1 1865 153 EMERGING CONCEPTS ON THE ROLE OF EPIGENETICS IN THE RELATIONSHIPS BETWEEN NUTRITION AND HEALTH. UNDERSTANDING THE PHYSIOLOGICAL AND METABOLIC UNDERPINNINGS THAT CONFER INDIVIDUAL DIFFERENCES IN RESPONSES TO DIET AND DIET-RELATED CHRONIC DISEASE IS ESSENTIAL TO ADVANCE THE FIELD OF NUTRITION. THIS INCLUDES ELUCIDATING THE DIFFERENCES IN GENE EXPRESSION THAT ARE MEDIATED THROUGH PROGRAMMING OF THE GENOME THROUGH EPIGENETIC CHROMATIN MODIFICATIONS. EPIGENETIC LANDSCAPES ARE INFLUENCED BY AGE, GENETICS, TOXINS AND OTHER ENVIRONMENTAL FACTORS, INCLUDING DIETARY EXPOSURES AND NUTRITIONAL STATUS. EPIGENETIC MODIFICATIONS INFLUENCE TRANSCRIPTION AND GENOME STABILITY ARE ESTABLISHED DURING DEVELOPMENT WITH LIFE-LONG CONSEQUENCES. THEY CAN BE INHERITED FROM ONE GENERATION TO THE NEXT. THE COVALENT MODIFICATIONS OF CHROMATIN, WHICH INCLUDE METHYLATION AND ACETYLATION, ON DNA NUCLEOTIDE BASES, HISTONE PROTEINS AND RNA ARE DERIVED FROM INTERMEDIATES OF ONE-CARBON METABOLISM AND CENTRAL METABOLISM. THEY INFLUENCE KEY PHYSIOLOGICAL PROCESSES THROUGHOUT LIFE, AND TOGETHER WITH INHERITED DNA PRIMARY SEQUENCE, CONTRIBUTE TO RESPONSIVENESS TO ENVIRONMENTAL STRESSES, DIET AND RISK FOR AGE-RELATED CHRONIC DISEASE. REVEALING DIET-EPIGENETIC RELATIONSHIPS HAS THE POTENTIAL TO TRANSFORM NUTRITION SCIENCE BY INCREASING OUR FUNDAMENTAL UNDERSTANDING OF: (I) THE ROLE OF NUTRIENTS IN BIOLOGICAL SYSTEMS, (II) THE RESILIENCE OF LIVING ORGANISMS IN RESPONDING TO ENVIRONMENTAL PERTURBATIONS, AND (III) THE DEVELOPMENT OF DIETARY PATTERNS THAT PROGRAMME PHYSIOLOGY FOR LIFE-LONG HEALTH. EPIGENETICS MAY ALSO ENABLE THE CLASSIFICATION OF INDIVIDUALS WITH CHRONIC DISEASE FOR SPECIFIC DIETARY MANAGEMENT AND/OR FOR EFFICACIOUS DIET-PHARMACEUTICAL COMBINATION THERAPIES. THESE NEW EMERGING CONCEPTS AT THE INTERFACE OF NUTRITION AND EPIGENETICS WERE DISCUSSED, AND FUTURE RESEARCH NEEDS IDENTIFIED BY LEADING EXPERTS AT THE 26TH MARABOU SYMPOSIUM ENTITLED 'NUTRITION, EPIGENETICS, GENETICS: IMPACT ON HEALTH AND DISEASE'. FOR A COMPILATION OF THE GENERAL DISCUSSION AT THE MARABOU SYMPOSIUM, CLICK HERE HTTP://WWW.MARABOUSYMPOSIUM.ORG/. 2018 2 1453 31 DISCOVERING HOW ENVIRONMENTAL EXPOSURES ALTER GENES COULD LEAD TO NEW TREATMENTS FOR CHRONIC ILLNESSES. EMERGING RESEARCH DEMONSTRATES THAT DIET, POLLUTION, AND OTHER ENVIRONMENTAL TRIGGERS CAN ALTER BOTH THE FUNCTION AND EXPRESSION OF HUMAN GENES AND LEAD TO A HEIGHTENED DISEASE RISK. THESE ENVIRONMENT-GENE INTERACTIONS CAN CAUSE SO-CALLED EPIGENETIC CHANGES IN GENE EXPRESSION-PATTERNS OF WHICH GENES ARE SWITCHED "ON" OR "OFF"-THAT MAY ACCOUNT FOR THE RISING MORTALITY FROM CHRONIC DISEASES IN INDUSTRIALIZED NATIONS. IN THIS PAPER, WE CALL FOR A NEW TRANSDISCIPLINARY APPROACH TO PUBLIC HEALTH THAT WOULD EXAMINE HOW ENVIRONMENTAL EXPOSURES, BOTH PHYSICAL AND SOCIAL, INFLUENCE GENE EXPRESSION AND A PERSON'S SUSCEPTIBILITY TO CHRONIC DISEASE. THIS INITIATIVE COULD LEAD TO NEW WAYS TO PREVENT AND TREAT SUCH ILLNESSES. 2011 3 2049 24 EPIGENETIC CODE AND POTENTIAL EPIGENETIC-BASED THERAPIES AGAINST CHRONIC DISEASES IN DEVELOPMENTAL ORIGINS. ACCUMULATED FINDINGS HAVE DEMONSTRATED THAT THE EPIGENETIC CODE PROVIDES A POTENTIAL LINK BETWEEN PRENATAL STRESS AND CHANGES IN GENE EXPRESSION THAT COULD BE INVOLVED IN THE DEVELOPMENTAL PROGRAMMING OF VARIOUS CHRONIC DISEASES IN LATER LIFE. MEANWHILE, BASED ON THE FACT THAT EPIGENETIC MODIFICATIONS ARE REVERSIBLE AND CAN BE MANIPULATED, THIS PROVIDES A UNIQUE CHANCE TO DEVELOP MULTIPLE NOVEL EPIGENETIC-BASED THERAPEUTIC STRATEGIES AGAINST MANY CHRONIC DISEASES IN EARLY DEVELOPMENTAL PERIODS. THIS ARTICLE WILL GIVE A SHORT REVIEW OF RECENT FINDINGS OF PRENATAL INSULT-INDUCED EPIGENETIC CHANGES IN DEVELOPMENTAL ORIGINS OF SEVERAL CHRONIC DISEASES, AND WILL ATTEMPT TO PROVIDE AN OVERVIEW OF THE CURRENT EPIGENETIC-BASED STRATEGIES APPLIED IN THE EARLY PREVENTION, DIAGNOSIS AND POSSIBLE THERAPIES FOR HUMAN CHRONIC DISEASES. 2014 4 2586 30 EPIGENETICS OF PAIN MEDIATORS. PURPOSE OF REVIEW: THE FIELD OF EPIGENETICS CONTINUES ITS INFLUENTIAL RISE AS A MEANS TO BETTER UNDERSTAND AN ORGANISM'S UNIQUE DEVELOPMENTAL IDENTITY OVER A LIFESPAN. WHEREAS A GENOME IS CONSTANT AND UNCHANGING, AN EPIGENOME IS DYNAMIC AND ALTERABLE. EPIGENETIC CHANGES ARE IN RESPONSE TO INNUMERABLE INTERNAL AND EXTERNAL INFLUENCES INCLUDING ENVIRONMENTAL CHANGES SUCH AS DIET, EXERCISE, DISEASE, TOXINS, AND STRESS. EPIGENETICS IS OF PARTICULAR INTEREST IN THE MEDICAL RESEARCH COMMUNITY BOTH FOR THE POTENTIAL TO CAUSE DISEASE AND AS A TARGET FOR THERAPEUTIC INTERVENTIONS. THIS ARTICLE PROVIDES A SUCCINCT EXPLANATION OF THE POTENTIAL FOR EPIGENETICS TO INFLUENCE THE UNDERSTANDING OF PAIN AS WELL AS A REVIEW OF RELEVANT RESEARCH ON THE TOPIC. RECENT FINDINGS: STUDIES ON EPIGENETICS AND PAIN REMAIN LARGELY PRECLINICAL AND INVESTIGATE THE THEORETICAL ABILITY OF EPIGENETICS TO ALTER THE NOCICEPTIVE PATHWAYS BOTH IN THE PERIPHERY AND CENTRALLY. SIGNIFICANT EVIDENCE NOW EXISTS FOR THE ABILITY OF EPIGENETICS TO MODIFY BROADLY CATEGORIZED PAIN TYPES, INCLUDING INFLAMMATORY, NEUROPATHIC, VISCERAL, AND CANCER RELATED. SUMMARY: BOTH PATIENTS AND PROVIDERS RECOGNIZE THAT NOVEL MEDICATIONS FOR THE TREATMENT OF BOTH ACUTE AND CHRONIC PAIN CONDITIONS ARE SORELY NEEDED. THE UNDERSTANDING OF EPIGENETICS AND ITS INFLUENCE ON NOCICEPTION REMAINS IN RELATIVE INFANCY BUT EARLY EVIDENCE IS STRONG FOR POTENTIAL THERAPEUTIC BENEFITS TO TREAT THESE CONDITIONS. 2018 5 2184 43 EPIGENETIC MECHANISMS THAT UNDERPIN METABOLIC AND CARDIOVASCULAR DISEASES. CELLULAR COMMITMENT TO A SPECIFIC LINEAGE IS CONTROLLED BY DIFFERENTIAL SILENCING OF GENES, WHICH IN TURN DEPENDS ON EPIGENETIC PROCESSES SUCH AS DNA METHYLATION AND HISTONE MODIFICATION. DURING EARLY EMBRYOGENESIS, THE MAMMALIAN GENOME IS 'WIPED CLEAN' OF MOST EPIGENETIC MODIFICATIONS, WHICH ARE PROGRESSIVELY RE-ESTABLISHED DURING EMBRYONIC DEVELOPMENT. THUS, THE EPIGENOME OF EACH MATURE CELLULAR LINEAGE CARRIES THE RECORD OF ITS DEVELOPMENTAL HISTORY. THE SUBSEQUENT TRAJECTORY AND PATTERN OF DEVELOPMENT ARE ALSO RESPONSIVE TO ENVIRONMENTAL INFLUENCES, AND SUCH PLASTICITY IS LIKELY TO HAVE AN EPIGENETIC BASIS. EPIGENETIC MARKS MAY BE TRANSMITTED ACROSS GENERATIONS, EITHER DIRECTLY BY PERSISTING THROUGH MEIOSIS OR INDIRECTLY THROUGH REPLICATION IN THE NEXT GENERATION OF THE CONDITIONS IN WHICH THE EPIGENETIC CHANGE OCCURRED. DEVELOPMENTAL PLASTICITY EVOLVED TO MATCH AN ORGANISM TO ITS ENVIRONMENT, AND A MISMATCH BETWEEN THE PHENOTYPIC OUTCOME OF ADAPTIVE PLASTICITY AND THE CURRENT ENVIRONMENT INCREASES THE RISK OF METABOLIC AND CARDIOVASCULAR DISEASE. THESE CONSIDERATIONS POINT TO EPIGENETIC PROCESSES AS A KEY MECHANISM THAT UNDERPINS THE DEVELOPMENTAL ORIGINS OF CHRONIC NONCOMMUNICABLE DISEASE. HERE, WE REVIEW THE EVIDENCE THAT ENVIRONMENTAL INFLUENCES DURING MAMMALIAN DEVELOPMENT LEAD TO STABLE CHANGES IN THE EPIGENOME THAT ALTER THE INDIVIDUAL'S SUSCEPTIBILITY TO CHRONIC METABOLIC AND CARDIOVASCULAR DISEASE, AND DISCUSS THE CLINICAL IMPLICATIONS. 2009 6 2136 40 EPIGENETIC INFLUENCES IN THE OBESITY/COLORECTAL CANCER AXIS: A NOVEL THERAGNOSTIC AVENUE. THE WORLD HEALTH ORGANIZATION (WHO) CONSIDERS THAT OBESITY HAS REACHED PROPORTIONS OF PANDEMIC. EXPERTS ALSO INSIST ON THE IMPORTANCE OF CONSIDERING OBESITY AS A CHRONIC DISEASE AND ONE OF THE MAIN CONTRIBUTORS TO THE WORLDWIDE BURDEN OF OTHER NONTRANSMISSIBLE CHRONIC DISEASES, WHICH HAVE A GREAT IMPACT ON HEALTH, LIFESTYLE, AND ECONOMIC COST. ONE OF THE MOST CURRENT CHALLENGES OF BIOMEDICAL SCIENCE FACES IS TO UNDERSTAND THE ORIGIN OF THE CHRONIC NONTRANSMISSIBLE DISEASES, SUCH AS OBESITY AND CANCER. THERE IS A LARGE EVIDENCE, BOTH IN EPIDEMIOLOGICAL STUDIES IN HUMANS AND IN ANIMAL MODELS, OF THE ASSOCIATION BETWEEN OBESITY AND AN INCREASED RISK OF CANCER INCIDENCE. IN THE LAST YEARS, THE INITIAL DISCOVERY OF EPIGENETIC MECHANISMS REPRESENTS THE MOST RELEVANT FINDING TO EXPLAIN HOW THE GENOME INTERACTS WITH ENVIRONMENTAL FACTORS AND THE RIPPLE EFFECTS ON DISEASE PATHOGENESES. SINCE THEN, ALL EPIGENETIC PROCESS HAS BEEN INVESTIGATED BY THE SCIENTIFIC COMMUNITIES FOR NEARLY TWO DECADES TO DETERMINE WHICH COMPONENTS ARE INVOLVED IN THIS PROCESS. DNA/RNA METHYLATION AND MIRNA ARE CLASSIFIED AS TWO OF THE MOST IMPORTANT REPRESENTATIVE CLASSES OF SUCH EPIGENETIC MECHANISMS AND DYSREGULATED ACTIVITY OF SUCH MECHANISM CAN CERTAINLY CONTRIBUTE TO DISEASE PATHOGENESIS AND/OR PROGRESSION ESPECIALLY IN TUMORS. THIS REVIEW ARTICLE SERVES TO HIGHLIGHT THE IMPACT OF DNA/RNA METHYLATION AND MIRNA-BASED EPIGENETIC MECHANISM ACTIVITIES IN THE INTERPLAY BETWEEN OBESITY AND THE DEVELOPMENT AND CLINICAL SIGNIFICANCE OF COLORECTAL CANCER. 2019 7 34 35 A CHILD'S NUTRITION AND EPIGENETICS. STUDIES HAVE SHOWN A DRAMATIC INCREASE IN THE INCIDENCE AND THE PREVALENCE OF CHRONIC DISEASES SUCH AS TYPE 2 DIABETES MELLITUS AND CARDIOVASCULAR DISORDERS OVER THE LAST SEVERAL DECADES. ENVIRONMENTAL TRIGGERS AND NUTRITION ARE CONSIDERED MAJOR CONTRIBUTORS TO THIS INCREASE. THE FIRST 1,000 DAYS OF LIFE, WHICH IS THE PERIOD BETWEEN CONCEPTION AND THE FIRST 2 YEARS OF AGE, IS CONSIDERED THE TIME FOR ENVIRONMENTAL FACTORS, SUCH AS NUTRITION, TO EXERT THEIR POSITIVE AND MOST CRUCIAL EFFECTS ON A CHILD'S HEALTH. NUTRIGENOMICS, THE STUDY OF HOW GENES AND FOOD COMPONENTS INTERACT, LOOKS INTO DIET-ALTERING DISEASE DEVELOPMENT BY MODULATING PROCESSES INVOLVED WITH THE ONSET, PROGRESSION, AND SEVERITY OF DISEASE. THESE FACTORS AFFECTING THE DEVELOPMENT OF THESE CHRONIC DISEASES ARE THOUGHT TO BE MEDIATED BY EPIGENETIC MECHANISMS, WHICH ARE HERITABLE AND REVERSIBLE, AND CARRY GENETIC INFORMATION WITHOUT CHANGING THE NUCLEOTIDE SEQUENCE OF THE GENOME AND ARE ALSO MEDIATED BY MATERNAL AND POSTNATAL NUTRITION. 2023 8 49 33 A CURRENT GENETIC AND EPIGENETIC VIEW ON HUMAN AGING MECHANISMS. THE PROCESS OF AGING IS ONE OF THE MOST COMPLEX AND INTRIGUING BIOLOGICAL PHENOMENONS. AGING IS A GENETICALLY REGULATED PROCESS IN WHICH THE ORGANISM'S MAXIMUM LIFESPAN POTENTIAL IS PRE-DETERMINED, WHILE THE RATE OF AGING IS INFLUENCED BY ENVIRONMENTAL FACTORS AND LIFESTYLE. CONSIDERING THE COMPLEXITY OF MECHANISMS INVOLVED IN THE REGULATION OF AGING PROCESS, UP TO THIS DATE THERE ISN'T A MAJOR, UNIFYING THEORY WHICH COULD EXPLAIN THEM. AS GENETIC/EPIGENETIC AND ENVIRONMENTAL FACTORS BOTH INEVITABLY INFLUENCE THE AGING PROCESS, HERE WE PRESENT A REVIEW ON THE GENETIC AND EPIGENETIC REGULATION OF THE MOST IMPORTANT MOLECULAR AND CELLULAR MECHANISMS INVOLVED IN THE PROCESS OF AGING. BASED ON THE STUDIES ON OXIDATIVE STRESS, METABOLISM, GENOME STABILITY, EPIGENETIC MODIFICATIONS AND CELLULAR SENESCENCE IN ANIMAL MODELS AND HUMANS, WE GIVE AN OVERVIEW OF KEY GENETIC AND MOLECULAR PATHWAYS RELATED TO AGING. AS MOST OF GENETIC MANIPULATIONS WHICH INFLUENCE THE AGING PROCESS ALSO AFFECT REPRODUCTION, WE DISCUSS AGING IN HUMANS AS A POST-REPRODUCTIVE GENETICALLY DETERMINED PROCESS. AFTER THE AGE OF REPRODUCTIVE SUCCESS, AGING CONTINOUSLY PROGRESSES WHICH CLINICALLY COINCIDES WITH THE ONSET OF MOST CHRONIC DISEASES, CANCERS AND DEMENTIONS. AS EVOLUTION SHAPES THE GENOMES FOR REPRODUCTIVE SUCCESS AND NOT FOR POST-REPRODUCTIVE SURVIVAL, AGING COULD BE DEFINED AS A PROTECTIVE MECHANISM WHICH ENSURES THE PRESERVATION AND PROGRESS OF SPECIES THROUGH THE MODIFICATION, TRASMISSION AND IMPROVEMENT OF GENETIC MATERIAL. 2009 9 2528 34 EPIGENETICS AS A KEY LINK BETWEEN PSYCHOSOCIAL STRESS AND AGING: CONCEPTS, EVIDENCE, MECHANISMS . PSYCHOSOCIAL STRESS-ESPECIALLY WHEN CHRONIC, EXCESSIVE, OR OCCURRING EARLY IN LIFE-HAS BEEN ASSOCIATED WITH ACCELERATED AGING AND INCREASED DISEASE RISK. WITH RAPID AGING OF THE WORLD POPULATION, THE NEED TO ELUCIDATE THE UNDERLYING MECHANISMS IS PRESSING, NOW MORE SO THAN EVER. AMONG MOLECULAR MECHANISMS LINKING STRESS AND AGING, THE PRESENT ARTICLE REVIEWS EVIDENCE ON THE ROLE OF EPIGENETICS, BIOCHEMICAL PROCESSES THAT CAN BE SET INTO MOTION BY STRESSORS AND IN TURN INFLUENCE GENOMIC FUNCTION AND COMPLEX PHENOTYPES, INCLUDING AGING-RELATED OUTCOMES. THE ARTICLE FURTHER PROVIDES A CONCEPTUAL MECHANISTIC FRAMEWORK ON HOW STRESS MAY DRIVE EPIGENETIC CHANGES AT SUSCEPTIBLE GENOMIC SITES, THEREBY EXERTING SYSTEMS-LEVEL EFFECTS ON THE AGING EPIGENOME WHILE ALSO REGULATING THE EXPRESSION OF MOLECULES IMPLICATED IN AGING-RELATED PROCESSES. THIS EMERGING EVIDENCE, TOGETHER WITH WORK EXAMINING RELATED BIOLOGICAL PROCESSES, BEGINS TO SHED LIGHT ON THE EPIGENETIC AND, MORE BROADLY, MOLECULAR UNDERPINNINGS OF THE LONG-HYPOTHESIZED CONNECTION BETWEEN STRESS AND AGING. . 2019 10 6378 45 THE ROLE OF NUTRITION ON EPIGENETIC MODIFICATIONS AND THEIR IMPLICATIONS ON HEALTH. NUTRITION PLAYS A KEY ROLE IN MANY ASPECTS OF HEALTH AND DIETARY IMBALANCES ARE MAJOR DETERMINANTS OF CHRONIC DISEASES INCLUDING CARDIOVASCULAR DISEASE, OBESITY, DIABETES AND CANCER. ADEQUATE NUTRITION IS PARTICULARLY ESSENTIAL DURING CRITICAL PERIODS IN EARLY LIFE (BOTH PRE- AND POSTNATAL). IN THIS REGARD, THERE IS EXTENSIVE EPIDEMIOLOGIC AND EXPERIMENTAL DATA SHOWING THAT EARLY SUB-OPTIMAL NUTRITION CAN HAVE HEALTH CONSEQUENCES SEVERAL DECADES LATER. THE HYPOTHESIS THAT EPIGENETIC MECHANISMS MAY LINK SUCH NUTRITIONAL IMBALANCES WITH ALTERED DISEASE RISK HAS BEEN GAINING ACCEPTANCE OVER RECENT YEARS. EPIGENETICS CAN BE DEFINED AS THE STUDY OF HERITABLE CHANGES IN GENE EXPRESSION THAT DO NOT INVOLVE ALTERATIONS IN THE DNA SEQUENCE. EPIGENETIC MARKS INCLUDE DNA METHYLATION, HISTONE MODIFICATIONS AND A VARIETY OF NON-CODING RNAS. STRIKINGLY, THEY ARE PLASTIC AND RESPOND TO ENVIRONMENTAL SIGNALS, INCLUDING DIET. HERE WE WILL REVIEW HOW DIETARY FACTORS MODULATE THE ESTABLISHMENT AND MAINTENANCE OF EPIGENETIC MARKS, THEREBY INFLUENCING GENE EXPRESSION AND, HENCE, DISEASE RISK AND HEALTH. 2012 11 6063 37 THE DEVELOPMENTAL ENVIRONMENT, EPIGENETIC BIOMARKERS AND LONG-TERM HEALTH. EVIDENCE FROM BOTH HUMAN AND ANIMAL STUDIES HAS SHOWN THAT THE PRENATAL AND EARLY POSTNATAL ENVIRONMENTS INFLUENCE SUSCEPTIBILITY TO CHRONIC DISEASE IN LATER LIFE AND SUGGESTS THAT EPIGENETIC PROCESSES ARE AN IMPORTANT MECHANISM BY WHICH THE ENVIRONMENT ALTERS LONG-TERM DISEASE RISK. EPIGENETIC PROCESSES, INCLUDING DNA METHYLATION, HISTONE MODIFICATION AND NON-CODING RNAS, PLAY A CENTRAL ROLE IN REGULATING GENE EXPRESSION. THE EPIGENOME IS HIGHLY SENSITIVE TO ENVIRONMENTAL FACTORS IN EARLY LIFE, SUCH AS NUTRITION, STRESS, ENDOCRINE DISRUPTION AND POLLUTION, AND CHANGES IN THE EPIGENOME CAN INDUCE LONG-TERM CHANGES IN GENE EXPRESSION AND PHENOTYPE. IN THIS REVIEW WE FOCUS ON HOW THE EARLY LIFE NUTRITIONAL ENVIRONMENT CAN ALTER THE EPIGENOME LEADING TO AN ALTERED SUSCEPTIBILITY TO DISEASE IN LATER LIFE. 2015 12 2807 31 FETAL PROGRAMMING OF CHRONIC KIDNEY DISEASE: THE ROLE OF MATERNAL SMOKING, MITOCHONDRIAL DYSFUNCTION, AND EPIGENETIC MODFIFICATION. THE ROLE OF AN ADVERSE IN UTERO ENVIRONMENT IN THE PROGRAMMING OF CHRONIC KIDNEY DISEASE IN THE ADULT OFFSPRING IS INCREASINGLY RECOGNIZED. THE CELLULAR AND MOLECULAR MECHANISMS LINKING THE IN UTERO ENVIRONMENT AND FUTURE DISEASE SUSCEPTIBILITY REMAIN UNKNOWN. MATERNAL SMOKING IS A COMMON MODIFIABLE ADVERSE IN UTERO EXPOSURE, POTENTIALLY ASSOCIATED WITH BOTH MITOCHONDRIAL DYSFUNCTION AND EPIGENETIC MODIFICATION IN THE OFFSPRING. WHILE STUDIES ARE EMERGING THAT POINT TOWARD A KEY ROLE OF MITOCHONDRIAL DYSFUNCTION IN ACUTE AND CHRONIC KIDNEY DISEASE, IT MAY HAVE ITS ORIGIN IN EARLY DEVELOPMENT, BECOMING CLINICALLY APPARENT WHEN SECONDARY INSULTS OCCUR. ABERRANT EPIGENETIC PROGRAMMING MAY ADD AN ADDITIONAL LAYER OF COMPLEXITY TO ORCHESTRATE FIBROGENESIS IN THE KIDNEY AND SUSCEPTIBILITY TO CHRONIC KIDNEY DISEASE IN LATER LIFE. IN THIS REVIEW, WE EXPLORE THE EVIDENCE FOR MITOCHONDRIAL DYSFUNCTION AND EPIGENETIC MODIFICATION THROUGH ABERRANT DNA METHYLATION AS KEY MECHANISTIC ASPECTS OF FETAL PROGRAMMING OF CHRONIC KIDNEY DISEASE AND DISCUSS THEIR POTENTIAL USE IN DIAGNOSTICS AND TARGETS FOR THERAPY. 2015 13 2102 37 EPIGENETIC EFFECTS OF SELENIUM AND THEIR IMPLICATIONS FOR HEALTH. ALTERATIONS OF EPIGENETIC MARKS ARE LINKED TO NORMAL DEVELOPMENT AND CELLULAR DIFFERENTIATION AS WELL AS TO THE PROGRESSION OF COMMON CHRONIC DISEASES. THE PLASTICITY OF THESE MARKS PROVIDES POTENTIAL FOR DISEASE THERAPIES AND PREVENTION STRATEGIES. MACRO- AND MICRO-NUTRIENTS HAVE BEEN SHOWN TO MODULATE DISEASE RISK IN PART VIA EFFECTS ON THE EPIGENOME. THE ESSENTIAL MICRONUTRIENT SELENIUM AFFECTS HUMAN HEALTH OUTCOMES, E.G., CANCERS, CARDIOVASCULAR AND AUTOIMMUNE DISEASES, VIA SELENOPROTEINS AND THROUGH A RANGE OF BIOLOGICALLY ACTIVE DIETARY SELENOCOMPOUNDS AND METABOLISM PRODUCTS THEREOF. THIS REVIEW PROVIDES AN ASSESSMENT OF THE CURRENT LITERATURE REGARDING EPIGENETIC EFFECTS OF DIETARY AND SYNTHETIC SELENOCOMPOUNDS, WHICH INCLUDE THE MODULATION OF MARKS AND EDITORS OF EPIGENETIC INFORMATION AND INTERFERENCE WITH ONE-CARBON METABOLISM, WHICH PROVIDES THE METHYL DONOR FOR DNA METHYLATION. THE RELEVANCE OF A SELENIUM-EPIGENOME INTERACTION FOR HUMAN HEALTH IS DISCUSSED, AND WE ALSO INDICATE WHERE FUTURE STUDIES WILL BE HELPFUL TO GAIN A DEEPER UNDERSTANDING OF EPIGENETIC EFFECTS ELICITED BY SELENIUM. 2015 14 5586 38 ROLE OF PERSONALIZED NUTRITION IN CHRONIC-DEGENERATIVE DISEASES. HUMAN NUTRITION IS A BRANCH OF MEDICINE BASED ON FOODS BIOCHEMICAL INTERACTIONS WITH THE HUMAN BODY. THE PHENOTYPIC TRANSITION FROM HEALTH TO DISEASE STATUS CAN BE ATTRIBUTED TO CHANGES IN GENES AND/OR PROTEIN EXPRESSION. FOR THIS REASON, A NEW DISCIPLINE HAS BEEN DEVELOPED CALLED "-OMIC SCIENCE". IN THIS REVIEW, WE ANALYZED THE ROLE OF "-OMICS SCIENCES" (NUTRIGENETICS, NUTRIGENOMICS, PROTEOMICS AND METABOLOMICS) IN THE HEALTH STATUS AND AS POSSIBLE THERAPEUTIC TOOL IN CHRONIC DEGENERATIVE DISEASES. IN PARTICULAR, WE FOCUSED ON THE ROLE OF NUTRIGENETICS AND THE RELATIONSHIP BETWEEN EATING HABITS, CHANGES IN THE DNA SEQUENCE AND THE ONSET OF NUTRITION-RELATED DISEASES. MOREOVER, WE EXAMINED NUTRIGENOMICS AND THE EFFECT OF NUTRIENTS ON GENE EXPRESSION. WE PERUSED THE ROLE OF PROTEOMICS AND METABOLOMICS IN PERSONALIZED NUTRITION. IN THIS SCENARIO, WE ANALYZED ALSO HOW DYSBIOSIS OF GUT MICROBIOTA CAN INFLUENCE THE ONSET AND PROGRESSION OF CHRONIC DEGENERATIVE DISEASES. MOREOVER, NUTRIENTS INFLUENCING AND REGULATING GENE ACTIVITY, BOTH DIRECTLY AND INDIRECTLY, PAVES THE WAY FOR PERSONALIZED NUTRITION THAT PLAYS A KEY ROLE IN THE PREVENTION AND TREATMENT OF CHRONIC DEGENERATIVE DISEASES. 2019 15 1155 39 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 16 4972 38 PATHOPHYSIOLOGICAL BASIS FOR COMPROMISED HEALTH BEYOND GENERATIONS: ROLE OF MATERNAL HIGH-FAT DIET AND LOW-GRADE CHRONIC INFLAMMATION. EARLY EXPOSURE TO A FAT-ENRICHED DIET PROGRAMS THE DEVELOPMENTAL PROFILE AND THUS IS ASSOCIATED WITH DISEASE SUSCEPTIBILITY IN SUBSEQUENT GENERATIONS. CHRONIC LOW-GRADE INFLAMMATION, RESULTING FROM MATERNAL HIGH-FAT DIET, IS ACTIVATED IN THE FETAL ENVIRONMENT AND IN MANY ORGANS OF OFFSPRING, INCLUDING PLACENTA, ADIPOSE, LIVER, VASCULAR SYSTEM AND BRAIN. THE PREVALENCE OF AN INFLAMMATORY RESPONSE IS HIGHLY ASSOCIATED WITH OBESITY INCIDENCE, CARDIOVASCULAR DISEASES, NONALCOHOLIC FATTY LIVER DISEASE AND BRAIN DAMAGE. SUBSTANTIAL STUDIES USING HIGH-FAT MODEL HAVE CONSISTENTLY DEMONSTRATED THE INCIDENCE OF SUCH INFLAMMATORY REACTIONS; HOWEVER, THE POTENTIAL CONTRIBUTION OF ACTIVE INFLAMMATION TOWARD THE PHYSIOLOGICAL OUTCOMES AND DEVELOPMENTAL DISEASES IS NEITHER DISCUSSED IN DEPTH NOR SYSTEMICALLY INTEGRATED. THEREFORE, WE AIM TO SUMMARIZE THE CURRENT FINDINGS IN REGARDS TO HOW A MATERNAL HIGH-FAT DIET INFLUENCES THE INFLAMMATORY STATUS, AND PROBABLE PATHOGENIC EFFECTS ON THE OFFSPRING. MORE IMPORTANTLY, SINCE LIMITED RESEARCH HAS BEEN CONDUCTED TO REVEAL THE EPIGENETIC REGULATION OF THESE INFLAMMATORY MARKERS BY MATERNAL HIGH-FAT DIET, WE SINCERELY HOPE THAT OUR REVIEW WILL NOT ONLY OUTLINE THE PATHOPHYSIOLOGICAL RELEVANCE OF INFLAMMATION BUT ALSO IDENTIFY A FUTURE DIRECTION FOR MECHANISTIC INVESTIGATION AND CLINICAL APPLICATION. 2015 17 6454 49 THIRD JESUS CULEBRAS LECTURE - MOLECULAR BIOLOGY AND CLINICAL NUTRITION; WHERE DO WE STAND AND WHERE DO WE GO? NUTRITION PLAYS A FUNDAMENTAL ROLE IN THE MAINTENANCE OF HEALTH AND THE TREATMENT OF DISEASE, AND SERVES AS THE CROSSROADS FOR MANY DISCIPLINES. BIOCHEMISTRY AND MOLECULAR BIOLOGY REPRESENTS A KEY BRAND OF SCIENCE TO ASCERTAIN THE MECHANISM OF ACTION OF NUTRIENTS AND OTHER FOOD BIOACTIVE COMPOUNDS IN HEALTH AND DISEASE. THE AIM OF THE PRESENT JESUS M. CULEBRAS LECTURE IS TO CONSIDER THE FUTURE OF THE RELATIONSHIPS BETWEEN MOLECULAR BIOLOGY AND CLINICAL NUTRITION AND TO DISCUSS THE USE OF MOLECULAR AND GENETIC TOOLS TO STUDY MOLECULAR RESPONSES TO DIETARY FACTORS AND THE METABOLIC CONSEQUENCES OF FOOD AND TO CONSIDER MAJOR CHALLENGES ON HUMAN NUTRITION SCIENCES IN THE 21(ST) CENTURY. PARTICULAR EMPHASIS IS GIVEN TO THE IDENTIFICATION AND USE OF NOVEL BIOMARKERS IN INFLAMMATORY DISEASES. LIKEWISE, THE IMPORTANCE OF THE HUMAN MICROBIOME AND HOW MICROORGANISMS CAN BE SAFELY UTILIZED IN THE PREVENTION AND MANAGEMENT OF INFECTIOUS AND CHRONIC DISEASES ARE DISCUSSED. MOREOVER, THE KEY ROLE OF NUTRIGENETICS, NUTRIGENOMICS AND EPIGENETICS IN THE NEW ERA OF NUTRITION IS CONSIDERED. NUTRIGENETICS REFERS TO THE ROLE OF DNA SEQUENCE VARIATION IN THE RESPONSES TO NUTRIENTS, WHEREAS NUTRIGENOMICS IS THE STUDY OF THE ROLE OF NUTRIENTS IN GENE EXPRESSION. EPIGENETICS IS THE STUDY OF MITOTICALLY HERITABLE ALTERATIONS IN GENE EXPRESSION POTENTIAL THAT ARE NOT CAUSED BY DNA SEQUENCE ALTERATIONS. IN THE PAST DECADE, IT HAS INCREASINGLY BEEN RECOGNIZED THAT DYSREGULATION OF EPIGENETIC MECHANISMS MAY PLAY AN IMPORTANT ROLE IN HUMAN DISEASE. INDEED, THERE IS INCREASING INTEREST IN EPIGENETIC MECHANISMS UNDERLYING PHENOTYPE MODIFICATION MODULATED BY NUTRIENTS. FURTHER RESEARCH IN THOSE AREAS SHOULD CONTRIBUTE TO EVALUATE FUNCTIONALITY OF SPECIFIC NUTRIENTS AND BIOACTIVE COMPOUNDS IN CLINICAL NUTRITION AND ALLOW PERSONALIZED NUTRITIONAL ADVICE. 2013 18 4126 37 MECHANISMS OF DISEASE: THE DEVELOPMENTAL ORIGINS OF DISEASE AND THE ROLE OF THE EPIGENOTYPE. THERE IS ACCUMULATING EVIDENCE THAT MANY CHRONIC DISEASES SUCH AS TYPE 2 DIABETES AND CORONARY HEART DISEASE MIGHT ORIGINATE DURING EARLY LIFE. THIS EVIDENCE GIVES RISE TO THE DEVELOPMENTAL ORIGINS OF DISEASE HYPOTHESIS, AND IS SUPPORTED BY EPIDEMIOLOGICAL DATA IN HUMANS AND EXPERIMENTAL ANIMAL MODELS. A PERTURBED ENVIRONMENT IN EARLY LIFE IS THOUGHT TO ELICIT A RANGE OF PHYSIOLOGICAL AND CELLULAR ADAPTIVE RESPONSES IN KEY ORGAN SYSTEMS. THESE ADAPTIVE CHANGES RESULT IN PERMANENT ALTERATIONS AND MIGHT LEAD TO PATHOLOGY IN LATER LIFE. AGING ORGANS AND CELLS SEEM THEREFORE TO RETAIN A 'MEMORY' OF THEIR FETAL HISTORY AND ADAPTIVE RESPONSES. THE MECHANISMS UNDERLYING THE DEVELOPMENTAL ORIGINS OF DISEASE REMAIN POORLY DEFINED. EPIGENETIC TAGGING OF GENES, SUCH AS DNA METHYLATION AND HISTONE MODIFICATION, CONTROLS THE FUNCTION OF THE GENOME AT DIFFERENT LEVELS AND MAINTAINS CELLULAR MEMORY AFTER MANY CELLULAR DIVISIONS; IMPORTANTLY, TAGGING CAN BE MODULATED BY THE ENVIRONMENT AND IS INVOLVED IN ONSET OF DISEASES SUCH AS CANCER. HERE WE REVIEW THE EVIDENCE FOR THE DEVELOPMENTAL ORIGINS OF DISEASE AND DISCUSS THE ROLE OF THE EPIGENOTYPE AS A CONTRIBUTING MECHANISM. ENVIRONMENTALLY INDUCED CHANGES IN THE EPIGENOTYPE MIGHT BE KEY PRIMARY EVENTS IN THE DEVELOPMENTAL ORIGINS OF DISEASE, WITH IMPORTANT CLINICAL IMPLICATIONS. 2007 19 2562 38 EPIGENETICS IN THE PRIMARY AND SECONDARY PREVENTION OF CARDIOVASCULAR DISEASE: INFLUENCE OF EXERCISE AND NUTRITION. INCREASING EVIDENCE LINKS CHANGES IN EPIGENETIC SYSTEMS, SUCH AS DNA METHYLATION, HISTONE MODIFICATION, AND NON-CODING RNA EXPRESSION, TO THE OCCURRENCE OF CARDIOVASCULAR DISEASE (CVD). THESE EPIGENETIC MODIFICATIONS CAN CHANGE GENETIC FUNCTION UNDER INFLUENCE OF EXOGENOUS STIMULI AND CAN BE TRANSFERRED TO NEXT GENERATIONS, PROVIDING A POTENTIAL MECHANISM FOR INHERITANCE OF BEHAVIOURAL INTERVENTION EFFECTS. THE BENEFITS OF EXERCISE AND NUTRITIONAL INTERVENTIONS IN THE PRIMARY AND SECONDARY PREVENTION OF CVD ARE WELL ESTABLISHED, BUT THE MECHANISMS ARE NOT COMPLETELY UNDERSTOOD. IN THIS REVIEW, WE DESCRIBE THE ACUTE AND CHRONIC EPIGENETIC EFFECTS OF PHYSICAL ACTIVITY AND DIETARY CHANGES. WE PROPOSE EXERCISE AND NUTRITION AS POTENTIAL TRIGGERS OF EPIGENETIC SIGNALS, PROMOTING THE RESHAPING OF TRANSCRIPTIONAL PROGRAMMES WITH EFFECTS ON CVD PHENOTYPES. FINALLY, WE HIGHLIGHT RECENT DEVELOPMENTS IN EPIGENETIC THERAPEUTICS WITH IMPLICATIONS FOR PRIMARY AND SECONDARY CVD PREVENTION. 2022 20 6811 36 [EPIGENETICS, ENVIRONMENT AND ASTHMA]. ASTHMA IS A CHRONIC INFLAMMATORY DISEASE OF THE RESPIRATORY TRACT WITH A COMPLEX GENETIC BACKGROUND INFLUENCED BY THE EXPOSITION TO A SERIES OF ENVIRONMENTAL FACTORS. GENETIC STUDIES CAN ONLY ELUCIDATE PART OF THE HERITABILITY AND SUSCEPTIBILITY OF ASTHMA AND EVEN THOUGH SEVERAL DISEASES HAVE AN EVIDENT GENETIC ETIOLOGY, ONLY A FRACTION OF THE GENES INVOLVED IN THEIR PATHOGENICITY HAVE BEEN IDENTIFIED. THE EPIGENETIC REGULATION OF THE LATTER IS A FACT ONE SHOULD BEAR IN MIND IN ORDER TO EXPLAIN THE MAJOR TRIGGERS OF DISEASES WHOSE UNDERSTANDING IS COMPLICATED, SUCH AS ALLERGIES AND ASTHMA. EXTERNAL STIMULUS SUCH AS NOURISHMENT, STRESS, PHYSICAL ACTIVITY, ATMOSPHERIC POLLUTION, TOBACCO SMOKING AND ALCOHOL DRINKING CAN INDUCE EITHER GENE SILENCING OR GENE EXPRESSION. IN THIS REGARD, EPIGENETICS CAN EXPLAIN HOW THESE ENVIRONMENTAL FACTORS INFLUENCE OUR GENETIC INHERITANCE. THERE IS GROWING EVIDENCE THAT BACKS-UP THE FACT THAT DNA METHYLATION, HISTONE POST-TRANSLATIONAL MODIFICATION AND MICRORNA EXPRESSION ARE INFLUENCED BY THE ENVIRONMENT. THIS HELPS EXPLAINING HOW SEVERAL OF THE RISK FACTORS MENTIONED CONTRIBUTE TO THE DEVELOPMENT AND INHERITANCE OF ASTHMA. IN THIS REVIEW, DIFFERENT ENVIRONMENTAL FACTORS AND THEIR RELATION WITH THE MAIN EPIGENETIC REGULATORY MECHANISMS WILL BE ANALYZED, AS WELL AS THEIR POSSIBLE ROLE IN THE DEVELOPMENT OF ASTHMA. 2014