1 6094 109 THE EFFECTS OF MATERNAL AND POSTNATAL DIETARY METHYL NUTRIENTS ON EPIGENETIC CHANGES THAT LEAD TO NON-COMMUNICABLE DISEASES IN ADULTHOOD. THE RISK FOR NON-COMMUNICABLE DISEASES IN ADULTHOOD CAN BE PROGRAMMED BY EARLY NUTRITION. THIS PROGRAMMING IS MEDIATED BY CHANGES IN EXPRESSION OF KEY GENES IN VARIOUS METABOLIC PATHWAYS DURING DEVELOPMENT, WHICH PERSIST INTO ADULTHOOD. THESE DEVELOPMENTAL MODIFICATIONS OF GENES ARE DUE TO EPIGENETIC ALTERATIONS IN DNA METHYLATION PATTERNS. RECENT STUDIES HAVE DEMONSTRATED THAT DNA METHYLATION CAN BE AFFECTED BY MATERNAL OR EARLY POSTNATAL DIETS. BECAUSE METHYL GROUPS FOR METHYLATION REACTIONS COME FROM METHIONINE CYCLE NUTRIENTS (I.E., METHIONINE, CHOLINE, BETAINE, FOLATE), DEFICIENCY OR SUPPLEMENTATION OF THESE METHYL NUTRIENTS CAN DIRECTLY CHANGE EPIGENETIC REGULATION OF GENES PERMANENTLY. ALTHOUGH MANY STUDIES HAVE DESCRIBED THE EARLY PROGRAMMING OF ADULT DISEASES BY MATERNAL AND INFANT NUTRITION, THIS REVIEW DISCUSSES STUDIES THAT HAVE ASSOCIATED EARLY DIETARY METHYL NUTRIENT MANIPULATION WITH DIRECT EFFECTS ON EPIGENETIC PATTERNS THAT COULD LEAD TO CHRONIC DISEASES IN ADULTHOOD. THE MATERNAL SUPPLY OF METHYL NUTRIENTS DURING GESTATION AND LACTATION CAN ALTER EPIGENETICS, BUT PROGRAMMING EFFECTS VARY DEPENDING ON THE TIMING OF DIETARY INTERVENTION, THE TYPE OF METHYL NUTRIENT MANIPULATED, AND THE TISSUE RESPONSIBLE FOR THE PHENOTYPE. MOREOVER, THE POSTNATAL MANIPULATION OF METHYL NUTRIENTS CAN PROGRAM EPIGENETICS, BUT MORE RESEARCH IS NEEDED ON WHETHER THIS APPROACH CAN RESCUE MATERNALLY PROGRAMMED OFFSPRING. 2020 2 48 35 A CRUCIAL ROLE FOR MATERNAL DIETARY METHYL DONOR INTAKE IN EPIGENETIC PROGRAMMING AND FETAL GROWTH OUTCOMES. THE FETAL ORIGINS OF HEALTH AND DISEASE FRAMEWORK HAS IDENTIFIED EXTREMES IN FETAL GROWTH AND BIRTH WEIGHT AS FACTORS ASSOCIATED WITH THE LIFELONG GENERATION OF CHRONIC DISEASES SUCH AS OBESITY, DIABETES, CARDIOVASCULAR DISEASE, AND HYPERTENSION. MATERNAL NUTRITION PLAYS A CRITICAL ROLE IN FETAL AND PLACENTAL DEVELOPMENT, IN PART BY PROVIDING THE METHYL GROUPS REQUIRED TO ESTABLISH THE FETUS'S GENOME STRUCTURE AND FUNCTION, NOTABLY THROUGH DNA METHYLATION. THE GOAL OF THIS NARRATIVE REVIEW IS TO DESCRIBE THE ROLE OF MATERNAL DIETARY METHYL DONOR (METHIONINE, FOLATE, AND CHOLINE) AND COFACTOR (ZINC AND VITAMINS B2, B6, AND B12) INTAKE IN ONE-CARBON METABOLISM AND DNA METHYLATION IN THE FETUS AND PLACENTA, AS WELL AS THEIR IMPACTS ON FETAL GROWTH AND LIFELONG HEALTH OUTCOMES, WITH SPECIFIC EXAMPLES IN ANIMALS AND HUMANS. BASED ON THE AVAILABLE EVIDENCE, IT IS CONCLUDED THAT INTAKE OF DIFFERENT AMOUNTS OF DIETARY METHYL DONORS AND COFACTORS DURING PREGNANCY MAY ALTER FETAL GROWTH AND DEVELOPMENT, THUS ESTABLISHING A MAJOR LINK BETWEEN EARLY ENVIRONMENTAL EXPOSURE AND DISEASE DEVELOPMENT IN THE OFFSPRING LATER IN LIFE. 2018 3 1155 35 CONSIDERING MATERNAL DIETARY MODULATORS FOR EPIGENETIC REGULATION AND PROGRAMMING OF THE FETAL EPIGENOME. FETAL LIFE IS CHARACTERIZED BY A TREMENDOUS PLASTICITY AND ABILITY TO RESPOND TO VARIOUS ENVIRONMENTAL AND LIFESTYLE FACTORS, INCLUDING MATERNAL NUTRITION. IDENTIFICATION OF THE ROLE OF DIETARY FACTORS THAT CAN MODULATE AND RESHAPE THE CELLULAR EPIGENOME DURING DEVELOPMENT, INCLUDING METHYL GROUP DONORS (E.G., FOLATE, CHOLINE) AND BIOACTIVE COMPOUNDS (E.G., POLYPHENOLS) IS OF GREAT IMPORTANCE; HOWEVER, THERE IS INSUFFICIENT KNOWLEDGE OF A PARTICULAR EFFECT OF EACH TYPE OF MODULATOR AND/OR THEIR COMBINATION ON FETAL LIFE. TO ENHANCE THE QUALITY AND SAFETY OF FOOD PRODUCTS FOR PROPER FETAL HEALTH AND DISEASE PREVENTION IN LATER LIFE, A BETTER UNDERSTANDING OF THE UNDERLYING MECHANISMS OF DIETARY EPIGENETIC MODULATORS DURING THE CRITICAL PRENATAL PERIOD IS NECESSARY. THIS REVIEW FOCUSES ON THE INFLUENCE OF MATERNAL DIETARY COMPONENTS ON DNA METHYLATION, HISTONE MODIFICATION, AND MICRORNAS, AND SUMMARIZES CURRENT KNOWLEDGE OF THE EFFECT AND IMPORTANCE OF DIETARY COMPONENTS ON EPIGENETIC MECHANISMS THAT CONTROL THE PROPER EXPRESSION OF GENETIC INFORMATION. EVIDENCE REVEALS THAT SOME COMPONENTS IN THE MATERNAL DIET CAN DIRECTLY OR INDIRECTLY AFFECT EPIGENETIC MECHANISMS. UNDERSTANDING THE UNDERLYING MECHANISMS OF HOW EARLY-LIFE NUTRITIONAL ENVIRONMENT AFFECTS THE EPIGENOME DURING DEVELOPMENT IS OF GREAT IMPORTANCE FOR THE SUCCESSFUL PREVENTION OF ADULT CHRONIC DISEASES THROUGH OPTIMAL MATERNAL NUTRITION. 2015 4 6819 34 [FETAL PROGRAMMING OF METABOLIC DISORDERS]. OUR KNOWLEDGE OF FETAL PROGRAMMING HAS DEVELOPED NOTABLY OVER THE YEARS AND RECENT DATA SUGGEST THAT AN UNBALANCED DIET PRIOR AND DURING PREGNANCY CAN HAVE EARLY-ONSET AND LONG-LASTING CONSEQUENCES ON THE HEALTH OF THE OFFSPRING. SPECIFIC NEGATIVE INFLUENCES OF HIGH DIETARY GLUCOSE AND LIPID CONSUMPTION, AS WELL AS UNDERNUTRITION, ARE ASSOCIATED WITH DEVELOPMENT OF METABOLIC SYNDROME, INSULIN RESISTANCE AND DIABETES IN THE OFFSPRING. THE MECHANISMS UNDERLYING THE EFFECTS OF MATERNAL HYPERGLYCEMIA ON THE FETUS MAY INVOLVE STRUCTURAL, METABOLIC AND EPIGENETIC CHANGES. THE AIM OF THIS REVIEW IS TO ILLUSTRATE HOW ADVERSE INTRAUTERINE ENVIRONMENT MAY INFLUENCE MOLECULAR MODIFICATIONS IN THE FETUS AND CAUSE EPIGENETIC ALTERATIONS IN PARTICULAR. IT HAS BEEN DEMONSTRATED THAT PRENATAL EPIGENETIC MODIFICATIONS MAY BE LINKED TO THE PATHOGENESIS AND PROGRESSION OF THE ADULT CHRONIC DISORDERS. STUDIES ON EPIGENETIC ALTERATIONS WILL CONTRIBUTE TO A BETTER UNDERSTANDING OF THE LONG-TERM EFFECTS OF IN UTERO EXPOSURE AND MAY OPEN NEW PERSPECTIVES FOR DISEASE PREVENTION AND TREATMENT. 2015 5 2274 29 EPIGENETIC REGULATION AND FETAL PROGRAMMING. FETAL PROGRAMMING ENCOMPASSES THE ROLE OF DEVELOPMENTAL PLASTICITY IN RESPONSE TO ENVIRONMENTAL AND NUTRITIONAL SIGNALS DURING EARLY LIFE AND ITS POTENTIAL ADVERSE CONSEQUENCES (RISK OF CARDIOVASCULAR, METABOLIC AND BEHAVIOURAL DISEASES) IN LATER LIFE. THE FIRST STUDIES IN THIS FIELD HIGHLIGHTED AN ASSOCIATION BETWEEN POOR FETAL GROWTH AND CHRONIC ADULT DISEASES. HOWEVER, ENVIRONMENTAL SIGNALS DURING EARLY LIFE MAY LEAD TO ADVERSE LONG-TERM EFFECTS INDEPENDENTLY OF OBVIOUS EFFECTS ON FETAL GROWTH. ADVERSE LONG-TERM EFFECTS REFLECT A MISMATCH BETWEEN EARLY (FETAL AND NEONATAL) ENVIRONMENTAL CONDITIONS AND THE CONDITIONS THAT THE INDIVIDUAL WILL CONFRONT LATER IN LIFE. THE MECHANISMS UNDERLYING THIS RISK REMAIN UNCLEAR. HOWEVER, EXPERIMENTAL DATA IN RODENTS AND RECENT OBSERVATIONS IN HUMANS SUGGEST THAT EPIGENETIC CHANGES IN REGULATORY GENES AND GROWTH-RELATED GENES PLAY A SIGNIFICANT ROLE IN FETAL PROGRAMMING. IMPROVEMENTS IN OUR UNDERSTANDING OF THE BIOCHEMICAL AND MOLECULAR MECHANISMS AT PLAY IN FETAL PROGRAMMING WOULD MAKE IT POSSIBLE TO IDENTIFY BIOMARKERS FOR DETECTING INFANTS AT HIGH RISK OF ADULT-ONSET DISEASES. SUCH IMPROVEMENTS SHOULD ALSO LEAD TO THE DEVELOPMENT OF PREVENTIVE AND THERAPEUTIC STRATEGIES. 2008 6 1801 42 EFFECT OF MATERNAL DIET ON THE EPIGENOME: IMPLICATIONS FOR HUMAN METABOLIC DISEASE. THE RAPID INCREASE IN THE INCIDENCE OF CHRONIC NON-COMMUNICABLE DISEASES OVER THE PAST TWO DECADES CANNOT BE EXPLAINED SOLELY BY GENETIC AND ADULT LIFESTYLE FACTORS. THERE IS NOW CONSIDERABLE EVIDENCE THAT THE FETAL AND EARLY POSTNATAL ENVIRONMENT ALSO STRONGLY INFLUENCES THE RISK OF DEVELOPING SUCH DISEASES IN LATER LIFE. HUMAN STUDIES HAVE SHOWN THAT LOW BIRTH WEIGHT IS ASSOCIATED WITH AN INCREASED RISK OF CVD, TYPE II DIABETES, OBESITY AND HYPERTENSION, ALTHOUGH RECENT STUDIES HAVE SHOWN THAT OVER-NUTRITION IN EARLY LIFE CAN ALSO INCREASE SUSCEPTIBILITY TO FUTURE METABOLIC DISEASE. THESE FINDINGS HAVE BEEN REPLICATED IN A VARIETY OF ANIMAL MODELS, WHICH HAVE SHOWN THAT BOTH MATERNAL UNDER- AND OVER-NUTRITION CAN INDUCE PERSISTENT CHANGES IN GENE EXPRESSION AND METABOLISM WITHIN THE OFFSPRING. THE MECHANISM BY WHICH THE MATERNAL NUTRITIONAL ENVIRONMENT INDUCES SUCH CHANGES IS BEGINNING TO BE UNDERSTOOD AND INVOLVES THE ALTERED EPIGENETIC REGULATION OF SPECIFIC GENES. THE DEMONSTRATION OF A ROLE FOR ALTERED EPIGENETIC REGULATION OF GENES IN THE DEVELOPMENTAL INDUCTION OF CHRONIC DISEASES RAISES THE POSSIBILITY THAT NUTRITIONAL OR PHARMACEUTICAL INTERVENTIONS MAY BE USED TO MODIFY LONG-TERM CARDIO-METABOLIC DISEASE RISK AND COMBAT THIS RAPID RISE IN CHRONIC NON-COMMUNICABLE DISEASES. 2011 7 3852 37 IS MATERNAL MICROBIAL METABOLISM AN EARLY-LIFE DETERMINANT OF HEALTH? MOUNTING EVIDENCE SUGGESTS THAT ENVIRONMENTAL STRESS EXPERIENCED IN UTERO (FOR EXAMPLE, MATERNAL NUTRITIONAL DEFICITS) ESTABLISHES A PREDISPOSITION IN THE NEWBORN TO THE DEVELOPMENT OF CHRONIC DISEASES LATER IN LIFE. THIS CONCEPT IS OFTEN REFERRED TO AS THE "FETAL ORIGINS HYPOTHESIS" OR "DEVELOPMENTAL ORIGINS OF HEALTH AND DISEASE". SINCE ITS FIRST PROPOSAL, EPIGENETICS HAS EMERGED AS AN UNDERLYING MECHANISM EXPLAINING HOW ENVIRONMENTAL CUES BECOME GESTATIONALLY "ENCODED". MANY OF THE ENZYMES THAT IMPART AND MAINTAIN EPIGENETIC MODIFICATIONS ARE HIGHLY SENSITIVE TO NUTRIENT AVAILABILITY, WHICH CAN BE INFLUENCED BY THE METABOLIC ACTIVITIES OF THE INTESTINAL MICROBIOTA. THEREFORE, THE MATERNAL MICROBIOME HAS THE POTENTIAL TO INFLUENCE EPIGENETICS IN UTERO AND MODULATE OFFSPRING'S LONG-TERM HEALTH TRAJECTORIES. HERE WE SUMMARIZE THE CURRENT UNDERSTANDING OF THE INTERACTIONS THAT OCCUR BETWEEN THE MATERNAL GUT MICROBIOME AND THE ESSENTIAL NUTRIENT CHOLINE, THAT IS NOT ONLY REQUIRED FOR FETAL DEVELOPMENT AND EPIGENETIC REGULATION BUT IS ALSO A GROWTH SUBSTRATE FOR SOME MICROBES. BACTERIA ABLE TO METABOLIZE CHOLINE BENEFIT FROM THE PRESENCE OF THIS NUTRIENT AND COMPETE WITH THE HOST FOR ITS ACCESS, WHICH UNDER EXTREME CONDITIONS MAY ELICIT SIGNATURES OF CHOLINE DEFICIENCY. ANOTHER CONSEQUENCE OF BACTERIAL CHOLINE METABOLISM IS THE ACCUMULATION OF THE PRO-INFLAMMATORY, PRO-THROMBOTIC METABOLITE TRIMETHYLAMINE-N-OXIDE (TMAO). FINALLY, WE DISCUSS HOW THESE DIFFERENT FACETS OF MICROBIAL CHOLINE METABOLISM MAY INFLUENCE INFANT DEVELOPMENT AND HEALTH TRAJECTORIES VIA EPIGENETIC MECHANISMS AND MORE BROADLY PLACE A CALL TO ACTION TO BETTER UNDERSTAND HOW MATERNAL MICROBIAL METABOLISM CAN SHAPE THEIR OFFSPRING'S PROPENSITY TO CHRONIC DISEASE DEVELOPMENT LATER IN LIFE. 2018 8 6818 30 [FETAL PROGRAMMING AS A CAUSE OF CHRONIC DISEASES IN ADULT LIFE]. LONG-TERM ADAPTIVE CHANGES OCCURRING IN A DEVELOPING FETUS IN RESPONSE TO UNSTABLE IN UTERO ENVIRONMENTAL CONDITIONS, WHICH APPEAR AT A PARTICULAR TIME (CRITICAL WINDOW), ARE CALLED INTRAUTERINE OR FETAL PROGRAMMING. THESE ADAPTIVE CHANGES ARE BENEFICIAL DURING THE INTRAUTERINE PERIOD BECAUSE THEY ADAPT THE FETUS TO CURRENT NEEDS, BUT MAY TURN OUT TO BE HARMFUL IN THE END AND LEAD TO DEVELOPMENT OF CHRONIC DISEASES IN ADULT LIFE. FETAL PROGRAMMING MEANS THE STRUCTURAL AND FUNCTIONAL CHANGING OF AN ORGANISM, METABOLISM AND FUNCTION OF SOME CELLS, TISSUES AND SYSTEMS, THAT OCCUR EVEN DESPITE INTRAUTERINE LIMITATIONS. EVENTS OF FETAL LIFE INFLUENCE THE DETERMINATION OF PHYSIOLOGICAL PATTERNS WHICH MAY MANIFEST AS DISEASE PROCESSES IN THE ADULTHOOD (BARKER'S HYPOTHESIS). GENETIC AND ENVIRONMENTAL FACTORS (POOR DIET IN PREGNANCY CHRONIC INTRAUTERINE FETAL HYPOXIA, THE EFFECTS OF XENOBIOTICS AND DRUGS, AS WELL AS HORMONAL DISORDERS) INFLUENCE THE PHENOTYPE OF A NEWBORN AND ARE INVOLVED IN THE INTRAUTERINE PROGRAMMING PROCESS. THE EFFECTS OF FETAL PROGRAMMING MAY BE PASSED ALONG TO THE NEXT GENERATIONS VIA NOT FULLY UNDERSTOOD PATHWAYS, WHICH PROBABLY INCLUDE EPIGENETIC MECHANISMS. MOST OF THE MECHANISMS UNDERLYING THIS PROCESS REMAIN UNCLEAR AND NEED TO BE ELUCIDATED. 2014 9 2803 26 FETAL DEVELOPMENTAL PROGRAMING: INSIGHTS FROM HUMAN STUDIES AND EXPERIMENTAL MODELS. BACKGROUND: ENVIRONMENTAL FACTORS, PARTICULARLY NUTRITION DURING PREGNANCY AND EARLY LIFE CAN INFLUENCE THE RISK OF CHRONIC DISEASES IN LATER LIFE. THE UNDERLYING MECHANISM, TERMED "PROGRAMING", POSTULATES THAT AN ENVIRONMENTAL STIMULUS DURING A CRITICAL WINDOW OF TIME, EARLY IN LIFE, HAS A PERMANENT EFFECT ON SUBSEQUENT STRUCTURE AND FUNCTION OF THE ORGANISM. OBJECTIVE: IN THIS STUDY WE REVIEW THE CONCEPT OF FETAL PROGRAMING ON CHRONIC DISEASES AND THE PROPOSED HYPOTHESES FOR THE ASSOCIATION BETWEEN EARLY DEVELOPMENT AND LATER DISEASE, INCLUDING EPIGENETIC VARIATION. WE CONCENTRATE ON SPECIFIC ASPECTS OF MATERNAL NUTRITION, PARTICULARLY UNDER-NUTRITION AND OVER-NUTRITION, IN HUMANS AND ANIMAL MODELS. CONCLUSION: AN ADEQUATE MATERNAL NUTRITION DURING PREGNANCY IS CRUCIAL FOR THE HEALTH OUTCOME OF THE OFFSPRING AT ADULTHOOD. 2017 10 5089 37 PLACENTAL ADAPTATIONS TO MICRONUTRIENT DYSREGULATION IN THE PROGRAMMING OF CHRONIC DISEASE. POOR NUTRITION DURING PREGNANCY IS KNOWN TO IMPAIR FOETAL DEVELOPMENT AND INCREASE THE RISK OF CHRONIC DISEASE IN OFFSPRING. BOTH MACRONUTRIENTS AND MICRONUTRIENTS ARE REQUIRED FOR A HEALTHY PREGNANCY ALTHOUGH SIGNIFICANTLY LESS IS UNDERSTOOD ABOUT THE ROLE OF MICRONUTRIENTS IN THE PROGRAMMING OF CHRONIC DISEASE. THIS IS DESPITE THE FACT THAT MODERN CALORIE RICH DIETS ARE OFTEN ALSO DEFICIENT IN KEY MICRONUTRIENTS. THE IMPORTANCE OF MICRONUTRIENTS IN GESTATIONAL DISORDERS IS CLEARLY UNDERSTOOD BUT HOW THEY IMPACT LONG TERM DISEASE IN HUMANS REQUIRES FURTHER INVESTIGATION. IN CONTRAST, ANIMAL STUDIES HAVE DEMONSTRATED HOW DIETS HIGH OR LOW IN SPECIFIC MICRONUTRIENTS INFLUENCE OFFSPRING PHYSIOLOGY. MANY OF THESE STUDIES HIGHLIGHT THE IMPORTANCE OF THE PLACENTA IN DETERMINING DISEASE RISK. THIS REVIEW WILL EXPLORE THE EFFECTS OF INDIVIDUAL VITAMINS, MINERALS AND TRACE ELEMENTS ON OFFSPRING DISEASE OUTCOMES AND DISCUSS SEVERAL KEY PLACENTAL ADAPTATIONS THAT ARE AFFECTED BY MULTIPLE MICRONUTRIENTS. THESE PLACENTAL ADAPTATIONS INCLUDE MICRONUTRIENT INDUCED DYSREGULATION OF OXIDATIVE STRESS, ALTERED METHYL DONOR AVAILABILITY AND ITS IMPACT ON EPIGENETIC MECHANISMS AS WELL AS ENDOCRINE DYSFUNCTION. CRITICAL GAPS IN OUR CURRENT KNOWLEDGE AND THE RELATIVE IMPORTANCE OF DIFFERENT MICRONUTRIENTS AT DIFFERENT GESTATIONAL AGES WILL ALSO BE HIGHLIGHTED. FINALLY, THIS REVIEW WILL DISCUSS THE NEED FOR FURTHER STUDIES TO CHARACTERISE THE MICRONUTRIENT STATUS OF AUSTRALIAN WOMEN OF REPRODUCTIVE AGE AND CORRELATE MICRONUTRIENT STATUS TO PLACENTAL ADAPTATIONS, PREGNANCY COMPLICATIONS AND OFFSPRING DISEASE. 2018 11 4496 37 MORE THAN GENES: THE ADVANCED FETAL PROGRAMMING HYPOTHESIS. MANY LINES OF DATA, INITIAL EPIDEMIOLOGIC STUDIES AS WELL AS SUBSEQUENT EXTENSIVE EXPERIMENTAL STUDIES, INDICATE THAT EARLY-LIFE EVENTS PLAY A POWERFUL ROLE IN INFLUENCING LATER SUCEPTIBILITY TO CERTAIN CHRONIC DISEASES. SUCH EVENTS MIGHT BE OVER- OR UNDERNUTRITION, EXPOSURE TO ENVIRONMENTAL TOXINS, BUT ALSO CHANGES IN HORMONES, IN PARTICULAR STRESS HORMONES. TYPICALLY, THOSE EVENTS ARE TRIGGERED BY THE ENVIRONMENTAL CHALLENGES OF THE MOTHER. HOWEVER, RECENT STUDIES HAVE SHOWN THAT PATERNAL ENVIRONMENTAL OR NUTRITIONAL FACTORS AFFECT THE PHENOTYPE OF THE OFFSPRING AS WELL. THE MATERNAL AND PATERNAL ENVIRONMENTAL FACTORS ACT ON THE PHENOTYPE OF THE OFFSPRING VIA EPIGENETIC MODIFICATION OF ITS GENOME. THE ADVANCED FETAL PROGRAMMING HYPOTHESIS PROPOSES AN ADDITIONAL NON-ENVIRONMENTALLY DRIVEN MECHANISM: MATERNAL AND ALSO PATERNAL GENES MAY INFLUENCE THE MATURATING SPERM, THE OOCYTE, AND LATER THE EMBRYO/FETUS, LEADING TO THEIR EPIGENETIC ALTERATION. THUS, THE OBSERVED PHENOTYPE OF THE OFFSPRING MAY BE ALTERED BY MATERNAL/PATERNAL GENES INDEPENDENT OF THE FETAL GENOME. MEANWHILE, SEVERAL INDEPENDENT ASSOCIATION STUDIES IN HUMANS DEALING WITH METABOLIC AND NEUROLOGICAL TRAITS ALSO SUGGEST THAT MATERNAL GENES MIGHT AFFECT THE OFFSPRING PHENOTYPE INDEPENDENT OF THE TRANSMISSION OF THAT PARTICULAR GENE TO THE OFFSPRING. CONSIDERING THE IMPLICATIONS OF THIS HYPOTHESIS, SOME CONCLUSIONS DRAWN FROM TRANSGENIC OR KNOCKOUT ANIMAL MODELS AND BASED ON THE CAUSALITY BETWEEN A GENETIC ALTERATION AND A PHENOTYPE, NEED TO BE CHALLENGED. POSSIBLE IMPLICATIONS FOR THE DEVELOPMENT, DIAGNOSTIC AND THERAPY OF HUMAN GENETIC DISEASES HAVE TO BE INVESTIGATED. 2014 12 6844 34 [METABOLIC PROGRAMMING: THEORETICAL CONCEPTS AND EXPERIMENTAL EVIDENCE]. IT IS KNOWN THAT THE POOR NUTRITION DURING A FETAL DEVELOPMENT MAY CONTRIBUTE TO AN INCREASED RISK OF CHRONIC DISEASES IN ADULTHOOD. IN A MODERN LITERATURE, THIS PHENOMENON IS CALLED <>. IT IS ASSUMED THAT THE QUALITATIVE OR QUANTITATIVE DEFICIENCY OF CERTAIN NUTRITIONAL COMPONENTS DURING AN EARLY DEVELOPMENT MAY LEAD TO THE ADAPTATIONS THAT CONTRIBUTE TO IMPROVED SURVIVAL DURING THE PRENATAL AND EARLY POSTNATAL PERIODS OF AN ONTOGENESIS. HOWEVER, THE CONSEQUENCE OF SUCH ADAPTIVE CHANGES MAY ALSO BE THE DEVELOPMENT OF VARIOUS PATHOLOGICAL PROCESSES AT THE LATER STAGES OF LIFE. RECENT STUDIES HAVE SHOWN THAT ONE OF THE MAJOR MECHANISMS INVOLVED IN THESE ADAPTATIONS IS THE EPIGENETIC REGULATION OF A GENE ACTIVITY. IN THIS REVIEW, THE EXPERIMENTAL EVIDENCE IS PROVIDED THAT PROCESSES ARISING FROM A QUANTITATIVELY OR QUALITATIVELY RESTRICTED DIET DURING THE EARLY STAGES OF DEVELOPMENT PLAY AN IMPORTANT ROLE IN THE FURTHER LIFE AND CAN GREATLY INFLUENCE RISK OF VARIOUS AGE-RELATED DISEASES AND LIFE SPAN. 2013 13 4782 34 NUTRIGENETICS, EPIGENETICS AND GESTATIONAL DIABETES: CONSEQUENCES IN MOTHER AND CHILD. GESTATIONAL DIABETES MELLITUS (GDM) IS THE MOST COMMON METABOLIC CONDITION DURING PREGNANCY AND MAY RESULT IN SHORT- AND LONG-TERM COMPLICATIONS FOR BOTH MOTHER AND OFFSPRING. THE COMPLEXITY OF PHENOTYPIC OUTCOMES SEEMS INFLUENCED BY GENETIC SUSCEPTIBILITY, NUTRIENT-GENE INTERACTIONS AND LIFESTYLE INTERACTING WITH CLINICAL FACTORS. THERE IS STRONG EVIDENCE THAT NOT ONLY THE ADVERSE GENETIC BACKGROUND BUT ALSO THE EPIGENETIC MODIFICATIONS IN RESPONSE TO NUTRITIONAL AND ENVIRONMENTAL FACTORS COULD INFLUENCE THE MATERNAL HYPERGLYCEMIA IN PREGNANCY AND THE FOETAL METABOLIC PROGRAMMING. IN THIS VIEW, THE CORRELATION BETWEEN EPIGENETIC MODIFICATIONS AND THEIR TRANSGENERATIONAL EFFECTS REPRESENTS A VERY INTERESTING FIELD OF STUDY. THE PRESENT REVIEW GIVES INSIGHT INTO THE ROLE OF GENE VARIANTS AND THEIR INTERACTIONS WITH NUTRIENTS IN GDM. IN ADDITION, WE PROVIDE AN OVERVIEW OF THE EPIGENETIC CHANGES AND THEIR ROLE IN THE MATERNAL-FOETAL TRANSMISSION OF CHRONIC DISEASES. OVERALL, THE KNOWLEDGE OF EPIGENETIC MODIFICATIONS INDUCED BY AN ADVERSE INTRAUTERINE AND PERINATAL ENVIRONMENT COULD SHED LIGHT ON THE POTENTIAL PATHOPHYSIOLOGICAL MECHANISMS OF LONG-TERM DISEASE DEVELOPMENT IN THE OFFSPRING AND PROVIDE USEFUL TOOLS FOR THEIR PREVENTION. 2019 14 6064 32 THE DEVELOPMENTAL ORIGINS OF ADULT DISEASE. EPIDEMIOLOGICAL AND CLINICAL OBSERVATIONS HAVE LED TO THE HYPOTHESIS THAT THE RISK OF DEVELOPING SOME CHRONIC DISEASES IN ADULTHOOD IS INFLUENCED NOT ONLY BY GENETIC AND ADULT LIFESTYLE FACTORS, BUT ALSO BY ENVIRONMENTAL FACTORS ACTING IN EARLY LIFE. THESE FACTORS ACT THROUGH THE PROCESSES OF DEVELOPMENTAL PLASTICITY AND POSSIBLY EPIGENETIC MODIFICATION, AND CAN BE DISTINGUISHED FROM DEVELOPMENTAL DISRUPTION. THE CONCEPT OF PREDICTIVE ADAPTATION HAS BEEN DEVELOPED TO EXPLAIN THE RELATIONSHIP BETWEEN EARLY LIFE EVENTS AND THE RISK OF LATER DISEASE. AT ITS BASE, THE MODEL SUGGESTS THAT A MISMATCH BETWEEN FETAL EXPECTATION OF ITS POSTNATAL ENVIRONMENT AND ACTUAL POSTNATAL ENVIRONMENT CONTRIBUTE TO LATER ADULT DISEASE RISK. THIS MISMATCH IS EXACERBATED, IN PART, BY THE PHENOMENON OF "MATERNAL CONSTRAINT" ON FETAL GROWTH, WHICH IMPLICITLY PROVIDES AN UPPER LIMIT OF POSTNATAL NUTRITIONAL ENVIRONMENT THAT HUMANS HAVE ADAPTED FOR AND IS NOW FREQUENTLY EXCEEDED. THESE EXPERIMENTAL, CLINICAL AND CONCEPTUAL CONSIDERATIONS HAVE IMPORTANT IMPLICATIONS FOR PREVENTION AND INTERVENTION IN THE CURRENT EPIDEMIC OF CHILDHOOD OBESITY AND ADULT METABOLIC AND CARDIOVASCULAR DISORDERS. 2005 15 1376 31 DEVELOPMENTAL PROGRAMMING OF BODY COMPOSITION: UPDATE ON EVIDENCE AND MECHANISMS. PURPOSE OF REVIEW: A GROWING BODY OF EPIDEMIOLOGICAL AND EXPERIMENTAL DATA INDICATE THAT NUTRITIONAL OR ENVIRONMENTAL STRESSORS DURING EARLY DEVELOPMENT CAN INDUCE LONG-TERM ADAPTATIONS THAT INCREASE RISK OF OBESITY, DIABETES, CARDIOVASCULAR DISEASE, AND OTHER CHRONIC CONDITIONS-A PHENOMENON TERMED "DEVELOPMENTAL PROGRAMMING." A COMMON PHENOTYPE IN HUMANS AND ANIMAL MODELS IS ALTERED BODY COMPOSITION, WITH REDUCED MUSCLE AND BONE MASS, AND INCREASED FAT MASS. IN THIS REVIEW, WE SUMMARIZE THE RECENT LITERATURE LINKING PRENATAL FACTORS TO FUTURE BODY COMPOSITION AND EXPLORE CONTRIBUTING MECHANISMS. RECENT FINDINGS: MANY PRENATAL EXPOSURES, INCLUDING INTRAUTERINE GROWTH RESTRICTION, EXTREMES OF BIRTH WEIGHT, MATERNAL OBESITY, AND MATERNAL DIABETES, ARE ASSOCIATED WITH INCREASED FAT MASS, REDUCED MUSCLE MASS, AND DECREASED BONE DENSITY, WITH EFFECTS REPORTED THROUGHOUT INFANCY AND CHILDHOOD, AND PERSISTING INTO MIDDLE AGE. MECHANISMS AND MEDIATORS INCLUDE MATERNAL DIET, BREASTMILK COMPOSITION, METABOLITES, APPETITE REGULATION, GENETIC AND EPIGENETIC INFLUENCES, STEM CELL COMMITMENT AND FUNCTION, AND MITOCHONDRIAL METABOLISM. DIFFERENCES IN BODY COMPOSITION ARE A COMMON PHENOTYPE FOLLOWING DISRUPTIONS TO THE PRENATAL ENVIRONMENT, AND MAY CONTRIBUTE TO DEVELOPMENTAL PROGRAMMING OF OBESITY AND DIABETES RISK. 2019 16 6133 36 THE EPIGENETIC ROLE OF VITAMIN C IN NEURODEVELOPMENT. THE MATERNAL DIET DURING PREGNANCY IS A KEY DETERMINANT OF OFFSPRING HEALTH. EARLY STUDIES HAVE LINKED POOR MATERNAL NUTRITION DURING GESTATION WITH A PROPENSITY FOR THE DEVELOPMENT OF CHRONIC CONDITIONS IN OFFSPRING. THESE CONDITIONS INCLUDE CARDIOVASCULAR DISEASE, TYPE 2 DIABETES AND EVEN COMPROMISED MENTAL HEALTH. WHILE MULTIPLE FACTORS MAY CONTRIBUTE TO THESE OUTCOMES, DISTURBED EPIGENETIC PROGRAMMING DURING EARLY DEVELOPMENT IS ONE POTENTIAL BIOLOGICAL MECHANISM. THE EPIGENOME IS PROGRAMMED PRIMARILY IN UTERO, AND DURING THIS TIME, THE DEVELOPING FETUS IS HIGHLY SUSCEPTIBLE TO ENVIRONMENTAL FACTORS SUCH AS NUTRITIONAL INSULTS. DURING NEURODEVELOPMENT, EPIGENETIC PROGRAMMING COORDINATES THE FORMATION OF PRIMITIVE CENTRAL NERVOUS SYSTEM STRUCTURES, NEUROGENESIS, AND NEUROPLASTICITY. DYSREGULATED EPIGENETIC PROGRAMMING HAS BEEN IMPLICATED IN THE AETIOLOGY OF SEVERAL NEURODEVELOPMENTAL DISORDERS SUCH AS TATTON-BROWN-RAHMAN SYNDROME. ACCORDINGLY, THERE IS GREAT INTEREST IN DETERMINING HOW MATERNAL NUTRIENT AVAILABILITY IN PREGNANCY MIGHT AFFECT THE EPIGENETIC STATUS OF OFFSPRING, AND HOW SUCH INFLUENCES MAY PRESENT PHENOTYPICALLY. IN RECENT YEARS, A NUMBER OF EPIGENETIC ENZYMES THAT ARE ACTIVE DURING EMBRYONIC DEVELOPMENT HAVE BEEN FOUND TO REQUIRE VITAMIN C AS A COFACTOR. THESE ENZYMES INCLUDE THE TEN-ELEVEN TRANSLOCATION METHYLCYTOSINE DIOXYGENASES (TETS) AND THE JUMONJI C DOMAIN-CONTAINING HISTONE LYSINE DEMETHYLASES THAT CATALYSE THE OXIDATIVE REMOVAL OF METHYL GROUPS ON CYTOSINES AND HISTONE LYSINE RESIDUES, RESPECTIVELY. THESE ENZYMES ARE INTEGRAL TO EPIGENETIC REGULATION AND HAVE FUNDAMENTAL ROLES IN CELLULAR DIFFERENTIATION, THE MAINTENANCE OF PLURIPOTENCY AND DEVELOPMENT. THE DEPENDENCE OF THESE ENZYMES ON VITAMIN C FOR OPTIMAL CATALYTIC ACTIVITY ILLUSTRATES A POTENTIALLY CRITICAL CONTRIBUTION OF THE NUTRIENT DURING MAMMALIAN DEVELOPMENT. THESE INSIGHTS ALSO HIGHLIGHT A POTENTIAL RISK ASSOCIATED WITH VITAMIN C INSUFFICIENCY DURING PREGNANCY. THE LINK BETWEEN VITAMIN C INSUFFICIENCY AND DEVELOPMENT IS PARTICULARLY APPARENT IN THE CONTEXT OF NEURODEVELOPMENT AND HIGH VITAMIN C CONCENTRATIONS IN THE BRAIN ARE INDICATIVE OF IMPORTANT FUNCTIONAL REQUIREMENTS IN THIS ORGAN. ACCORDINGLY, THIS REVIEW CONSIDERS THE EVIDENCE FOR THE POTENTIAL IMPACT OF MATERNAL VITAMIN C STATUS ON NEURODEVELOPMENTAL EPIGENETICS. 2022 17 2038 28 EPIGENETIC CHANGES PREDISPOSING TO TYPE 2 DIABETES IN INTRAUTERINE GROWTH RETARDATION. EPIDEMIOLOGIC STUDIES HAVE DEMONSTRATED AN ASSOCIATION BETWEEN INTRAUTERINE GROWTH RETARDATION AND A GREATER RISK OF CHRONIC DISEASE, INCLUDING CORONARY HEART DISEASE, HYPERTENSION, STROKE, AND TYPE 2 DIABETES IN ADULTHOOD. AN ADVERSE INTRAUTERINE ENVIRONMENT MAY AFFECT BOTH GROWTH AND DEVELOPMENT OF THE ORGANISM, PERMANENTLY PROGRAMMING ENDOCRINE AND METABOLIC FUNCTIONS. ONE OF THE MECHANISMS OF PROGRAMMING IS THE EPIGENETIC MODIFICATION OF GENE PROMOTERS INVOLVED IN THE CONTROL OF KEY METABOLIC PATHWAYS. THE AIM OF THIS REVIEW IS TO PROVIDE AN OVERVIEW OF THE EXPERIMENTAL EVIDENCE SHOWING THE EFFECTS OF EARLY EXPOSURE TO SUBOPTIMAL ENVIRONMENT ON EPIGENOME. THE KNOWLEDGE OF THE EPIGENETIC MARKERS OF PROGRAMMING MAY ALLOW THE IDENTIFICATION OF SUSCEPTIBLE INDIVIDUALS AND THE DESIGN OF TARGETED PREVENTION STRATEGIES. 2010 18 4125 34 MECHANISMS OF DISEASE: IN UTERO PROGRAMMING IN THE PATHOGENESIS OF HYPERTENSION. NUTRITIONAL AND OTHER ENVIRONMENTAL CUES DURING DEVELOPMENT CAN PERMANENTLY ALTER THE STRUCTURE, HOMEOSTATIC SYSTEMS, AND FUNCTIONS OF THE BODY. THIS PHENOMENON HAS BEEN REFERRED TO AS 'PROGRAMMING'. EPIDEMIOLOGICAL AND ANIMAL STUDIES SHOW THAT PROGRAMMED EFFECTS OPERATE WITHIN THE NORMAL RANGE OF GROWTH AND DEVELOPMENT, AND INFLUENCE THE RISK OF CHRONIC DISEASE IN ADULT LIFE. WE REVIEW THE EVIDENCE THAT THESE EFFECTS INCLUDE REDUCED NEPHRON NUMBER AND COMPENSATORY ADAPTATIONS, WHICH MIGHT LEAD TO HYPERTENSION, AND PERHAPS ACCELERATE THE DECLINE IN RENAL FUNCTION THAT ACCOMPANIES AGING. THESE PROCESSES MIGHT BE EXACERBATED BY PROGRAMMED CHANGES IN VASCULAR STRUCTURE AND FUNCTION, AND ALTERATIONS IN ENDOCRINE AND METABOLIC HOMEOSTASIS. PROGRAMMED EFFECTS MIGHT BE INITIATED AS EARLY AS THE PERICONCEPTUAL PHASE OF DEVELOPMENT, AND COULD INVOLVE EPIGENETIC CHANGES IN GENE EXPRESSION OR ALTERED STEM CELL ALLOCATION. BETTER UNDERSTANDING OF THESE PROCESSES COULD LEAD TO THE DEVELOPMENT OF NOVEL DIAGNOSTIC AND PREVENTIVE MEASURES, AND TO EARLY DETECTION OF AT-RISK INDIVIDUALS. BY MONITORING BLOOD PRESSURE, WEIGHT, AND RENAL FUNCTION IN CHILDREN, IT MIGHT BE POSSIBLE TO REDUCE THE RISK OF CARDIOVASCULAR AND RENAL DISEASE IN LATER LIFE. 2006 19 2183 36 EPIGENETIC MECHANISMS RESPONSIBLE FOR THE TRANSGENERATIONAL INHERITANCE OF INTRAUTERINE GROWTH RESTRICTION PHENOTYPES. A POORLY FUNCTIONING PLACENTA RESULTS IN IMPAIRED EXCHANGES OF OXYGEN, NUTRITION, WASTES AND HORMONES BETWEEN THE MOTHER AND HER FETUS. THIS CAN LEAD TO RESTRICTION OF FETAL GROWTH. THESE GROWTH RESTRICTED BABIES ARE AT INCREASED RISK OF DEVELOPING CHRONIC DISEASES, SUCH AS TYPE-2 DIABETES, HYPERTENSION, AND KIDNEY DISEASE, LATER IN LIFE. ANIMAL STUDIES HAVE SHOWN THAT GROWTH RESTRICTED PHENOTYPES ARE SEX-DEPENDENT AND CAN BE TRANSMITTED TO SUBSEQUENT GENERATIONS THROUGH BOTH THE PATERNAL AND MATERNAL LINEAGES. ALTERED EPIGENETIC MECHANISMS, SPECIFICALLY CHANGES IN DNA METHYLATION, HISTONE MODIFICATIONS, AND NON-CODING RNAS THAT REGULATE EXPRESSION OF GENES THAT ARE IMPORTANT FOR FETAL DEVELOPMENT HAVE BEEN SHOWN TO BE ASSOCIATED WITH THE TRANSMISSION PATTERN OF GROWTH RESTRICTED PHENOTYPES. THIS REVIEW WILL DISCUSS THE SUBSEQUENT HEALTH OUTCOMES IN THE OFFSPRING AFTER GROWTH RESTRICTION AND THE TRANSMISSION PATTERNS OF THESE DISEASES. EVIDENCE OF ALTERED EPIGENETIC MECHANISMS IN ASSOCIATION WITH FETAL GROWTH RESTRICTION WILL ALSO BE REVIEWED. 2022 20 2806 42 FETAL PROGRAMMING AND THE RISK OF NONCOMMUNICABLE DISEASE. THE "DEVELOPMENTAL ORIGINS OF HEALTH AND DISEASE" (DOHAD) HYPOTHESIS PROPOSES THAT ENVIRONMENTAL CONDITIONS DURING FETAL AND EARLY POST-NATAL DEVELOPMENT INFLUENCE LIFELONG HEALTH AND CAPACITY THROUGH PERMANENT EFFECTS ON GROWTH, STRUCTURE AND METABOLISM. THIS HAS BEEN CALLED 'PROGRAMMING'. THE HYPOTHESIS IS SUPPORTED BY EPIDEMIOLOGICAL EVIDENCE IN HUMANS LINKING NEWBORN SIZE, AND INFANT GROWTH AND NUTRITION, TO ADULT HEALTH OUTCOMES, AND BY EXPERIMENTS IN ANIMALS SHOWING THAT MATERNAL UNDER- AND OVER-NUTRITION AND OTHER INTERVENTIONS (E.G., GLUCOCORTICOID EXPOSURE) DURING PREGNANCY LEAD TO ABNORMAL METABOLISM AND BODY COMPOSITION IN THE ADULT OFFSPRING. EARLY LIFE PROGRAMMING IS NOW THOUGHT TO BE IMPORTANT IN THE ETIOLOGY OF OBESITY, TYPE 2 DIABETES, AND CARDIOVASCULAR DISEASE, OPENING UP THE POSSIBILITY THAT THESE COMMON DISEASES COULD BE PREVENTED BY ACHIEVING OPTIMAL FETAL AND INFANT DEVELOPMENT. THIS IS LIKELY TO HAVE ADDITIONAL BENEFITS FOR INFANT SURVIVAL AND HUMAN CAPITAL (E.G., IMPROVED COGNITIVE PERFORMANCE AND PHYSICAL WORK CAPACITY). FETAL NUTRITION IS INFLUENCED BY THE MOTHER'S DIET AND BODY SIZE AND COMPOSITION, BUT HARD EVIDENCE THAT THE NUTRITION OF THE HUMAN MOTHER PROGRAMMES CHRONIC DISEASE RISK IN HER OFFSPRING IS CURRENTLY LIMITED. RECENT FINDINGS FROM FOLLOW-UP OF CHILDREN BORN AFTER RANDOMISED NUTRITIONAL INTERVENTIONS IN PREGNANCY ARE MIXED, BUT SHOW SOME EVIDENCE OF BENEFICIAL EFFECTS ON VASCULAR FUNCTION, LIPID CONCENTRATIONS, GLUCOSE TOLERANCE AND INSULIN RESISTANCE. WORK IN EXPERIMENTAL ANIMALS SUGGESTS THAT EPIGENETIC PHENOMENA, WHEREBY GENE EXPRESSION IS MODIFIED BY DNA METHYLATION, AND WHICH ARE SENSITIVE TO THE NUTRITIONAL ENVIRONMENT IN EARLY LIFE, MAY BE ONE MECHANISM UNDERLYING PROGRAMMING. 2013