1 365 141 AMILORIDE MODULATION OF CARBON DIOXIDE HYPERSENSITIVITY AND THERMAL NOCICEPTIVE HYPERSENSITIVITY INDUCED BY INTERFERENCE WITH EARLY MATERNAL ENVIRONMENT. BACKGROUND: EARLY LIFE ADVERSITIES ARE RISK FACTORS FOR ANXIETY DISORDERS AND FOR PAIN SYNDROMES, WHICH ARE, IN TURN, HIGHLY COMORBID WITH ANXIETY DISORDERS. REPEATED CROSS-FOSTERING MOUSE PUPS TO ADOPTIVE LACTATING FEMALES INDUCES EPIGENETIC MODIFICATION AND HEIGHTENED MRNA-EXPRESSION OF THE ACID-SENSING-ION-CHANNEL-1 GENE, ALTERED NOCICEPTION, AND HYPERSENSITIVITY TO 6% CARBON DIOXIDE AIR MIXTURES, A TRAIT MARKER OF SPECIFIC HUMAN ANXIETY DISORDERS SUCH AS, MOST CLEARLY AND PROMINENTLY, PANIC DISORDER. AIMS: WE HYPOTHESIZED THAT THE ACID-SENSING ION CHANNEL INHIBITOR AMILORIDE CAN MODULATE REPEATED CROSS-FOSTERING ANIMALS' EXAGGERATED RESPONSES TO CARBON DIOXIDE AND NOCICEPTIVE THERMAL STIMULATION. METHODS: RESPIRATORY CARBON DIOXIDE SENSITIVITY WAS ASSESSED BY PLETHYSMOGRAPHY DURING 6% CARBON DIOXIDE AIR MIXTURE CHALLENGES, AND NOCICEPTION WAS ASSESSED BY LATENCY OF PAW WITHDRAWAL TO THERMAL STIMULATION, IN REPEATED CROSS-FOSTERING AND CONTROL ANIMALS. TO CIRCUMVENT THE BLOOD-BRAIN BARRIER, PRIOR TO TESTING, AMILORIDE WAS NEBULIZED IN A PLETHYSMOGRAPH. DATA WERE ANALYZED BY GENERAL LINEAR MODELS. RESULTS: ANALYSES OF TIDAL VOLUME RESPONSES TO 6% CARBON DIOXIDE OF ANIMALS PRE-TREATED WITH NEBULIZED AMILORIDE/SALINE IN A RANDOMIZED CROSSOVER DESIGN SHOWED SIGNIFICANT MODULATORY EFFECT OF AMILORIDE, AND AMILORIDEXREPEATED CROSS-FOSTERING INTERACTION. IN CONTRAST, REPEATED CROSS-FOSTERING ANIMALS' RESPONSES TO 6% CARBON DIOXIDE AFTER INTRAPERITONEAL AMILORIDE, SALINE, OR NO TREATMENT, WERE NO DIFFERENT. ANALYSES OF RESPONSES TO THERMAL STIMULI SHOWED A SIGNIFICANT MODULATORY EFFECT OF NEBULIZED AMILORIDE, AND REPEATED CROSS-FOSTERINGXAMILORIDE INTERACTION. CONCLUSIONS: SINGLE-DOSE NEBULIZED AMILORIDE DECREASED REPEATED CROSS-FOSTERING ANIMALS' CARBON DIOXIDE SENSITIVITY AND NOCICEPTION INDICES TO LEVELS THAT WERE NO DIFFERENT FROM THOSE OF CONTROL ANIMALS. INASMUCH AS THESE RESULTS PERTAIN TO HUMAN ANXIETY AND/OR PAIN HYPERSENSITIVITY, OUR FINDINGS PROVIDE A RATIONALE FOR STUDYING INHALED AMILORIDE IN SOME ANXIETY DISORDERS AND/OR PAIN SYNDROMES. 2019 2 5205 29 PRENATAL STRESS CHANGES THE GLYCOPROTEIN GPM6A GENE EXPRESSION AND INDUCES EPIGENETIC CHANGES IN RAT OFFSPRING BRAIN. PRENATAL STRESS (PS) EXERTS STRONG IMPACT ON FETAL BRAIN DEVELOPMENT AND ON ADULT OFFSPRING BRAIN FUNCTIONS. PREVIOUS WORK DEMONSTRATED THAT CHRONIC STRESS ALTERS THE MRNA EXPRESSION OF GPM6A, A NEURONAL GLYCOPROTEIN INVOLVED IN FILOPODIUM EXTENSION. IN THIS WORK, WE ANALYZED THE EFFECT OF PS ON GPM6A EXPRESSION AND THE EPIGENETIC MECHANISMS INVOLVED. PREGNANT WISTAR RATS RECEIVED RESTRAINT STRESS DURING THE LAST WEEK OF GESTATION. MALE OFFSPRING WERE SACRIFICED ON POSTNATAL DAYS 28 AND 60. HIPPOCAMPUS AND PREFRONTAL CORTEX SAMPLES WERE ANALYZED FOR GENE EXPRESSION (QPCR FOR MRNAS AND MICRORNAS), METHYLATION STATUS (BISULFITE CONVERSION) AND PROTEIN LEVELS. HIPPOCAMPAL NEURONS IN CULTURE WERE USED TO ANALYZE MICRORNA OVEREXPRESSION EFFECTS. PRENATAL STRESS INDUCED CHANGES IN GPM6A LEVELS IN BOTH TISSUES AND AT BOTH AGES ANALYZED, INDICATING A PERSISTENT EFFECT. TWO CPG ISLANDS IN THE GPM6A GENE WERE IDENTIFIED. VARIATIONS IN THE METHYLATION PATTERN AT THREE SPECIFIC CPGS WERE FOUND IN HIPPOCAMPUS, BUT NOT IN PFC SAMPLES FROM PS OFFSPRING. MICRORNAS PREDICTED TO TARGET GPM6A WERE IDENTIFIED IN SILICO. QPCR MEASUREMENTS SHOWED THAT PS MODIFIED THE EXPRESSION OF SEVERAL MICRORNAS IN BOTH TISSUES, BEING MICRORNA-133B THE MOST SIGNIFICANTLY ALTERED. FURTHER STUDIES OVEREXPRESSING THIS MICRORNA IN NEURONAL CULTURES SHOWED A REDUCTION IN GMP6A MRNA AND PROTEIN LEVEL. MOREOVER FILOPODIUM DENSITY WAS ALSO REDUCED, SUGGESTING THAT GPM6A FUNCTION WAS AFFECTED. GESTATIONAL STRESS AFFECTED GPM6A GENE EXPRESSION IN OFFSPRING LIKELY THROUGH CHANGES IN METHYLATION STATUS AND IN POSTTRANSCRIPTIONAL REGULATION BY MICRORNAS. THUS, OUR FINDINGS PROPOSE GPM6A AS A NOVEL TARGET FOR EPIGENETIC REGULATION DURING PRENATAL STRESS. 2014 3 2967 34 GENETIC AND EPIGENETIC REGULATION OF CATECHOL-O-METHYLTRANSFERASE IN RELATION TO INFLAMMATION IN CHRONIC FATIGUE SYNDROME AND FIBROMYALGIA. BACKGROUND: CATECHOL-O-METHYLTRANSFERASE (COMT) HAS BEEN SHOWN TO INFLUENCE CLINICAL PAIN, DESCENDING MODULATION, AND EXERCISE-INDUCED SYMPTOM WORSENING. COMT REGULATES NOCICEPTIVE PROCESSING AND INFLAMMATION, KEY PATHOPHYSIOLOGICAL FEATURES OF CHRONIC FATIGUE SYNDROME AND FIBROMYALGIA (CFS/FM). WE AIMED TO DETERMINE THE INTERACTIONS BETWEEN GENETIC AND EPIGENETIC MECHANISMS REGULATING COMT AND ITS INFLUENCE ON INFLAMMATORY MARKERS AND SYMPTOMS IN PATIENTS WITH CFS/FM. METHODS: A CASE-CONTROL STUDY WITH REPEATED-MEASURES DESIGN WAS USED TO REDUCE THE CHANCE OF FALSE POSITIVE AND INCREASE THE POWER OF OUR FINDINGS. FIFTY-FOUR PARTICIPANTS (28 PATIENTS WITH CFS/FM AND 26 CONTROLS) WERE ASSESSED TWICE WITHIN 4 DAYS. THE ASSESSMENT INCLUDED CLINICAL QUESTIONNAIRES, NEUROPHYSIOLOGICAL ASSESSMENT (PAIN THRESHOLDS, TEMPORAL SUMMATION, AND CONDITIONED PAIN MODULATION), AND BLOOD WITHDRAWAL IN ORDER TO ASSESS RS4818, RS4633, AND RS4680 COMT POLYMORPHISMS AND PERFORM HAPLOTYPE ESTIMATION, DNA METHYLATION IN THE COMT GENE (BOTH MB-COMT AND S-COMT PROMOTERS), AND CYTOKINE EXPRESSION (TNF-ALPHA, IFN-GAMMA, IL-6, AND TGF-BETA). RESULTS: COMT HAPLOTYPES WERE ASSOCIATED WITH DNA METHYLATION IN THE S-COMT PROMOTER, TGF-BETA EXPRESSION, AND SYMPTOMS. HOWEVER, THIS WAS NOT SPECIFIC FOR ONE CONDITION. SIGNIFICANT BETWEEN-GROUP DIFFERENCES WERE FOUND FOR INCREASED DNA METHYLATION IN THE MB-COMT PROMOTER AND DECREASED IFN-GAMMA EXPRESSION IN PATIENTS. DISCUSSION: OUR RESULTS ARE CONSISTENT WITH BASIC AND CLINICAL RESEARCH, PROVIDING INTERESTING INSIGHTS INTO GENETIC-EPIGENETIC REGULATORY MECHANISMS. MB-COMT DNA METHYLATION MIGHT BE AN INDEPENDENT FACTOR CONTRIBUTING TO THE PATHOPHYSIOLOGY OF CFS/FM. FURTHER RESEARCH ON DNA METHYLATION IN COMPLEX CONDITIONS SUCH AS CFS/FM IS WARRANTED. WE RECOMMEND FUTURE RESEARCH TO EMPLOY A REPEATED-MEASURE DESIGN TO CONTROL FOR BIOMARKERS VARIABILITY AND WITHIN-SUBJECT CHANGES. 2022 4 6156 27 THE GENETIC INFLUENCE ON THE CORTICAL PROCESSING OF EXPERIMENTAL PAIN AND THE MODERATING EFFECT OF PAIN STATUS. BACKGROUND: RESEARCH SUGGESTS THAT THE COMT VAL(158)MET, BDNF VAL(66)MET AND OPRM1 A(118)G POLYMORPHISMS MODERATE THE EXPERIENCE OF PAIN. IN ORDER TO OBTAIN EXPERIMENTAL CONFIRMATION AND EXTENSION OF FINDINGS, CORTICAL PROCESSING OF EXPERIMENTALLY-INDUCED PAIN WAS USED. METHOD: A SAMPLE OF 78 INDIVIDUALS WITH CHRONIC LOW BACK PAIN COMPLAINTS AND 37 HEALTHY CONTROLS UNDERWENT EEG REGISTRATION. EVENT-RELATED POTENTIALS WERE MEASURED IN RESPONSE TO ELECTRICAL NOCICEPTIVE STIMULI AND MODERATION BY COMT VAL(158)MET, BDNF VAL(66)MET AND OPRM1 A(118)G POLYMORPHISMS WAS ASSESSED. RESULTS: GENETIC VARIATION DID NOT HAVE A DIRECT EFFECT ON CORTICAL PROCESSING OF EXPERIMENTAL PAIN. HOWEVER, GENETIC EFFECTS (COMT VAL(158)MET AND BDNF VAL(66)MET) ON EXPERIMENTAL PAIN WERE MODERATED BY THE PRESENCE OF CHRONIC PAIN. IN THE PRESENCE OF CHRONIC PAIN, THE COMT MET ALLELE AND THE BDNF MET ALLELE AUGMENTED CORTICAL PAIN PROCESSING, WHILST REDUCING PAIN PROCESSING IN PAIN-FREE CONTROLS. NO SIGNIFICANT EFFECTS WERE FOUND CONCERNING THE OPRM1 A(118)G POLYMORPHISM. CONCLUSIONS: THE CURRENT STUDY SUGGESTS THAT CHRONIC EXPERIENCE OF PAIN ENHANCES GENETIC SENSITIVITY TO EXPERIMENTALLY INDUCED MILDLY PAINFUL STIMULI, POSSIBLY THROUGH A PROCESS OF EPIGENETIC MODIFICATION. 2010 5 3325 29 HISTONE DEACETYLASE 2-MEDIATED EPIGENETIC REGULATION IS INVOLVED IN THE EARLY ISOFLURANE EXPOSURE-RELATED INCREASE IN SUSCEPTIBILITY TO ANXIETY-LIKE BEHAVIOUR EVOKED BY CHRONIC VARIABLE STRESS IN MICE. INCREASING STUDIES REPORT THAT PROLONGED OR MULTIPLE ANAESTHETIC EXPOSURES EARLY IN LIFE ARE ASSOCIATED WITH DETRIMENTAL EFFECTS ON BRAIN FUNCTION. ALTHOUGH STUDIES HAVE EVALUATED THE DETRIMENTAL EFFECTS ON NEUROCOGNITIVE FUNCTION, FEW HAVE FOCUSED ON LONG-TERM NEUROPSYCHIATRIC EFFECTS. IN THE PRESENT STUDY, C57BL/6 MICE RECEIVED EITHER THREE NEONATAL ISOFLURANE EXPOSURES OR CONTROL EXPOSURE. STARTING ON POSTNATAL DAY 45, THE MICE WERE EITHER EXPOSED OR NOT TO A CHRONIC VARIABLE STRESS (CVS) PARADIGM, AND CVS-RELATED NEUROPSYCHIATRIC PERFORMANCE WAS EVALUATED USING A SERIES OF BEHAVIOURAL TESTS. THE EXPRESSION LEVELS OF HISTONE 3 LYSINE 9 ACETYLATION (ACETYL-H3K9), BRAIN-DERIVED NEUROTROPHIC FACTOR (BDNF), CAMP RESPONSE ELEMENT-BINDING PROTEIN-BINDING PROTEIN, AND HISTONE DEACETYLASES 1-4 IN THE AMYGDALA WERE MEASURED BY IMMUNOBLOTTING OR IMMUNOHISTOCHEMISTRY ANALYSIS. IN MICE WITH NEONATAL ISOFLURANE EXPOSURE, THE EFFECTS OF SODIUM BUTYRATE (NAB), A COMMONLY USED HDAC INHIBITOR, WERE EXAMINED ON CVS-RELATED BEHAVIOURAL AND MOLECULAR ALTERATIONS. THE RESULTS SHOWED THAT REPEATED NEONATAL ISOFLURANE EXPOSURE DID NOT AFFECT INNATE DEPRESSION-LIKE AND ANXIETY-LIKE BEHAVIOURS UNDER NON-STRESS CONDITIONS BUT FACILITATED THE CVS-INDUCED ANXIETY-LIKE BEHAVIOURAL PHENOTYPE. INCREASED HDAC2 EXPRESSION IN THE AMYGDALA WAS ASSOCIATED WITH AN INCREASE IN THE CVS-INDUCED REPRESSION OF ACETYL-H3K9 AND BDNF EXPRESSION AND AN ENHANCED CVS-EVOKED ANXIETY-LIKE BEHAVIOURAL PHENOTYPE IN MICE NEONATAL ISOFLURANE EXPOSURE. NAB SIGNIFICANTLY DECREASED THE CVS-INDUCED ANXIETY LEVEL BY ELEVATING ACETYL-H3K9 AND BDNF EXPRESSION. THESE RESULTS SUGGESTED THAT EARLY ANAESTHESIA EXPOSURE FACILITATED CHRONIC STRESS-INDUCED NEUROPSYCHIATRIC OUTCOMES, AND THE HDAC2-RELATED EPIGENETIC DYSREGULATION OF BDNF GENE EXPRESSION IS INVOLVED IN THE UNDERLYING MECHANISM. 2021 6 5464 28 RESILIENCE IN LONG-TERM VIRAL INFECTION: GENETIC DETERMINANTS AND INTERACTIONS. VIRUS-INDUCED NEUROLOGICAL SEQUELAE RESULTING FROM INFECTION BY THEILER'S MURINE ENCEPHALOMYELITIS VIRUS (TMEV) ARE USED FOR STUDYING HUMAN CONDITIONS RANGING FROM EPILEPTIC SEIZURES TO DEMYELINATING DISEASE. MOUSE STRAINS ARE TYPICALLY CONSIDERED SUSCEPTIBLE OR RESISTANT TO TMEV INFECTION BASED ON VIRAL PERSISTENCE AND EXTREME PHENOTYPES, SUCH AS DEMYELINATION. WE HAVE IDENTIFIED A BROADER SPECTRUM OF PHENOTYPIC OUTCOMES BY INFECTING STRAINS OF THE GENETICALLY DIVERSE COLLABORATIVE CROSS (CC) MOUSE RESOURCE. WE EVALUATED THE CHRONIC-INFECTION GENE EXPRESSION PROFILES OF HIPPOCAMPI AND THORACIC SPINAL CORDS FOR 19 CC STRAINS IN RELATION TO PHENOTYPIC SEVERITY AND TMEV PERSISTENCE. STRAINS WERE CLUSTERED BASED ON SIMILAR PHENOTYPIC PROFILES AND TMEV LEVELS AT 90 DAYS POST-INFECTION, AND WE CATEGORIZED DISTINCT TMEV RESPONSE PROFILES. THE THREE MOST COMMON PROFILES INCLUDED "RESISTANT" AND "SUSCEPTIBLE," AS BEFORE, AS WELL AS A "RESILIENT" TMEV RESPONSE GROUP WHICH EXPERIENCED BOTH TMEV PERSISTENCE AND MILD NEUROLOGICAL PHENOTYPES EVEN AT 90 DAYS POST-INFECTION. EACH PROFILE HAD A DISTINCT GENE EXPRESSION SIGNATURE, ALLOWING THE IDENTIFICATION OF PATHWAYS AND NETWORKS SPECIFIC TO EACH TMEV RESPONSE GROUP. CC FOUNDER HAPLOTYPES FOR GENES INVOLVED IN THESE PATHWAYS/NETWORKS REVEALED CANDIDATE RESPONSE-SPECIFIC ALLELES. THESE ALLELES DEMONSTRATED PLEIOTROPY AND EPIGENETIC (MIRNA) REGULATION IN LONG-TERM TMEV INFECTION, WITH PARTICULAR RELEVANCE FOR RESILIENT MOUSE STRAINS. 2021 7 815 32 CHANGES IN THE EXPRESSION OF INFLAMMATORY AND EPIGENETIC-MODULATORY GENES AFTER AN INTENSIVE MEDITATION RETREAT. BACKGROUND: MEDITATION RETREATS ARE CHARACTERIZED BY INTENSIVE OR CONCENTRATED PERIODS OF MEDITATION PRACTICE, COMMONLY UNDERTAKEN IN A RESIDENTIAL SETTING. ALTHOUGH RESEARCH INDICATES THAT MEDITATION TRAINING CAN POSITIVELY INFLUENCE PHYSICAL AND MENTAL HEALTH OUTCOMES, THE BIOLOGICAL CONSEQUENCES OF MEDITATION RETREAT INTERVENTIONS ARE RELATIVELY UNDERSTUDIED. IN THIS STUDY, WE EXAMINED THE INFLUENCE OF A MONTH-LONG, SILENT MEDITATION RETREAT ON THE EXPRESSION OF GENES INVOLVED IN EPIGENETIC MODULATION AND IMMUNE PROCESSES. METHOD: WE ASSESSED GENE EXPRESSION CHANGES IN EXPERIENCED MEDITATORS ATTENDING A MONTH-LONG INSIGHT MEDITATION RETREAT (N = 28), AS COMPARED TO A COMMUNITY CONTROL GROUP (N = 34) OF EXPERIENCED PRACTITIONERS LIVING THEIR EVERYDAY LIVES. BLOOD SAMPLES WERE COLLECTED ON DAY TWO OF THE RETREAT (TIME 1) AND AGAIN 3 WEEKS LATER (TIME 2). CONTROL PARTICIPANTS WERE ALSO ASSESSED ACROSS A 3-WEEK INTERVAL, DURING WHICH THEY MAINTAINED THEIR REGULAR DAILY ROUTINES. RESULTS: AS COMPARED TO CONTROLS, RETREAT PARTICIPANTS SHOWED DIFFERENTIAL CHANGES IN THE EXPRESSION OF SEVERAL GENES INVOLVED IN CHROMATIN MODULATION AND INFLAMMATION. THE MOST SUBSTANTIVE FINDING WAS DOWNREGULATION OF THE TNF PATHWAY IN RETREAT PARTICIPANTS, WHICH WAS NOT OBSERVED IN CONTROLS. CONCLUSIONS: THESE FINDINGS INDICATE THAT MEDITATION RETREAT PARTICIPATION MAY INFLUENCE SOME OF THE INFLAMMATORY MECHANISMS INVOLVED IN THE DEVELOPMENT OF CHRONIC DISEASES, AND THAT THIS STYLE OF PSYCHOSOCIAL INTERVENTION MAY HAVE THERAPEUTIC POTENTIAL, PARTICULARLY IN EXPERIENCED PRACTITIONERS. 2022 8 905 24 CHRONIC EXPOSURE TO CANNABINOIDS DURING ADOLESCENCE CAUSES LONG-LASTING BEHAVIORAL DEFICITS IN ADULT MICE. REGULAR USE OF MARIJUANA DURING ADOLESCENCE ENHANCES THE RISK OF LONG-LASTING NEUROBIOLOGICAL CHANGES IN ADULTHOOD. THE PRESENT STUDY WAS AIMED AT ASSESSING THE EFFECT OF LONG-TERM ADMINISTRATION OF THE SYNTHETIC CANNABINOID WIN55212.2 DURING ADOLESCENCE IN YOUNG ADULT MICE. ADOLESCENT MICE AGED 5 WEEKS WERE SUBJECTED DAILY TO THE PHARMACOLOGICAL ACTION OF WIN55212.2 FOR 3 WEEKS AND WERE THEN LEFT UNDISTURBED IN THEIR HOME CAGE FOR A 5-WEEK PERIOD AND FINALLY EVALUATED BY BEHAVIORAL TESTING. MICE THAT RECEIVED THE DRUG DURING ADOLESCENCE SHOWED MEMORY IMPAIRMENT IN THE MORRIS WATER MAZE, AS WELL AS A DOSE-DEPENDENT MEMORY IMPAIRMENT IN FEAR CONDITIONING. IN ADDITION, THE ADMINISTRATION OF 3 MG/KG WIN55212.2 IN ADOLESCENCE INCREASED ADULT HIPPOCAMPAL AEA LEVELS AND PROMOTED DNA HYPERMETHYLATION AT THE INTRAGENIC REGION OF THE INTRACELLULAR SIGNALING MODULATOR RGS7, WHICH WAS ACCOMPANIED BY A LOWER RATE OF MRNA TRANSCRIPTION OF THIS GENE, SUGGESTING A POTENTIAL CAUSAL RELATION. ALTHOUGH THE CONCRETE MECHANISMS UNDERLYING THE BEHAVIORAL OBSERVATIONS REMAIN TO BE ELUCIDATED, WE DEMONSTRATE THAT LONG-TERM ADMINISTRATION OF 3 MG/KG OF WIN DURING ADOLESCENCE LEADS TO INCREASED ENDOCANNABINOID LEVELS AND ALTERED RGS7 EXPRESSION IN ADULTHOOD AND ESTABLISH A POTENTIAL LINK TO EPIGENETIC CHANGES. 2017 9 889 22 CHRONIC DIETARY ADMINISTRATION OF VALPROIC ACID PROTECTS NEURONS OF THE RAT NUCLEUS BASALIS MAGNOCELLULARIS FROM IBOTENIC ACID NEUROTOXICITY. VALPROIC ACID (VPA) HAS BEEN USED FOR MANY YEARS AS A DRUG OF CHOICE FOR EPILEPSY AND MOOD DISORDERS. RECENTLY, EVIDENCE HAS BEEN PROPOSED FOR A WIDE SPECTRUM OF ACTIONS OF THIS DRUG, INCLUDING ANTITUMORAL AND NEUROPROTECTIVE PROPERTIES. VALPROIC ACID-MEDIATED NEUROPROTECTION IN VIVO HAS BEEN SO FAR DEMONSTRATED IN A LIMITED NUMBER OF EXPERIMENTAL MODELS. IN THIS STUDY, WE HAVE TESTED THE NEUROPROTECTIVE POTENTIAL OF CHRONIC (4 + 1 WEEKS) DIETARY ADMINISTRATION OF VPA ON DEGENERATION OF CHOLINERGIC AND GABAERGIC NEURONS OF THE RAT NUCLEUS BASALIS MAGNOCELLULARIS (NBM), INJECTED WITH THE EXCITOTOXIN, IBOTENIC ACID (IBO), AN ANIMAL MODELS THAT IS RELEVANT FOR ALZHEIMER'S DISEASE-LIKE NEURODEGENERATION. WE SHOW THAT VPA TREATMENT SIGNIFICANTLY PROTECTS BOTH CHOLINERGIC AND GABAERGIC NEURONS PRESENT IN THE INJECTED AREA FROM THE EXCITOTOXIC INSULT. A SIGNIFICANT LEVEL OF NEUROPROTECTION, IN PARTICULAR, IS EXERTED TOWARDS THE CHOLINERGIC NEURONS OF THE NBM PROJECTING TO THE CORTEX, AS DEMONSTRATED BY THE SUBSTANTIALLY HIGHER LEVELS OF CHOLINERGIC MARKERS MAINTAINED IN THE TARGET CORTICAL AREA OF VPA-TREATED RATS AFTER IBO INJECTION IN THE NBM. WE FURTHER SHOW THAT CHRONIC VPA ADMINISTRATION RESULTS IN INCREASED ACETYLATION OF HISTONE H3 IN BRAIN, CONSISTENT WITH THE HISTONE DEACETYLASE INHIBITORY ACTION OF VPA AND PUTATIVELY LINKED TO A NEUROPROTECTIVE ACTION OF THE DRUG MEDIATED AT THE EPIGENETIC LEVEL. 2009 10 4736 27 NOVEL EPIGENETIC BIOMARKERS MEDIATING BISPHENOL A EXPOSURE AND METABOLIC PHENOTYPES IN FEMALE MICE. THERE IS COMPELLING EVIDENCE THAT EPIGENETIC MODIFICATIONS LINK DEVELOPMENTAL ENVIRONMENTAL INSULTS TO ADULT DISEASE SUSCEPTIBILITY. ANIMAL STUDIES HAVE ASSOCIATED PERINATAL BISPHENOL A (BPA) EXPOSURE TO ALTERED DNA METHYLATION, BUT THESE STUDIES ARE OFTEN LIMITED TO CANDIDATE GENE AND GLOBAL NON-LOCI-SPECIFIC APPROACHES. BY USING AN EPIGENOME-WIDE DISCOVERY PLATFORM, WE ELUCIDATED EPIGENETIC ALTERATIONS IN LIVER TISSUE FROM ADULT MICE OFFSPRING (10 MONTHS) FOLLOWING PERINATAL BPA EXPOSURE AT HUMAN PHYSIOLOGICALLY RELEVANT DOSES (50-NG, 50-MUG, AND 50-MG BPA/KG DIET). BIOLOGICAL PATHWAY ANALYSIS IDENTIFIED AN ENRICHMENT OF SIGNIFICANT DIFFERENTIALLY METHYLATED REGIONS IN METABOLIC PATHWAYS AMONG FEMALES. FURTHERMORE, THROUGH THE USE OF TOP ENRICHED BIOLOGICAL PATHWAYS, 4 CANDIDATE GENES WERE CHOSEN TO ASSESS DNA METHYLATION AS A MEDIATING FACTOR LINKING THE ASSOCIATION OF PERINATAL BPA EXPOSURE TO METABOLIC PHENOTYPES PREVIOUSLY OBSERVED IN FEMALE OFFSPRING. DNA METHYLATION STATUS AT JANUS KINASE-2 (JAK-2), RETINOID X RECEPTOR (RXR), REGULATORY FACTOR X-ASSOCIATED PROTEIN (RFXAP), AND TRANSMEMBRANE PROTEIN 238 (TMEM238) WAS USED WITHIN A MEDIATIONAL REGRESSION ANALYSIS. DNA METHYLATION IN ALL FOUR OF THE CANDIDATE GENES WAS IDENTIFIED AS A MEDIATOR IN THE MECHANISTIC PATHWAY OF DEVELOPMENTAL BPA EXPOSURE AND FEMALE-SPECIFIC ENERGY EXPENDITURE, BODY WEIGHT, AND BODY FAT PHENOTYPES. DATA GENERATED FROM THIS STUDY ARE CRUCIAL FOR DECIPHERING THE MECHANISTIC ROLE OF EPIGENETICS IN THE PATHOGENESIS OF CHRONIC DISEASE AND THE DEVELOPMENT OF EPIGENETIC-BASED PREVENTION AND THERAPEUTIC STRATEGIES FOR COMPLEX HUMAN DISEASE. 2017 11 1182 39 CONVERGING AND DIFFERENTIAL BRAIN PHOSPHOLIPID DYSREGULATION IN THE PATHOGENESIS OF REPETITIVE MILD TRAUMATIC BRAIN INJURY AND ALZHEIMER'S DISEASE. REPETITIVE MILD TRAUMATIC BRAIN INJURY (RMTBI) IS A MAJOR EPIGENETIC RISK FACTOR FOR ALZHEIMER'S DISEASE (AD). THE PRECISE NATURE OF HOW RMTBI LEADS TO OR PRECIPITATES AD PATHOLOGY IS CURRENTLY UNKNOWN. NUMEROUS NEUROLOGICAL CONDITIONS HAVE SHOWN AN IMPORTANT ROLE FOR DYSFUNCTIONAL PHOSPHOLIPID METABOLISM AS A DRIVING FACTOR FOR THE PATHOGENESIS OF NEURODEGENERATIVE DISEASES. HOWEVER, THE PRECISE ROLE IN RMTBI AND AD REMAINS ELUSIVE. WE HYPOTHESIZED THAT A DETAILED PHOSPHOLIPID CHARACTERIZATION WOULD REVEAL PROFILES OF RESPONSE TO INJURY IN TBI THAT OVERLAP WITH AGE-DEPENDENT CHANGES IN AD AND THUS PROVIDE INSIGHTS INTO THE TBI-AD RELATIONSHIP. WE EMPLOYED A LIPIDOMIC APPROACH EXAMINING BRAIN PHOSPHOLIPID PROFILES FROM MOUSE MODELS OF RMTBI AND AD. CORTEX AND HIPPOCAMPAL TISSUE WERE COLLECTED AT 24 H, 3, 6, 9, AND 12 MONTHS POST-RMTBI, AND AT AGES REPRESENTING 'PRE', 'PERI' AND 'POST' ONSET OF AMYLOID PATHOLOGY (I.E., 3, 9, 15 MONTHS-OLD). TOTAL LEVELS OF PHOSPHATIDYLCHOLINE (PC), PHOSPHATIDYLETHANOLAMINE (PE), LYSOPE, AND PHOSPHATIDYLINOSITOL (PI), INCLUDING THEIR MONOUNSATURATED, POLYUNSATURATED AND SATURATED FATTY ACID (FA) CONTAINING SPECIES WERE SIGNIFICANTLY INCREASED AT ACUTE AND/OR CHRONIC TIME POINTS POST-INJURY IN BOTH BRAIN REGIONS. HOWEVER, LEVELS OF MOST PHOSPHOLIPID SPECIES IN PS1/APP MICE WERE NOMINAL IN THE HIPPOCAMPUS, WHILE IN THE CORTEX, LEVELS WERE SIGNIFICANTLY DECREASED AT AGES POST-ONSET OF AMYLOID PATHOLOGY. SPHINGOMYELIN AND LYSOPC LEVELS SHOWED COINCIDENTAL TRENDS IN OUR RMTBI AND AD MODELS WITHIN THE HIPPOCAMPUS, AN INCREASE AT ACUTE AND/OR CHRONIC TIME POINTS EXAMINED. THE RATIO OF ARACHIDONIC ACID (OMEGA-6 FA) TO DOCOSAHEXAENOIC ACID (OMEGA-3 FA)-CONTAINING PE SPECIES WAS INCREASED AT EARLY TIME POINTS IN THE HIPPOCAMPUS OF INJURED VERSUS SHAM MICE, AND IN PS1/APP MICE THERE WAS A COINCIDENTAL INCREASE COMPARED TO WILD TYPE LITTERMATES AT ALL TIME POINTS. THIS STUDY DEMONSTRATES SOME OVERLAPPING AND DIVERSE PHOSPHOLIPID PROFILES IN RMTBI AND AD MODELS. FUTURE STUDIES ARE REQUIRED TO CORROBORATE OUR FINDINGS IN HUMAN POST-MORTEM TISSUE. INVESTIGATION OF SECONDARY MECHANISMS TRIGGERED BY ABERRANT DOWNSTREAM ALTERATIONS IN BIOACTIVE METABOLITES OF THESE PHOSPHOLIPIDS, AND THEIR MODULATION AT THE APPROPRIATE TIME-WINDOWS OF OPPORTUNITY COULD HELP FACILITATE DEVELOPMENT OF NOVEL THERAPEUTIC STRATEGIES TO AMELIORATE THE NEURODEGENERATIVE CONSEQUENCES OF RMTBI OR THE POTENTIAL TRIGGERING OF AD PATHOGENESIS BY RMTBI. 2019 12 2776 33 EXTRAUTERINE GROWTH RESTRICTION ON PULMONARY VASCULAR ENDOTHELIAL DYSFUNCTION IN ADULT MALE RATS: THE ROLE OF EPIGENETIC MECHANISMS. OBJECTIVE: EARLY POSTNATAL LIFE IS CONSIDERED AS A CRITICAL TIME WINDOW FOR THE DETERMINATION OF LONG-TERM METABOLIC STATES AND ORGAN FUNCTIONS. EXTRAUTERINE GROWTH RESTRICTION (EUGR) CAUSES THE DEVELOPMENT OF ADULT-ONSET CHRONIC DISEASES, INCLUDING PULMONARY HYPERTENSION. HOWEVER, THE EFFECTS OF NUTRITIONAL DISADVANTAGES DURING THE EARLY POSTNATAL PERIOD ON PULMONARY VASCULAR CONSEQUENCES IN LATER LIFE ARE NOT FULLY UNDERSTOOD. OUR STUDY WAS DESIGNED TO TEST WHETHER EPIGENETICS DYSREGULATION MEDIATES THE CELLULAR MEMORY OF THIS EARLY POSTNATAL EVENT. METHODS AND RESULTS: TO TEST THIS HYPOTHESIS, WE ISOLATED PULMONARY VASCULAR ENDOTHELIAL CELLS BY MAGNETIC-ACTIVATED CELL SORTING FROM EUGR AND CONTROL RATS. A POSTNATAL INSULT, NUTRITIONAL RESTRICTION-INDUCED EUGR CAUSED DEVELOPMENT OF AN INCREASED PULMONARY ARTERY PRESSURE AT 9 WEEKS OF AGE IN MALE SPRAGUE-DAWLEY RATS. METHYL-DNA IMMUNE PRECIPITATION CHIP, GENOME-SCALE MAPPING STUDIES TO SEARCH FOR DIFFERENTIALLY METHYLATED LOCI BETWEEN CONTROL AND EUGR RATS, REVEALED SIGNIFICANT DIFFERENCE IN CYTOSINE METHYLATION BETWEEN EUGR AND CONTROL RATS. EUGR CHANGES THE CYTOSINE METHYLATION AT APPROXIMATELY 500 LOCI IN MALE RATS AT 9 WEEKS OF AGE, PRECEDING THE DEVELOPMENT OF PULMONARY HYPERTENSION AND THESE REPRESENT THE CANDIDATE LOCI FOR MEDIATING THE PATHOGENESIS OF PULMONARY VASCULAR DISEASE THAT OCCURS LATER IN LIFE. GENE ONTOLOGY ANALYSIS ON DIFFERENTIALLY METHYLATED GENES SHOWED THAT HYPERMETHYLATED GENES IN EUGR ARE VASCULAR DEVELOPMENT-ASSOCIATED GENES AND HYPOMETHYLATED GENES IN EUGR ARE LATE-DIFFERENTIATION-ASSOCIATED AND SIGNAL TRANSDUCTION GENES. WE VALIDATED CANDIDATE DYSREGULATED LOCI WITH THE QUANTITATIVE ASSAYS OF CYTOSINE METHYLATION AND GENE EXPRESSIONS. CONCLUSION: THESE RESULTS DEMONSTRATE THAT EPIGENETICS DYSREGULATION IS A STRONG MECHANISM FOR PROPAGATING THE CELLULAR MEMORY OF EARLY POSTNATAL EVENTS, CAUSING CHANGES IN THE EXPRESSION OF GENES AND LONG-TERM SUSCEPTIBILITY TO PULMONARY HYPERTENSION, AND FURTHER PROVIDING A NEW INSIGHT INTO THE PREVENTION AND TREATMENT OF EUGR-RELATED PULMONARY HYPERTENSION. 2014 13 3122 35 GESTATIONAL VALPROIC ACID EXPOSURE INDUCES EPIGENETIC MODIFICATIONS IN MURINE DECIDUA. INTRODUCTION: VALPROIC ACID (VPA), A WIDELY PRESCRIBED ANTIEPILEPTIC DRUG AND AN EFFECTIVE TREATMENT FOR BIPOLAR DISORDER AND NEUROPATHIC PAIN, RESULTS IN MULTIPLE DEVELOPMENTAL DEFECTS FOLLOWING IN UTERO EXPOSURE. UTERINE DECIDUA PROVIDES NUTRITIONAL AND PHYSICAL SUPPORT DURING IMPLANTATION AND EARLY EMBRYONIC DEVELOPMENT. PERTURBATIONS IN THE MOLECULAR MECHANISMS WITHIN DECIDUAL TISSUE DURING EARLY PREGNANCY MIGHT AFFECT EARLY EMBRYONIC GROWTH, RESULT IN EARLY PREGNANCY LOSS OR CAUSE COMPLICATIONS IN THE LATER GESTATIONAL STAGE. VPA IS A KNOWN HISTONE DEACETYLASE INHIBITOR AND EPIGENETIC CHANGES SUCH AS HISTONE HYPERACETYLATION AND METHYLATION HAVE BEEN PROPOSED AS A MECHANISM OF VPA-INDUCED TERATOGENESIS. METHODS: THIS STUDY INVESTIGATED THE EFFECTS OF IN UTERO VPA EXPOSURE ON HISTONE MODIFICATIONS IN MURINE DECIDUAL TISSUE. PREGNANT CD-1 MICE WERE EXPOSED TO 400 MG/KG VPA OR SALINE ON GD9 VIA SUBCUTANEOUS INJECTION. DECIDUAL TISSUE FROM EACH GESTATIONAL SAC WAS HARVESTED AT 1, 3 AND 6 H FOLLOWING EXPOSURE. LEVELS OF ACETYLATED HISTONES H3, H4 AND H3K56, AS WELL AS METHYLATED HISTONES H3K9 AND H3K27 WERE ACID EXTRACTED AND ASSESSED BY WESTERN BLOTTING FOLLOWED BY ACID HISTONE EXTRACTION. RESULTS: VPA EXPOSURE INDUCED A SIGNIFICANT INCREASE (P < 0.05) IN THE LEVELS OF ACETYLATED H3 AT 1, 3 H; ACETYLATED H4 AT 1, 3 AND 6 H AND TRIMETHYLATED H3K9 AT 6 H. IN CONTRAST, NO SIGNIFICANT PERTURBATIONS WERE NOTED IN THE LEVELS OF MONOMETHYLATED H3K9, TRIMETHYLATED H3K27 AND ACETYLATED H3K56. DISCUSSION: THE RESULTS FROM THIS STUDY SUGGEST THAT VPA-INDUCED DECIDUAL HISTONE MODIFICATIONS MIGHT PLAY AN IMPORTANT ROLE AS A MECHANISM OF VPA-INDUCED TERATOGENESIS DURING EARLY EMBRYONIC GROWTH. 2021 14 5128 31 POSTNATAL INTERMITTENT HYPOXIA ENHANCES PHRENIC AND REDUCES VAGAL UPPER AIRWAY MOTOR ACTIVITIES IN RATS BY EPIGENETIC MECHANISMS. NEW FINDINGS: WHAT IS THE CENTRAL QUESTION OF THIS STUDY? WHAT ARE THE ALTERATIONS IN RESPIRATORY MOTOR ACTIVITY THAT MAY UNDERLIE VENTILATORY DYSFUNCTIONS IN JUVENILE AND ADULT ANIMALS EXPOSED TO POSTNATAL CHRONIC INTERMITTENT HYPOXIA? WHAT IS THE MAIN FINDING AND ITS IMPORTANCE? POSTNATAL CHRONIC INTERMITTENT HYPOXIA MODIFIES THE MOTOR ACTIVITY TO PUMPING AND UPPER AIRWAY RESPIRATORY MUSCLES IN RATS, MEDIATED BY EPIGENETIC DNA HYPERMETHYLATION, ENHANCING RESTING PULMONARY VENTILATION AND PREDISPOSING TO COLLAPSE OF THE UPPER AIRWAYS IN JUVENILE AND ADULT LIFE. ABSTRACT: PERIODS OF APNOEA, COMMONLY OBSERVED IN PREMATURES AND NEWBORNS, ARE AN IMPORTANT RISK FACTOR FOR THE DEVELOPMENT OF CARDIORESPIRATORY DISEASES IN ADULTHOOD. IN THE PRESENT STUDY, WE EVALUATED CHANGES IN PULMONARY VENTILATION AND RESPIRATORY MOTOR PATTERN IN JUVENILE AND ADULT RATS EXPOSED TO POSTNATAL CHRONIC INTERMITTENT HYPOXIA (PCIH). NEWBORN MALE HOLTZMAN RATS (P1) WERE SUBMITTED TO PCIH (6% O(2) FOR 30 S, EVERY 9 MIN, 8 H A DAY (09.30-17.30 H)) DURING THEIR FIRST 10 DAYS OF LIFE, WHILE CONTROL ANIMALS WERE MAINTAINED UNDER NORMOXIC CONDITIONS (20.8% O(2) ). THEREAFTER, ANIMALS OF BOTH GROUPS WERE MAINTAINED UNDER NORMOXIA UNTIL THE EXPERIMENTS. UNANAESTHETIZED JUVENILE PCIH RATS (N = 27) EXHIBITED ELEVATED TIDAL VOLUME AND RESPIRATORY IRREGULARITIES (P < 0.05) COMPARED TO CONTROL RATS (N = 7). DECEREBRATE, ARTERIALLY PERFUSED IN SITU PREPARATIONS OF JUVENILE PCIH RATS (N = 11) DISPLAYED AUGMENTED PHRENIC NERVE (PN) BURST AMPLITUDE AND REDUCED CENTRAL VAGUS NERVE ACTIVITY IN COMPARISON TO CONTROLS (N = 10). AT ADULTHOOD, PCIH RATS (N = 5) SHOWED ENHANCED TIDAL VOLUME (P < 0.05) AND INCREASED RESPIRATORY VARIABILITY COMPARED TO THE CONTROL GROUP (N = 5). THE PCIH-INDUCED CHANGES IN VENTILATION AND RESPIRATORY MOTOR OUTPUTS WERE PREVENTED BY TREATMENT WITH THE DNA METHYLTRANSFERASE INHIBITOR DECITABINE (1 MG KG(-1) , I.P.) DURING THE EXPOSURE TO PCIH. OUR DATA DEMONSTRATE THAT PCIH IN RATS IMPACTS, IN A PERSISTENT WAY, CONTROL OF THE RESPIRATORY PATTERN, INCREASING PN ACTIVITY TO THE DIAPHRAGM AND REDUCING THE VAGAL-RELATED ACTIVITY TO LARYNGEAL MUSCLES, WHICH, RESPECTIVELY, MAY CONTRIBUTE TO IMPROVE RESTING PULMONARY VENTILATION AND PREDISPOSE TO COLLAPSE OF THE UPPER AIRWAYS DURING QUIET BREATHING. 2020 15 998 32 CHRONIC SUBCONVULSIVE ACTIVITY DURING EARLY POSTNATAL LIFE PRODUCES AUTISTIC BEHAVIOR IN THE ABSENCE OF NEUROTOXICITY IN THE JUVENILE WEANLING PERIOD. THE DIAGNOSIS OF AUTISM SPECTRUM DISORDER (ASD) VARIES FROM VERY MILD TO SEVERE SOCIAL AND COGNITIVE IMPAIRMENTS. WE HYPOTHESIZED THAT EPIGENETIC SUBCONVULSIVE ACTIVITY IN EARLY POSTNATAL LIFE MAY CONTRIBUTE TO THE DEVELOPMENT OF AUTISTIC BEHAVIOR IN A SEX-RELATED MANNER. LOW DOSES OF KAINIC ACID (KA) (25-100 MUG) WERE ADMINISTERED TO RAT PUPS FOR 15 DAYS BEGINNING ON POSTNATAL (P) DAY 6 TO CHRONICALLY ELEVATE NEURONAL ACTIVITY. A BATTERY OF CLASSICAL AND NOVEL BEHAVIORAL TESTS WAS USED, AND SEX DIFFERENCES WERE OBSERVED. OUR NOVEL OPEN HANDLING TEST REVEALED THAT ASD MALES NOSE POKED MORE OFTEN AND ASD FEMALES CLIMBED AND ESCAPED MORE FREQUENTLY WITH AGE. IN THE SOCIAL INTERACTION TEST, ASD MALES WERE LESS SOCIAL THAN ASD FEMALES WHO WERE MORE ANXIOUS IN HANDLING AND ELEVATED PLUS MAZE (EPM) TASKS. TO EVALUATE GROUP DYNAMICS, SIBLING AND NON-SIBLING CONTROL AND EXPERIMENTAL ANIMALS EXPLORED 3 DIFFERENT SHAPED NOVEL SOCIAL ENVIRONMENTS. CONTROL PUPS HUDDLED QUICKLY AND MORE FREQUENTLY IN ALL ENVIRONMENTS WHETHER THEY SOCIALIZED WITH LITTERMATES OR NON-SIBLINGS COMPARED TO ASD GROUPS. NON-SIBLING ASD PUPS WERE ERRATIC AND HUDDLED IN SMALLER GROUPS. IN THE OBJECT RECOGNITION TEST, ONLY ASD MALES SPENT LESS TIME WITH THE NOVEL OBJECT COMPARED TO CONTROL PUPS. DATA SUGGEST THAT CHRONIC SUBCONVULSIVE ACTIVITY IN EARLY POSTNATAL LIFE LEADS TO AN ASD PHENOTYPE IN THE ABSENCE OF CELL DEATH. MALES WERE MORE SUSCEPTIBLE TO DEVELOPING ASOCIAL BEHAVIORS AND COGNITIVE PATHOLOGIES, WHEREAS FEMALES WERE PRONE TO HIGHER LEVELS OF HYPERACTIVITY AND ANXIETY, VALIDATING OUR POSTNATAL ASD MODEL APPARENT IN THE PRE-JUVENILE PERIOD. 2019 16 2246 26 EPIGENETIC MODULATION OF INFLAMMATION AND SYNAPTIC PLASTICITY PROMOTES RESILIENCE AGAINST STRESS IN MICE. MAJOR DEPRESSIVE DISORDER IS ASSOCIATED WITH ABNORMALITIES IN THE BRAIN AND THE IMMUNE SYSTEM. CHRONIC STRESS IN ANIMALS SHOWED THAT EPIGENETIC AND INFLAMMATORY MECHANISMS PLAY IMPORTANT ROLES IN MEDIATING RESILIENCE AND SUSCEPTIBILITY TO DEPRESSION. HERE, THROUGH A HIGH-THROUGHPUT SCREENING, WE IDENTIFY TWO PHYTOCHEMICALS, DIHYDROCAFFEIC ACID (DHCA) AND MALVIDIN-3'-O-GLUCOSIDE (MAL-GLUC) THAT ARE EFFECTIVE IN PROMOTING RESILIENCE AGAINST STRESS BY MODULATING BRAIN SYNAPTIC PLASTICITY AND PERIPHERAL INFLAMMATION. DHCA/MAL-GLUC ALSO SIGNIFICANTLY REDUCES DEPRESSION-LIKE PHENOTYPES IN A MOUSE MODEL OF INCREASED SYSTEMIC INFLAMMATION INDUCED BY TRANSPLANTATION OF HEMATOPOIETIC PROGENITOR CELLS FROM STRESS-SUSCEPTIBLE MICE. DHCA REDUCES PRO-INFLAMMATORY INTERLEUKIN 6 (IL-6) GENERATIONS BY INHIBITING DNA METHYLATION AT THE CPG-RICH IL-6 SEQUENCES INTRONS 1 AND 3, WHILE MAL-GLUC MODULATES SYNAPTIC PLASTICITY BY INCREASING HISTONE ACETYLATION OF THE REGULATORY SEQUENCES OF THE RAC1 GENE. PERIPHERAL INFLAMMATION AND SYNAPTIC MALADAPTATION ARE IN LINE WITH NEWLY HYPOTHESIZED CLINICAL INTERVENTION TARGETS FOR DEPRESSION THAT ARE NOT ADDRESSED BY CURRENTLY AVAILABLE ANTIDEPRESSANTS. 2018 17 1635 24 DOES A SINGLE BOUT OF EXERCISE IMPACTS BDNF, OXIDATIVE STRESS AND EPIGENETIC MARKERS IN SPINAL CORD INJURY PATIENTS? OUR AIM WAS TO EVALUATE THE IMPACT OF A SINGLE BOUT OF EXERCISE, CONSISTING OF A GAIT TRAINING SESSION WITH BODY WEIGHT SUPPORT (BWS), ON HISTONE ACETYLATION STATUS (GLOBAL HISTONE H4 AND H3 ACETYLATION LEVELS), BRAIN-DERIVED NEUROTROPHIC FACTOR (BDNF) LEVELS, AND OXIDATIVE STRESS MARKERS IN PERIPHERAL BLOOD OF INDIVIDUALS WITH CHRONIC SPINAL CORD INJURY (SCI). WE ALSO SET OUT TO COMPARE THESE RESPONSES WITH THOSE RECORDED AFTER GAIT TRAINING PERFORMED USING A WALKER AND WITH NO BWS. THE SUBJECTS (NEARLY ALL WITH AN INCOMPLETE SPINAL CORD LESION) WERE EACH SUBMITTED TO TWO 60-MINUTE EXPERIMENTAL SESSIONS ON SEPARATE DAYS WITH A 1- WEEK WASH-OUT PERIOD BETWEEN THE INTERVENTIONS. THE ORDER OF THE SESSIONS WAS RANDOMIZED. BLOOD SAMPLES WERE COLLECTED BEFORE AND AFTER EACH EXPERIMENTAL TRIAL FOR MEASUREMENT OF BIOMARKERS. THE HISTONE ACETYLATION STATUS AND BDNF LEVELS REMAINED UNCHANGED AFTER BOTH INTERVENTIONS. AFTER THE TREADMILL TRAINING, THE PARTICIPANTS SHOWED A STRONG INCREASE IN LEVELS OF OXIDATIVE STRESS MARKERS [PLASMA ADVANCED OXIDATION PROTEIN PRODUCTS (AOPPS), NITRITE AND THIOBARBITURIC ACID-REACTIVE SUBSTANCES] WITHOUT CHANGES IN ANTIOXIDANT MEDIATORS. INSTEAD, ELEVATIONS IN AOPP AND NITRITE CONCENTRATIONS, IN ADDITION TO INCREASED LEVELS OF GLUTATHIONE AND CATALASE ACTIVITY, WERE FOUND AFTER THE WALKER TRAINING. A SINGLE BOUT OF GAIT TRAINING, BE IT CONDUCTED ON A TREADMILL WITH BWS OR USING A WALKER WITHOUT BWS, IS NOT ABLE TO ALTER BDNF LEVELS AND HISTONE ACETYLATION STATUS IN SCI PATIENTS. HOWEVER, THESE TRIALS CAN MODULATE OXIDATIVE STRESS PARAMETERS, SEEMINGLY IN A PROTOCOL-DEPENDENT MANNER. 2019 18 2886 18 GABA-AALPHA5 MIGHT BE INVOLVED IN LEARNING-MEMORY DYSFUNCTION IN THE OFFSPRINGS OF CHRONIC ETHANOL-TREATED RATS VIA GABA-AALPHA5 HISTONE H3K9 ACETYLATION. RECENTLY, NUMEROUS STUDIES HAVE BEEN FOCUSED ON THE RELATIONSHIP BETWEEN GABA-A RECEPTORS AND ALCOHOL-INDUCED SPATIAL LEARNING AND MEMORY DEFICITS. GABA-AALPHA5, A SUBUNIT OF GABA-A RECEPTORS, IS CONSIDERED TO PLAY AN IMPORTANT ROLE IN ALCOHOL-INDUCED COGNITIVE IMPAIRMENT, HOWEVER, THE MECHANISM REMAINS OBSCURE. IN THIS STUDY, WE FOUND THAT THE EXPRESSION OF GABA-AALPHA5 INCREASED IN RATS TREATED WITH CHRONIC ETHANOL VIA HISTONE H3K9 ACETYLATION. FURTHERMORE, THIS EPIGENETIC MODIFICATION COULD BE INHERITED BY THE NEXT GENERATIONS, WHICH EVENTUALLY EXHIBIT SIMILAR SPATIAL LEARNING AND MEMORY DEFICITS IN THE OFFSPRINGS. IN SUMMARY, OUR RESULTS SUGGESTED THAT GABA-AALPHA5 MIGHT BE INVOLVED IN CHRONIC ETHANOL TREATMENT-INDUCED LEARNING-MEMORY DYSFUNCTION AND FOR THE FIRST TIME PROVED THAT LEARNING-MEMORY DYSFUNCTION COULD BE INHERITED BY THE OFFSPRINGS VIA HISTONE H3K9 ACETYLATION. HOPEFULLY, IN THE NEAR FUTURE, GABA-AALPHA5 INHIBITORS WOULD BE AN EFFECTIVE WAY TO TREAT ALCOHOL-INDUCED COGNITION IMPAIRMENT. 2019 19 433 27 ANTIDEPRESSANT TREATMENT IS ASSOCIATED WITH EPIGENETIC ALTERATIONS OF HOMER1 PROMOTER IN A MOUSE MODEL OF CHRONIC DEPRESSION. BACKGROUND: UNDERSTANDING THE NEUROBIOLOGY OF DEPRESSION AND THE MECHANISM OF ACTION OF THERAPEUTIC MEASURES IS CURRENTLY A RESEARCH PRIORITY. WE HAVE SHOWN THAT THE EXPRESSION OF THE SYNAPTIC PROTEIN HOMER1A CORRELATES WITH DEPRESSION-LIKE BEHAVIOR AND ITS INDUCTION IS A COMMON MECHANISM OF ACTION OF DIFFERENT ANTIDEPRESSANT TREATMENTS. HOWEVER, THE MECHANISM OF HOMER1A REGULATION IS STILL UNKNOWN. METHODS: WE COMBINED THE CHRONIC DESPAIR MOUSE MODEL (CDM) OF CHRONIC DEPRESSION WITH DIFFERENT ANTIDEPRESSANT TREATMENTS. DEPRESSION-LIKE BEHAVIOR WAS CHARACTERIZED BY FORCED SWIM AND TAIL SUSPENSION TESTS, AND VIA AUTOMATIC MEASUREMENT OF SUCROSE PREFERENCE IN INTELLICAGE. THE HOMER1 MRNA EXPRESSION AND PROMOTER DNA METHYLATION WERE ANALYZED IN CORTEX AND PERIPHERAL BLOOD BY QRT-PCR AND PYROSEQUENCING. RESULTS: CDM MICE SHOW DECREASED HOMER1A AND HOMER1B/C MRNA EXPRESSION IN CORTEX AND BLOOD SAMPLES, WHILE CHRONIC TREATMENT WITH IMIPRAMINE AND FLUOXETINE OR ACUTE KETAMINE APPLICATION INCREASES THEIR LEVEL ONLY IN THE CORTEX. THE QUANTITATIVE ANALYSES OF THE METHYLATION OF 7 CPG SITES, LOCATED ON THE HOMER1 PROMOTER REGION CONTAINING SEVERAL CRE BINDING SITES, SHOW A SIGNIFICANT INCREASE IN DNA METHYLATION IN THE CORTEX OF CDM MICE. IN CONTRAST, ANTIDEPRESSANT TREATMENTS REDUCE THE METHYLATION LEVEL. LIMITATIONS: HOMER1 EXPRESSION AND PROMOTOR METHYLATION WERE NOT ANALYZED IN DIFFERENT BLOOD CELL TYPES. OTHER CPG SITES OF HOMER1 PROMOTER SHOULD BE INVESTIGATED IN FUTURE STUDIES. OUR EXPERIMENTAL APPROACH DOES NOT DISTINGUISH BETWEEN METHYLATION AND HYDROXYMETHYLATION. CONCLUSIONS: WE DEMONSTRATE THAT STRESS-INDUCED DEPRESSION-LIKE BEHAVIOR AND ANTIDEPRESSANT TREATMENTS ARE ASSOCIATED WITH EPIGENETIC ALTERATIONS OF HOMER1 PROMOTER, PROVIDING NEW INSIGHTS INTO THE MECHANISM OF ANTIDEPRESSANT TREATMENT. 2021 20 491 27 ASSESSING THE IMPACT OF POLYETHYLENE NANO/MICROPLASTIC EXPOSURE ON HUMAN VAGINAL KERATINOCYTES. THE GLOBAL RISE OF SINGLE-USE THROW-AWAY PLASTIC PRODUCTS HAS ELICITED A MASSIVE INCREASE IN THE NANO/MICROPLASTICS (N/MPLS) EXPOSURE BURDEN IN HUMANS. RECENTLY, IT HAS BEEN DEMONSTRATED THAT DISPOSABLE PERIOD PRODUCTS MAY RELEASE N/MPLS WITH USAGE, WHICH REPRESENTS A POTENTIAL THREAT TO WOMEN'S HEALTH WHICH HAS NOT BEEN SCIENTIFICALLY ADDRESSED YET. BY USING POLYETHYL ENE (PE) PARTICLES (200 NM TO 9 MUM), WE SHOWED THAT ACUTE EXPOSURE TO A HIGH CONCENTRATION OF N/MPLS INDUCED CELL TOXICITY IN VAGINAL KERATINOCYTES AFTER EFFECTIVE CELLULAR UPTAKE, AS VIABILITY AND APOPTOSIS DATA SUGGEST, ALONG WITH TRANSMISSION ELECTRON MICROSCOPY (TEM) OBSERVATIONS. THE INTERNALISED N/MPLS ALTERED THE EXPRESSION OF JUNCTIONAL AND ADHERENCE PROTEINS AND THE ORGANISATION OF THE ACTIN CORTEX, INFLUENCING THE LEVEL OF GENES INVOLVED IN OXIDATIVE STRESS SIGNALLING PATHWAYS AND THAT OF MIRNAS RELATED TO EPITHELIAL BARRIER FUNCTION. WHEN THE EXPOSURE TO PE N/MPLS WAS DISCONTINUED OR BECAME CHRONIC, CELLS WERE ABLE TO RECOVER FROM THE NEGATIVE EFFECTS ON VIABILITY AND DIFFERENTIATION/PROLIFERATION GENE EXPRESSION IN A FEW DAYS. HOWEVER, IN ALL CASES, PE N/MPL EXPOSURE PROMPTED A SUSTAINED ALTERATION OF DNA METHYLTRANSFERASE AND DNA DEMETHYLASE EXPRESSION, WHICH MIGHT IMPACT EPIGENETIC REGULATION PROCESSES, LEADING TO ACCELERATED CELL AGEING AND INFLAMMATION, OR THE OCCURRENCE OF MALIGNANT TRANSFORMATION. 2023