1 1767 126 EARLY-LIFE EXPOSURE TO ENDOCRINE DISRUPTING CHEMICALS AND LATER-LIFE HEALTH OUTCOMES: AN EPIGENETIC BRIDGE? A GROWING BODY OF EVIDENCE DEMONSTRATES THAT ADVERSE EVENTS EARLY IN DEVELOPMENT, AND PARTICULARLY DURING INTRAUTERINE LIFE, MAY PROGRAM RISKS FOR DISEASES IN ADULT LIFE. INCREASING EVIDENCE HAS BEEN ACCUMULATED INDICATING THE IMPORTANT ROLE OF EPIGENETIC REGULATION INCLUDING DNA METHYLATION, HISTONE MODIFICATIONS AND MIRNAS IN DEVELOPMENTAL PROGRAMMING. AMONG THE ENVIRONMENTAL FACTORS WHICH PLAY AN IMPORTANT ROLE IN PROGRAMMING OF CHRONIC PATHOLOGIES, THE ENDOCRINE-DISRUPTING CHEMICALS (EDCS) THAT HAVE ESTROGENIC, ANTI-ESTROGENIC, AND ANTI-ANDROGENIC ACTIVITY ARE OF SPECIFIC CONCERN BECAUSE THE DEVELOPING ORGANISM IS EXTREMELY SENSITIVE TO PERTURBATION BY SUBSTANCES WITH HORMONE-LIKE ACTIVITY. AMONG EDCS, THERE ARE MANY SUBSTANCES THAT ARE CONSTANTLY PRESENT IN THE MODERN HUMAN ENVIRONMENT OR ARE IN WIDESPREAD USE, INCLUDING DIOXIN AND DIOXIN-LIKE COMPOUNDS, PHTHALATES, AGRICULTURAL PESTICIDES, POLYCHLORINATED BIPHENYLS, INDUSTRIAL SOLVENTS, PHARMACEUTICALS, AND HEAVY METALS. APART FROM THEIR COMMON ENDOCRINE ACTIVE PROPERTIES, SEVERAL EDCS HAVE BEEN SHOWN TO DISRUPT DEVELOPMENTAL EPIGENOMIC PROGRAMMING. THE PURPOSE OF THIS REVIEW IS TO PROVIDE A SUMMARY OF RECENT RESEARCH FINDINGS WHICH INDICATE THAT EXPOSURE TO EDCS DURING IN-UTERO AND/OR NEONATAL DEVELOPMENT CAN CAUSE LONG-TERM HEALTH OUTCOMES VIA MECHANISMS OF EPIGENETIC MEMORY. 2014 2 996 35 CHRONIC STRESS, EPIGENETICS, AND ADIPOSE TISSUE METABOLISM IN THE OBESE STATE. IN OBESITY, ENDOCRINE AND METABOLIC PERTURBATIONS, INCLUDING THOSE INDUCED BY CHRONIC ACTIVATION OF THE HYPOTHALAMUS-PITUITARY-ADRENAL AXIS, ARE ASSOCIATED WITH THE ACCUMULATION OF ADIPOSE TISSUE AND INFLAMMATION. SUCH CHANGES ARE ATTRIBUTABLE TO A COMBINATION OF GENETIC AND EPIGENETIC FACTORS THAT ARE INFLUENCED BY THE ENVIRONMENT AND EXACERBATED BY CHRONIC ACTIVATION OF THE HYPOTHALAMUS-PITUITARY-ADRENAL AXIS. STRESS EXPOSURE AT DIFFERENT LIFE STAGES CAN ALTER ADIPOSE TISSUE METABOLISM DIRECTLY THROUGH EPIGENETIC MODIFICATION OR INDIRECTLY THROUGH THE MANIPULATION OF HYPOTHALAMIC APPETITE REGULATION, AND THEREBY CONTRIBUTE TO ENDOCRINE CHANGES THAT FURTHER DISRUPT WHOLE-BODY ENERGY BALANCE. THIS REVIEW SYNTHESIZES CURRENT KNOWLEDGE, WITH AN EMPHASIS ON HUMAN CLINICAL TRIALS, TO DESCRIBE METABOLIC CHANGES IN ADIPOSE TISSUE AND ASSOCIATED ENDOCRINE, GENETIC AND EPIGENETIC CHANGES IN THE OBESE STATE. IN PARTICULAR, WE DISCUSS EPIGENETIC CHANGES INDUCED BY STRESS EXPOSURE AND THEIR CONTRIBUTION TO APPETITE AND ADIPOCYTE DYSFUNCTION, WHICH COLLECTIVELY PROMOTE THE PATHOGENESIS OF OBESITY. SUCH KNOWLEDGE IS CRITICAL FOR PROVIDING FUTURE DIRECTIONS OF METABOLISM RESEARCH AND TARGETS FOR TREATING METABOLIC DISORDERS. 2020 3 5450 39 REPRODUCTIVE TOXICITY OF COMBINED EFFECTS OF ENDOCRINE DISRUPTORS ON HUMAN REPRODUCTION. CONFLUENCE OF ENVIRONMENTAL, GENETIC, AND LIFESTYLE VARIABLES IS RESPONSIBLE FOR DETERIORATION OF HUMAN FECUNDITY. ENDOCRINE DISRUPTORS OR ENDOCRINE DISRUPTING CHEMICALS (EDCS) MAY BE FOUND IN A VARIETY OF FOODS, WATER, AIR, BEVERAGES, AND TOBACCO SMOKE. IT HAS BEEN DEMONSTRATED IN EXPERIMENTAL INVESTIGATIONS THAT A WIDE RANGE OF ENDOCRINE DISRUPTING CHEMICALS HAVE NEGATIVE EFFECTS ON HUMAN REPRODUCTIVE FUNCTION. HOWEVER, EVIDENCE ON THE REPRODUCTIVE CONSEQUENCES OF HUMAN EXPOSURE TO ENDOCRINE DISRUPTING CHEMICALS IS SPARSE AND/OR CONFLICTING IN THE SCIENTIFIC LITERATURE. THE COMBINED TOXICOLOGICAL ASSESSMENT IS A PRACTICAL METHOD FOR ASSESSING THE HAZARDS OF COCKTAILS OF CHEMICALS, CO-EXISTING IN THE ENVIRONMENT. THE CURRENT REVIEW PROVIDES A COMPREHENSIVE OVERVIEW OF STUDIES EMPHASIZING THE COMBINED TOXICITY OF ENDOCRINE DISRUPTING CHEMICALS ON HUMAN REPRODUCTION. ENDOCRINE DISRUPTING CHEMICALS INTERACT WITH EACH OTHER TO DISRUPT THE DIFFERENT ENDOCRINE AXES, RESULTING IN SEVERE GONADAL DYSFUNCTIONS. TRANSGENERATIONAL EPIGENETIC EFFECTS HAVE ALSO BEEN INDUCED IN GERM CELLS, MOSTLY THROUGH DNA METHYLATION AND EPIMUTATIONS. SIMILARLY, AFTER ACUTE OR CHRONIC EXPOSURE TO ENDOCRINE DISRUPTING CHEMICALS COMBINATIONS, INCREASED OXIDATIVE STRESS (OS), ELEVATED ANTIOXIDANT ENZYMATIC ACTIVITY, DISRUPTED REPRODUCTIVE CYCLE, AND REDUCED STEROIDOGENESIS ARE OFTEN REPORTED CONSEQUENCES. THE ARTICLE ALSO DISCUSSES THE CONCENTRATION ADDITION (CA) AND INDEPENDENT ACTION (IA) PREDICTION MODELS, WHICH REVEAL THE IMPORTANCE OF VARIOUS SYNERGISTIC ACTIONS OF ENDOCRINE DISRUPTING CHEMICALS MIXTURES. MORE CRUCIALLY, THIS EVIDENCE-BASED STUDY ADDRESSES THE RESEARCH LIMITATIONS AND INFORMATION GAPS, AS WELL AS PARTICULARLY PRESENTS THE FUTURE RESEARCH VIEWS ON COMBINED ENDOCRINE DISRUPTING CHEMICALS TOXICITY ON HUMAN REPRODUCTION. 2023 4 375 18 AN ENERGETIC VIEW OF STRESS: FOCUS ON MITOCHONDRIA. ENERGY IS REQUIRED TO SUSTAIN LIFE AND ENABLE STRESS ADAPTATION. AT THE CELLULAR LEVEL, ENERGY IS LARGELY DERIVED FROM MITOCHONDRIA - UNIQUE MULTIFUNCTIONAL ORGANELLES WITH THEIR OWN GENOME. FOUR MAIN ELEMENTS CONNECT MITOCHONDRIA TO STRESS: (1) ENERGY IS REQUIRED AT THE MOLECULAR, (EPI)GENETIC, CELLULAR, ORGANELLAR, AND SYSTEMIC LEVELS TO SUSTAIN COMPONENTS OF STRESS RESPONSES; (2) GLUCOCORTICOIDS AND OTHER STEROID HORMONES ARE PRODUCED AND METABOLIZED BY MITOCHONDRIA; (3) RECIPROCALLY, MITOCHONDRIA RESPOND TO NEUROENDOCRINE AND METABOLIC STRESS MEDIATORS; AND (4) EXPERIMENTALLY MANIPULATING MITOCHONDRIAL FUNCTIONS ALTERS PHYSIOLOGICAL AND BEHAVIORAL RESPONSES TO PSYCHOLOGICAL STRESS. THUS, MITOCHONDRIA ARE ENDOCRINE ORGANELLES THAT PROVIDE BOTH THE ENERGY AND SIGNALS THAT ENABLE AND DIRECT STRESS ADAPTATION. NEURAL CIRCUITS REGULATING SOCIAL BEHAVIOR - AS WELL AS PSYCHOPATHOLOGICAL PROCESSES - ARE ALSO INFLUENCED BY MITOCHONDRIAL ENERGETICS. AN INTEGRATIVE VIEW OF STRESS AS AN ENERGY-DRIVEN PROCESS OPENS NEW OPPORTUNITIES TO STUDY MECHANISMS OF ADAPTATION AND REGULATION ACROSS THE LIFESPAN. 2018 5 754 35 CARDIOVASCULAR ADAPTATIONS TO PARTICLE INHALATION EXPOSURE: MOLECULAR MECHANISMS OF THE TOXICOLOGY. AMBIENT AIR, OCCUPATIONAL SETTINGS, AND THE USE AND DISTRIBUTION OF CONSUMER PRODUCTS ALL SERVE AS CONDUITS FOR TOXICANT EXPOSURE THROUGH INHALATION. WHILE THE PULMONARY SYSTEM REMAINS A PRIMARY TARGET FOLLOWING INHALATION EXPOSURE, CARDIOVASCULAR IMPLICATIONS ARE EXCEPTIONALLY CULPABLE FOR INCREASED MORBIDITY AND MORTALITY. THE EPIDEMIOLOGICAL EVIDENCE FOR CARDIOVASCULAR DYSFUNCTION RESULTING FROM ACUTE OR CHRONIC INHALATION EXPOSURE TO PARTICULATE MATTER HAS BEEN WELL DOCUMENTED, BUT THE MECHANISMS DRIVING THE RESULTING DISTURBANCES REMAIN ELUSIVE. IN THE CURRENT REVIEW, WE AIM TO SUMMARIZE THE CELLULAR AND MOLECULAR MECHANISMS THAT ARE DIRECTLY LINKED TO CARDIOVASCULAR HEALTH FOLLOWING EXPOSURE TO A VARIETY OF INHALED TOXICANTS. THE PURPOSE OF THIS REVIEW IS TO PROVIDE A COMPREHENSIVE OVERVIEW OF THE BIOCHEMICAL CHANGES IN THE CARDIOVASCULAR SYSTEM FOLLOWING PARTICLE INHALATION EXPOSURE AND TO HIGHLIGHT POTENTIAL BIOMARKERS THAT EXIST ACROSS MULTIPLE EXPOSURE PARADIGMS. WE ATTEMPT TO INTEGRATE THESE MOLECULAR SIGNATURES IN AN EFFORT TO PROVIDE DIRECTION FOR FUTURE INVESTIGATIONS. THIS REVIEW ALSO CHARACTERIZES HOW MOLECULAR RESPONSES ARE MODIFIED IN AT-RISK POPULATIONS, SPECIFICALLY THE IMPACT OF ENVIRONMENTAL EXPOSURE DURING CRITICAL WINDOWS OF DEVELOPMENT. MATERNAL EXPOSURE TO PARTICULATE MATTER DURING GESTATION CAN LEAD TO FETAL EPIGENETIC REPROGRAMMING, RESULTING IN LONG-TERM DEFICITS TO THE CARDIOVASCULAR SYSTEM. IN BOTH DIRECT AND INDIRECT (GESTATIONAL) EXPOSURES, CONNECTING THE BIOCHEMICAL MECHANISMS WITH FUNCTIONAL DEFICITS OUTLINES PATHWAYS THAT CAN BE TARGETED FOR FUTURE THERAPEUTIC INTERVENTION. ULTIMATELY, FUTURE INVESTIGATIONS INTEGRATING "OMICS"-BASED APPROACHES WILL BETTER ELUCIDATE THE MECHANISMS THAT ARE ALTERED BY XENOBIOTIC INHALATION EXPOSURE, IDENTIFY BIOMARKERS, AND GUIDE IN CLINICAL DECISION MAKING. 2020 6 6672 31 USE OF A MOUSE IN VITRO FERTILIZATION MODEL TO UNDERSTAND THE DEVELOPMENTAL ORIGINS OF HEALTH AND DISEASE HYPOTHESIS. THE DEVELOPMENTAL ORIGINS OF HEALTH AND DISEASE HYPOTHESIS HOLDS THAT ALTERATIONS TO HOMEOSTASIS DURING CRITICAL PERIODS OF DEVELOPMENT CAN PREDISPOSE INDIVIDUALS TO ADULT-ONSET CHRONIC DISEASES SUCH AS DIABETES AND METABOLIC SYNDROME. IT REMAINS CONTROVERSIAL WHETHER PREIMPLANTATION EMBRYO MANIPULATION, CLINICALLY USED TO TREAT PATIENTS WITH INFERTILITY, DISTURBS HOMEOSTASIS AND AFFECTS LONG-TERM GROWTH AND METABOLISM. TO ADDRESS THIS CONTROVERSY, WE HAVE ASSESSED THE EFFECTS OF IN VITRO FERTILIZATION (IVF) ON POSTNATAL PHYSIOLOGY IN MICE. WE DEMONSTRATE THAT IVF AND EMBRYO CULTURE, EVEN UNDER CONDITIONS CONSIDERED OPTIMAL FOR MOUSE EMBRYO CULTURE, ALTER POSTNATAL GROWTH TRAJECTORY, FAT ACCUMULATION, AND GLUCOSE METABOLISM IN ADULT MICE. UNBIASED METABOLIC PROFILING IN SERUM AND MICROARRAY ANALYSIS OF PANCREATIC ISLETS AND INSULIN SENSITIVE TISSUES (LIVER, SKELETAL MUSCLE, AND ADIPOSE TISSUE) REVEALED BROAD CHANGES IN METABOLIC HOMEOSTASIS, CHARACTERIZED BY SYSTEMIC OXIDATIVE STRESS AND MITOCHONDRIAL DYSFUNCTION. ADOPTING A CANDIDATE APPROACH, WE IDENTIFY THIOREDOXIN-INTERACTING PROTEIN (TXNIP), A KEY MOLECULE INVOLVED IN INTEGRATING CELLULAR NUTRITIONAL AND OXIDATIVE STATES WITH METABOLIC RESPONSE, AS A MARKER FOR PREIMPLANTATION STRESS AND DEMONSTRATE TISSUE-SPECIFIC EPIGENETIC AND TRANSCRIPTIONAL TXNIP MISREGULATION IN SELECTED ADULT TISSUES. IMPORTANTLY, DYSREGULATION OF TXNIP EXPRESSION IS ASSOCIATED WITH ENRICHMENT FOR H4 ACETYLATION AT THE TXNIP PROMOTER THAT PERSISTS FROM THE BLASTOCYST STAGE THROUGH ADULTHOOD IN ADIPOSE TISSUE. OUR DATA SUPPORT THE VULNERABILITY OF PREIMPLANTATION EMBRYOS TO ENVIRONMENTAL DISTURBANCE AND DEMONSTRATE THAT CONCEPTION BY IVF CAN REPROGRAM METABOLIC HOMEOSTASIS THROUGH METABOLIC, TRANSCRIPTIONAL, AND EPIGENETIC MECHANISMS WITH LASTING EFFECTS FOR ADULT GROWTH AND FITNESS. THIS STUDY HAS WIDE CLINICAL RELEVANCE AND UNDERSCORES THE IMPORTANCE OF CONTINUED FOLLOW-UP OF IVF-CONCEIVED OFFSPRING. 2014 7 4541 47 MULTISYSTEMIC ALTERATIONS IN HUMANS INDUCED BY BISPHENOL A AND PHTHALATES: EXPERIMENTAL, EPIDEMIOLOGICAL AND CLINICAL STUDIES REVEAL THE NEED TO CHANGE HEALTH POLICIES. A VAST AMOUNT OF EVIDENCE INDICATES THAT BISPHENOL A (BPA) AND PHTHALATES ARE WIDELY DISTRIBUTED IN THE ENVIRONMENT SINCE THESE COMPOUNDS ARE MASS-PRODUCED FOR THE MANUFACTURE OF PLASTICS AND PLASTICIZERS. THESE COMPOUNDS BELONG TO A LARGE GROUP OF SUBSTANCES TERMED ENDOCRINE-DISRUPTING CHEMICALS (EDC). IT IS WELL KNOWN THAT HUMANS AND LIVING ORGANISMS ARE UNAVOIDABLY AND UNINTENTIONALLY EXPOSED TO BPA AND PHTHALATES FROM FOOD PACKAGING MATERIALS AND MANY OTHER EVERYDAY PRODUCTS. BPA AND PHTHALATES EXERT THEIR EFFECT BY INTERFERING WITH HORMONE SYNTHESIS, BIOAVAILABILITY, AND ACTION, THEREBY ALTERING CELLULAR PROLIFERATION AND DIFFERENTIATION, TISSUE DEVELOPMENT, AND THE REGULATION OF SEVERAL PHYSIOLOGICAL PROCESSES. IN FACT, THESE EDC CAN ALTER FETAL PROGRAMMING AT AN EPIGENETIC LEVEL, WHICH CAN BE TRANSGENERATIONAL TRANSMITTED AND MAY BE INVOLVED IN THE DEVELOPMENT OF VARIOUS CHRONIC PATHOLOGIES LATER IN THE ADULTHOOD, INCLUDING METABOLIC, REPRODUCTIVE AND DEGENERATIVE DISEASES, AND CERTAIN TYPES OF CANCER. IN THIS REVIEW, WE DESCRIBE THE MOST RECENT PROPOSED MECHANISMS OF ACTION OF THESE EDC AND OFFER A COMPELLING SELECTION OF EXPERIMENTAL, EPIDEMIOLOGICAL AND CLINICAL STUDIES, WHICH SHOW EVIDENCE OF HOW EXPOSURE TO THESE POLLUTANTS AFFECTS OUR HEALTH DURING DEVELOPMENT, AND THEIR ASSOCIATION WITH A WIDE RANGE OF REPRODUCTIVE, METABOLIC AND NEUROLOGICAL DISEASES, AS WELL AS HORMONE-RELATED CANCERS. WE STRESS THE IMPORTANCE OF CONCERN IN THE GENERAL POPULATION AND THE URGENT NEED FOR THE MEDICAL HEALTH CARE SYSTEM TO CLOSELY MONITOR EDC LEVELS IN THE POPULATION DUE TO UNAVOIDABLE AND INVOLUNTARY EXPOSURE TO THESE POLLUTANTS AND THEIR IMPACT ON HUMAN HEALTH. 2021 8 4805 41 OBESITY AND METABOLIC COMORBIDITIES: ENVIRONMENTAL DISEASES? OBESITY AND METABOLIC COMORBIDITIES REPRESENT INCREASING HEALTH PROBLEMS. ENDOCRINE DISRUPTING COMPOUNDS (EDCS) ARE EXOGENOUS AGENTS THAT CHANGE ENDOCRINE FUNCTION AND CAUSE ADVERSE HEALTH EFFECTS. MOST EDCS ARE SYNTHETIC CHEMICALS; SOME ARE NATURAL FOOD COMPONENTS AS PHYTOESTROGENS. PEOPLE ARE EXPOSED TO COMPLEX MIXTURES OF CHEMICALS THROUGHOUT THEIR LIVES. EDCS IMPACT HORMONE-DEPENDENT METABOLIC SYSTEMS AND BRAIN FUNCTION. LABORATORY AND HUMAN STUDIES PROVIDE COMPELLING EVIDENCE THAT HUMAN CHEMICAL CONTAMINATION CAN PLAY A ROLE IN OBESITY EPIDEMIC. CHEMICAL EXPOSURES MAY INCREASE THE RISK OF OBESITY BY ALTERING THE DIFFERENTIATION OF ADIPOCYTES. EDCS CAN ALTER METHYLATION PATTERNS AND NORMAL EPIGENETIC PROGRAMMING IN CELLS. OXIDATIVE STRESS MAY BE INDUCED BY MANY OF THESE CHEMICALS, AND ACCUMULATING EVIDENCE INDICATES THAT IT PLAYS IMPORTANT ROLES IN THE ETIOLOGY OF CHRONIC DISEASES. THE INDIVIDUAL SENSITIVITY TO CHEMICALS IS VARIABLE, DEPENDING ON ENVIRONMENT AND ABILITY TO METABOLIZE HAZARDOUS CHEMICALS. A NUMBER OF GENES, ESPECIALLY THOSE REPRESENTING ANTIOXIDANT AND DETOXIFICATION PATHWAYS, HAVE POTENTIAL APPLICATION AS BIOMARKERS OF RISK ASSESSMENT. THE POTENTIAL HEALTH EFFECTS OF COMBINED EXPOSURES MAKE THE RISK ASSESSMENT PROCESS MORE COMPLEX COMPARED TO THE ASSESSMENT OF SINGLE CHEMICALS. TECHNIQUES AND METHODS NEED TO BE FURTHER DEVELOPED TO FILL DATA GAPS AND INCREASE THE KNOWLEDGE ON HARMFUL EXPOSURE COMBINATIONS. 2013 9 4383 50 MITOCHONDRIAL EPIGENETICS AND ENVIRONMENTAL HEALTH: MAKING A CASE FOR ENDOCRINE DISRUPTING CHEMICALS. RECENT STUDIES IMPLICATE MITOCHONDRIAL DYSFUNCTION IN THE DEVELOPMENT AND PROGRESSION OF NUMEROUS CHRONIC DISEASES, WHICH MAY BE PARTIALLY DUE TO MODIFICATIONS IN MITOCHONDRIAL DNA (MTDNA). THERE IS ALSO MOUNTING EVIDENCE THAT EPIGENETIC MODIFICATIONS TO MTDNA MAY BE AN ADDITIONAL LAYER OF REGULATION THAT CONTROLS MITOCHONDRIAL BIOGENESIS AND FUNCTION. SEVERAL ENVIRONMENTAL FACTORS (EG, SMOKING, AIR POLLUTION) HAVE BEEN ASSOCIATED WITH ALTERED MTDNA METHYLATION IN A HANDFUL OF MECHANISTIC STUDIES AND IN OBSERVATIONAL HUMAN STUDIES. HOWEVER, LITTLE IS UNDERSTOOD ABOUT OTHER ENVIRONMENTAL CONTAMINANTS THAT INDUCE MTDNA EPIGENETIC CHANGES. NUMEROUS ENVIRONMENTAL TOXICANTS ARE CLASSIFIED AS ENDOCRINE DISRUPTING CHEMICALS (EDCS). BEYOND THEIR ACTIONS ON HORMONAL PATHWAYS, EDC EXPOSURE IS ASSOCIATED WITH ELEVATED OXIDATIVE STRESS, WHICH MAY OCCUR THROUGH OR RESULT IN MITOCHONDRIAL DYSFUNCTION. ALTHOUGH ONLY A FEW STUDIES HAVE ASSESSED THE IMPACTS OF EDCS ON MTDNA METHYLATION, THE CURRENT REVIEW PROVIDES REASONS TO CONSIDER MTDNA EPIGENETIC DISRUPTION AS A MECHANISM OF ACTION OF EDCS AND REVIEWS POTENTIAL LIMITATIONS RELATED TO CURRENTLY AVAILABLE EVIDENCE. FIRST, THERE IS SUFFICIENT EVIDENCE THAT EDCS (INCLUDING BISPHENOLS AND PHTHALATES) DIRECTLY TARGET MITOCHONDRIAL FUNCTION, AND MORE DIRECT EVIDENCE IS NEEDED TO CONNECT THIS TO MTDNA METHYLATION. SECOND, THESE AND OTHER EDCS ARE POTENT MODULATORS OF NUCLEAR DNA EPIGENETICS, INCLUDING DNA METHYLATION AND HISTONE MODIFICATIONS. FINALLY, EDCS HAVE BEEN SHOWN TO DISRUPT SEVERAL MODULATORS OF MTDNA METHYLATION, INCLUDING DNA METHYLTRANSFERASES AND THE MITOCHONDRIAL TRANSCRIPTION FACTOR A/NUCLEAR RESPIRATORY FACTOR 1 PATHWAY. TAKEN TOGETHER, THESE STUDIES HIGHLIGHT THE NEED FOR FUTURE RESEARCH EVALUATING MTDNA EPIGENETIC DISRUPTION BY EDCS AND TO DETAIL SPECIFIC MECHANISMS RESPONSIBLE FOR SUCH DISRUPTIONS. 2020 10 4948 32 PATERNAL STRESS EXPOSURE ALTERS SPERM MICRORNA CONTENT AND REPROGRAMS OFFSPRING HPA STRESS AXIS REGULATION. NEUROPSYCHIATRIC DISEASE FREQUENTLY PRESENTS WITH AN UNDERLYING HYPOREACTIVITY OR HYPERREACTIVITY OF THE HPA STRESS AXIS, SUGGESTING AN EXCEPTIONAL VULNERABILITY OF THIS CIRCUITRY TO EXTERNAL PERTURBATIONS. PARENTAL LIFETIME EXPOSURES TO ENVIRONMENTAL CHALLENGES ARE ASSOCIATED WITH INCREASED OFFSPRING NEUROPSYCHIATRIC DISEASE RISK, AND LIKELY CONTRIBUTE TO STRESS DYSREGULATION. WHILE MATERNAL INFLUENCES HAVE BEEN EXTENSIVELY EXAMINED, MUCH LESS IS KNOWN REGARDING THE SPECIFIC ROLE OF PATERNAL FACTORS. TO INVESTIGATE THE POTENTIAL MECHANISMS BY WHICH PATERNAL STRESS MAY CONTRIBUTE TO OFFSPRING HYPOTHALAMIC-PITUITARY-ADRENAL (HPA) AXIS DYSREGULATION, WE EXPOSED MICE TO 6 WEEKS OF CHRONIC STRESS BEFORE BREEDING. AS EPIDEMIOLOGICAL STUDIES SUPPORT VARIATION IN PATERNAL GERM CELL SUSCEPTIBILITY TO REPROGRAMMING ACROSS THE LIFESPAN, MALE STRESS EXPOSURE OCCURRED EITHER THROUGHOUT PUBERTY OR IN ADULTHOOD. REMARKABLY, OFFSPRING OF SIRES FROM BOTH PATERNAL STRESS GROUPS DISPLAYED SIGNIFICANTLY REDUCED HPA STRESS AXIS RESPONSIVITY. GENE SET ENRICHMENT ANALYSES IN OFFSPRING STRESS REGULATING BRAIN REGIONS, THE PARAVENTRICULAR NUCLEUS (PVN) AND THE BED NUCLEUS OF STRIA TERMINALIS, REVEALED GLOBAL PATTERN CHANGES IN TRANSCRIPTION SUGGESTIVE OF EPIGENETIC REPROGRAMMING AND CONSISTENT WITH ALTERED OFFSPRING STRESS RESPONSIVITY, INCLUDING INCREASED EXPRESSION OF GLUCOCORTICOID-RESPONSIVE GENES IN THE PVN. IN EXAMINING POTENTIAL EPIGENETIC MECHANISMS OF GERM CELL TRANSMISSION, WE FOUND ROBUST CHANGES IN SPERM MICRORNA (MIR) CONTENT, WHERE NINE SPECIFIC MIRS WERE SIGNIFICANTLY INCREASED IN BOTH PATERNAL STRESS GROUPS. OVERALL, THESE RESULTS DEMONSTRATE THAT PATERNAL EXPERIENCE ACROSS THE LIFESPAN CAN INDUCE GERM CELL EPIGENETIC REPROGRAMMING AND IMPACT OFFSPRING HPA STRESS AXIS REGULATION, AND MAY THEREFORE OFFER NOVEL INSIGHT INTO FACTORS INFLUENCING NEUROPSYCHIATRIC DISEASE RISK. 2013 11 6384 45 THE ROLE OF POLYCARBONATE MONOMER BISPHENOL-A IN INSULIN RESISTANCE. BISPHENOL A (BPA) IS A SYNTHETIC UNIT OF POLYCARBONATE POLYMERS AND EPOXY RESINS, THE TYPES OF PLASTICS THAT COULD BE FOUND IN ESSENTIALLY EVERY HUMAN POPULATION AND INCORPORATED INTO ALMOST EVERY ASPECT OF THE MODERN HUMAN SOCIETY. BPA POLYMERS APPEAR IN A WIDE RANGE OF PRODUCTS, FROM LIQUID STORAGES (PLASTIC BOTTLES, CAN AND GLASS LININGS, WATER PIPES AND TANKS) AND FOOD STORAGES (PLASTICS WRAPS AND CONTAINERS), TO MEDICAL AND DENTAL DEVICES. BPA POLYMERS COULD BE HYDROLYZED SPONTANEOUSLY OR IN A PHOTO- OR TEMPERATURE-CATALYZED PROCESS, PROVIDING WIDESPREAD ENVIRONMENTAL DISTRIBUTION AND CHRONIC EXPOSURE TO THE BPA MONOMER IN CONTEMPORARY HUMAN POPULATIONS. BISPHENOL A IS ALSO A XENOESTROGEN, AN ENDOCRINE-DISRUPTING CHEMICAL (EDC) THAT INTERFERES WITH THE ENDOCRINE SYSTEM MIMICKING THE EFFECTS OF AN ESTROGEN AND COULD POTENTIALLY KEEP OUR ENDOCRINE SYSTEM IN A CONSTANT PERTURBATION THAT PARALLELS ENDOCRINE DISRUPTION ARISING DURING PREGNANCY, SUCH AS INSULIN RESISTANCE (IR). GESTATIONAL INSULIN RESISTANCE REPRESENTS A NATURAL BIOLOGICAL PHENOMENON OF HIGHER INSULIN RESISTANCE IN PERIPHERAL TISSUES OF THE PREGNANT FEMALES, WHEN NUTRIENTS ARE INCREASINGLY BEING DIRECTED TO THE EMBRYO INSTEAD OF BEING STORED IN PERIPHERAL TISSUES. GESTATIONAL DIABETES MELLITUS MAY APPEAR IN HEALTHY NON-DIABETIC FEMALES, DUE TO GESTATIONAL INSULIN RESISTANCE THAT LEADS TO INCREASED BLOOD SUGAR LEVELS AND HYPERINSULINEMIA (INCREASED INSULIN PRODUCTION FROM THE PANCREATIC BETA CELLS). THE HYPOTHESIS STATES THAT UNNOTICED AND CONSTANT EXPOSURE TO THIS ENVIRONMENTAL CHEMICAL MIGHT POTENTIALLY LEAD TO THE FORMATION OF CHRONIC LOW-LEVEL ENDOCRINE DISRUPTIVE STATE THAT RESEMBLES GESTATIONAL INSULIN RESISTANCE, WHICH MIGHT CONTRIBUTE TO THE DEVELOPMENT OF DIABETES. THE INCREASING BODY OF EVIDENCE SUPPORTS THE MAJOR PREMISES OF THIS HYPOTHESIS, AS EXEMPLIFIED BY THE NUMEROUS PUBLICATIONS EXAMINING THE ASSOCIATION OF BPA AND INSULIN RESISTANCE, BOTH EPIDEMIOLOGICAL AND MECHANISTIC. HOWEVER, TO WHAT EXTENT BPA MIGHT CONTRIBUTE TO THE DEVELOPMENT OF DIABETES IN THE MODERN SOCIETIES STILL REMAINS UNKNOWN. IN THIS REVIEW, I DISCUSS THE CHEMICAL PROPERTIES OF BPA AND THE SOURCES OF BPA CONTAMINATION FOUND IN THE ENVIRONMENT AND IN HUMAN TISSUES. I PROVIDE AN OVERVIEW OF MECHANISMS FOR THE PROPOSED ROLE OF BISPHENOL A IN INSULIN RESISTANCE AND DIABETES, AS WELL AS OTHER RELATED DISEASES, SUCH AS CARDIOVASCULAR DISEASES. I DESCRIBE THE TRANSMISSION OF BPA EFFECTS TO THE OFFSPRING AND POSTULATE THAT GENDER RELATED DIFFERENCES MIGHT ORIGINATE FROM DIFFERENCES IN LIVER ENZYME LEVELS, SUCH AS UDP-GLUCURONOSYLTRANSFERASE, WHICH IS INVOLVED IN BPA PROCESSING AND ITS ELIMINATION FROM THE ORGANISM. I DISCUSS THE MOLECULAR MECHANISMS OF BPA ACTION THROUGH NUCLEAR AND MEMBRANE-BOUND ER RECEPTORS, NON-MONOTONIC DOSE RESPONSE, EPIGENETIC MODIFICATIONS OF THE DNA AND PROPOSE THAT CHRONIC EXPOSURE TO WEAK BINDERS, SUCH AS BPA, MAY MIMIC THE EFFECTS OF STRONG BINDERS, SUCH AS ESTROGENS. 2017 12 3610 38 IN UTERO EXPOSURE TO ENDOCRINE-DISRUPTING CHEMICALS, MATERNAL FACTORS AND ALTERATIONS IN THE EPIGENETIC LANDSCAPE UNDERLYING LATER-LIFE HEALTH EFFECTS. WIDESPREAD PERSISTENCE OF ENDOCRINE-DISRUPTING CHEMICALS (EDCS) IN THE ENVIRONMENT HAS MANDATED THE NEED TO STUDY THEIR POTENTIAL EFFECTS ON AN INDIVIDUAL'S LONG-TERM HEALTH AFTER BOTH ACUTE AND CHRONIC EXPOSURE PERIODS. IN THIS REVIEW ARTICLE A PARTICULAR FOCUS IS GIVEN ON IN UTERO EXPOSURE TO EDCS IN RODENT MODELS WHICH RESULTED IN ALTERED EPIGENETIC PROGRAMMING AND TRANSGENERATIONAL EFFECTS IN THE OFFSPRING CAUSING DISRUPTED REPRODUCTIVE AND METABOLIC PHENOTYPES. THE LITERATURE TO DATE ESTABLISHES THE IMPACT OF TRANSGENERATIONAL EFFECTS OF EDCS POTENTIALLY ASSOCIATED WITH EPIGENETIC MEDIATED MECHANISMS. THEREFORE, THIS REVIEW AIMS TO PROVIDE A COMPREHENSIVE OVERVIEW OF EPIGENETIC PROGRAMMING AND IT'S REGULATION IN MAMMALS, PRIMARILY FOCUSING ON THE EPIGENETIC PLASTICITY AND SUSCEPTIBILITY TO EXOGENOUS HORMONE ACTIVE CHEMICALS DURING THE EARLY DEVELOPMENTAL PERIOD. FURTHER, WE HAVE ALSO IN DEPTH DISCUSSED THE EPIGENETIC ALTERATIONS ASSOCIATED WITH THE EXPOSURE TO SELECTED EDCS SUCH AS BISPHENOL A (BPA), DI-2-ETHYLHEXYL PHTHALATE (DEHP) AND VINCLOZLIN UPON IN UTERO EXPOSURE ESPECIALLY IN RODENT MODELS. 2022 13 5254 43 PROGRAMMING OF RESPIRATORY HEALTH IN CHILDHOOD: INFLUENCE OF OUTDOOR AIR POLLUTION. PURPOSE OF REVIEW: THIS OVERVIEW HIGHLIGHTS RECENT EXPERIMENTAL AND EPIDEMIOLOGICAL EVIDENCE FOR THE PROGRAMMING EFFECTS OF OUTDOOR AIR POLLUTION EXPOSURES DURING EARLY DEVELOPMENT ON LUNG FUNCTION AND CHRONIC RESPIRATORY DISORDERS, SUCH AS ASTHMA AND RELATED ALLERGIC DISORDERS. RECENT FINDINGS: AIR POLLUTANTS MAY IMPACT ANATOMY AND/OR PHYSIOLOGICAL FUNCTIONING OF THE LUNG AND INTERRELATED SYSTEMS. PROGRAMMING EFFECTS MAY RESULT FROM POLLUTANT-INDUCED SHIFTS IN A NUMBER OF MOLECULAR, CELLULAR, AND PHYSIOLOGICAL STATES AND THEIR INTERACTING SYSTEMS. SPECIFIC KEY REGULATORY SYSTEMS SUSCEPTIBLE TO PROGRAMMING MAY INFLUENCE LUNG DEVELOPMENT AND VULNERABILITY TO RESPIRATORY DISEASES, INCLUDING BOTH CENTRAL AND PERIPHERAL COMPONENTS OF NEUROENDOCRINE PATHWAYS AND AUTONOMIC NERVOUS SYSTEM (ANS) FUNCTIONING WHICH, IN TURN, INFLUENCE THE IMMUNE SYSTEM. STARTING IN UTERO, ENVIRONMENTAL FACTORS, INCLUDING AIR POLLUTANTS, MAY PERMANENTLY ORGANIZE THESE SYSTEMS TOWARD TRAJECTORIES OF ENHANCED PEDIATRIC (E.G., ASTHMA, ALLERGY) AS WELL AS ADULT DISEASE RISK (E.G., CHRONIC OBSTRUCTIVE PULMONARY DISEASE). EVIDENCE SUPPORTS A CENTRAL ROLE OF OXIDATIVE STRESS IN THE TOXIC EFFECTS OF AIR POLLUTION. ADDITIONAL RESEARCH SUGGESTS XENOBIOTIC METABOLISM AND SUBCELLULAR COMPONENTS, SUCH AS MITOCHONDRIA ARE TARGETS OF AMBIENT AIR POLLUTION AND PLAY A ROLE IN ASTHMA AND ALLERGY PROGRAMMING. MECHANISMS OPERATING AT THE LEVEL OF THE PLACENTA ARE BEING ELUCIDATED. EPIGENETIC MECHANISMS MAY BE AT THE ROOTS OF ADAPTIVE DEVELOPMENTAL PROGRAMMING. SUMMARY: OPTIMAL COORDINATED FUNCTIONING OF MANY COMPLEX PROCESSES AND THEIR NETWORKS OF INTERACTION ARE NECESSARY FOR NORMAL LUNG DEVELOPMENT AND THE MAINTENANCE OF RESPIRATORY HEALTH. OUTDOOR AIR POLLUTION MAY PLAY AN IMPORTANT ROLE IN EARLY PROGRAMMING OF RESPIRATORY HEALTH AND IS POTENTIALLY AMENABLE TO INTERVENTION. 2013 14 6403 35 THE ROLES OF INDUCIBLE CHROMATIN AND TRANSCRIPTIONAL MEMORY IN CELLULAR DEFENSE SYSTEM RESPONSES TO REDOX-ACTIVE POLLUTANTS. PEOPLE ARE EXPOSED TO WIDE RANGE OF REDOX-ACTIVE ENVIRONMENTAL POLLUTANTS. AIR POLLUTION, HEAVY METALS, PESTICIDES, AND ENDOCRINE DISRUPTING CHEMICALS CAN DISRUPT CELLULAR REDOX STATUS. REDOX-ACTIVE POLLUTANTS IN OUR ENVIRONMENT ALL TRIGGER THEIR OWN SETS OF SPECIFIC CELLULAR RESPONSES, BUT THEY ALSO ACTIVATE A COMMON SET OF GENERAL STRESS RESPONSES THAT BUFFER THE CELL AGAINST HOMEOSTATIC INSULTS. THESE CELLULAR DEFENSE SYSTEM (CDS) PATHWAYS INCLUDE THE HEAT SHOCK RESPONSE, THE OXIDATIVE STRESS RESPONSE, THE HYPOXIA RESPONSE, THE UNFOLDED PROTEIN RESPONSE, THE DNA DAMAGE RESPONSE, AND THE GENERAL STRESS RESPONSE MEDIATED BY THE STRESS-ACTIVATED P38 MITOGEN-ACTIVATED PROTEIN KINASE. OVER THE PAST TWO DECADES, THE FIELD OF ENVIRONMENTAL EPIGENETICS HAS INVESTIGATED EPIGENETIC RESPONSES TO ENVIRONMENTAL POLLUTANTS, INCLUDING REDOX-ACTIVE POLLUTANTS. STUDIES OF THESE RESPONSES HIGHLIGHT THE ROLE OF CHROMATIN MODIFICATIONS IN CONTROLLING THE TRANSCRIPTIONAL RESPONSE TO POLLUTANTS AND THE ROLE OF TRANSCRIPTIONAL MEMORY, OFTEN REFERRED TO AS "EPIGENETIC REPROGRAMMING", IN PREDISPOSING PREVIOUSLY EXPOSED INDIVIDUALS TO MORE POTENT TRANSCRIPTIONAL RESPONSES ON SECONDARY CHALLENGE. MY CENTRAL THESIS IN THIS REVIEW IS THAT HIGH DOSE OR CHRONIC EXPOSURE TO REDOX-ACTIVE POLLUTANTS LEADS TO TRANSCRIPTIONAL MEMORIES AT CDS TARGET GENES THAT INFLUENCE THE CELL'S ABILITY TO MOUNT PROTECTIVE RESPONSES. TO SUPPORT THIS THESIS, I WILL: (1) SUMMARIZE THE KNOWN CHROMATIN FEATURES REQUIRED FOR INDUCIBLE GENE ACTIVATION; (2) REVIEW THE KNOWN FORMS OF TRANSCRIPTIONAL MEMORY; (3) DISCUSS THE ROLES OF INDUCIBLE CHROMATIN AND TRANSCRIPTIONAL MEMORY IN CDS RESPONSES THAT ARE ACTIVATED BY REDOX-ACTIVE ENVIRONMENTAL POLLUTANTS; AND (4) PROPOSE A CONCEPTUAL FRAMEWORK FOR CDS PATHWAY RESPONSIVENESS AS A READOUT OF TOTAL CELLULAR EXPOSURE TO REDOX-ACTIVE POLLUTANTS. 2021 15 6426 24 THE TRANSGENERATIONAL TRANSMISSION OF THE PATERNAL TYPE 2 DIABETES-INDUCED SUBFERTILITY PHENOTYPE. DIABETES IS A CHRONIC METABOLIC DISORDER CHARACTERIZED BY HYPERGLYCEMIA AND ASSOCIATED WITH MANY HEALTH COMPLICATIONS DUE TO THE LONG-TERM DAMAGE AND DYSFUNCTION OF VARIOUS ORGANS. A CONSEQUENTIAL COMPLICATION OF DIABETES IN MEN IS REPRODUCTIVE DYSFUNCTION, REDUCED FERTILITY, AND POOR REPRODUCTIVE OUTCOMES. HOWEVER, THE MOLECULAR MECHANISMS RESPONSIBLE FOR DIABETIC ENVIRONMENT-INDUCED SPERM DAMAGE AND OVERALL DECREASED REPRODUCTIVE OUTCOMES ARE NOT FULLY ESTABLISHED. WE EVALUATED THE EFFECTS OF TYPE 2 DIABETES EXPOSURE ON THE REPRODUCTIVE SYSTEM AND THE REPRODUCTIVE OUTCOMES OF MALES AND THEIR MALE OFFSPRING, USING A MOUSE MODEL. WE DEMONSTRATE THAT PATERNAL EXPOSURE TO TYPE 2 DIABETES MEDIATES INTERGENERATIONAL AND TRANSGENERATIONAL EFFECTS ON THE REPRODUCTIVE HEALTH OF THE OFFSPRING, ESPECIALLY ON SPERM QUALITY, AND ON METABOLIC CHARACTERISTICS. GIVEN THE TRANSGENERATIONAL IMPAIRMENT OF REPRODUCTIVE AND METABOLIC PARAMETERS THROUGH TWO GENERATIONS, THESE CHANGES LIKELY TAKE THE FORM OF INHERITED EPIGENETIC MARKS THROUGH THE GERMLINE. OUR RESULTS EMPHASIZE THE IMPORTANCE OF IMPROVING METABOLIC HEALTH NOT ONLY IN WOMEN OF REPRODUCTIVE AGE, BUT ALSO IN POTENTIAL FATHERS, IN ORDER TO REDUCE THE NEGATIVE IMPACTS OF DIABETES ON SUBSEQUENT GENERATIONS. 2021 16 6192 29 THE IMPACT OF NUTRITIONAL INSULTS DURING FETAL LIFE ON BLOOD PRESSURE. NUMEROUS EPIDEMIOLOGICAL AND EXPERIMENTAL STUDIES PROVIDE COMPELLING EVIDENCE THAT NUTRITIONAL INSULTS THAT IMPACT FETAL GROWTH PROGRAM A MARKED INCREASE IN BLOOD PRESSURE IN LATER LIFE. SEX AND AGE ALSO INFLUENCE THE DEVELOPMENTAL PROGRAMMING OF HYPERTENSION; YET THE EXACT MECHANISMS THAT PERMANENTLY CHANGE THE STRUCTURE, PHYSIOLOGY, AND ENDOCRINE HEALTH OF AN INDIVIDUAL ACROSS THEIR LIFESPAN FOLLOWING EXPOSURE TO A NUTRITIONAL INSULT ARE NOT ENTIRELY CLEAR. FETAL EXPOSURE TO MATERNAL GLUCOCORTICOIDS IS POSTULATED AS AN INITIATING EVENT. IN ADDITION, INAPPROPRIATE SUPPRESSION OR ACTIVATION OF THE RENIN ANGIOTENSIN SYSTEM (RAS) AND/OR ACTIVATION OF THE SYMPATHETIC NERVOUS SYSTEM (SNS) LEADING TO MARKED INCREASES IN OXIDATIVE STRESS AND ENDOTHELIN PRODUCTION ARE IMPLICATED IN THE ETIOLOGY OF HYPERTENSION THAT HAS ITS ORIGINS IN FETAL LIFE. THE RISK OF HYPERTENSION AND CHRONIC DISEASE IN ONE GENERATION IS TRANSMITTED TO THE NEXT IN THE ABSENCE OF AN ADDITIONAL PRENATAL INSULT IMPLICATING EPIGENETIC PROCESSES. YET, FURTHER STUDIES ARE NEEDED TO FULLY ELUCIDATE THE MECHANISMS THAT CONTRIBUTE TO HYPERTENSION PROGRAMMED IN RESPONSE TO NUTRITIONAL INSULTS DURING EARLY LIFE IN ORDER TO IMPROVE THE CARDIOVASCULAR HEALTH OF AN INDIVIDUAL ACROSS THEIR LIFESPAN. 2015 17 4798 37 NUTRITIONALLY MEDIATED PROGRAMMING OF THE DEVELOPING IMMUNE SYSTEM. A GROWING BODY OF EVIDENCE HIGHLIGHTS THE IMPORTANCE OF A MOTHER'S NUTRITION FROM PRECONCEPTION THROUGH LACTATION IN PROGRAMMING THE EMERGING ORGAN SYSTEMS AND HOMEOSTATIC PATHWAYS OF HER OFFSPRING. THE DEVELOPING IMMUNE SYSTEM MAY BE PARTICULARLY VULNERABLE. INDEED, EXAMPLES OF NUTRITION-MEDIATED IMMUNE PROGRAMMING CAN BE FOUND IN THE LITERATURE ON INTRA-UTERINE GROWTH RETARDATION, MATERNAL MICRONUTRIENT DEFICIENCIES, AND INFANT FEEDING. CURRENT MODELS OF IMMUNE ONTOGENY DEPICT A "LAYERED" EXPANSION OF INCREASINGLY COMPLEX DEFENSES, WHICH MAY BE PERMANENTLY ALTERED BY MATERNAL MALNUTRITION. ONE PROGRAMMING MECHANISM INVOLVES ACTIVATION OF THE MATERNAL HYPOTHALAMIC-PITUITARY-ADRENAL AXIS IN RESPONSE TO NUTRITIONAL STRESS. FETAL OR NEONATAL EXPOSURE TO ELEVATED STRESS HORMONES IS LINKED IN ANIMAL STUDIES TO PERMANENT CHANGES IN NEUROENDOCRINE-IMMUNE INTERACTIONS, WITH DIVERSE MANIFESTATIONS SUCH AS AN ATTENUATED INFLAMMATORY RESPONSE OR REDUCED RESISTANCE TO TUMOR COLONIZATION. MATERNAL MALNUTRITION MAY ALSO HAVE A DIRECT INFLUENCE, AS EVIDENCED BY NUTRIENT-DRIVEN EPIGENETIC CHANGES TO DEVELOPING T REGULATORY CELLS AND SUBSEQUENT RISK OF ALLERGY OR ASTHMA. A 3RD PROGRAMMING PATHWAY INVOLVES PLACENTAL OR BREAST MILK TRANSFER OF MATERNAL IMMUNE FACTORS WITH IMMUNOMODULATORY FUNCTIONS (E.G. CYTOKINES). MATERNAL MALNUTRITION CAN DIRECTLY AFFECT TRANSFER MECHANISMS OR INFLUENCE THE QUALITY OR QUANTITY OF TRANSFERRED FACTORS. THE PUBLIC HEALTH IMPLICATIONS OF NUTRITION-MEDIATED IMMUNE PROGRAMMING ARE OF PARTICULAR IMPORTANCE IN THE DEVELOPING WORLD, WHERE PREVALENT MATERNAL UNDERNUTRITION IS COUPLED WITH PERSISTENT INFECTIOUS CHALLENGES. HOWEVER, EARLY ALTERATIONS TO THE IMMUNE SYSTEM, RESULTING FROM EITHER NUTRITIONAL DEFICIENCIES OR EXCESSES, HAVE BROAD RELEVANCE FOR IMMUNE-MEDIATED DISEASES, SUCH AS ASTHMA, AND CHRONIC INFLAMMATORY CONDITIONS LIKE CARDIOVASCULAR DISEASE. 2011 18 1106 34 COMBINED TOXICITY OF ENDOCRINE-DISRUPTING CHEMICALS: A REVIEW. THE COMBINED TOXICOLOGICAL ASSESSMENT PROVIDES A REALISTIC APPROACH FOR HAZARD EVALUATION OF CHEMICAL COCKTAILS THAT CO-EXISTED IN THE ENVIRONMENT. THIS REVIEW PROVIDES A HOLISTIC INSIGHT INTO THE STUDIES HIGHLIGHTING THE MIXTURE TOXICITY OF THE ENDOCRINE-DISRUPTING CHEMICALS (EDCS), ESPECIALLY FOCUSING ON THE SCREENING OF BIOCHEMICAL PATHWAYS AND OTHER TOXICOGENETIC ENDPOINTS. REVIEWED LITERATURE SHOWED THAT NUMEROUS MULTIPLEXED TOXICOGENOMIC TECHNIQUES WERE APPLIED TO DETERMINE REPRODUCTIVE EFFECTS IN VERTEBRATES, BUT LIMITED STUDIES WERE FOUND IN NON-MAMMALIAN SPECIES AFTER MIXTURE CHEMICAL EXPOSURE. FURTHER, WE FOUND THAT THE EXPERIMENTAL DESIGN AND CONCENTRATION SELECTION ARE THE TWO IMPORTANT PARAMETERS IN MIXTURE TOXICITY STUDIES THAT SHOULD BE TIME- AND COST-EFFECTIVE, HIGHLY PRECISE, AND ENVIRONMENTALLY RELEVANT. A SUMMARY OF EDC MIXTURES AFFECTING THE THYROID AXIS, ESTROGEN AXIS, ANDROGEN AXIS, GROWTH STRESS, AND IMMUNE SYSTEM VIA IN VIVO BIOASSAYS WAS ALSO PRESENTED. IT IS INTERESTING TO MENTION THAT MAJORITY OF ESTROGENIC EFFECTS OF THE MIXTURES WERE SEX-DEPENDENT, PARTICULARLY OBSERVED IN MALE FISH AS COMPARED TO FEMALE FISH. FURTHER, THE ANDROGEN AXIS WAS PERTURBED WITH SERIOUS MALFORMATIONS IN MALE RAT TESTIS (EPIDIDYMAL OR GUBERNACULAR LESIONS, AND DECIDUOUS SPERMATIDS). ALSO, TRANSGENERATIONAL EPIGENETIC EFFECTS WERE PROMOTED IN THE F(3) AND F(4) GENERATIONS IN THE FORM OF DNA METHYLATION EPIMUTATIONS IN SPERM, INCREASING POLYCYSTIC OVARIES AND REDUCING THE OFFSPRING. SIMILARLY, INCREASED OXIDATIVE STRESS, HIGH ANTIOXIDANT ENZYMATIC ACTIVITIES, DISTURBED ESTROUS CYCLE, AND DECREASED STEROIDOGENESIS WERE THE COMMONLY FOUND EFFECTS AFTER ACUTE OR CHRONIC EXPOSURE TO EDC MIXTURES. IMPORTANTLY, THE CONCENTRATION ADDITION (CA) AND INDEPENDENT ACTION (IA) MODELS BECAME MORE PREVALENT AND SUITABLE PREDICTIVE MODELS TO UNVEIL THE PROMINENCE OF SYNERGISTIC ESTROGENIC AND ANTI-ANDROGENIC EFFECTS OF CHEMICAL MIXTURES. MORE IMPORTANTLY, THIS REVIEW ENCOMPASSES THE RESEARCH CHALLENGES AND GAPS IN THE EXISTING KNOWLEDGE AND SPECIFIC FUTURE RESEARCH PERSPECTIVES ON COMBINED TOXICITY. 2021 19 795 29 CELLULAR RESILIENCE. CELLULAR RESILIENCE DESCRIBES THE ABILITY OF A CELL TO COPE WITH ENVIRONMENTAL CHANGES SUCH AS TOXICANT EXPOSURE. IF CELLULAR METABOLISM DOES NOT COLLAPSE DIRECTLY AFTER THE HIT OR END IN PROGRAMMED CELL DEATH, THE ENSUING STRESS RESPONSES PROMOTE A NEW HOMEOSTASIS UNDER STRESS. THE PROCESSES OF REVERTING "BACK TO NORMAL" AND REVERSAL OF APOPTOSIS ("ANASTASIS") HAVE BEEN STUDIED LITTLE AT THE CELLULAR LEVEL. CELL TYPES SHOW ASTONISHINGLY SIMILAR VULNERABILITY TO MOST TOXICANTS, EXCEPT FOR THOSE THAT REQUIRE A VERY SPECIFIC TARGET, METABOLISM OR MECHANISM PRESENT ONLY IN SPECIFIC CELL TYPES. THE MAJORITY OF CHEMICALS TRIGGERS "GENERAL CYTOTOXICITY" IN ANY CELL AT SIMILAR CONCENTRATIONS. WE HYPOTHESIZE THAT CELLS DIFFER LESS IN THEIR VULNERABILITY TO A GIVEN TOXICANT THAN IN THEIR RESILIENCE (COPING WITH THE "HIT"). IN MANY CASES, CELLS DO NOT RETURN TO THE NAIVE STATE AFTER A TOXIC INSULT. THE PHENOMENA OF "PRE-CONDITIONING", "TOLERANCE" AND "HORMESIS" DESCRIBE THIS FOR LOW-DOSE EXPOSURES TO TOXICANTS THAT RENDER THE CELL MORE RESISTANT TO SUBSEQUENT HITS. THE DEFENSE AND RESILIENCE PROGRAMS INCLUDE EPIGENETIC CHANGES THAT LEAVE A "MEMORY/SCAR" - AN ALTERATION AS A CONSEQUENCE OF THE STRESS THE CELL HAS EXPERIENCED. THESE MEMORIES MIGHT HAVE LONG-TERM CONSEQUENCES, BOTH POSITIVE (RESISTANCE) AND NEGATIVE, THAT CONTRIBUTE TO CHRONIC AND DELAYED MANIFESTATIONS OF HAZARD AND, ULTIMATELY, DISEASE. THIS ARTICLE CALLS FOR MORE SYSTEMATIC ANALYSES OF HOW CELLS COPE WITH TOXIC PERTURBATIONS IN THE LONG-TERM AFTER STRESSOR WITHDRAWAL. A TECHNICAL PREREQUISITE FOR THESE ARE STABLE (ORGANOTYPIC) CULTURES AND A CHARACTERIZATION OF STRESS RESPONSE MOLECULAR NETWORKS. 2015 20 4804 24 OBESITY AND MALE INFERTILITY: MECHANISMS AND MANAGEMENT. OBESITY IS CONSIDERED A GLOBAL HEALTH PROBLEM AFFECTING MORE THAN A THIRD OF THE POPULATION. COMPLICATIONS OF OBESITY INCLUDE CARDIOVASCULAR DISEASES, TYPE 2 DIABETES MELLITUS, MALIGNANCY (INCLUDING PROSTATIC CANCER), NEURODEGENERATION AND ACCELERATED AGEING. IN MALES, THESE FURTHER INCLUDE ERECTILE DYSFUNCTION, POOR SEMEN QUALITY AND SUBCLINICAL PROSTATITIS. ALTHOUGH POORLY UNDERSTOOD, IMPORTANT MEDIATORS OF OBESITY THAT MAY INFLUENCE THE MALE REPRODUCTIVE SYSTEM INCLUDE HYPERINSULINEMIA, HYPERLEPTINEMIA, CHRONIC INFLAMMATION AND OXIDATIVE STRESS. OBESITY IS KNOWN TO DISRUPT MALE FERTILITY AND THE REPRODUCTION POTENTIAL, PARTICULARLY THROUGH ALTERATION IN THE HYPOTHALAMIC-PITUITARY-GONADAL AXIS, DISRUPTION OF TESTICULAR STEROIDOGENESIS AND METABOLIC DYSREGULATION, INCLUDING INSULIN, CYTOKINES AND ADIPOKINES. IMPORTANTLY, OBESITY AND ITS UNDERLYING MEDIATORS RESULT IN A NEGATIVE IMPACT ON SEMEN PARAMETERS, INCLUDING SPERM CONCENTRATION, MOTILITY, VIABILITY AND NORMAL MORPHOLOGY. MOREOVER, OBESITY INHIBITS CHROMATIN CONDENSATION, DNA FRAGMENTATION, INCREASES APOPTOSIS AND EPIGENETIC CHANGES THAT CAN BE TRANSFERRED TO THE OFFSPRING. THIS REVIEW DISCUSSES THE IMPACT OF OBESITY ON THE MALE REPRODUCTIVE SYSTEM AND FERTILITY, INCLUDING ASSOCIATED MECHANISMS. FURTHERMORE, WEIGHT MANAGEMENT STRATEGIES, LIFESTYLE CHANGES, PRESCRIPTION MEDICATION, AND COMPLEMENTARY AND ALTERNATIVE MEDICINE IN THE MANAGEMENT OF OBESITY-INDUCED SUBFERTILITY IS DISCUSSED. 2021