1 89 241 A PILOT INVESTIGATION OF DIFFERENTIAL HYDROXYMETHYLATION LEVELS IN PATIENT-DERIVED NEURAL STEM CELLS IMPLICATES ALTERED CORTICAL DEVELOPMENT IN BIPOLAR DISORDER. INTRODUCTION: BIPOLAR DISORDER (BD) IS A CHRONIC MENTAL ILLNESS CHARACTERIZED BY RECURRENT EPISODES OF MANIA AND DEPRESSION AND ASSOCIATED WITH SOCIAL AND COGNITIVE DISTURBANCES. ENVIRONMENTAL FACTORS, SUCH AS MATERNAL SMOKING AND CHILDHOOD TRAUMA, ARE BELIEVED TO MODULATE RISK GENOTYPES AND CONTRIBUTE TO THE PATHOGENESIS OF BD, SUGGESTING A KEY ROLE IN EPIGENETIC REGULATION DURING NEURODEVELOPMENT. 5-HYDROXYMETHYLCYTOSINE (5HMC) IS AN EPIGENETIC VARIANT OF PARTICULAR INTEREST, AS IT IS HIGHLY EXPRESSED IN THE BRAIN AND IS IMPLICATED IN NEURODEVELOPMENT, AND PSYCHIATRIC AND NEUROLOGICAL DISORDERS. METHODS: INDUCED PLURIPOTENT STEM CELLS (IPSCS) WERE GENERATED FROM THE WHITE BLOOD CELLS OF TWO ADOLESCENT PATIENTS WITH BIPOLAR DISORDER AND THEIR SAME-SEX AGE-MATCHED UNAFFECTED SIBLINGS (N = 4). FURTHER, IPSCS WERE DIFFERENTIATED INTO NEURONAL STEM CELLS (NSCS) AND CHARACTERIZED FOR PURITY USING IMMUNO-FLUORESCENCE. WE USED REDUCED REPRESENTATION HYDROXYMETHYLATION PROFILING (RRHP) TO PERFORM GENOME-WIDE 5HMC PROFILING OF IPSCS AND NSCS, TO MODEL 5HMC CHANGES DURING NEURONAL DIFFERENTIATION AND ASSESS THEIR IMPACT ON BD RISK. FUNCTIONAL ANNOTATION AND ENRICHMENT TESTING OF GENES HARBORING DIFFERENTIATED 5HMC LOCI WERE PERFORMED WITH THE ONLINE TOOL DAVID. RESULTS: APPROXIMATELY 2 MILLION SITES WERE MAPPED AND QUANTIFIED, WITH THE MAJORITY (68.8%) LOCATED IN GENIC REGIONS, WITH ELEVATED 5HMC LEVELS PER SITE OBSERVED FOR 3' UTRS, EXONS, AND 2-KB SHORELINES OF CPG ISLANDS. PAIRED T-TESTS OF NORMALIZED 5HMC COUNTS BETWEEN IPSC AND NSC CELL LINES REVEALED GLOBAL HYPO-HYDROXYMETHYLATION IN NSCS AND ENRICHMENT OF DIFFERENTIALLY HYDROXYMETHYLATED SITES WITHIN GENES ASSOCIATED WITH PLASMA MEMBRANE (FDR = 9.1 X 10(-12)) AND AXON GUIDANCE (FDR = 2.1 X 10(-6)), AMONG OTHER NEURONAL PROCESSES. THE MOST SIGNIFICANT DIFFERENCE WAS OBSERVED FOR A TRANSCRIPTION FACTOR BINDING SITE FOR THE KCNK9 GENE (P = 8.8 X 10(-6)), ENCODING A POTASSIUM CHANNEL PROTEIN INVOLVED IN NEURONAL ACTIVITY AND MIGRATION. PROTEIN-PROTEIN-INTERACTION (PPI) NETWORKING SHOWED SIGNIFICANT CONNECTIVITY (P = 3.2 X 10(-10)) BETWEEN PROTEINS ENCODED BY GENES HARBORING HIGHLY DIFFERENTIATED 5HMC SITES, WITH GENES INVOLVED IN AXON GUIDANCE AND ION TRANSMEMBRANE TRANSPORT FORMING DISTINCT SUB-CLUSTERS. COMPARISON OF NSCS OF BD CASES AND UNAFFECTED SIBLINGS REVEALED ADDITIONAL PATTERNS OF DIFFERENTIATION IN HYDROXYMETHYLATION LEVELS, INCLUDING SITES IN GENES WITH FUNCTIONS RELATED TO SYNAPSE FORMATION AND REGULATION, SUCH AS CUX2 (P = 2.4 X 10(-5)) AND DOK-7 (P = 3.6 X 10(-3)), AS WELL AS AN ENRICHMENT OF GENES INVOLVED IN THE EXTRACELLULAR MATRIX (FDR = 1.0 X 10(-8)). DISCUSSION: TOGETHER, THESE PRELIMINARY RESULTS LEND EVIDENCE TOWARD A POTENTIAL ROLE FOR 5HMC IN BOTH EARLY NEURONAL DIFFERENTIATION AND BD RISK, WITH VALIDATION AND MORE COMPREHENSIVE CHARACTERIZATION TO BE ACHIEVED THROUGH FOLLOW-UP STUDY. 2023 2 892 49 CHRONIC ETHANOL EXPOSURE ALTERS DNA METHYLATION IN NEURAL STEM CELLS: ROLE OF MOUSE STRAIN AND SEX. PRENATAL ALCOHOL EXPOSURE (PAE) IS CONSIDERED AS A RISK FACTOR FOR THE DEVELOPMENT OF FETAL ALCOHOL SPECTRUM DISORDERS (FASD). EVIDENCE INDICATES THAT PAE AFFECTS EPIGENETIC MECHANISMS (SUCH AS DNA METHYLATION) AND ALTERS THE NORMAL DIFFERENTIATION AND DEVELOPMENT OF NEURAL STEM CELLS (NSC) IN THE FETAL BRAIN. HOWEVER, PAE EFFECTS DEPEND ON SEVERAL FACTORS SUCH AS SEX AND STRAIN OF THE STUDIED SUBJECTS. HERE, WE INVESTIGATED WHETHER MURINE SEX AND STRAIN CONTRIBUTE TO THE EFFECTS OF CHRONIC ETHANOL EXPOSURE ON DNA METHYLATION MACHINERY OF DIFFERENTIATING NSC. FURTHER, THE EFFECTS OF PAE ON GLIAL LINEAGE (INCLUDING BOTH ASTROCYTES AND OLIGODENDROCYTES) IN A SEX- AND STRAIN-DEPENDENT MANNER HAVE NOT BEEN STUDIED YET. TO EXAMINE THE EFFECTS OF CHRONIC ETHANOL EXPOSURE ON GLIOGENESIS, WE EXPOSED DIFFERENTIATING NSC TO GLIO-INDUCTIVE CULTURE CONDITIONS. APPLYING A STANDARD IN VITRO MODEL SYSTEM, WE TREATED MALE AND FEMALE DIFFERENTIATING NSC (OBTAINED FROM THE FOREBRAIN OF CD1 AND C57BL/6 EMBRYOS AT EMBRYONIC DAY 14.5) WITH CHRONIC ETHANOL EXPOSURE (70 MM) FOR 8 DAYS. WE SHOW THAT ETHANOL INDUCES GLOBAL DNA HYPOMETHYLATION, WHILE ALTERING THE EXPRESSION OF DNA METHYLATION-RELATED GENES IN A SEX- AND STRAIN-SPECIFIC MANNER. THE OBSERVED CHANGE IN CELLULAR DNA METHYLATION LEVELS WAS ASSOCIATED WITH ALTERED EXPRESSION OF GLIAL MARKERS CNPASE, GFAP, AND OLIG2 IN CD1 (BUT NOT C57BL/6) CELLS. WE CONCLUDE THAT THE IMPACT OF ETHANOL EFFECT ON DNA METHYLATION IS DEPENDENT ON CELLULAR SEX AND STRAIN. ALSO, ETHANOL IMPACT ON NEURAL STEM CELL FATE COMMITMENT WAS ONLY DETECTED IN CELLS ISOLATED FROM CD1 MOUSE STRAIN, BUT NOT IN C57BL/6 CELLS. THE RESULTS OF THE CURRENT STUDY PROVIDE EVIDENCE THAT SEX AND STRAIN OF RODENTS (C57BL/6 AND CD1) DURING GESTATION ARE IMPORTANT FACTORS, WHICH AFFECT ALCOHOL EFFECTS ON NSC DIFFERENTIATION AND DNA METHYLATION. RESULTS OF THIS STUDY MAY ALSO HELP IN INTERPRETING DATA ON THE DEVELOPMENTAL TOXICITY OF MANY COMPOUNDS DURING THE GESTATIONAL PERIOD. 2020 3 3715 50 INHERITED EFFECTS OF LOW-DOSE EXPOSURE TO METHYLMERCURY IN NEURAL STEM CELLS. METHYLMERCURY (MEHG) IS AN ENVIRONMENTAL CONTAMINANT WITH RECOGNIZED NEUROTOXIC EFFECTS, PARTICULARLY TO THE DEVELOPING NERVOUS SYSTEM. IN THE PRESENT STUDY, WE SHOW THAT NANOMOLAR CONCENTRATIONS OF MEHG CAN INDUCE LONG-LASTING EFFECTS IN NEURAL STEM CELLS (NSCS). WE INVESTIGATED SHORT-TERM DIRECT AND LONG-TERM INHERITED EFFECTS OF EXPOSURE TO MEHG (2.5 OR 5.0 NM) USING PRIMARY CULTURES OF RAT EMBRYONIC CORTICAL NSCS. WE FOUND THAT MEHG HAD NO ADVERSE EFFECT ON CELL VIABILITY BUT REDUCED NSC PROLIFERATION AND ALTERED THE EXPRESSION OF CELL CYCLE REGULATORS (P16 AND P21) AND SENESCENCE-ASSOCIATED MARKERS. IN ADDITION, WE DEMONSTRATED A DECREASE IN GLOBAL DNA METHYLATION IN THE EXPOSED CELLS, INDICATING THAT EPIGENETIC CHANGES MAY BE INVOLVED IN THE MECHANISMS UNDERLYING THE MEHG-INDUCED EFFECTS. THESE CHANGES WERE OBSERVED IN CELLS DIRECTLY EXPOSED TO MEHG (PARENT CELLS) AND IN THEIR DAUGHTER CELLS CULTURED UNDER MEHG-FREE CONDITIONS. IN AGREEMENT WITH OUR IN VITRO DATA, A TREND WAS FOUND FOR DECREASED CELL PROLIFERATION IN THE SUBGRANULAR ZONE IN THE HIPPOCAMPI OF ADULT MICE EXPOSED TO LOW DOSES OF MEHG DURING THE PERINATAL PERIOD. INTERESTINGLY, THIS IMPAIRED PROLIFERATION HAD A MEASURABLE IMPACT ON THE TOTAL NUMBER OF NEURONS IN THE HIPPOCAMPAL DENTATE GYRUS. IMPORTANTLY, THIS EFFECT COULD BE REVERSED BY CHRONIC ANTIDEPRESSANT TREATMENT. OUR STUDY PROVIDES NOVEL EVIDENCE FOR PROGRAMMING EFFECTS INDUCED BY MEHG IN NSCS AND SUPPORTS THE IDEA THAT DEVELOPMENTAL EXPOSURE TO LOW LEVELS OF MEHG MAY RESULT IN LONG-TERM CONSEQUENCES PREDISPOSING TO NEURODEVELOPMENTAL DISORDERS AND/OR NEURODEGENERATION. 2012 4 3971 44 LONG-LASTING NEUROTOXIC EFFECTS OF EXPOSURE TO METHYLMERCURY DURING DEVELOPMENT. AMONGST ENVIRONMENTAL CHEMICAL CONTAMINANTS, METHYLMERCURY (MEHG) REMAINS A MAJOR CONCERN BECAUSE OF ITS DETRIMENTAL EFFECTS ON DEVELOPING ORGANISMS, WHICH APPEAR TO BE PARTICULARLY SUSCEPTIBLE TO ITS TOXICITY. HERE, WE INVESTIGATED THE EFFECTS OF LOW MEHG LEVELS ON THE DEVELOPMENT OF THE NERVOUS SYSTEM USING BOTH IN VITRO AND IN VIVO EXPERIMENTAL MODELS. IN NEURAL STEM CELLS (NSCS), MEHG DECREASED PROLIFERATION AND NEURONAL DIFFERENTIATION AND INDUCED CELLULAR SENESCENCE ASSOCIATED WITH IMPAIRMENT IN MITOCHONDRIAL FUNCTION AND A CONCOMITANT DECREASE IN GLOBAL DNA METHYLATION. INTERESTINGLY, THE EFFECTS WERE HERITABLE AND COULD BE OBSERVED IN DAUGHTER NSCS NEVER DIRECTLY EXPOSED TO MEHG. BY CHRONICALLY EXPOSING PREGNANT/LACTATING MICE TO MEHG, WE FOUND PERSISTENT BEHAVIOURAL CHANGES IN THE MALE OFFSPRING, WHICH EXHIBITED DEPRESSION-LIKE BEHAVIOUR THAT COULD BE REVERSED BY CHRONIC TREATMENT WITH THE ANTIDEPRESSANT FLUOXETINE. THE BEHAVIOURAL ALTERATIONS WERE ASSOCIATED WITH A DECREASED NUMBER OF PROLIFERATING CELLS AND LOWER EXPRESSION OF BRAIN-DERIVED NEUROTROPHIC FACTOR (BDNF) MRNA IN THE HIPPOCAMPAL DENTATE GYRUS. MEHG EXPOSURE ALSO INDUCED LONG-LASTING DNA HYPERMETHYLATION, INCREASED HISTONE H3-K27 TRI-METHYLATION AND DECREASED H3 ACETYLATION AT THE BDNF PROMOTER IV, INDICATING THAT EPIGENETIC MECHANISMS PLAY A CRITICAL ROLE IN MEDIATING THE LONG-LASTING EFFECTS OF PERINATAL EXPOSURE TO MEHG. FLUOXETINE TREATMENT RESTORED THE BDNF MRNA EXPRESSION LEVELS, AS WELL AS THE NUMBER OF PROLIFERATING CELLS IN THE GRANULE CELL LAYER OF THE DENTATE GYRUS, WHICH FURTHER SUPPORTS THE HYPOTHESIS THAT LINKS DEPRESSION TO IMPAIRED NEUROGENESIS. ALTOGETHER, OUR FINDINGS HAVE SHOWN THAT LOW CONCENTRATIONS OF MEHG INDUCE LONG-LASTING EFFECTS IN NSCS THAT CAN POTENTIALLY PREDISPOSE INDIVIDUALS TO DEPRESSION, WHICH WE HAVE REPORTED EARLIER TO OCCUR IN EXPERIMENTAL ANIMALS EXPOSED TO MEHG DURING PRENATAL AND EARLY POSTNATAL DEVELOPMENT. 2013 5 2927 50 GENERATION OF HUMAN CORTICAL NEURONS FROM A NEW IMMORTAL FETAL NEURAL STEM CELL LINE. ISOLATION AND EXPANSION OF NEURAL STEM CELLS (NSCS) OF HUMAN ORIGIN ARE CRUCIAL FOR SUCCESSFUL DEVELOPMENT OF CELL THERAPY APPROACHES IN NEURODEGENERATIVE DISEASES. DIFFERENT EPIGENETIC AND GENETIC IMMORTALIZATION STRATEGIES HAVE BEEN ESTABLISHED FOR LONG-TERM MAINTENANCE AND EXPANSION OF THESE CELLS IN VITRO. HERE WE REPORT THE GENERATION OF A NEW, CLONAL NSC (HC-NSC) LINE, DERIVED FROM HUMAN FETAL CORTICAL TISSUE, BASED ON V-MYC IMMORTALIZATION. USING IMMUNOCYTOCHEMISTRY, WE SHOW THAT THESE CELLS RETAIN THE CHARACTERISTICS OF NSCS AFTER MORE THAN 50 PASSAGES. UNDER PROLIFERATION CONDITIONS, WHEN SUPPLEMENTED WITH EPIDERMAL AND BASIC FIBROBLAST GROWTH FACTORS, THE HC-NSCS EXPRESSED NEURAL STEM/PROGENITOR CELL MARKERS LIKE NESTIN, VIMENTIN AND SOX2. WHEN GROWTH FACTORS WERE WITHDRAWN, PROLIFERATION AND EXPRESSION OF V-MYC AND TELOMERASE WERE DRAMATICALLY REDUCED, AND THE HC-NSCS DIFFERENTIATED INTO GLIA AND NEURONS (MOSTLY GLUTAMATERGIC AND GABAERGIC, AS WELL AS TYROSINE HYDROXYLASE-POSITIVE, PRESUMABLY DOPAMINERGIC NEURONS). RT-PCR ANALYSIS SHOWED THAT THE HC-NSCS RETAINED EXPRESSION OF PAX6, EMX2 AND NEUROGENIN2, WHICH ARE GENES ASSOCIATED WITH REGIONALIZATION AND CELL COMMITMENT IN CORTICAL PRECURSORS DURING BRAIN DEVELOPMENT. OUR DATA INDICATE THAT THIS HC-NSC LINE COULD BE USEFUL FOR EXPLORING THE POTENTIAL OF HUMAN NSCS TO REPLACE DEAD OR DAMAGED CORTICAL CELLS IN ANIMAL MODELS OF ACUTE AND CHRONIC NEURODEGENERATIVE DISEASES. TAKING ADVANTAGE OF ITS CLONALITY AND HOMOGENEITY, THIS CELL LINE WILL ALSO BE A VALUABLE EXPERIMENTAL TOOL TO STUDY THE REGULATORY ROLE OF INTRINSIC AND EXTRINSIC FACTORS IN HUMAN NSC BIOLOGY. 2007 6 1850 34 ELECTROACUPUNCTURE AMELIORATES DEPRESSION-LIKE BEHAVIORS COMORBID TO CHRONIC NEUROPATHIC PAIN VIA TET1-MEDIATED RESTORATION OF ADULT NEUROGENESIS. ALTHOUGH ELECTROACUPUNCTURE (EA) STIMULATION IS A WIDELY USED THERAPY FOR CHRONIC PAIN AND COMORBID PSYCHIATRIC DISORDERS, ITS LONG-TERM EFFECTS ON CHRONIC NEUROPATHIC PAIN-INDUCED DEPRESSION AND THE UNDERLYING MECHANISMS REMAIN ELUSIVE. IN THE PRESENT STUDY, WE FOUND THAT EA STIMULATION WAS ABLE TO RESTORE ADULT NEUROGENESIS IN THE VENTRAL DENTATE GYRUS (DG), BY BOTH INCREASING NEURONAL DIFFERENTIATION AND RESTORING THE NORMAL MORPHOLOGY OF NEWBORN DENDRITES, IN MICE WITH SPARED NERVE INJURY SURGERY. BY ABLATING THE NESTIN+ NEURAL STEM CELLS (NSCS) VIA DIPHTHERIA TOXIN FRAGMENT A EXPRESSION, WE FURTHER PROVED THAT NEUROGENESIS IN THE VENTRAL DG WAS CRUCIAL TO THE LONG-TERM, BUT NOT THE IMMEDIATE ANTIDEPRESSANT EFFECT OF EA, NOR WAS IT ASSOCIATED WITH NOCICEPTION. FURTHERMORE, WE FOUND THAT THE RESTORATION OF NEUROGENESIS WAS DEPENDENT ON TET1-MEDIATED EPIGENETIC MODIFICATION UPON EA TREATMENT. TET1 COULD BIND TO THE PROMOTER OF THE PROX1 GENE, THUS CATALYZING ITS DEMETHYLATION AND FACILITATING ITS EXPRESSION, WHICH FINALLY CONTRIBUTED TO THE RESTORATION OF NEUROGENESIS AND AMELIORATION OF DEPRESSION-LIKE BEHAVIORS INDUCED BY CHRONIC NEUROPATHIC PAIN. THUS, WE CONCLUDE THAT EA STIMULATION RESTORES INHIBITED TET1 EXPRESSION IN HIPPOCAMPAL NSCS OF MICE WITH CHRONIC NEUROPATHIC PAIN, AND INCREASED TET1 EXPRESSION AMELIORATES HYPERMETHYLATION OF PROX1 AND RESTORES NORMAL ADULT NEUROGENESIS IN THE VENTRAL DG, WHICH CONTRIBUTES TO THE LONG-TERM ANTIDEPRESSANT EFFECT OF EA. 2023 7 579 47 BEHAVIORAL AND MOLECULAR NEUROEPIGENETIC ALTERATIONS IN PRENATALLY STRESSED MICE: RELEVANCE FOR THE STUDY OF CHROMATIN REMODELING PROPERTIES OF ANTIPSYCHOTIC DRUGS. WE HAVE RECENTLY REPORTED THAT MICE BORN FROM DAMS STRESSED DURING PREGNANCY (PRS MICE), IN ADULTHOOD, HAVE BEHAVIORAL DEFICITS REMINISCENT OF BEHAVIORS OBSERVED IN SCHIZOPHRENIA (SZ) AND BIPOLAR (BP) DISORDER PATIENTS. FURTHERMORE, WE HAVE SHOWN THAT THE FRONTAL CORTEX (FC) AND HIPPOCAMPUS OF ADULT PRS MICE, LIKE THAT OF POSTMORTEM CHRONIC SZ PATIENTS, ARE CHARACTERIZED BY INCREASES IN DNA-METHYLTRANSFERASE 1 (DNMT1), TEN-ELEVEN METHYLCYTOSINE DIOXYGENASE 1 (TET1) AND EXHIBIT AN ENRICHMENT OF 5-METHYLCYTOSINE (5MC) AND 5-HYDROXYMETHYLCYTOSINE (5HMC) AT NEOCORTICAL GABAERGIC AND GLUTAMATERGIC GENE PROMOTERS. HERE, WE SHOW THAT THE BEHAVIORAL DEFICITS AND THE INCREASED 5MC AND 5HMC AT GLUTAMIC ACID DECARBOXYLASE 67 (GAD1), REELIN (RELN) AND BRAIN-DERIVED NEUROTROPHIC FACTOR (BDNF) PROMOTERS AND THE REDUCED EXPRESSION OF THE MESSENGER RNAS (MRNAS) AND PROTEINS CORRESPONDING TO THESE GENES IN FC OF ADULT PRS MICE IS REVERSED BY TREATMENT WITH CLOZAPINE (5 MG KG(-1) TWICE A DAY FOR 5 DAYS) BUT NOT BY HALOPERIDOL (1 MG KG(-1) TWICE A DAY FOR 5 DAYS). INTERESTINGLY, CLOZAPINE HAD NO EFFECT ON EITHER THE BEHAVIOR, PROMOTER METHYLATION OR THE EXPRESSION OF THESE MRNAS AND PROTEINS WHEN ADMINISTERED TO OFFSPRING OF NONSTRESSED PREGNANT MICE. CLOZAPINE, BUT NOT HALOPERIDOL, REDUCED THE ELEVATED LEVELS OF DNMT1 AND TET1, AS WELL AS THE ELEVATED LEVELS OF DNMT1 BINDING TO GAD1, RELN AND BDNF PROMOTERS IN PRS MICE SUGGESTING THAT CLOZAPINE, UNLIKE HALOPERIDOL, MAY LIMIT DNA METHYLATION BY INTERFERING WITH DNA METHYLATION DYNAMICS. WE CONCLUDE THAT THE PRS MOUSE MODEL MAY BE USEFUL PRECLINICALLY IN SCREENING FOR THE POTENTIAL EFFICACY OF ANTIPSYCHOTIC DRUGS ACTING ON ALTERED EPIGENETIC MECHANISMS. FURTHERMORE, PRS MICE MAY BE INVALUABLE FOR UNDERSTANDING THE ETIOPATHOGENESIS OF SZ AND BP DISORDER AND FOR PREDICTING TREATMENT RESPONSES AT EARLY STAGES OF THE ILLNESS ALLOWING FOR EARLY DETECTION AND REMEDIAL INTERVENTION. 2016 8 4180 43 MERCURY EXPOSURE INDUCES CYTOSKELETON DISRUPTION AND LOSS OF RENAL FUNCTION THROUGH EPIGENETIC MODULATION OF MMP9 EXPRESSION. MERCURY IS ONE OF THE MAJOR HEAVY METAL POLLUTANTS OCCURRING IN ELEMENTAL, INORGANIC AND ORGANIC FORMS. DUE TO BAN ON MOST INORGANIC MERCURY CONTAINING PRODUCTS, HUMAN EXPOSURE TO MERCURY GENERALLY OCCURS AS METHYLMERCURY (MEHG) BY CONSUMPTION OF CONTAMINATED FISH AND OTHER SEA FOOD. ANIMAL AND EPIDEMIOLOGICAL STUDIES INDICATE THAT MEHG AFFECTS NEURAL AND RENAL FUNCTION. OUR STUDY IS FOCUSED ON NEPHROTOXIC POTENTIAL OF MEHG. IN THIS STUDY, WE HAVE SHOWN FOR THE FIRST TIME HOW MEHG COULD EPIGENETICALLY MODULATE MATRIX METALLOPROTEINASE 9(MMP9) TO PROMOTE NEPHROTOXICITY USING AN ANIMAL MODEL OF SUB CHRONIC MEHG EXPOSURE. MEHG CAUSED RENAL TOXICITY AS WAS SEEN BY INCREASED LEVELS OF SERUM CREATININE AND EXPRESSION OF EARLY NEPHROTOXICITY MARKERS (KIM-1, CLUSTERIN, IP-10, AND TIMP). MEHG EXPOSURE ALSO CORRELATED STRONGLY WITH INDUCTION OF MMP9 MRNA AND PROTEIN IN A DOSE DEPENDENT MANNER. FURTHER, WHILE INDUCTION OF MMP9 PROMOTED CYTOSKELETON DISRUPTION AND LOSS OF CELL-CELL ADHESION (LOSS OF F-ACTIN, VIMENTIN AND FIBRONECTIN), INHIBITION OF MMP9 WAS FOUND TO REDUCE THESE DISRUPTIONS. MECHANISTIC STUDIES BY CHIP ANALYSIS SHOWED THAT MEHG MODULATED MMP9 BY PROMOTING DEMETHYLATION OF ITS REGULATORY REGION TO INCREASE ITS EXPRESSION. BISULFITE SEQUENCING IDENTIFIED CRITICAL CPGS IN THE FIRST EXON OF MMP9 WHICH WERE DEMETHYLATED FOLLOWING MEHG EXPOSURE. CHIP STUDIES ALSO SHOWED LOSS OF METHYL BINDING PROTEIN, MECP2 AND TRANSCRIPTION FACTOR PEA3 AT THE DEMETHYLATED SITE CONFIRMING DECREASED CPG METHYLATION. OUR STUDIES THUS SHOW HOW MEHG COULD EPIGENETICALLY MODULATE MMP9 TO PROMOTE CYTOSKELETON DISRUPTION LEADING TO LOSS OF RENAL FUNCTION. 2017 9 5200 42 PRENATAL MATERNAL STRESS PREDICTS METHYLATION OF GENES REGULATING THE HYPOTHALAMIC-PITUITARY-ADRENOCORTICAL SYSTEM IN MOTHERS AND NEWBORNS IN THE DEMOCRATIC REPUBLIC OF CONGO. EXPOSURE TO STRESS EARLY IN LIFE PERMANENTLY SHAPES ACTIVITY OF THE HYPOTHALAMIC-PITUITARY-ADRENOCORTICAL (HPA) AXIS AND THE BRAIN. PRENATALLY, GLUCOCORTICOIDS PASS THROUGH THE PLACENTA TO THE FETUS WITH POSTNATAL IMPACTS ON BRAIN DEVELOPMENT, BIRTH WEIGHT (BW), AND HPA AXIS FUNCTIONING. LITTLE IS KNOWN ABOUT THE BIOLOGICAL MECHANISMS BY WHICH PRENATAL STRESS AFFECTS POSTNATAL FUNCTIONING. THIS STUDY ADDRESSES THIS GAP BY EXAMINING THE EFFECT OF CHRONIC STRESS AND TRAUMATIC WAR-RELATED STRESS ON EPIGENETIC CHANGES IN FOUR KEY GENES REGULATING THE HPA AXIS IN NEONATAL CORD BLOOD, PLACENTA, AND MATERNAL BLOOD: CRH, CRHBP, NR3C1, AND FKBP5. PARTICIPANTS WERE 24 MOTHER-NEWBORN DYADS IN THE CONFLICT-RIDDEN REGION OF THE EASTERN DEMOCRATIC REPUBLIC OF CONGO. BW DATA WERE COLLECTED AT DELIVERY AND MATERNAL INTERVIEWS WERE CONDUCTED TO ASSESS CULTURALLY RELEVANT CHRONIC AND WAR-RELATED STRESSORS. CHRONIC STRESS AND WAR TRAUMA HAD WIDESPREAD EFFECTS ON HPA AXIS GENE METHYLATION, WITH SIGNIFICANT EFFECTS OBSERVED AT TRANSCRIPTION FACTOR BINDING (TFB) SITES IN ALL TARGET GENES TESTED. SOME CHANGES IN METHYLATION WERE UNIQUE TO CHRONIC OR WAR STRESS, WHEREAS OTHERS WERE OBSERVED ACROSS BOTH STRESSOR TYPES. MOREOVER, STRESS EXPOSURES IMPACTED MATERNAL AND FETAL TISSUES DIFFERENTLY, SUPPORTING THEORETICAL MODELS THAT STRESS IMPACTS VARY ACCORDING TO LIFE PHASE. METHYLATION IN SEVERAL NR3C1 AND CRH CPG SITES, ALL LOCATED AT TFB SITES, WAS ASSOCIATED WITH BW. THESE FINDINGS SUGGEST THAT PRENATAL STRESS EXPOSURE IMPACTS DEVELOPMENT VIA EPIGENETIC CHANGES IN HPA AXIS GENES. 2016 10 893 46 CHRONIC ETHANOL EXPOSURE AND WITHDRAWAL IMPAIR SYNAPTIC GABA(A) RECEPTOR-MEDIATED NEUROTRANSMISSION IN DEEP-LAYER PREFRONTAL CORTEX. BACKGROUND: THE PREFRONTAL CORTEX (PFC) ACTS AS AN INTEGRATIVE HUB FOR THE PROCESSING OF CORTICAL AND SUBCORTICAL INPUT INTO MEANINGFUL EFFERENT SIGNALING, PERMITTING COMPLEX ASSOCIATIVE BEHAVIORS. PFC DYSFUNCTION IS CONSISTENTLY OBSERVED WITH ETHANOL (ETOH) DEPENDENCE AND IS A CORE COMPONENT OF THE PATHOLOGY OF ALCOHOL USE DISORDERS IN CURRENT MODELS OF ADDICTION. WHILE INTRACORTICAL GAMMA-AMINOBUTRYRIC ACID (GABA)ERGIC NEUROTRANSMISSION IS UNDERSTOOD TO BE ESSENTIAL FOR MAINTAINING COORDINATED NETWORK ACTIVITY WITHIN THE CORTEX, RELATIVELY LITTLE IS KNOWN REGARDING FUNCTIONAL GABAERGIC ADAPTATIONS IN PFC DURING ETOH DEPENDENCE. METHODS: IN THE PRESENT STUDY, MALE AND FEMALE (> POSTNATAL DAY 60) SPRAGUE-DAWLEY RATS WERE ADMINISTERED ETOH (5.0 G/KG; INTRAGASTRIC GAVAGE) FOR 14 TO 15 CONSECUTIVE DAYS. TWENTY-FOUR HOURS AFTER THE FINAL ADMINISTRATION, ANIMALS WERE SACRIFICED AND BRAINS EXTRACTED FOR ELECTROPHYSIOLOGICAL RECORDINGS OF ISOLATED GABA(A) RECEPTOR-MEDIATED CURRENTS OR ANALYSIS OF GABA(A) RECEPTOR SUBUNIT PROTEIN EXPRESSION IN DEEP-LAYER PFC NEURONS. RESULTS: CHRONIC ETOH EXPOSURE SIGNIFICANTLY ATTENUATED ACTIVITY-DEPENDENT SPONTANEOUS GABA(A) RECEPTOR-MEDIATED INHIBITORY POSTSYNAPTIC CURRENT (IPSC) FREQUENCY WITH NO EFFECT ON AMPLITUDE. FURTHERMORE, ANALYSIS OF IPSC DECAY KINETICS REVEALED A SIGNIFICANT ENHANCEMENT OF IPSC DECAY TIME THAT WAS ASSOCIATED WITH DECREMENTS IN EXPRESSION OF THE ALPHA1 GABA(A) RECEPTOR SUBUNIT, INDICATIVE OF FURTHER IMPAIRED PHASIC INHIBITION. THESE PHENOMENA OCCURRED IRRESPECTIVE OF NEURON PROJECTION DESTINATION AND SEX. BASED ON PREVIOUS OBSERVATIONS BY OUR LABORATORY OF AN EPIGENETIC MECHANISM FOR ETOH-INDUCED CHANGES IN CORTICAL GABA(A) RECEPTOR SUBUNIT EXPRESSION, THE HISTONE DEACETYLASE INHIBITOR TRICHOSTATIN A WAS ADMINISTERED TO WATER- AND ETOH-EXPOSED ANIMALS, AND PREVENTED ETOH-INDUCED CHANGES IN SPONTANEOUS IPSC FREQUENCY, IPSC DECAY KINETICS, AND GABA(A) RECEPTOR SUBUNIT EXPRESSION. CONCLUSIONS: TAKEN TOGETHER, THESE RESULTS DEMONSTRATE THAT CHRONIC ETOH EXPOSURE IMPAIRS SYNAPTIC INHIBITORY NEUROTRANSMISSION IN DEEP-LAYER PYRAMIDAL NEURONS OF THE MEDIAL PFC IN BOTH MALE AND FEMALE RATS. THESE MALADAPTATIONS OCCUR IN NEURONS PROJECTING TO NUMEROUS REGIONS IMPLICATED IN THE SEQUELAE OF ETOH DEPENDENCE, OFFERING A MECHANISTIC LINK BETWEEN THE MANIFESTATION OF PFC DYSFUNCTION AND NEGATIVE AFFECTIVE STATES OBSERVED WITH EXTENDED CONSUMPTION. 2019 11 2101 42 EPIGENETIC EFFECTS OF PRENATAL STRESS ON 11BETA-HYDROXYSTEROID DEHYDROGENASE-2 IN THE PLACENTA AND FETAL BRAIN. MATERNAL EXPOSURE TO STRESS DURING PREGNANCY IS ASSOCIATED WITH SIGNIFICANT ALTERATIONS IN OFFSPRING NEURODEVELOPMENT AND ELEVATED MATERNAL GLUCOCORTICOIDS LIKELY PLAY A CENTRAL ROLE IN MEDIATING THESE EFFECTS. PLACENTAL 11BETA-HYDROXYSTEROID DEHYDROGENASE TYPE 2 (HSD11B2) BUFFERS THE IMPACT OF MATERNAL GLUCOCORTICOID EXPOSURE BY CONVERTING CORTISOL/CORTICOSTERONE INTO INACTIVE METABOLITES. HOWEVER, PREVIOUS STUDIES INDICATE THAT MATERNAL ADVERSITY DURING THE PRENATAL PERIOD CAN LEAD TO A DOWN-REGULATION OF THIS ENZYME. IN THE CURRENT STUDY, WE EXAMINED THE IMPACT OF PRENATAL STRESS (CHRONIC RESTRAINT STRESS DURING GESTATIONAL DAYS 14-20) IN LONG EVANS RATS ON HSD11B2 MRNA IN THE PLACENTA AND FETAL BRAIN (E20) AND ASSESSED THE ROLE OF EPIGENETIC MECHANISMS IN THESE STRESS-INDUCED EFFECTS. IN THE PLACENTA, PRENATAL STRESS WAS ASSOCIATED WITH A SIGNIFICANT DECREASE IN HSD11B2 MRNA, INCREASED MRNA LEVELS OF THE DNA METHYLTRANSFERASE DNMT3A, AND INCREASED DNA METHYLATION AT SPECIFIC CPG SITES WITHIN THE HSD11B2 GENE PROMOTER. WITHIN THE FETAL HYPOTHALAMUS, THOUGH WE FIND NO STRESS-INDUCED EFFECTS ON HSD11B2 MRNA LEVELS, PRENATAL STRESS INDUCED DECREASED CPG METHYLATION WITHIN THE HSD11B2 PROMOTER AND INCREASED METHYLATION AT SITES WITHIN EXON 1. WITHIN THE FETAL CORTEX, HSD11B2 MRNA AND DNA METHYLATION LEVELS WERE NOT ALTERED BY PRENATAL STRESS, THOUGH WE DID FIND STRESS-INDUCED ELEVATIONS IN DNMT1 MRNA IN THIS BRAIN REGION. WITHIN INDIVIDUALS, WE IDENTIFIED CPG SITES WITHIN THE HSD11B2 GENE PROMOTER AND EXON 1 AT WHICH DNA METHYLATION LEVELS WERE HIGHLY CORRELATED BETWEEN THE PLACENTA AND FETAL CORTEX. OVERALL, OUR FINDINGS IMPLICATE DNA METHYLATION AS A MECHANISM BY WHICH PRENATAL STRESS ALTERS HSD11B2 GENE EXPRESSION. THESE FINDINGS HIGHLIGHT THE TISSUE SPECIFICITY OF EPIGENETIC EFFECTS, BUT ALSO RAISE THE INTRIGUING POSSIBILITY OF USING THE EPIGENETIC STATUS OF PLACENTA TO PREDICT CORRESPONDING CHANGES IN THE BRAIN. 2012 12 1761 38 EARLY STRESS EVOKES AGE-DEPENDENT BIPHASIC CHANGES IN HIPPOCAMPAL NEUROGENESIS, BDNF EXPRESSION, AND COGNITION. BACKGROUND: ADULT-ONSET STRESSORS EXERT OPPOSING EFFECTS ON HIPPOCAMPAL NEUROGENESIS AND COGNITION, WITH ENHANCEMENT OBSERVED FOLLOWING MILD STRESS AND DYSFUNCTION FOLLOWING SEVERE CHRONIC STRESS. WHILE EARLY LIFE STRESS EVOKES PERSISTENT CHANGES IN ANXIETY, IT IS UNKNOWN WHETHER EARLY STRESS DIFFERENTIALLY REGULATES HIPPOCAMPAL NEUROGENESIS, TROPHIC FACTOR EXPRESSION, AND COGNITION ACROSS THE LIFE SPAN. METHODS: HIPPOCAMPAL-DEPENDENT COGNITIVE BEHAVIOR, NEUROGENESIS, AND EPIGENETIC REGULATION OF BRAIN-DERIVED NEUROTROPHIC FACTOR (BDNF) EXPRESSION WAS EXAMINED AT DISTINCT TIME POINTS ACROSS THE LIFE SPAN IN RATS SUBJECTED TO THE EARLY STRESS OF MATERNAL SEPARATION (ES) AND CONTROL GROUPS. WE ALSO EXAMINED THE INFLUENCE OF CHRONIC ANTIDEPRESSANT TREATMENT ON THE NEUROGENIC, NEUROTROPHIC, AND COGNITIVE CHANGES IN MIDDLE-AGED ES ANIMALS. RESULTS: ANIMALS SUBJECTED TO EARLY STRESS OF MATERNAL SEPARATION EXAMINED DURING POSTNATAL LIFE AND YOUNG ADULTHOOD EXHIBITED ENHANCED HIPPOCAMPAL NEUROGENESIS, DECREASED REPRESSIVE HISTONE METHYLATION AT THE BDNF IV PROMOTER ALONG WITH ENHANCED BDNF LEVELS, AND IMPROVED PERFORMANCE ON THE STRESS-ASSOCIATED MORRIS WATER MAZE. STRIKINGLY, OPPOSING CHANGES IN HIPPOCAMPAL NEUROGENESIS AND EPIGENETIC REGULATION OF BDNF IV EXPRESSION, CONCOMITANT WITH IMPAIRMENTS ON HIPPOCAMPAL-DEPENDENT COGNITIVE TASKS, WERE OBSERVED IN MIDDLE-AGED ES ANIMALS. CHRONIC ANTIDEPRESSANT TREATMENT WITH AMITRIPTYLINE ATTENUATED THE MALADAPTIVE NEUROGENIC, EPIGENETIC, TRANSCRIPTIONAL, AND COGNITIVE EFFECTS IN MIDDLE-AGED ES ANIMALS. CONCLUSIONS: OUR STUDY PROVIDES NOVEL INSIGHTS INTO THE SHORT- AND LONG-TERM CONSEQUENCES OF ES, DEMONSTRATING BOTH BIPHASIC AND UNIQUE, AGE-DEPENDENT CHANGES AT THE MOLECULAR, EPIGENETIC, NEUROGENIC, AND BEHAVIORAL LEVELS. THESE RESULTS INDICATE THAT EARLY STRESS MAY TRANSIENTLY ENDOW ANIMALS WITH A POTENTIAL ADAPTIVE ADVANTAGE IN STRESSFUL ENVIRONMENTS BUT ACROSS A LIFE SPAN IS ASSOCIATED WITH LONG-TERM DELETERIOUS EFFECTS. 2013 13 3179 44 HAIR CORTISOL AS A HYPOTHALAMIC-PITUITARY-ADRENAL AXIS BIOMARKER IN PREGNANT WOMEN WITH ASTHMA: A RETROSPECTIVE OBSERVATIONAL STUDY. BACKGROUND: CORTISOL IS A HORMONE INVOLVED IN MANY PHYSIOLOGICAL FUNCTIONS INCLUDING FETAL MATURATION AND EPIGENETIC PROGRAMMING DURING PREGNANCY. THIS STUDY AIMED TO USE HAIR CORTISOL AS A BIOMARKER OF CHRONIC INHALED CORTICOSTEROID (ICS) EXPOSURE AND ASSESS THE POTENTIAL EFFECTS OF ASTHMA ON THE HYPOTHALAMIC-PITUITARY-ADRENAL (HPA) AXIS IN PREGNANT WOMEN. WE HYPOTHESIZED THAT PREGNANT WOMEN WITH ASTHMA TREATED WITH ICS WOULD EXHIBIT LOWER HAIR CORTISOL CONCENTRATIONS, INDICATIVE OF ADRENAL SUPPRESSION, COMPARED TO WOMEN WITH ASTHMA NOT USING ICS AND WOMEN WHO DO NOT HAVE ASTHMA. METHODS: WE PERFORMED AN OBSERVATIONAL RETROSPECTIVE COHORT STUDY. HAIR SAMPLES WERE ANALYZED FROM PREGNANT WOMEN WITH ASTHMA, WITH (N = 56) AND WITHOUT (N = 31) ICS TREATMENT, AND PREGNANT WOMEN WITHOUT ASTHMA (N = 31). HAIR SAMPLES WERE SEGMENTED BASED ON THE GROWTH RATE OF 1 CM/MONTH AND ANALYZED BY ENZYME IMMUNOASSAY TO PROVIDE CORTISOL CONCENTRATIONS CORRESPONDING TO PRECONCEPTION, TRIMESTERS 1-3, AND POSTPARTUM. HAIR CORTISOL CONCENTRATIONS WERE COMPARED WITHIN AND AMONG THE GROUPS USING NON-PARAMETRIC STATISTICAL TESTS. RESULTS: HAIR CORTISOL CONCENTRATIONS INCREASED ACROSS TRIMESTERS FOR ALL THREE GROUPS, BUT THIS INCREASE WAS DAMPENED IN WOMEN WITH ASTHMA (P = 0.03 FOR CONTROLS VS. ICS TREATED AND CONTROLS VS. NO ICS). ICS TREATED WOMEN TAKING MORE THAN FIVE DOSES PER WEEK HAD HAIR CORTISOL CONCENTRATIONS 47 % LOWER IN THIRD TRIMESTER THAN CONTROLS. LINEAR REGRESSION OF THE THIRD TRIMESTER HAIR CORTISOL RESULTS IDENTIFIED ASTHMA AS A SIGNIFICANT FACTOR WHEN COMPARING CONSISTENT ICS USE OR ASTHMA AS THE PREDICTOR (F(1, 25) = 9.7, P = 0.005, R(2) ADJ = 0.257). CONCLUSIONS: HAIR CORTISOL SUCCESSFULLY SHOWED THE EXPECTED CHANGE IN CORTISOL OVER THE COURSE OF PREGNANCY AND MAY BE A USEFUL BIOMARKER OF HPA AXIS FUNCTION IN PREGNANT WOMEN WITH ASTHMA. THE POTENTIAL IMPACT OF DECREASED MATERNAL CORTISOL IN WOMEN WITH ASTHMA ON PERINATAL OUTCOMES REMAINS TO BE DETERMINED. 2016 14 4944 25 PATERNAL PRECONCEPTION ETHANOL EXPOSURE BLUNTS HYPOTHALAMIC-PITUITARY-ADRENAL AXIS RESPONSIVITY AND STRESS-INDUCED EXCESSIVE FLUID INTAKE IN MALE MICE. A GROWING NUMBER OF ENVIRONMENTAL INSULTS HAVE BEEN SHOWN TO INDUCE EPIGENETIC EFFECTS THAT PERSIST ACROSS GENERATIONS. FOR INSTANCE, PATERNAL PRECONCEPTION EXPOSURES TO ETHANOL OR STRESS HAVE INDEPENDENTLY BEEN SHOWN TO EXERT SUCH INTERGENERATIONAL EFFECTS. SINCE ETHANOL EXPOSURE IS A PHYSIOLOGICAL STRESSOR THAT ACTIVATES THE HYPOTHALAMIC-PITUITARY-ADRENAL (HPA) AXIS, WE HYPOTHESIZED THAT PATERNAL ETHANOL EXPOSURE WOULD IMPACT STRESS RESPONSIVITY OF OFFSPRING. ADULT MALE MICE WERE EXPOSED TO CHRONIC INTERMITTENT VAPOR ETHANOL OR CONTROL CONDITIONS FOR 5 WEEKS BEFORE BEING MATED WITH ETHANOL-NAIVE FEMALES TO PRODUCE ETHANOL (E)- AND CONTROL (C)-SIRED OFFSPRING. ADULT MALE AND FEMALE OFFSPRING WERE TESTED FOR PLASMA CORTICOSTERONE (CORT) LEVELS FOLLOWING ACUTE RESTRAINT STRESS AND THE MALE OFFSPRING WERE FURTHER EXAMINED FOR STRESS-EVOKED 2-BOTTLE CHOICE ETHANOL-DRINKING. PATERNAL ETHANOL EXPOSURE BLUNTED PLASMA CORT LEVELS FOLLOWING ACUTE RESTRAINT STRESS SELECTIVELY IN MALE OFFSPRING; FEMALES WERE UNAFFECTED. IN A STRESS-EVOKED ETHANOL-DRINKING ASSAY, THERE WAS NO EFFECT OF STRESS ON ETHANOL CONSUMPTION. HOWEVER, C-SIRED MALES EXHIBITED INCREASED TOTAL FLUID INTAKE (POLYDIPSIA) IN RESPONSE TO STRESS WHILE E-SIRED MALES WERE RESISTANT TO THIS STRESS-INDUCED PHENOTYPE. TAKEN TOGETHER, THESE DATA SUGGEST THAT PATERNAL ETHANOL EXPOSURE IMPARTS STRESS HYPORESPONSIVITY TO MALE OFFSPRING. 2016 15 2827 38 FLUOXETINE INCREASES HIPPOCAMPAL NEUROGENESIS AND INDUCES EPIGENETIC FACTORS BUT DOES NOT IMPROVE FUNCTIONAL RECOVERY AFTER TRAUMATIC BRAIN INJURY. THE SELECTIVE SEROTONIN REUPTAKE INHIBITOR FLUOXETINE INDUCES HIPPOCAMPAL NEUROGENESIS, STIMULATES MATURATION AND SYNAPTIC PLASTICITY OF ADULT HIPPOCAMPAL NEURONS, AND REDUCES MOTOR/SENSORY AND MEMORY IMPAIRMENTS IN SEVERAL CNS DISORDERS. IN THE SETTING OF TRAUMATIC BRAIN INJURY (TBI), ITS EFFECTS ON NEUROPLASTICITY AND FUNCTION HAVE YET TO BE THOROUGHLY INVESTIGATED. HERE WE EXAMINED THE EFFICACY OF FLUOXETINE AFTER A MODERATE TO SEVERE TBI, PRODUCED BY A CONTROLLED CORTICAL IMPACT. THREE DAYS AFTER TBI OR SHAM SURGERY, MICE WERE TREATED WITH FLUOXETINE (10 MG/KG/D) OR VEHICLE FOR 4 WEEKS. TO EVALUATE THE EFFECTS OF FLUOXETINE ON NEUROPLASTICITY, HIPPOCAMPAL NEUROGENESIS AND EPIGENETIC MODIFICATION WERE STUDIED. STEREOLOGIC ANALYSIS OF THE DENTATE GYRUS REVEALED A SIGNIFICANT INCREASE IN DOUBLECORTIN-POSITIVE CELLS IN BRAIN-INJURED ANIMALS TREATED WITH FLUOXETINE RELATIVE TO CONTROLS, A FINDING CONSISTENT WITH ENHANCED HIPPOCAMPAL NEUROGENESIS. EPIGENETIC MODIFICATIONS, INCLUDING AN INCREASE IN HISTONE 3 ACETYLATION AND INDUCTION OF METHYL-CPG-BINDING PROTEIN, A TRANSCRIPTION FACTOR INVOLVED IN DNA METHYLATION, WERE LIKEWISE SEEN BY IMMUNOHISTOCHEMISTRY AND QUANTITATIVE WESTERN IMMUNOBLOTS, RESPECTIVELY, IN BRAIN-INJURED ANIMALS TREATED WITH FLUOXETINE. TO DETERMINE IF FLUOXETINE IMPROVES NEUROLOGICAL OUTCOMES AFTER TBI, GAIT FUNCTION AND SPATIAL LEARNING AND MEMORY WERE ASSESSED BY THE CATWALK-ASSISTED GAIT TEST AND BARNES MAZE TEST, RESPECTIVELY. NO DIFFERENCES IN THESE PARAMETERS WERE SEEN BETWEEN FLUOXETINE- AND VEHICLE-TREATED ANIMALS. THUS WHILE FLUOXETINE ENHANCED NEUROPLASTICITY IN THE HIPPOCAMPUS AFTER TBI, ITS CHRONIC ADMINISTRATION DID NOT RESTORE LOCOMOTOR FUNCTION OR AMELIORATE MEMORY DEFICITS. 2011 16 219 35 ACUTE IMMOBILIZATION STRESS FOLLOWING CONTEXTUAL FEAR CONDITIONING REDUCES FEAR MEMORY: TIMING IS ESSENTIAL. BACKGROUND: HISTONE ACETYLATION IS REGULATED IN RESPONSE TO STRESS AND PLAYS AN IMPORTANT ROLE IN LEARNING AND MEMORY. CHRONIC STRESS IS KNOWN TO DETERIORATE COGNITION, WHEREAS ACUTE STRESS FACILITATES MEMORY FORMATION. HOWEVER, WHETHER ACUTE STRESS FACILITATES MEMORY FORMATION WHEN IT IS APPLIED AFTER FEAR STIMULATION IS NOT YET KNOWN. THEREFORE, THIS STUDY AIMED TO INVESTIGATE THE EFFECT OF ACUTE STRESS APPLIED AFTER FEAR TRAINING ON MEMORY FORMATION, MRNA EXPRESSION OF BRAIN-DERIVED NEUROTROPHIC FACTOR (BDNF), EPIGENETIC REGULATION OF BDNF EXPRESSION, AND CORTICOSTERONE LEVEL IN MICE IN VIVO. METHODS: MICE WERE SUBJECTED TO ACUTE IMMOBILIZATION STRESS FOR 30 MIN AT 60 OR 90 MIN AFTER CONTEXTUAL FEAR CONDITIONING TRAINING, AND ACETYLATION OF HISTONE 3 AT LYSINE 14 (H3K14) AND LEVEL OF CORTICOSTERONE WERE MEASURED USING WESTERN BLOT ANALYSIS AND ENZYME-LINKED IMMUNOSORBENT ASSAY (ELISA), RESPECTIVELY. A FREEZING BEHAVIOR TEST WAS PERFORMED 24 H AFTER TRAINING, AND MRNA EXPRESSION OF BDNF WAS MEASURED USING REAL-TIME POLYMERASE CHAIN REACTIONS. DIFFERENT GROUPS OF MICE WERE USED FOR EACH TEST. RESULTS: FREEZING BEHAVIOR SIGNIFICANTLY DECREASED WITH THE DOWN-REGULATION OF BDNF MRNA EXPRESSION CAUSED BY ACUTE IMMOBILIZATION STRESS AT 60 MIN AFTER FEAR CONDITIONING TRAINING OWING TO THE REDUCTION OF H3K14 ACETYLATION. HOWEVER, BDNF MRNA EXPRESSION AND H3K14 ACETYLATION WERE NOT REDUCED IN ANIMALS SUBJECTED TO IMMOBILIZATION STRESS AT 90 MIN AFTER THE TRAINING. FURTHER, THE CORTICOSTERONE LEVEL WAS SIGNIFICANTLY HIGH IN MICE SUBJECTED TO IMMOBILIZATION STRESS AT 60 MIN AFTER THE TRAINING. CONCLUSION: ACUTE IMMOBILIZATION STRESS FOR 30 MIN AT 60 MIN AFTER FEAR CONDITIONING TRAINING IMPAIRED MEMORY FORMATION AND REDUCED BDNF MRNA EXPRESSION AND H3K14 ACETYLATION IN THE HIPPOCAMPUS OF MICE OWING TO THE HIGH LEVEL OF CORTICOSTERONE. 2016 17 5651 28 SEX DIFFERENCES IN THE EPIGENETIC REGULATION OF CHRONIC VISCERAL PAIN FOLLOWING UNPREDICTABLE EARLY LIFE STRESS. BACKGROUND: WE PREVIOUSLY REPORTED THAT EARLY LIFE STRESS (ELS) DYSREGULATED GLUCOCORTICOID RECEPTOR (GR) AND CORTICOTROPHIN-RELEASING HORMONE (CRH) EXPRESSION IN THE CENTRAL NUCLEUS OF THE AMYGDALA (CEA). EPIGENETIC MODIFICATIONS SERVE AS MEMORIES OF ADVERSE EVENTS THAT OCCURRED DURING EARLY LIFE. THEREFORE, WE HYPOTHESIZED THAT EPIGENETIC MECHANISMS ALTER GR AND CRH EXPRESSION IN THE CEA AND UNDERLIE CHRONIC VISCERAL PAIN AFTER ELS. METHODS: NEONATAL RATS WERE EXPOSED TO UNPREDICTABLE, PREDICTABLE ELS, OR ODOR ONLY (NO STRESS CONTROL) FROM POSTNATAL DAYS 8 TO 12. IN ADULTHOOD, VISCERAL SENSITIVITY WAS ASSESSED OR THE CEA WAS ISOLATED FOR WESTERN BLOT OR CHIP-QPCR TO STUDY HISTONE MODIFICATIONS AT THE GR AND CRH PROMOTERS. FEMALE ADULT RATS UNDERWENT STEREOTAXIC IMPLANTATION OF INDWELLING CANNULAS FOR MICROINJECTIONS OF GARCINOL (HAT INHIBITOR) INTO THE CEA. AFTER 7 DAYS OF MICROINJECTIONS, VISCERAL SENSITIVITY WAS ASSESSED OR THE CEA WAS ISOLATED FOR CHIP-QPCR ASSAYS. RESULTS: UNPREDICTABLE ELS INCREASED VISCERAL SENSITIVITY IN ADULT FEMALE RATS, BUT NOT IN MALE COUNTERPARTS. ELS INCREASED HISTONE 3 LYSINE 9 (H3K9) ACETYLATION IN THE CEA AND H3K9 ACETYLATION LEVELS AT THE GR PROMOTER IN THE CEA OF ADULT FEMALE RATS. AFTER UNPREDICTABLE ELS, H3K9 ACETYLATION WAS INCREASED AND GR BINDING WAS DECREASED AT THE CRH PROMOTER. ADMINISTRATION OF GARCINOL IN THE CEA OF ADULT FEMALES, THAT UNDERWENT UNPREDICTABLE ELS, NORMALIZED H3K9 ACETYLATION AND RESTORED GR BINDING AT THE CRH PROMOTER. CONCLUSION: DYSREGULATED HISTONE ACETYLATION AND GR BINDING AT THE CRH PROMOTER IN THE CEA ARE AN IMPORTANT MECHANISM FOR "MEMORIZING" ELS EVENTS MEDIATING VISCERAL PAIN IN ADULTHOOD. 2020 18 1999 27 EPIGENETIC AND NEURONAL ACTIVITY MARKERS SUGGEST THE RECRUITMENT OF THE PREFRONTAL CORTEX AND HIPPOCAMPUS IN THE THREE-HIT MODEL OF DEPRESSION IN MALE PACAP HETEROZYGOUS MICE. DEPRESSION AND ITS INCREASING PREVALENCE CHALLENGE PATIENTS, THE HEALTHCARE SYSTEM, AND THE ECONOMY. WE RECENTLY CREATED A MOUSE MODEL BASED ON THE THREE-HIT CONCEPT OF DEPRESSION. AS GENETIC PREDISPOSITION (FIRST HIT), WE APPLIED PITUITARY ADENYLATE CYCLASE-ACTIVATING POLYPEPTIDE HETEROZYGOUS MICE ON CD1 BACKGROUND. MATERNAL DEPRIVATION MODELED THE EPIGENETIC FACTOR (SECOND HIT), AND THE CHRONIC VARIABLE MILD STRESS WAS THE ENVIRONMENTAL FACTOR (THIRD HIT). FLUOXETINE TREATMENT WAS APPLIED TO TEST THE PREDICTIVE VALIDITY OF OUR MODEL. WE AIMED TO EXAMINE THE DYNAMICS OF THE EPIGENETIC MARKER ACETYL-LYSINE 9 H3 HISTONE (H3K9AC) AND THE NEURONAL ACTIVITY MARKER FOSB IN THE PREFRONTAL CORTEX (PFC) AND HIPPOCAMPUS. FLUOXETINE DECREASED H3K9AC IN PFC IN NON-DEPRIVED ANIMALS, BUT A HISTORY OF MATERNAL DEPRIVATION ABOLISHED THE EFFECT OF STRESS AND SSRI TREATMENT ON H3K9AC IMMUNOREACTIVITY. IN THE HIPPOCAMPUS, STRESS DECREASED, WHILE SSRI INCREASED H3K9AC IMMUNOSIGNAL, UNLIKE IN THE DEPRIVED MICE, WHERE THE OPPOSITE EFFECT WAS DETECTED. FOSB IN STRESS WAS STIMULATED BY FLUOXETINE IN THE PFC, WHILE IT WAS INHIBITED IN THE HIPPOCAMPUS. THE FOSB IMMUNOREACTIVITY WAS ALMOST COMPLETELY ABOLISHED IN THE HIPPOCAMPUS OF THE DEPRIVED MICE. THIS STUDY SHOWED THAT FOSB AND H3K9AC WERE MODULATED IN A TERRITORY-SPECIFIC MANNER BY EARLY LIFE ADVERSITIES AND LATER LIFE STRESS INTERACTING WITH THE EFFECT OF FLUOXETINE THERAPY SUPPORTING THE RELIABILITY OF OUR MODEL. 2022 19 886 45 CHRONIC CORTICOSTERONE EXPOSURE INCREASES EXPRESSION AND DECREASES DEOXYRIBONUCLEIC ACID METHYLATION OF FKBP5 IN MICE. THERE IS EVIDENCE FOR HYPERCORTISOLEMIA PLAYING A ROLE IN THE GENERATION OF PSYCHIATRIC SYMPTOMS AND FOR EPIGENETIC VARIATION WITHIN HYPOTHALAMIC-PITUITARY-ADRENAL (HPA) AXIS GENES MEDIATING BEHAVIORAL CHANGES. WE TESTED THE HYPOTHESIS THAT EXPRESSION CHANGES WOULD BE INDUCED IN FKBP5 AND OTHER HPA AXIS GENES BY CHRONIC EXPOSURE TO CORTICOSTERONE AND THAT THESE CHANGES WOULD OCCUR THROUGH THE EPIGENETIC MECHANISM OF LOSS OR GAIN OF DNA METHYLATION (DNAM). WE ADMINISTERED CORTICOSTERONE (CORT) TO C57BL/6J MICE VIA THEIR DRINKING WATER FOR 4 WK AND TESTED FOR BEHAVIORAL AND PHYSIOLOGICAL CHANGES AND CHANGES IN GENE EXPRESSION LEVELS USING RNA EXTRACTED FROM HIPPOCAMPUS, HYPOTHALAMUS, AND BLOOD FOR THE FOLLOWING HPA GENES: FKBP5, NR3C1, HSP90, CRH, AND CRHR1. THE CORT MICE EXHIBITED ANXIETY-LIKE BEHAVIOR IN THE ELEVATED PLUS MAZE TEST. CHRONIC EXPOSURE TO CORT ALSO CAUSED A SIGNIFICANT DECREASE IN THE HIPPOCAMPAL AND BLOOD MRNA LEVELS OF NR3C1 AND A DECREASE IN HSP90 IN BLOOD AND CAUSED AN INCREASE IN FKBP5 FOR ALL TISSUES. DIFFERENCES WERE SEEN IN FKBP5 METHYLATION IN HIPPOCAMPUS AND HYPOTHALAMUS. TO ISOLATE A SINGLE-CELL TYPE, WE FOLLOWED UP WITH AN HT-22 MOUSE HIPPOCAMPAL NEURONAL CELL LINE EXPOSED TO CORT. AFTER 7 D, WE OBSERVED A 2.4-FOLD INCREASE IN FKBP5 EXPRESSION AND A DECREASE IN DNAM. IN THE CORT-TREATED MICE, WE ALSO OBSERVED CHANGES IN BLOOD DNAM IN FKBP5. OUR RESULTS SUGGEST DNAM PLAYS A ROLE IN MEDIATING EFFECTS OF GLUCOCORTICOID EXPOSURE ON FKBP5 FUNCTION, WITH POTENTIAL CONSEQUENCES FOR BEHAVIOR. 2010 20 949 40 CHRONIC METHAMPHETAMINE TREATMENT REDUCES THE EXPRESSION OF SYNAPTIC PLASTICITY GENES AND CHANGES THEIR DNA METHYLATION STATUS IN THE MOUSE BRAIN. METHAMPHETAMINE (METH) IS A HIGHLY ADDICTIVE PSYCHOSTIMULANT THAT MAY CAUSE LONG-LASTING SYNAPTIC DYSFUNCTION AND ABNORMAL GENE EXPRESSION. WE AIMED TO EXPLORE THE DIFFERENTIAL EXPRESSION OF SYNAPTIC PLASTICITY GENES IN CHRONIC METH-TREATED MOUSE BRAIN. WE USED THE RT(2) PROFILER PCR ARRAY AND THE REAL-TIME QUANTITATIVE PCR TO CHARACTERIZE DIFFERENTIALLY EXPRESSED SYNAPTIC PLASTICITY GENES IN THE FRONTAL CORTEX AND THE HIPPOCAMPUS OF CHRONIC METH-TREATED MICE COMPARED WITH NORMAL SALINE-TREATED MICE. WE FURTHER USED PYROSEQUENCING TO ASSESS DNA METHYLATION CHANGES IN THE CPG REGION OF THE FIVE IMMEDIATE EARLY GENES (IEGS) IN CHRONIC METH-TREATED MOUSE BRAIN. WE DETECTED SIX DOWNREGULATED GENES IN THE FRONTAL CORTEX AND THE HIPPOCAMPUS OF CHRONIC METH-TREATED MICE, INCLUDING FIVE IEGS (ARC, EGR2, FOS, KLF10, AND NR4A1) AND ONE NEURONAL RECEPTOR GENE (GRM1), COMPARED WITH NORMAL SALINE-TREATED GROUP, BUT ONLY FOUR GENES (ARC, EGR2, FOS, AND NR4A1) WERE CONFIRMED TO BE DIFFERENT. FURTHERMORE, WE FOUND SEVERAL CPG SITES OF THE ARC AND THE FOS THAT HAD SIGNIFICANT CHANGES IN DNA METHYLATION STATUS IN THE FRONTAL CORTEX OF CHRONIC METH-TREATED MICE, WHILE THE KLF10 AND THE NR4A1 THAT HAD SIGNIFICANT CHANGES IN THE HIPPOCAMPUS. OUR RESULTS SHOW THAT CHRONIC ADMINISTRATION OF METH MAY LEAD TO SIGNIFICANT DOWNREGULATION OF THE IEGS EXPRESSION IN BOTH THE FRONTAL CORTEX AND THE HIPPOCAMPUS, WHICH MAY PARTLY ACCOUNT FOR THE MOLECULAR MECHANISM OF THE ACTION OF METH. FURTHERMORE, THE CHANGES IN DNA METHYLATION STATUS OF THE IEGS IN THE BRAIN INDICATE THAT AN EPIGENETIC MECHANISM-DEPENDENT TRANSCRIPTIONAL REGULATION MAY CONTRIBUTE TO METH ADDICTION, WHICH WARRANTS ADDITIONAL STUDY. 2015