1 4997 161 PERINATAL LEAD (PB) EXPOSURE RESULTS IN SEX AND TISSUE-DEPENDENT ADULT DNA METHYLATION ALTERATIONS IN MURINE IAP TRANSPOSONS. EPIDEMIOLOGICAL AND ANIMAL DATA SUGGEST THAT ADULT CHRONIC DISEASE IS INFLUENCED BY EARLY-LIFE EXPOSURE-INDUCED CHANGES TO THE EPIGENOME. PREVIOUSLY, WE OBSERVED THAT PERINATAL LEAD (PB) EXPOSURE RESULTS IN PERSISTENT MURINE METABOLIC- AND ACTIVITY-RELATED EFFECTS. USING PHYLOGENETIC AND DNA METHYLATION ANALYSIS, WE HAVE ALSO IDENTIFIED NOVEL INTRACISTERNAL A PARTICLE (IAP) RETROTRANSPOSONS EXHIBITING REGIONS OF VARIABLE METHYLATION AS CANDIDATE LOCI FOR ENVIRONMENTAL EFFECTS ON THE EPIGENOME. HERE, WE NOW EVALUATE BRAIN AND KIDNEY DNA METHYLATION PROFILES OF FOUR REPRESENTATIVE IAPS IN ADULT MICE EXPOSED TO HUMAN PHYSIOLOGICALLY RELEVANT LEVELS OF PB TWO WEEKS PRIOR TO MATING THROUGH LACTATION. WHEN IAPS ACROSS THE GENOME WERE EVALUATED GLOBALLY, AVERAGE (SD) METHYLATION LEVELS WERE 92.84% (3.74) DIFFERING BY TISSUE (P < 0.001), BUT NOT SEX OR DOSE. BY CONTRAST, THE FOUR INDIVIDUAL IAPS DISPLAYED TISSUE-SPECIFIC PB AND SEX EFFECTS. MEDIUM PB-EXPOSED MICE HAD 3.86% LESS BRAIN METHYLATION AT IAP 110 (P < 0.01), WHILE HIGH PB-EXPOSED MICE HAD 2.83% LESS BRAIN METHYLATION AT IAP 236 (P = 0.01) AND 1.77% LESS AT IAP 506 (P = 0.05). INDIVIDUAL IAP DNA METHYLATION DIFFERED BY SEX FOR IAP 110 IN THE BRAIN AND KIDNEY, IAP 236 IN THE KIDNEY, AND IAP 1259 IN THE KIDNEY. USING TOMTOM, WE IDENTIFIED THREE BINDING MOTIFS THAT MATCHED TO EACH OF OUR NOVEL IAPS IMPACTED BY PB, ONE OF WHICH (HMGA2) HAS BEEN LINKED TO METABOLIC-RELATED CONDITIONS IN BOTH MICE AND HUMANS. THUS, THESE RECENTLY IDENTIFIED IAPS DISPLAY TISSUE-SPECIFIC ENVIRONMENTAL LABILITY AS WELL AS SEX-SPECIFIC DIFFERENCES SUPPORTING AN EPIGENETIC LINK BETWEEN EARLY EXPOSURE TO PB AND LATER-IN-LIFE HEALTH OUTCOMES. ENVIRON. MOL. MUTAGEN. 58:540-550, 2017. (C) 2017 WILEY PERIODICALS, INC. 2017 2 5170 30 PREDATION RISK DETERMINES PIGMENTATION PHENOTYPE IN NUTHATCHES BY MELANIN-RELATED GENE EXPRESSION EFFECTS. PIGMENTS DETERMINE THE APPEARANCE OF ORGANISMS. HOWEVER, PIGMENT PRODUCTION CAN BE ASSOCIATED WITH PHYSIOLOGICAL CONSTRAINTS AS IN THE CASE OF PHEOMELANIN, THE SULPHURATED FORM OF MELANIN WHOSE SYNTHESIS IN MELANOCYTES CONSUMES CYSTEINE AND CONSEQUENTLY REDUCES THE AVAILABILITY OF GLUTATHIONE (GSH) TO EXERT ANTIOXIDANT PROTECTION. PHEOMELANOGENESIS MAY THUS INCREASE THE SUSCEPTIBILITY TO SUFFER CHRONIC OXIDATIVE STRESS. I INVESTIGATED THE POSSIBILITY THAT ENVIRONMENTAL LABILITY IN THE EXPRESSION OF GENES REGULATING PHEOMELANOGENESIS PROTECTS FROM OXIDATIVE STRESS, A SITUATION IN WHICH GSH IS MOST REQUIRED. BY BROADCASTING ADULT ALARM CALLS, I MANIPULATED THE PERCEPTION OF PREDATION RISK, A NATURAL SOURCE OF OXIDATIVE STRESS, IN FREE-LIVING EURASIAN NUTHATCH SITTA EUROPAEA NESTLINGS DEVELOPING PHEOMELANIN-PIGMENTED FLANK FEATHERS. THE MANIPULATION AFFECTED THE CONSUMPTION OF GSH THAT RESULTED FROM THE EXPRESSION OF TWO GENES (SLC7A11 AND SLC45A2) INFLUENCING CYSTEINE/GSH AVAILABILITY IN CELLS, AS THESE GENES WERE DOWN-REGULATED IN THE FEATHER MELANOCYTES OF THE NESTLINGS WITH LOWEST INTRACELLULAR ANTIOXIDANT CAPACITY (I.E. LOWEST GSH LEVELS). SYSTEMIC OXIDATIVE DAMAGE INCREASED WITH SLC7A11 EXPRESSION IN FEATHER MELANOCYTES, SUGGESTING THAT THE OBSERVED DOWN-REGULATION WAS PHYSIOLOGICALLY ADVANTAGEOUS. THE NESTLINGS EXPOSED TO AN INCREASED PERCEPTION OF PREDATION RISK DEVELOPED FLANK FEATHERS OF REDUCED COLOUR INTENSITY. THESE RESULTS INDICATE THAT PERCEIVED PREDATION RISK CAN DETERMINE THE PIGMENTATION PHENOTYPE BY (PROBABLY EPIGENETIC) EFFECTS ON GENE EXPRESSION THAT PROTECT FROM PHYSIOLOGICAL CONSTRAINTS IMPOSED BY PHEOMELANIN PRODUCTION. 2018 3 4943 37 PATERNAL PRECONCEPTION ALCOHOL EXPOSURE IMPARTS INTERGENERATIONAL ALCOHOL-RELATED BEHAVIORS TO MALE OFFSPRING ON A PURE C57BL/6J BACKGROUND. WHILE ALCOHOL USE DISORDER (AUD) IS A HIGHLY HERITABLE CONDITION, THE BASIS OF AUD IN FAMILIES WITH A HISTORY OF ALCOHOLISM IS DIFFICULT TO EXPLAIN BY GENETIC VARIATION ALONE. EMERGING EVIDENCE SUGGESTS THAT PARENTAL EXPERIENCE PRIOR TO CONCEPTION CAN AFFECT INHERITANCE OF COMPLEX BEHAVIORS IN OFFSPRING VIA NON-GENOMIC (EPIGENETIC) MECHANISMS. FOR INSTANCE, MALE C57BL/6J (B6) MICE EXPOSED TO CHRONIC INTERMITTENT VAPOR ETHANOL (CIE) PRIOR TO MATING WITH STRAIN 129S1/SVIMJ ETHANOL-NAIVE FEMALES PRODUCE MALE OFFSPRING WITH REDUCED ETHANOL-DRINKING PREFERENCE, INCREASED ETHANOL SENSITIVITY, AND INCREASED BRAIN-DERIVED NEUROTROPHIC FACTOR (BDNF) EXPRESSION IN THE VENTRAL TEGMENTAL AREA (VTA). IN THE PRESENT STUDY, WE TESTED THE HYPOTHESIS THAT THESE INTERGENERATIONAL EFFECTS OF PATERNAL CIE ARE REPRODUCIBLE IN MALE OFFSPRING ON AN INBRED B6 BACKGROUND. TO THIS END, B6 MALES WERE EXPOSED TO 6 WEEKS OF CIE (OR ROOM AIR AS A CONTROL) BEFORE MATING WITH ETHANOL-NAIVE B6 FEMALES TO PRODUCE ETHANOL (E)-SIRED AND CONTROL (C)-SIRED MALE AND FEMALE OFFSPRING. WE OBSERVED A SEX-SPECIFIC EFFECT, AS E-SIRED MALES EXHIBITED DECREASED TWO-BOTTLE FREE-CHOICE ETHANOL-DRINKING PREFERENCE, INCREASED SENSITIVITY TO THE ANXIOLYTIC EFFECTS OF ETHANOL, AND INCREASED VTA BDNF EXPRESSION; NO DIFFERENCES WERE OBSERVED IN FEMALE OFFSPRING. THESE FINDINGS CONFIRM AND EXTEND OUR PREVIOUS RESULTS BY DEMONSTRATING THAT THE EFFECTS OF PATERNAL PRECONCEPTION ETHANOL ARE REPRODUCIBLE USING GENETICALLY IDENTICAL, INBRED B6 ANIMALS. 2017 4 4944 33 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 5 1768 52 EARLY-LIFE LEAD EXPOSURE RESULTS IN DOSE- AND SEX-SPECIFIC EFFECTS ON WEIGHT AND EPIGENETIC GENE REGULATION IN WEANLING MICE. AIMS: EPIDEMIOLOGICAL AND ANIMAL DATA SUGGEST THAT THE DEVELOPMENT OF ADULT CHRONIC CONDITIONS IS INFLUENCED BY EARLY-LIFE EXPOSURE-INDUCED CHANGES TO THE EPIGENOME. THIS STUDY INVESTIGATES THE EFFECTS OF PERINATAL LEAD (PB) EXPOSURE ON DNA METHYLATION AND BODYWEIGHT IN WEANLING MICE. MATERIALS & METHODS: VIABLE YELLOW AGOUTI (A(VY)) MOUSE DAMS WERE EXPOSED TO 0, 2.1, 16 AND 32 PPM PB ACETATE BEFORE CONCEPTION THROUGH WEANING. EPIGENETIC EFFECTS WERE EVALUATED BY SCORING COAT COLOR OF A(VY)/A OFFSPRING AND QUANTITATIVE BISULFITE SEQUENCING OF TWO RETROTRANSPOSON-DRIVEN (A(VY) AND CDK5 ACTIVATOR-BINDING PROTEIN INTRACISTERNAL A PARTICLE ELEMENT) AND TWO IMPRINTED (IGF2 AND IGF2R) LOCI IN TAIL DNA. RESULTS: MATERNAL BLOOD PB LEVELS WERE BELOW THE LIMIT OF DETECTION IN CONTROLS, AND 4.1, 25.1 AND 32.1 MICROG/DL FOR EACH DOSE, RESPECTIVELY. PB EXPOSURE WAS ASSOCIATED WITH A TREND OF INCREASED WEAN BODYWEIGHT IN MALES (P = 0.03) AND ALTERED COAT COLOR IN A(VY)/A OFFSPRING. DNA METHYLATION AT A(VY) AND THE CDK5 ACTIVATOR-BINDING PROTEIN INTRACISTERNAL A-PARTICLE ELEMENT WAS SIGNIFICANTLY DIFFERENT FROM CONTROLS FOLLOWING A CUBIC TREND (P = 0.04; P = 0.01), WITH MALE-SPECIFIC EFFECTS AT THE A(VY) LOCUS. IMPRINTED GENES DID NOT SHIFT IN METHYLATION ACROSS EXPOSURES. CONCLUSION: DOSE- AND SEX-SPECIFIC RESPONSES IN BODYWEIGHT AND DNA METHYLATION INDICATE THAT PB ACTS ON THE EPIGENOME IN A LOCUS-SPECIFIC FASHION, DEPENDENT ON THE GENOMIC FEATURE HOSTING THE CPG SITE OF INTEREST, AND THAT SEX IS A FACTOR IN EPIGENETIC RESPONSE. 2013 6 4932 33 PATERNAL ALCOHOL EXPOSURES PROGRAM INTERGENERATIONAL HORMETIC EFFECTS ON OFFSPRING FETOPLACENTAL GROWTH. HORMESIS REFERS TO GRADED ADAPTIVE RESPONSES TO HARMFUL ENVIRONMENTAL STIMULI WHERE LOW-LEVEL TOXICANT EXPOSURES STIMULATE TISSUE GROWTH AND RESPONSIVENESS WHILE, IN CONTRAST, HIGHER-LEVEL EXPOSURES INDUCE TOXICITY. ALTHOUGH THE INTERGENERATIONAL INHERITANCE OF PROGRAMMED HORMETIC GROWTH RESPONSES IS DESCRIBED IN PLANTS AND INSECTS, RESEARCHERS HAVE YET TO OBSERVE THIS PHENOMENON IN MAMMALS. USING A PHYSIOLOGICALLY RELEVANT MOUSE MODEL, WE DEMONSTRATE THAT CHRONIC PRECONCEPTION PATERNAL ALCOHOL EXPOSURES PROGRAM NONLINEAR, DOSE-DEPENDENT CHANGES IN OFFSPRING FETOPLACENTAL GROWTH. OUR STUDIES IDENTIFY AN INVERSE J-SHAPED CURVE WITH A THRESHOLD OF 2.4 G/KG PER DAY; BELOW THIS THRESHOLD, PATERNAL ETHANOL EXPOSURES INDUCE PROGRAMMED INCREASES IN PLACENTAL GROWTH, WHILE DOSES EXCEEDING THIS POINT YIELD COMPARATIVE DECREASES IN PLACENTAL GROWTH. IN MALE OFFSPRING, HIGHER PATERNAL EXPOSURES INDUCE DOSE-DEPENDENT INCREASES IN THE PLACENTAL LABYRINTH LAYER BUT DO NOT IMPACT FETAL GROWTH. IN CONTRAST, THE PLACENTAL HYPERTROPHY INDUCED BY LOW-LEVEL PATERNAL ETHANOL EXPOSURES ASSOCIATE WITH INCREASED OFFSPRING CROWN-RUMP LENGTH, PARTICULARLY IN MALE OFFSPRING. FINALLY, ALTERATIONS IN PLACENTAL PHYSIOLOGY CORRELATE WITH DISRUPTIONS IN BOTH MITOCHONDRIAL-ENCODED AND IMPRINTED GENE EXPRESSION. UNDERSTANDING THE INFLUENCE OF ETHANOL ON THE PATERNALLY-INHERITED EPIGENETIC PROGRAM AND DOWNSTREAM HORMETIC RESPONSES IN OFFSPRING GROWTH MAY HELP EXPLAIN THE ENORMOUS VARIATION OBSERVED IN FETAL ALCOHOL SPECTRUM DISORDER (FASD) PHENOTYPES AND INCIDENCE. 2022 7 4923 29 PARENTAL DIURON EXPOSURE CAUSES LOWER HATCHABILITY AND ABNORMAL OVARIAN DEVELOPMENT IN OFFSPRING OF MEDAKA (ORYZIAS MELASTIGMA). DIURON IS ONE OF THE MOST WIDELY USED HERBICIDES WORLDWIDE. IT HAS BEEN WIDELY DETECTED IN VARIOUS AQUATIC ENVIRONMENTS, ESPECIALLY IN MARINE ECOSYSTEMS. ALTHOUGH DIRECT EFFECTS OF DIURON EXPOSURE ON VARIOUS ORGANISMS HAVE BEEN REPORTED, LITTLE IS KNOWN ABOUT ITS EFFECTS ON MARINE FISHES INCLUDING MULTIGENERATIONAL EFFECTS. HEREIN, THE FILIAL GENERATION (F1) OF DIURON-EXPOSED MARINE MEDAKA (ORYZIAS MELASTIGMA) (F0) WAS RAISED IN CLEAN SEAWATER FROM FERTILIZED EGGS TO ADULTHOOD AND USED AS A MARINE FISH MODEL TO STUDY THE POTENTIAL MULTIGENERATIONAL EFFECTS OF DIURON. WE FOUND THAT THE SUCCESSFUL HATCHING OF F1 LARVAE WAS SIGNIFICANTLY REDUCED AND THAT OVARIAN DEVELOPMENT IN F1 FEMALES WAS RETARDED. A SIGNIFICANT INCREASE IN THE PERCENTAGE OF PREVITELLOGENIC OOCYTES, ALONG WITH A VISUAL DECREASE IN THE PERCENTAGE OF VITELLOGENIC AND MATURE OOCYTES IN THE F1 OVARY, WERE OBSERVED. THE HORMONE LEVELS OF THE HYPOTHALAMUS-PITUITARY-GONAD-LIVER AXIS AND VITELLOGENIN-RELATED TRANSCRIPTION WERE DOWNREGULATED. IN ADDITION, THE MRNA LEVELS OF DNA METHYLTRANSFERASE IN THE BRAIN, OVARY AND LIVER OF F1 ADULT FISH EXHIBITED SIGNIFICANT UPREGULATION, SUGGESTING THAT THE PROBABLE UNDERLYING MULTIGENERATIONAL MECHANISM MIGHT BE ASSOCIATED WITH EPIGENETIC MODIFICATIONS. TAKEN TOGETHER, THESE RESULTS DEMONSTRATED THAT CHRONIC ENVIRONMENTAL DIURON EXPOSURE IN F0 MARINE MEDAKA CAN INHIBIT F1 OVARY DEVELOPMENT AND SUGGESTED THAT DIURON MAY AFFECT MARINE FISH THRIVING IN THE OCEAN. 2022 8 6166 26 THE GLUTATHIONE SYSTEM: A NEW DRUG TARGET IN NEUROIMMUNE DISORDERS. GLUTATHIONE (GSH) HAS A CRUCIAL ROLE IN CELLULAR SIGNALING AND ANTIOXIDANT DEFENSES EITHER BY REACTING DIRECTLY WITH REACTIVE OXYGEN OR NITROGEN SPECIES OR BY ACTING AS AN ESSENTIAL COFACTOR FOR GSH S-TRANSFERASES AND GLUTATHIONE PEROXIDASES. GSH ACTING IN CONCERT WITH ITS DEPENDENT ENZYMES, KNOWN AS THE GLUTATHIONE SYSTEM, IS RESPONSIBLE FOR THE DETOXIFICATION OF REACTIVE OXYGEN AND NITROGEN SPECIES (ROS/RNS) AND ELECTROPHILES PRODUCED BY XENOBIOTICS. ADEQUATE LEVELS OF GSH ARE ESSENTIAL FOR THE OPTIMAL FUNCTIONING OF THE IMMUNE SYSTEM IN GENERAL AND T CELL ACTIVATION AND DIFFERENTIATION IN PARTICULAR. GSH IS A UBIQUITOUS REGULATOR OF THE CELL CYCLE PER SE. GSH ALSO HAS CRUCIAL FUNCTIONS IN THE BRAIN AS AN ANTIOXIDANT, NEUROMODULATOR, NEUROTRANSMITTER, AND ENABLER OF NEURON SURVIVAL. DEPLETION OF GSH LEADS TO EXACERBATION OF DAMAGE BY OXIDATIVE AND NITROSATIVE STRESS; HYPERNITROSYLATION; INCREASED LEVELS OF PROINFLAMMATORY MEDIATORS AND INFLAMMATORY POTENTIAL; DYSFUNCTIONS OF INTRACELLULAR SIGNALING NETWORKS, E.G., P53, NUCLEAR FACTOR-KAPPAB, AND JANUS KINASES; DECREASED CELL PROLIFERATION AND DNA SYNTHESIS; INACTIVATION OF COMPLEX I OF THE ELECTRON TRANSPORT CHAIN; ACTIVATION OF CYTOCHROME C AND THE APOPTOTIC MACHINERY; BLOCKADE OF THE METHIONINE CYCLE; AND COMPROMISED EPIGENETIC REGULATION OF GENE EXPRESSION. AS SUCH, GSH DEPLETION HAS MARKED CONSEQUENCES FOR THE HOMEOSTATIC CONTROL OF THE IMMUNE SYSTEM, OXIDATIVE AND NITROSATIVE STRESS (O&NS) PATHWAYS, REGULATION OF ENERGY PRODUCTION, AND MITOCHONDRIAL SURVIVAL AS WELL. GSH DEPLETION AND CONCOMITANT INCREASE IN O&NS AND MITOCHONDRIAL DYSFUNCTIONS PLAY A ROLE IN THE PATHOPHYSIOLOGY OF DIVERSE NEUROIMMUNE DISORDERS, INCLUDING DEPRESSION, MYALGIC ENCEPHALOMYELITIS/CHRONIC FATIGUE SYNDROME AND PARKINSON'S DISEASE, SUGGESTING THAT DEPLETED GSH IS AN INTEGRAL PART OF THESE DISEASES. THERAPEUTICAL INTERVENTIONS THAT AIM TO INCREASE GSH CONCENTRATIONS IN VIVO INCLUDE N-ACETYL CYSTEINE; NRF-2 ACTIVATION VIA HYPERBARIC OXYGEN THERAPY; DIMETHYL FUMARATE; PHYTOCHEMICALS, INCLUDING CURCUMIN, RESVERATROL, AND CINNAMON; AND FOLATE SUPPLEMENTATION. 2014 9 4949 32 PATERNAL TRANSMISSION OF STRESS-INDUCED PATHOLOGIES. BACKGROUND: THERE HAS BEEN RECENT INTEREST IN THE POSSIBILITY THAT EPIGENETIC MECHANISMS MIGHT CONTRIBUTE TO THE TRANSGENERATIONAL TRANSMISSION OF STRESS-INDUCED VULNERABILITY. HERE, WE FOCUSED ON POSSIBLE PATERNAL TRANSMISSION WITH THE SOCIAL DEFEAT STRESS PARADIGM. METHODS: ADULT MALE MICE EXPOSED TO CHRONIC SOCIAL DEFEAT STRESS OR CONTROL NONDEFEATED MICE WERE BRED WITH NORMAL FEMALE MICE, AND THEIR OFFSPRING WERE ASSESSED BEHAVIORALLY FOR DEPRESSIVE- AND ANXIETY-LIKE MEASURES. PLASMA LEVELS OF CORTICOSTERONE AND VASCULAR ENDOTHELIAL GROWTH FACTOR WERE ALSO ASSAYED. TO DIRECTLY ASSESS THE ROLE OF EPIGENETIC MECHANISMS, WE USED IN VITRO FERTILIZATION (IVF); BEHAVIORAL ASSESSMENTS WERE CONDUCTED ON OFFSPRING OF MICE FROM IVF-CONTROL AND IVF-DEFEATED FATHERS. RESULTS: WE SHOW THAT BOTH MALE AND FEMALE OFFSPRING FROM DEFEATED FATHERS EXHIBIT INCREASED MEASURES OF SEVERAL DEPRESSION- AND ANXIETY-LIKE BEHAVIORS. THE MALE OFFSPRING OF DEFEATED FATHERS ALSO DISPLAY INCREASED BASELINE PLASMA LEVELS OF CORTICOSTERONE AND DECREASED LEVELS OF VASCULAR ENDOTHELIAL GROWTH FACTOR. HOWEVER, MOST OF THESE BEHAVIORAL CHANGES WERE NOT OBSERVED WHEN OFFSPRING WERE GENERATED THROUGH IVF. CONCLUSIONS: THESE RESULTS SUGGEST THAT, ALTHOUGH BEHAVIORAL ADAPTATIONS THAT OCCUR AFTER CHRONIC SOCIAL DEFEAT STRESS CAN BE TRANSMITTED FROM THE FATHER TO HIS MALE AND FEMALE F1 PROGENY, ONLY VERY SUBTLE CHANGES MIGHT BE TRANSMITTED EPIGENETICALLY UNDER THE CONDITIONS TESTED. 2011 10 521 52 ASSOCIATIONS BETWEEN MATERNAL PSYCHOSOCIAL STRESS, DNA METHYLATION, AND NEWBORN BIRTH WEIGHT IDENTIFIED BY INVESTIGATING METHYLATION AT INDIVIDUAL, REGIONAL, AND GENOME LEVELS. STRESS IS KNOWN TO AFFECT HEALTH THROUGHOUT LIFE AND INTO FUTURE GENERATIONS, BUT THE UNDERLYING MOLECULAR MECHANISMS ARE UNKNOWN. WE TESTED THE HYPOTHESIS THAT MATERNAL PSYCHOSOCIAL STRESS INFLUENCES DNA METHYLATION (DNAM), WHICH IN TURN IMPACTS NEWBORN HEALTH OUTCOMES. SPECIFICALLY, WE ANALYZED DNAM AT INDIVIDUAL, REGIONAL, AND GENOME-WIDE LEVELS TO TEST FOR ASSOCIATIONS WITH MATERNAL STRESS AND NEWBORN BIRTH WEIGHT. MATERNAL VENOUS BLOOD AND NEWBORN CORD BLOOD (N = 24 AND 22, RESPECTIVELY) WERE ASSAYED FOR METHYLATION AT APPROXIMATELY 450,000 CPG SITES. METHYLATION WAS ANALYZED BY EXAMINING CPG SITES INDIVIDUALLY IN AN EPIGENOME-WIDE ASSOCIATION STUDY (EWAS), AS REGIONAL GROUPS USING VARIABLY METHYLATED REGION (VMR) ANALYSIS IN MATERNAL BLOOD ONLY, AND THROUGH THE EPIGENOME-WIDE MEASURES USING GENOME-WIDE MEAN METHYLATION (GMM), HORVATH'S EPIGENETIC CLOCK, AND MITOTIC AGE. THESE METHYLATION MEASURES WERE TESTED FOR ASSOCIATION WITH THREE MEASURES OF MATERNAL STRESS (MATERNAL WAR TRAUMA, CHRONIC STRESS, AND EXPERIENCE OF SEXUAL VIOLENCE) AND ONE HEALTH OUTCOME (NEWBORN BIRTH WEIGHT). WE OBSERVED THAT MATERNAL EXPERIENCES OF WAR TRAUMA, CHRONIC STRESS, AND SEXUAL ASSAULT WERE EACH ASSOCIATED WITH DECREASED NEWBORN BIRTH WEIGHT (P < 1.95 X 10(-7) IN ALL CASES). TESTING INDIVIDUAL CPG SITES USING EWAS, WE OBSERVED NO ASSOCIATIONS BETWEEN DNAM AND ANY MEASURE OF MATERNAL STRESS OR NEWBORN BIRTH WEIGHT IN EITHER MATERNAL OR CORD BLOOD, AFTER BONFERRONI MULTIPLE TESTING CORRECTION. HOWEVER, THE TOP-RANKED CPG SITE IN MATERNAL BLOOD THAT ASSOCIATED WITH MATERNAL CHRONIC STRESS AND SEXUAL VIOLENCE BEFORE MULTIPLE TESTING CORRECTION IS LOCATED NEAR THE SPON1 GENE. TESTING AT A REGIONAL LEVEL, WE FOUND INCREASED METHYLATION OF A VMR IN MATERNAL BLOOD NEAR SPON1 THAT WAS ASSOCIATED WITH CHRONIC STRESS AND SEXUAL VIOLENCE AFTER BONFERRONI MULTIPLE TESTING CORRECTION (P = 1.95 X 10(-7) AND 8.3 X 10(-6), RESPECTIVELY). AT THE EPIGENOMIC LEVEL, CORD BLOOD GMM WAS ASSOCIATED WITH SIGNIFICANTLY HIGHER LEVELS OF WAR TRAUMA (P = 0.025) AND WAS SUGGESTIVELY ASSOCIATED WITH SEXUAL VIOLENCE (P = 0.053). THE OTHER TWO EPIGENOME-WIDE MEASURES WERE NOT ASSOCIATED WITH MATERNAL STRESS OR NEWBORN BIRTH WEIGHT IN EITHER TISSUE TYPE. DESPITE OUR SMALL SAMPLE SIZE, WE IDENTIFIED ASSOCIATIONS EVEN AFTER CONSERVATIVE MULTIPLE TESTING CORRECTION. SPECIFICALLY, WE FOUND ASSOCIATIONS BETWEEN DNAM AND THE THREE MEASURES OF MATERNAL STRESS ACROSS BOTH TISSUES; SPECIFICALLY, A VMR IN MATERNAL BLOOD AND GMM IN CORD BLOOD WERE BOTH ASSOCIATED WITH DIFFERENT MEASURES OF MATERNAL STRESS. THE ASSOCIATION OF CORD BLOOD GMM, BUT NOT MATERNAL BLOOD GMM, WITH MATERNAL STRESS MAY SUGGEST DIFFERENT RESPONSES TO STRESS IN MOTHER AND NEWBORN. IT IS NOTEWORTHY THAT WE FOUND ASSOCIATIONS ONLY WHEN CPG SITES WERE ANALYZED IN AGGREGATE, EITHER AS VMRS OR AS A BROAD SUMMARY MEASURE OF GMM. 2019 11 2173 31 EPIGENETIC MECHANISMS INVOLVED IN INTRAUTERINE GROWTH RESTRICTION AND ABERRANT KIDNEY DEVELOPMENT AND FUNCTION. INTRAUTERINE GROWTH RESTRICTION (IUGR) DUE TO UTEROPLACENTAL INSUFFICIENCY RESULTS IN A PLACENTA THAT IS UNABLE TO PROVIDE ADEQUATE NUTRIENTS AND OXYGEN TO THE FETUS. THESE GROWTH-RESTRICTED BABIES HAVE AN INCREASED RISK OF HYPERTENSION AND CHRONIC KIDNEY DISEASE LATER IN LIFE. IN RATS, BOTH MALE AND FEMALE GROWTH-RESTRICTED OFFSPRING HAVE NEPHRON DEFICITS BUT ONLY MALES DEVELOP KIDNEY DYSFUNCTION AND HIGH BLOOD PRESSURE. IN ADDITION, THERE IS TRANSGENERATIONAL TRANSMISSION OF NEPHRON DEFICITS AND HYPERTENSION RISK. THEREFORE, EPIGENETIC MECHANISMS MAY EXPLAIN THE SEX-SPECIFIC PROGRAMMING AND MULTIGENERATIONAL TRANSMISSION OF IUGR-RELATED PHENOTYPES. EXPRESSION OF DNA METHYLTRANSFERASES (DNMT1AND DNMT3A) AND IMPRINTED GENES (PEG3, SNRPN, KCNQ1, AND CDKN1C) WERE INVESTIGATED IN KIDNEY TISSUES OF SHAM AND IUGR RATS IN F1 (EMBRYONIC DAY 20 (E20) AND POSTNATAL DAY 1 (PN1)) AND F2 (6 AND 12 MONTHS OF AGE, PATERNAL AND MATERNAL LINES) GENERATIONS (N = 6-13/GROUP). IN COMPARISON TO SHAM OFFSPRING, F1 IUGR RATS HAD A 19% DECREASE IN DNMT3A EXPRESSION AT E20 (P < 0.05), WITH DECREASED CDKN1C (19%, P < 0.05) AND INCREASED KCNQ1 (1.6-FOLD, P < 0.01) AT PN1. THERE WAS A SEX-SPECIFIC DIFFERENCE IN CDKN1C AND SNRPN EXPRESSION AT E20, WITH 29% AND 34% HIGHER EXPRESSION IN IUGR MALES COMPARED TO FEMALES, RESPECTIVELY (P < 0.05). PEG3 SEX-SPECIFIC EXPRESSION WAS LOST IN THE F2 IUGR OFFSPRING, ONLY IN THE MATERNAL LINE. THESE FINDINGS SUGGEST THAT EPIGENETIC MECHANISMS MAY BE ALTERED IN RENAL EMBRYONIC AND/OR FETAL DEVELOPMENT IN GROWTH-RESTRICTED OFFSPRING, WHICH COULD ALTER KIDNEY FUNCTION, PREDISPOSING THESE OFFSPRING TO KIDNEY DISEASE LATER IN LIFE. 2021 12 5658 30 SEX-DIMORPHIC PATHWAYS IN THE ASSOCIATIONS BETWEEN MATERNAL TRAIT ANXIETY, INFANT BDNF METHYLATION, AND NEGATIVE EMOTIONALITY. MATERNAL ANTENATAL ANXIETY IS AN EMERGING RISK FACTOR FOR CHILD EMOTIONAL DEVELOPMENT. BOTH SEX AND EPIGENETIC MECHANISMS, SUCH AS DNA METHYLATION, MAY CONTRIBUTE TO THE EMBEDDING OF MATERNAL DISTRESS INTO EMOTIONAL OUTCOMES. HERE, WE INVESTIGATED SEX-DEPENDENT PATTERNS IN THE ASSOCIATION BETWEEN ANTENATAL MATERNAL TRAIT ANXIETY, METHYLATION OF THE BRAIN-DERIVED NEUROTROPHIC FACTOR GENE (BDNF DNAM), AND INFANT NEGATIVE EMOTIONALITY (NE). MOTHER-INFANT DYADS (N = 276) WERE RECRUITED AT DELIVERY. MATERNAL TRAIT ANXIETY, AS A MARKER OF ANTENATAL CHRONIC STRESS EXPOSURE, WAS ASSESSED SOON AFTER DELIVERY USING THE STAIT-TRAIT ANXIETY INVENTORY (STAI-Y). INFANTS' BDNF DNAM AT BIRTH WAS ASSESSED IN 11 CPG SITES IN BUCCAL CELLS WHEREAS INFANTS' NE WAS ASSESSED AT 3 (N = 225) AND 6 MONTHS (N = 189) USING THE INFANT BEHAVIOR QUESTIONNAIRE-REVISED (IBQ-R). HIERARCHICAL LINEAR ANALYSES SHOWED THAT HIGHER MATERNAL ANTENATAL ANXIETY WAS ASSOCIATED WITH GREATER 6-MONTH-OLDS' NE. FURTHERMORE, MATERNAL ANTENATAL ANXIETY PREDICTED GREATER INFANTS' BDNF DNAM IN FIVE CPG SITES IN MALES BUT NOT IN FEMALES. HIGHER METHYLATION AT THESE SITES WAS ASSOCIATED WITH GREATER 3-TO-6-MONTH NE INCREASE, INDEPENDENTLY OF INFANTS' SEX. MATERNAL ANTENATAL ANXIETY EMERGED AS A RISK FACTOR FOR INFANT'S NE. BDNF DNAM MIGHT MEDIATE THIS EFFECT IN MALES. THESE RESULTS MAY INFORM THE DEVELOPMENT OF STRATEGIES TO PROMOTE MOTHERS AND INFANTS' EMOTIONAL WELL-BEING. 2023 13 5200 37 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 14 1839 27 EFFECTS OF PRENATAL NICOTINE EXPOSURE ON HEPATIC GLUCOSE AND LIPID METABOLISM IN OFFSPRING RATS AND ITS HEREDITABILITY. PRENATAL NICOTINE EXPOSURE (PNE) COULD INDUCE AN INCREASED SUSCEPTIBILITY TO MULTIPLE CHRONIC DISEASES IN ADULT OFFSPRING, THAT MAINLY CAUSED BY INTRAUTERINE MATERNAL GLUCOCORTICOID (GC) OVER-EXPOSURE. WE INVESTIGATED THE CHANGES AND INHERITABILITY OF HEPATIC GLUCOSE AND LIPID METABOLISM CAUSED BY PNE, TO DECIPHER THE POSSIBLE INTRAUTERINE PROGRAMMING MECHANISM. PREGNANT WISTAR RATS WERE ADMINISTERED SUBCUTANEOUSLY WITH 2 MG/KG.D NICOTINE FROM GESTATIONAL DAY (GD) 9 APPROXIMATELY 20, AND SECOND-GENERATION (F2) WERE SET ACCORDING TO THE MATING BETWEEN CONTROL FEMALES AND PNE MALES. THE RESULTS SHOWED THAT SERUM PHENOTYPES AND HEPATIC ENZYMES OF GLUCOSE AND LIPID METABOLISM WERE LOWER IN F1 FETAL RATS OF PNE BUT HIGHER IN THE F1 ADULT RATS. MEANWHILE, THE ACTIVATED STATES OF HEPATIC GLUCOCORTICOID-ACTIVATION SYSTEM, INCLUDING TYPE 1 AND TYPE 2 11BETA-HYDROXYSTEROID DEHYDROGENASES (HSD11B1/2), NUCLEAR RECEPTOR SUBFAMILY 3, GROUP C, MEMBER 1 (NR3C1) AND CCAAT ENHANCER BINDING PROTEIN ALPHA (CEBPA), WERE POSITIVELY CORRELATED WITH SERUM CORTICOSTERONE LEVELS BUT NEGATIVELY CORRELATED WITH THE HISTONE ACETYLATION (H3K27AC) AND EXPRESSION LEVELS OF INSULIN-LIKE GROWTH FACTOR 1 (IGF1) BEFORE AND AFTER BIRTH. FURTHERMORE, SERUM PHENOTYPES AND HEPATIC ENZYMES OF GLUCOSE AND LIPID METABOLISM WERE LOWER IN BOTH F2 FETAL AND ADULT RATS OF PNE, WHICH WERE CONSISTENT WITH THE HEPATIC CHANGES OF GC-IGF1 AXIS AND THE GLUCOCORTICOID-ACTIVATION SYSTEM. IN CONCLUSION, PNE COULD LEAD TO INHERITABLE CHANGES OF HEPATIC GLUCOSE AND LIPID METABOLISM, WHICH ARE RELATED TO THE INTRAUTERINE PROGRAMMING OF GC-IGF1 AXIS INDUCED BY THE GLUCOCORTICOID-ACTIVATION SYSTEM. 2020 15 3815 38 INTRAUTERINE PROGRAMMING MECHANISM FOR HYPERCHOLESTEROLEMIA IN PRENATAL CAFFEINE-EXPOSED FEMALE ADULT RAT OFFSPRING. CLINICAL AND ANIMAL STUDIES HAVE INDICATED THAT HYPERCHOLESTEROLEMIA AND ITS ASSOCIATED DISEASES HAVE INTRAUTERINE DEVELOPMENTAL ORIGINS. OUR PREVIOUS STUDIES SHOWED THAT PRENATAL CAFFEINE EXPOSURE (PCE) LED TO FETAL OVEREXPOSURE TO MATERNAL GLUCOCORTICOIDS (GCS) AND INCREASED SERUM TOTAL CHOLESTEROL LEVELS IN ADULT RAT OFFSPRING. THIS STUDY FURTHER CONFIRMS THE INTRAUTERINE PROGRAMMING OF PCE-INDUCED HYPERCHOLESTEROLEMIA IN FEMALE ADULT RAT OFFSPRING. PREGNANT WISTAR RATS WERE INTRAGASTRICALLY ADMINISTERED CAFFEINE (30, 60, AND 120 MG/KG/D) FROM GESTATIONAL DAY (GD)9 TO 20. FEMALE RAT OFFSPRING WERE EUTHANIZED AT GD20 AND POSTNATAL WK 12; SEVERAL ADULT RAT OFFSPRING WERE ADDITIONALLY SUBJECTED TO ICE-WATER SWIMMING STIMULATION TO INDUCE CHRONIC STRESS PRIOR TO DEATH. THE EFFECTS OF GCS ON CHOLESTEROL METABOLISM AND EPIGENETIC REGULATION WERE VERIFIED USING THE L02 CELL LINE. THE RESULTS SHOWED THAT PCE INDUCED HYPERCHOLESTEROLEMIA IN ADULT OFFSPRING, WHICH MANIFESTED AS SIGNIFICANTLY HIGHER LEVELS OF SERUM TOTAL CHOLESTEROL AND LDL CHOLESTEROL (LDL-C) AS WELL AS HIGHER RATIOS OF LDL-C/HDL CHOLESTEROL. WE FURTHER FOUND THAT THE CHOLESTEROL LEVELS WERE INCREASED IN FETAL LIVERS BUT WERE DECREASED IN FETAL BLOOD, ACCOMPANIED BY INCREASED MATERNAL BLOOD CHOLESTEROL LEVELS AND REDUCED PLACENTAL CHOLESTEROL TRANSPORT. FURTHERMORE, ANALYSIS OF PCE OFFSPRING IN THE UTERUS AND IN A POSTNATAL BASAL/CHRONIC STRESS STATE AND THE RESULTS OF IN VITRO EXPERIMENTS SHOWED THAT HEPATIC CHOLESTEROL METABOLISM UNDERWENT GC-DEPENDENT CHANGES AND WAS ASSOCIATED WITH CHOLESTEROL SYNTHASE VIA ABNORMALITIES IN 3-HYDROXY-3-METHYLGLUTARYL-COA REDUCTASE (HMGCR) HISTONE ACETYLATION. WE CONCLUDED THAT, TO COMPENSATE FOR INTRAUTERINE PLACENTALLY DERIVED DECREASES IN FETAL BLOOD CHOLESTEROL LEVELS, HIGH INTRAUTERINE GC LEVELS ACTIVATED FETAL HEPATIC CCAAT ENHANCER BINDING PROTEIN ALPHA SIGNALING AND DOWN-REGULATED SIRTUIN1 EXPRESSION, WHICH MEDIATED THE HIGH LEVELS OF HISTONE ACETYLATION ( VIA H3K9AC AND H3K14AC) AND EXPRESSION OF HMGCR. THIS GC-DEPENDENT CHOLESTEROL METABOLISM PROGRAMMING EFFECT WAS SUSTAINED THROUGH ADULTHOOD, LEADING TO THE OCCURRENCE OF HYPERCHOLESTEROLEMIA.-XU, D., LUO, H. W., HU, W., HU, S. W., YUAN, C., WANG, G. H., ZHANG, L., YU, H., MAGDALOU, J., CHEN, L. B., WANG, H. INTRAUTERINE PROGRAMMING MECHANISM FOR HYPERCHOLESTEROLEMIA IN PRENATAL CAFFEINE-EXPOSED FEMALE ADULT RAT OFFSPRING. 2018 16 1761 34 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 17 3119 35 GESTATIONAL EXPOSURE TO PARTICULATE AIR POLLUTION EXACERBATES THE GROWTH PHENOTYPES INDUCED BY PRECONCEPTION PATERNAL ALCOHOL USE: A MULTIPLEX MODEL OF EXPOSURE. IT IS NOW CLEAR THAT PARENTAL HISTORIES OF DRUG USE, TOXICANT EXPOSURE, AND SOCIAL STRESS ALL HAVE A SIGNIFICANT INFLUENCE ON THE HEALTH AND DEVELOPMENT OF THE NEXT GENERATION. HOWEVER, THE ABILITY OF EPIGENETIC PARENTAL LIFE MEMORIES TO INTERACT WITH SUBSEQUENT GESTATIONAL EXPOSURES AND CUMULATIVELY MODIFY THE DEVELOPMENTAL TRAJECTORY OF THE OFFSPRING REMAINS AN UNEXPLORED PERSPECTIVE IN TOXICOLOGY. STUDIES FROM OUR LABORATORY HAVE IDENTIFIED MALE-SPECIFIC POSTNATAL GROWTH RESTRICTION IN A MOUSE MODEL OF CHRONIC, PRECONCEPTION PATERNAL ALCOHOL EXPOSURE. THE GOAL OF THE CURRENT STUDY WAS TO DETERMINE IF PATERNAL ALCOHOL USE, BEFORE CONCEPTION, COULD MODIFY THE SUSCEPTIBILITY OF THE OFFSPRING TO A COMPLETELY SEPARATE EXPOSURE ENCOUNTERED BY THE MOTHER DURING PREGNANCY. IN INDEPENDENT EXPERIMENTS, WE PREVIOUSLY IDENTIFIED ALTERED DEVELOPMENTAL PROGRAMMING AND INCREASED MARKERS OF SEVERE ASTHMA INDUCED BY GESTATIONAL EXPOSURE TO PARTICULATE AIR POLLUTION. IN THIS STUDY, MALE MICE WERE EXPOSED TO EITHER THE CONTROL OR ALCOHOL PRECONCEPTION TREATMENTS, THEN MATED TO NAIVE FEMALES, WHICH WE SUBSEQUENTLY EXPOSED TO AN ULTRAFINE MIXTURE OF PARTICULATE MATTER VIA INHALATION. INDIVIDUALLY, NEITHER PRECONCEPTION PATERNAL DRINKING NOR GESTATIONAL EXPOSURES TO PARTICULATE AIR POLLUTION IMPACTED THE POSTNATAL GROWTH OF FEMALE OFFSPRING. HOWEVER, WHEN BOTH EXPOSURES WERE COMBINED, FEMALES DISPLAYED A 30% REDUCTION IN WEIGHT GAIN. UNEXPECTEDLY, THIS EXPOSURE PARADIGM RESULTED IN A DRAMATIC POSTNATAL INCREASE IN LITTER LOSS DUE TO MATERNAL CANNIBALISM, WHICH PREVENTED ADDITIONAL MEASURES OF OFFSPRING HEALTH. THESE PRELIMINARY STUDIES PROVIDE EVIDENCE OF A COMPLEX INTERPLAY BETWEEN PRECONCEPTION LIFE HISTORY AND INTRAUTERINE ENVIRONMENTAL FACTORS IN THE CONTROL OF POSTNATAL GROWTH. 2020 18 2101 38 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 19 715 26 CAFFEINE INTAKE EXERTS DUAL GENOME-WIDE EFFECTS ON HIPPOCAMPAL METABOLISM AND LEARNING-DEPENDENT TRANSCRIPTION. CAFFEINE IS THE MOST WIDELY CONSUMED PSYCHOACTIVE SUBSTANCE IN THE WORLD. STRIKINGLY, THE MOLECULAR PATHWAYS ENGAGED BY ITS REGULAR CONSUMPTION REMAIN UNCLEAR. WE HEREIN ADDRESSED THE MECHANISMS ASSOCIATED WITH HABITUAL (CHRONIC) CAFFEINE CONSUMPTION IN THE MOUSE HIPPOCAMPUS USING UNTARGETED ORTHOGONAL OMICS TECHNIQUES. OUR RESULTS REVEALED THAT CHRONIC CAFFEINE EXERTS CONCERTED PLEIOTROPIC EFFECTS IN THE HIPPOCAMPUS AT THE EPIGENOMIC, PROTEOMIC, AND METABOLOMIC LEVELS. CAFFEINE LOWERED METABOLISM-RELATED PROCESSES (E.G., AT THE LEVEL OF METABOLOMICS AND GENE EXPRESSION) IN BULK TISSUE, WHILE IT INDUCED NEURON-SPECIFIC EPIGENETIC CHANGES AT SYNAPTIC TRANSMISSION/PLASTICITY-RELATED GENES AND INCREASED EXPERIENCE-DRIVEN TRANSCRIPTIONAL ACTIVITY. ALTOGETHER, THESE FINDINGS SUGGEST THAT REGULAR CAFFEINE INTAKE IMPROVES THE SIGNAL-TO-NOISE RATIO DURING INFORMATION ENCODING, IN PART THROUGH FINE-TUNING OF METABOLIC GENES, WHILE BOOSTING THE SALIENCE OF INFORMATION PROCESSING DURING LEARNING IN NEURONAL CIRCUITS. 2022 20 418 41 ANCESTRAL EXPOSURE TO STRESS EPIGENETICALLY PROGRAMS PRETERM BIRTH RISK AND ADVERSE MATERNAL AND NEWBORN OUTCOMES. BACKGROUND: CHRONIC STRESS IS CONSIDERED TO BE ONE OF MANY CAUSES OF HUMAN PRETERM BIRTH (PTB), BUT NO DIRECT EVIDENCE HAS YET BEEN PROVIDED. HERE WE SHOW IN RATS THAT STRESS ACROSS GENERATIONS HAS DOWNSTREAM EFFECTS ON ENDOCRINE, METABOLIC AND BEHAVIOURAL MANIFESTATIONS OF PTB POSSIBLY VIA MICRORNA (MIRNA) REGULATION. METHODS: PREGNANT DAMS OF THE PARENTAL GENERATION WERE EXPOSED TO STRESS FROM GESTATIONAL DAYS 12 TO 18. THEIR PREGNANT DAUGHTERS (F1) AND GRAND-DAUGHTERS (F2) EITHER WERE STRESSED OR REMAINED AS NON-STRESSED CONTROLS. GESTATIONAL LENGTH, MATERNAL GESTATIONAL WEIGHT GAIN, BLOOD GLUCOSE AND PLASMA CORTICOSTERONE LEVELS, LITTER SIZE AND OFFSPRING WEIGHT GAIN FROM POSTNATAL DAYS 1 TO 30 WERE RECORDED IN EACH GENERATION, INCLUDING F3. MATERNAL BEHAVIOURS WERE ANALYSED FOR THE FIRST HOUR AFTER COMPLETED PARTURITION, AND OFFSPRING SENSORIMOTOR DEVELOPMENT WAS RECORDED ON POSTNATAL DAY (P) 7. F0 THROUGH F2 MATERNAL BRAIN FRONTAL CORTEX, UTERUS AND PLACENTA MIRNA AND GENE EXPRESSION PATTERNS WERE USED TO IDENTIFY STRESS-INDUCED EPIGENETIC REGULATORY PATHWAYS OF MATERNAL BEHAVIOUR AND PREGNANCY MAINTENANCE. RESULTS: PROGRESSIVELY UP TO THE F2 GENERATION, STRESS GRADUALLY REDUCED GESTATIONAL LENGTH, MATERNAL WEIGHT GAIN AND BEHAVIOURAL ACTIVITY, AND INCREASED BLOOD GLUCOSE LEVELS. REDUCED OFFSPRING GROWTH AND DELAYED BEHAVIOURAL DEVELOPMENT IN THE STRESS COHORT WAS RECOGNIZABLE AS EARLY AS P7, WITH THE GREATEST EFFECT IN THE F3 OFFSPRING OF TRANSGENERATIONALLY STRESSED MOTHERS. FURTHERMORE, STRESS ALTERED MIRNA EXPRESSION PATTERNS IN THE BRAIN AND UTERUS OF F2 MOTHERS, INCLUDING THE MIR-200 FAMILY, WHICH REGULATES PATHWAYS RELATED TO BRAIN PLASTICITY AND PARTURITION, RESPECTIVELY. MAIN MIR-200 FAMILY TARGET GENES IN THE UTERUS, STAT5B, ZEB1 AND ZEB2, WERE DOWNREGULATED BY MULTIGENERATIONAL STRESS IN THE F1 GENERATION. ZEB2 WAS ALSO REDUCED IN THE STRESSED F2 GENERATION, SUGGESTING A CAUSAL MECHANISM FOR DISTURBED PREGNANCY MAINTENANCE. ADDITIONALLY, STRESS INCREASED PLACENTAL MIR-181A, A MARKER OF HUMAN PTB. CONCLUSIONS: THE FINDINGS INDICATE THAT A FAMILY HISTORY OF STRESS MAY PROGRAM CENTRAL AND PERIPHERAL PATHWAYS REGULATING GESTATIONAL LENGTH AND MATERNAL AND NEWBORN HEALTH OUTCOMES IN THE MATERNAL LINEAGE. THIS NEW PARADIGM MAY MODEL THE ORIGIN OF MANY HUMAN PTB CAUSES. 2014