioral plasticity has remained elusive. Here we demonstrate that a Fos family member protein…”
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Differential regulation of multiple brain-derived neurotrophic factor transcripts in the postnatal and adult rat hippocampus during development, and in response to kainate administration
Published in Brain research. Molecular brain research. (04-11-2004)“…Brain-derived neurotrophic factor (BDNF) is expressed at high levels in the hippocampus, where it has been implicated in physiological functions such as the…”
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Regulation of beta 2-adrenergic receptor mRNA and gene transcription in rat C6 glioma cells: effects of agonist, forskolin, and protein synthesis inhibition
Published in Molecular pharmacology (01-08-1995)“…Incubation of rat C6 glioma cells with beta-adrenergic receptor (beta AR) agonist or with agents that increase cAMP levels results in down-regulation of the…”
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