1 424 114 ANTHOCYANINS: FROM MECHANISMS OF REGULATION IN PLANTS TO HEALTH BENEFITS IN FOODS. ANTHOCYANINS REPRESENT THE MAJOR RED, PURPLE, AND BLUE PIGMENTS IN MANY FLOWERS, FRUITS, VEGETABLES, AND CEREALS. THEY ARE ALSO RECOGNIZED AS IMPORTANT HEALTH-PROMOTING COMPONENTS IN THE HUMAN DIET WITH PROTECTIVE EFFECTS AGAINST MANY CHRONIC DISEASES, INCLUDING CARDIOVASCULAR DISEASES, OBESITY, AND CANCER. ANTHOCYANIN BIOSYNTHESIS HAS BEEN STUDIED EXTENSIVELY, AND BOTH BIOSYNTHETIC AND KEY REGULATORY GENES HAVE BEEN ISOLATED IN MANY PLANT SPECIES. HERE, WE WILL PROVIDE AN OVERVIEW OF RECENT PROGRESS IN UNDERSTANDING THE ANTHOCYANIN BIOSYNTHETIC PATHWAY IN PLANTS, FOCUSING ON THE TRANSCRIPTION FACTORS CONTROLLING ACTIVATION OR REPRESSION OF ANTHOCYANIN ACCUMULATION IN CEREALS AND FRUITS OF DIFFERENT PLANT SPECIES, WITH SPECIAL EMPHASIS ON THE DIFFERENCES IN MOLECULAR MECHANISMS BETWEEN MONOCOT AND DICOT PLANTS. RECENTLY, NEW INSIGHT INTO THE TRANSCRIPTIONAL REGULATION OF THE ANTHOCYANIN BIOSYNTHESIS, INCLUDING POSITIVE AND NEGATIVE FEEDBACK CONTROL AS WELL AS EPIGENETIC AND POST-TRANSLATIONAL REGULATION OF MYB-BHLH-WD40 COMPLEXES, HAS BEEN GAINED. WE WILL CONSIDER HOW KNOWLEDGE OF REGULATORY MECHANISMS HAS HELPED TO PRODUCE ANTHOCYANIN-ENRICHED FOODS THROUGH CONVENTIONAL BREEDING AND METABOLIC ENGINEERING. ADDITIONALLY, WE WILL BRIEFLY DISCUSS THE BIOLOGICAL ACTIVITIES OF ANTHOCYANINS AS COMPONENTS OF THE HUMAN DIET AND RECENT FINDINGS DEMONSTRATING THE IMPORTANT HEALTH BENEFITS OF ANTHOCYANIN-RICH FOODS AGAINST CHRONIC DISEASES. 2021 2 2616 24 EPIGENOME MODULATION INDUCED BY KETOGENIC DIETS. KETOGENIC DIETS (KD) ARE DIETARY STRATEGIES LOW IN CARBOHYDRATES, NORMAL IN PROTEIN, AND HIGH, NORMAL, OR REDUCED IN FAT WITH OR WITHOUT (VERY LOW-CALORIES KETOGENIC DIET, VLCKD) A REDUCED CALORIC INTAKE. KDS HAVE BEEN SHOWN TO BE USEFUL IN THE TREATMENT OF OBESITY, METABOLIC DISEASES AND RELATED DISORDERS, NEUROLOGICAL DISEASES, AND VARIOUS PATHOLOGICAL CONDITIONS SUCH AS CANCER, NONALCOHOLIC LIVER DISEASE, AND CHRONIC PAIN. SEVERAL STUDIES HAVE INVESTIGATED THE INTRACELLULAR METABOLIC PATHWAYS THAT CONTRIBUTE TO THE BENEFICIAL EFFECTS OF THESE DIETS. ALTHOUGH EPIGENETIC CHANGES ARE AMONG THE MOST IMPORTANT DETERMINANTS OF AN ORGANISM'S ABILITY TO ADAPT TO ENVIRONMENTAL CHANGES, DATA ON THE EPIGENETIC CHANGES ASSOCIATED WITH THESE DIETARY PATHWAYS ARE STILL LIMITED. THIS REVIEW PROVIDES AN OVERVIEW OF THE MAJOR EPIGENETIC CHANGES ASSOCIATED WITH KDS. 2022 3 4399 27 MODULATION OF GENOMIC AND POSTGENOMIC ALTERATIONS IN NONCANCER DISEASES AND CRITICAL PERIODS OF LIFE. GENOMIC AND POSTGENOMIC CHANGES ARE EXTENSIVELY INVESTIGATED IN CANCER RESEARCH. SIMILAR ALTERATIONS, AFFECTING GENOME, TRANSCRIPTOME, MIRNOME AND/OR PROTEOME END-POINTS, HAVE BEEN DETECTED IN A VARIETY OF OTHER CHRONIC DEGENERATIVE DISEASES, SUCH AS ATHEROSCLEROSIS, DEGENERATIVE HEART DISEASES, CHRONIC OBSTRUCTIVE PULMONARY DISEASES, NEUROLOGICAL DISORDERS, EYE DISEASES, DIABETES, METABOLIC SYNDROME, SKIN AGEING AND ALOPECIA. NO GENERALIZATION CAN BE MADE DUE TO THE MYRIAD OF DIVERSE CLINICAL ENTITIES CLASSIFIED AS CHRONIC DEGENERATIVE DISEASES. MOREOVER, THE DETECTION OF MOLECULAR CHANGES DOES NOT AUTOMATICALLY IMPLY THEIR CAUSAL ROLE. NEVERTHELESS, COMMON MECHANISMS, SUCH AS DNA DAMAGE, EPIGENETIC ALTERATIONS, OXIDATIVE STRESS, AND CHRONIC INFLAMMATION, IN ADDITION TO GENETIC PREDISPOSITION, ARE OFTEN INVOLVED IN NONCANCER DISEASES. WE DEBATE HERE IN MORE DETAIL THE SUBJECTS OF CARDIOVASCULAR DISEASES AND OF SKIN DISEASES. MOREOVER, WE DISCUSS OUR EXPERIMENTAL STUDIES SUGGESTING THAT GENOMIC AND POSTGENOMIC CHANGES DO ALSO OCCUR DURING CRITICAL PERIODS OF LIFE, INCLUDING THE PRENATAL LIFE, THE PERINATAL PERIOD, AND AGEING. IN ADDITION, WE COMMENT ON THE FINDING THAT STEM-DERIVED CELLS ARE MORE SUSCEPTIBLE TO MOLECULAR DAMAGE THAN MORE DIFFERENTIATED CELLS. ALL THESE DATA ARE VIEWED IN THE PERSPECTIVE OF PREVENTIVE MEDICINE. IN FACT, THERE IS EVIDENCE THAT THE GENOMIC AND POSTGENOMIC ALTERATIONS OCCURRING NOT ONLY IN SEVERAL PATHOLOGICAL CONDITIONS BUT ALSO IN PARAPHYSIOLOGICAL SITUATIONS THAT AFFECT CRITICAL PERIODS OF LIFE CAN BE MODULATED BY MEANS OF DIETARY AND PHARMACOLOGICAL AGENTS. THE DISCOVERY THAT CHEMOPREVENTIVE AGENTS ARE ALSO ABLE TO ATTENUATE NUCLEOTIDE DAMAGE IN STEM-DERIVED CELLS WARRANTS FURTHER STUDIES IN VIEW OF POSSIBLE CLINICAL APPLICATIONS. 2009 4 49 32 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 5 705 30 BUILDING RISK-ON-A-CHIP MODELS TO IMPROVE BREAST CANCER RISK ASSESSMENT AND PREVENTION. PREVENTIVE ACTIONS FOR CHRONIC DISEASES HOLD THE PROMISE OF IMPROVING LIVES AND REDUCING HEALTHCARE COSTS. FOR SEVERAL DISEASES, INCLUDING BREAST CANCER, MULTIPLE RISK AND PROTECTIVE FACTORS HAVE BEEN IDENTIFIED BY EPIDEMIOLOGISTS. THE IMPACT OF MOST OF THESE FACTORS HAS YET TO BE FULLY UNDERSTOOD AT THE ORGANISM, TISSUE, CELLULAR AND MOLECULAR LEVELS. IMPORTANTLY, COMBINATIONS OF EXTERNAL AND INTERNAL RISK AND PROTECTIVE FACTORS INVOLVE COOPERATIVITY THUS, SYNERGIZING OR ANTAGONIZING DISEASE ONSET. MODELS ARE NEEDED TO MECHANISTICALLY DECIPHER CANCER RISKS UNDER DEFINED CELLULAR AND MICROENVIRONMENTAL CONDITIONS. HERE, WE BRIEFLY REVIEW BREAST CANCER RISK MODELS BASED ON 3D CELL CULTURE AND PROPOSE TO IMPROVE RISK MODELING WITH LAB-ON-A-CHIP APPROACHES. WE SUGGEST EPITHELIAL TISSUE POLARITY, DNA REPAIR AND EPIGENETIC PROFILES AS ENDPOINTS IN RISK ASSESSMENT MODELS AND DISCUSS THE DEVELOPMENT OF 'RISKS-ON-CHIPS' INTEGRATING BIOSENSORS OF THESE ENDPOINTS AND OF GENERAL TISSUE HOMEOSTASIS. RISKS-ON-CHIPS WILL HELP IDENTIFY BIOMARKERS OF RISK, SERVE AS SCREENING PLATFORMS FOR CANCER PREVENTIVE AGENTS, AND PROVIDE A BETTER UNDERSTANDING OF RISK MECHANISMS, HENCE RESULTING IN NOVEL DEVELOPMENTS IN DISEASE PREVENTION. 2013 6 3919 41 LINKING DIET TO COLORECTAL CANCER: THE EMERGING ROLE OF MICRORNA IN THE COMMUNICATION BETWEEN PLANT AND ANIMAL KINGDOMS. ENVIRONMENTAL AND LIFESTYLE FACTORS, INCLUDING DIET AND NUTRITIONAL HABITS HAVE BEEN STRONGLY LINKED TO COLORECTAL CANCER (CRC). OF NOTE, UNHEALTHY DIETARY HABITS LEADING TO ADIPOSITY REPRESENT A MAIN RISK FACTOR FOR CRC AND ARE ASSOCIATED WITH A CHRONIC LOW-GRADE INFLAMMATORY STATUS. INFLAMMATION IS A HALLMARK OF ALMOST EVERY TYPE OF CANCER AND CAN BE MODULATED BY SEVERAL FOOD COMPOUNDS EXHIBITING EITHER PROTECTIVE OR PROMOTING EFFECTS. HOWEVER, IN SPITE OF AN EXTENSIVE RESEARCH, THE UNDERLYING MECHANISMS BY WHICH DIETARY PATTERNS OR BIOACTIVE FOOD COMPONENTS MAY INFLUENCE TUMOR ONSET AND OUTCOME HAVE NOT BEEN FULLY CLARIFIED YET. GROWING EVIDENCE INDICATES THAT DIET, COMBINING BENEFICIAL SUBSTANCES AND POTENTIALLY HARMFUL INGREDIENTS, HAS AN IMPACT ON THE EXPRESSION OF KEY REGULATORS OF GENE EXPRESSION SUCH AS THE NON-CODING RNA (NCRNA). SINCE THE EXPRESSION OF THESE MOLECULES IS DERANGED IN CHRONIC INFLAMMATION AND CANCER, MODULATING THEIR EXPRESSION MAY STRONGLY INFLUENCE THE CANCER PHENOTYPE AND OUTCOMES. IN ADDITION, THE RECENTLY ACQUIRED KNOWLEDGE ON THE EXISTENCE OF INTRICATE INTER-KINGDOM COMMUNICATION NETWORKS, IS OPENING NEW AVENUES FOR A DEEPER UNDERSTANDING OF THE INTIMATE RELATIONSHIPS LINKING DIET TO CRC. IN THIS NOVEL SCENARIO, DIET-MODULATED NCRNA MAY REPRESENT KEY ACTORS IN THE INTERACTION BETWEEN PLANT AND ANIMAL KINGDOMS, CAPABLE OF INFLUENCING DISEASE ONSET AND OUTCOME. IN THIS REVIEW, WE WILL SUMMARIZE THE STUDIES DEMONSTRATING A LINK BETWEEN BIOACTIVE FOOD COMPONENTS, INCLUDING FOOD-DERIVED, MICROBIOTA-PROCESSED, SECONDARY METABOLITES, AND HOST NCRNA. WE WILL FOCUS ON MICRORNA, HIGHLIGHTING HOW THIS PLANT/ANIMAL INTER-KINGDOM CROSS-TALK MAY HAVE AN IMPACT ON CRC ESTABLISHMENT AND PROGRESSION. 2017 7 1405 29 DIETARY FACTORS AND EPIGENETIC REGULATION FOR PROSTATE CANCER PREVENTION. THE ROLE OF EPIGENETIC ALTERATIONS IN VARIOUS HUMAN CHRONIC DISEASES HAS GAINED INCREASING ATTENTION AND HAS RESULTED IN A PARADIGM SHIFT IN OUR UNDERSTANDING OF DISEASE SUSCEPTIBILITY. IN THE FIELD OF CANCER RESEARCH, E.G., GENETIC ABNORMALITIES/MUTATIONS HISTORICALLY WERE VIEWED AS PRIMARY UNDERLYING CAUSES; HOWEVER, EPIGENETIC MECHANISMS THAT ALTER GENE EXPRESSION WITHOUT AFFECTING DNA SEQUENCE ARE NOW RECOGNIZED AS BEING OF EQUAL OR GREATER IMPORTANCE FOR ONCOGENESIS. METHYLATION OF DNA, MODIFICATION OF HISTONES, AND INTERFERING MICRORNA (MIRNA) COLLECTIVELY REPRESENT A CADRE OF EPIGENETIC ELEMENTS DYSREGULATED IN CANCER. TARGETING THE EPIGENOME WITH COMPOUNDS THAT MODULATE DNA METHYLATION, HISTONE MARKS, AND MIRNA PROFILES REPRESENTS AN EVOLVING STRATEGY FOR CANCER CHEMOPREVENTION, AND THESE APPROACHES ARE STARTING TO SHOW PROMISE IN HUMAN CLINICAL TRIALS. ESSENTIAL MICRONUTRIENTS SUCH AS FOLATE, VITAMIN B-12, SELENIUM, AND ZINC AS WELL AS THE DIETARY PHYTOCHEMICALS SULFORAPHANE, TEA POLYPHENOLS, CURCUMIN, AND ALLYL SULFUR COMPOUNDS ARE AMONG A GROWING LIST OF AGENTS THAT AFFECT EPIGENETIC EVENTS AS NOVEL MECHANISMS OF CHEMOPREVENTION. TO ILLUSTRATE THESE CONCEPTS, THE CURRENT REVIEW HIGHLIGHTS THE INTERACTIONS AMONG NUTRIENTS, EPIGENETICS, AND PROSTATE CANCER SUSCEPTIBILITY. IN PARTICULAR, WE FOCUS ON EPIGENETIC DYSREGULATION AND THE IMPACT OF SPECIFIC NUTRIENTS AND FOOD COMPONENTS ON DNA METHYLATION AND HISTONE MODIFICATIONS THAT CAN ALTER GENE EXPRESSION AND INFLUENCE PROSTATE CANCER PROGRESSION. 2011 8 1838 29 EFFECTS OF POLYPHENOLS ON NCRNAS IN CANCER-AN UPDATE. IN RECENT YEARS, ONCOTHERAPY HAS RECEIVED CONSIDERABLE ATTENTION CONCERNING PLANT POLYPHENOLS. INCREASING EVIDENCE SUGGESTS THAT BECAUSE OF THE EFFICIENCY OF POLYPHENOLS, THEY MAY HAVE ANTI-TUMOUR EFFECTS IN VARIOUS CANCERS. HOWEVER, THEIR REGULATORY STRUCTURES REMAIN ELUSIVE. LONG NON-CODING RNAS (LNCRNAS) HAVE BEEN IDENTIFIED IN THE REGULATION OF VARIOUS FORMS OF TUMORIGENESIS AND TUMOUR DEVELOPMENT. LONG NON-CODING RNAS HAVE RECENTLY EMERGED AS REGULATORY EUKARYOTIC TRANSCRIPTS AND THERAPEUTIC TARGETS WITH IMPORTANT AND DIVERSE FUNCTIONS IN HEALTH AND DISEASES. LNCRNAS MAY BE ASSOCIATED WITH THE INITIATION, DEVELOPMENT, AND PROGRESSION OF CANCER. THIS REVIEW SUMMARIZES THE RESEARCH ON THE MODULATORY EFFECTS OF INCRNAS AND THEIR ROLES IN MEDIATING CELLULAR PROCESSES. THE MECHANISMS OF ACTION OF POLYPHENOLS UNDERLYING THEIR THERAPEUTIC EFFECTS ON CANCERS ARE ALSO DISCUSSED. BASED ON OUR REVIEW, POLYPHENOLS MIGHT FACILITATE A SIGNIFICANT EPIGENETIC MODIFICATION AS PART OF THEIR TISSUE- AND/OR CELL-RELATED BIOLOGICAL EFFECTS. THIS FINDING MAY BE ATTRIBUTED TO THEIR INTERACTION WITH CELLULAR SIGNALLING PATHWAYS INVOLVED IN CHRONIC DISEASES. CERTAIN LNCRNAS MIGHT BE THE TARGET OF SPECIFIC POLYPHENOLS, AND SOME CRITICAL SIGNALLING PROCESSES INVOLVED IN THE INTERVENTION OF CANCERS MIGHT MEDIATE THE THERAPEUTIC ROLES OF POLYPHENOLS. 2022 9 4187 49 METABOLIC AND VASCULAR EFFECT OF THE MEDITERRANEAN DIET. SEVERAL STUDIES INDICATED HOW DIETARY PATTERNS THAT WERE OBTAINED FROM NUTRITIONAL CLUSTER ANALYSIS CAN PREDICT DISEASE RISK OR MORTALITY. LOW-GRADE CHRONIC INFLAMMATION REPRESENTS A BACKGROUND PATHOGENETIC MECHANISM LINKING METABOLIC RISK FACTORS TO INCREASED RISK OF CHRONIC DEGENERATIVE DISEASES. A MEDITERRANEAN DIET (MEDI) STYLE HAS BEEN REPORTED AS ASSOCIATED WITH A LOWER DEGREE OF INFLAMMATION BIOMARKERS AND WITH A PROTECTIVE ROLE ON CARDIOVASCULAR AND CEREBROVASCULAR EVENTS. THERE IS HETEROGENEITY IN DEFINING THE MEDDIET, AND IT CAN, OWING TO ITS COMPLEXITY, BE CONSIDERED AS AN EXPOSOME WITH THOUSANDS OF NUTRIENTS AND PHYTOCHEMICALS. RECENTLY, IT HAS BEEN REPORTED A NOVEL POSITIVE ASSOCIATION BETWEEN BASELINE PLASMA CERAMIDE CONCENTRATIONS AND CARDIOVASCULAR EVENTS AND HOW ADHERENCE TO A MEDITERRANEAN DIET-STYLE MAY INFLUENCE THE POTENTIAL NEGATIVE RELATIONSHIP BETWEEN ELEVATED PLASMA CERAMIDE CONCENTRATIONS AND CARDIOVASCULAR DISEASES (CVD). SEVERAL RANDOMIZED CONTROLLED TRIALS (RCTS) SHOWED THE POSITIVE EFFECTS OF THE MEDI DIET STYLE ON SEVERAL CARDIOVASCULAR RISK FACTORS, SUCH AS BODY MASS INDEX, WAIST CIRCUMFERENCE, BLOOD LIPIDS, BLOOD PRESSURE, INFLAMMATORY MARKERS AND ADHESION MOLECULES, AND DIABETES AND HOW THESE ADVANTAGES OF THE MEDI ARE MAINTAINED IN COMPARISON OF A LOW-FAT DIET. SOME STUDIES REPORTED A POSITIVE EFFECT OF ADHERENCE TO A MEDITERRANEAN DIET AND HEART FAILURE INCIDENCE, WHEREAS SOME RECENT STUDIES, SUCH AS THE PREDIMED STUDY, SHOWED THAT THE INCIDENCE OF MAJOR CARDIOVASCULAR EVENTS WAS LOWER AMONG THOSE ASSIGNED TO MEDI SUPPLEMENTED WITH EXTRA-VIRGIN OLIVE OIL OR NUTS THAN AMONG THOSE ASSIGNED TO A REDUCED-FAT DIET. NEW STUDIES ARE NEEDED TO BETTER UNDERSTAND THE MOLECULAR MECHANISMS, WHEREBY THE MEDDIET MAY EXERCISE ITS EFFECTS. HERE, WE PRESENT RECENT ADVANCES IN UNDERSTANDING THE MOLECULAR BASIS OF MEDDIET EFFECTS, MAINLY FOCUSING ON CARDIOVASCULAR DISEASES, BUT ALSO DISCUSSING OTHER RELATED DISEASES. WE REVIEW MEDDIET COMPOSITION AND ASSESSMENT AS WELL AS THE LATEST ADVANCES IN THE GENOMIC, EPIGENOMIC (DNA METHYLATION, HISTONE MODIFICATIONS, MICRORNAS, AND OTHER EMERGING REGULATORS), TRANSCRIPTOMIC (SELECTED GENES AND WHOLE TRANSCRIPTOME), AND METABOLOMIC AND METAGENOMIC ASPECTS OF THE MEDDIET EFFECTS (AS A WHOLE AND FOR ITS MOST TYPICAL FOOD COMPONENTS). WE ALSO PRESENT A REVIEW OF THE CLINICAL EFFECTS OF THIS DIETARY STYLE UNDERLYING THE BIOCHEMICAL AND MOLECULAR EFFECTS OF THE MEDITERRANEAN DIET. OUR PURPOSE IS TO REVIEW THE MAIN FEATURES OF THE MEDITERRANEAN DIET IN PARTICULAR ITS BENEFITS ON HUMAN HEALTH, UNDERLING THE ANTI-INFLAMMATORY, ANTI-OXIDANT AND ANTI-ATHEROSCLEROTIC EFFECTS TO WHICH NEW KNOWLEDGE ABOUT EPIGENETIC AND GUT-MICROBIOTA RELATIONSHIP IS RECENTLY ADDED. 2019 10 3593 34 IMPLICATION OF THE MEDITERRANEAN DIET ON THE HUMAN EPIGENOME. EPIGENETICS, DEFINED AS "HEREDITARY CHANGES IN GENE EXPRESSION THAT OCCUR WITHOUT ANY CHANGE IN THE DNA SEQUENCE", CONSISTS OF VARIOUS EPIGENETIC MARKS, INCLUDING DNA METHYLATION, HISTONE MODIFICATIONS, AND NON-CODING RNAS. THE EPIGENOME, WHICH HAS A DYNAMIC STRUCTURE IN RESPONSE TO INTRACELLULAR AND EXTRACELLULAR STIMULI, HAS A KEY ROLE IN THE CONTROL OF GENE ACTIVITY, SINCE IT IS LOCATED AT THE INTERSECTION OF CELLULAR INFORMATION ENCODED IN THE GENOME AND MOLECULAR/CHEMICAL INFORMATION OF EXTRACELLULAR ORIGIN. THE FOCUS SHIFT OF STUDIES TO EPIGENETIC REPROGRAMMING HAS LED TO THE FORMATION AND PROGRESSIVE IMPORTANCE OF A CONCEPT CALLED "NUTRIEPIGENETICS", WHOSE AIM IS TO PREVENT DISEASES BY INTERVENING ON NUTRITION STYLE. AMONG THE DIET TYPES ADOPTED IN THE WORLD, THE RENOWNED MEDITERRANEAN DIET (MD), BEING RICH IN UNSATURATED FATTY ACIDS AND CONTAINING HIGH LEVELS OF WHOLE GRAIN FOODS AND LARGE QUANTITIES OF FRUITS, VEGETABLES, AND LEGUMES, HAS SHOWN NUMEROUS ADVANTAGES IN EXCLUDING CHRONIC DISEASES. ADDITIONALLY, THE FACT THAT THIS DIET IS RICH IN POLYPHENOLS WITH HIGH ANTIOXIDANT AND ANTI-INFLAMMATORY PROPERTIES HAS AN UNDENIABLE EFFECT IN TURNING SOME CELLULAR PATHWAYS AGAINST THE DISEASE. IT IS ALSO APPARENT THAT THE EFFECTS OF POLYPHENOLS ON THE EPIGENOME CAUSE CHANGES IN MECHANISMS SUCH AS DNA METHYLATION AND HISTONE ACETYLATION/DEACETYLATION, WHICH HAVE A REGULATORY EFFECT ON GENE REGULATION. THIS REVIEW PRESENTS THE EFFECTS OF LONG-TERM CONSUMPTION OF NUTRIENTS FROM THE MD ON THE EPIGENOME AND DISCUSSES THE BENEFITS OF THIS DIET IN THE TREATMENT AND EVEN PREVENTION OF CHRONIC DISEASES. 2022 11 2102 29 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 12 6454 33 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 13 3801 36 INTERPLAY OF VITAMIN D AND SIRT1 IN TISSUE-SPECIFIC METABOLISM-POTENTIAL ROLES IN PREVENTION AND TREATMENT OF NON-COMMUNICABLE DISEASES INCLUDING CANCER. THE IMPORTANCE OF THE PREVENTION AND CONTROL OF NON-COMMUNICABLE DISEASES, INCLUDING OBESITY, METABOLIC SYNDROME, TYPE 2 DIABETES, CARDIOVASCULAR DISEASES, AND CANCER, IS INCREASING AS A REQUIREMENT OF THE AGING POPULATION IN DEVELOPED COUNTRIES AND THE SUSTAINABILITY OF HEALTHCARE. SIMILARLY, THE 2013-2030 ACTION PLAN OF THE WHO FOR THE PREVENTION AND CONTROL OF NON-COMMUNICABLE DISEASES SEEKS THESE ACHIEVEMENTS. ADEQUATE LIFESTYLE CHANGES, ALONE OR WITH THE NECESSARY TREATMENTS, COULD REDUCE THE RISK OF MORTALITY OR THE DETERIORATION OF QUALITY OF LIFE. IN OUR RECENT WORK, WE SUMMARIZED THE ROLE OF TWO CENTRAL FACTORS, I.E., APPROPRIATE LEVELS OF VITAMIN D AND SIRT1, WHICH ARE CONNECTED TO ADEQUATE LIFESTYLES WITH BENEFICIAL EFFECTS ON THE PREVENTION AND CONTROL OF NON-COMMUNICABLE DISEASES. BOTH OF THESE FACTORS HAVE RECEIVED INCREASED ATTENTION IN RELATION TO THE COVID-19 PANDEMIC AS THEY BOTH TAKE PART IN REGULATION OF THE MAIN METABOLIC PROCESSES, I.E., LIPID/GLUCOSE/ENERGY HOMEOSTASIS, OXIDATIVE STRESS, REDOX BALANCE, AND CELL FATE, AS WELL AS IN THE HEALTHY REGULATION OF THE IMMUNE SYSTEM. VITAMIN D AND SIRT1 HAVE DIRECT AND INDIRECT INFLUENCE OF THE REGULATION OF TRANSCRIPTION AND EPIGENETIC CHANGES AND ARE RELATED TO CYTOPLASMIC SIGNALING PATHWAYS SUCH AS PLC/DAG/IP3/PKC/MAPK, MEK/ERK, INSULIN/MTOR/CELL GROWTH, PROLIFERATION; LEPTIN/PI3K-AKT-MTORC1, AKT/NFKB/COX-2, NFKB/TNFALPHA, IL-6, IL-8, IL-1BETA, AND AMPK/PGC-1ALPHA/GLUT4, AMONG OTHERS. THROUGH THEIR PROPER REGULATION, THEY MAINTAIN NORMAL BODY WEIGHT, LIPID PROFILE, INSULIN SECRETION AND SENSITIVITY, BALANCE BETWEEN THE PRO- AND ANTI-INFLAMMATORY PROCESSES UNDER NORMAL CONDITIONS AND INFECTIONS, MAINTAIN ENDOTHELIAL HEALTH; BALANCE CELL DIFFERENTIATION, PROLIFERATION, AND FATE; AND BALANCE THE CIRCADIAN RHYTHM OF THE CELLULAR METABOLISM. THE ROLE OF THESE TWO MOLECULES IS INTERCONNECTED IN THE MOLECULAR NETWORK, AND THEY REGULATE EACH OTHER IN SEVERAL LAYERS OF THE HOMEOSTASIS OF ENERGY AND THE CELLULAR METABOLISM. BOTH HAVE A CENTRAL ROLE IN THE MAINTENANCE OF HEALTHY AND BALANCED IMMUNE REGULATION AND REDOX REACTIONS; THEREFORE, THEY COULD CONSTITUTE PROMISING TARGETS EITHER FOR PREVENTION OR AS COMPLEMENTARY THERAPIES TO ACHIEVE A BETTER QUALITY OF LIFE, AT ANY AGE, FOR HEALTHY PEOPLE AND PATIENTS UNDER CHRONIC CONDITIONS. 2023 14 2597 30 EPIGENETICS OF SUBCELLULAR STRUCTURE FUNCTIONING IN THE ORIGIN OF RISK OR RESILIENCE TO COMORBIDITY OF NEUROPSYCHIATRIC AND CARDIOMETABOLIC DISORDERS. MECHANISMS CONTROLLING MITOCHONDRIAL FUNCTION, PROTEIN FOLDING IN THE ENDOPLASMIC RETICULUM (ER) AND NUCLEAR PROCESSES SUCH AS TELOMERE LENGTH AND DNA REPAIR MAY BE SUBJECT TO EPIGENETIC CUES THAT RELATE THE GENOMIC EXPRESSION AND ENVIRONMENTAL EXPOSURES IN EARLY STAGES OF LIFE. THEY MAY ALSO BE INVOLVED IN THE COMORBID APPEARANCE OF CARDIOMETABOLIC (CMD) AND NEUROPSYCHIATRIC DISORDERS (NPD) DURING ADULTHOOD. MITOCHONDRIAL FUNCTION AND PROTEIN FOLDING IN THE ENDOPLASMIC RETICULUM ARE ASSOCIATED WITH OXIDATIVE STRESS AND ELEVATED INTRACELLULAR CALCIUM LEVELS AND MAY ALSO UNDERLIE THE VULNERABILITY FOR COMORBID CMD AND NPD. MITOCHONDRIA PROVIDE KEY METABOLITES SUCH AS NICOTINAMIDE ADENINE DINUCLEOTIDE (NAD+), ATP, ALPHA-KETOGLUTARATE AND ACETYL COENZYME A THAT ARE REQUIRED FOR MANY TRANSCRIPTIONAL AND EPIGENETIC PROCESSES. THEY ARE ALSO A SOURCE OF FREE RADICALS. ON THE OTHER HAND, EPIGENETIC MARKERS IN NUCLEAR DNA DETERMINE MITOCHONDRIAL BIOGENESIS. THE ER IS THE SUBCELLULAR ORGANELLE IN WHICH SECRETORY PROTEINS ARE FOLDED. MANY ENVIRONMENTAL FACTORS STOP THE ABILITY OF CELLS TO PROPERLY FOLD PROTEINS AND MODIFY POST-TRANSLATIONALLY SECRETORY AND TRANSMEMBRANE PROTEINS LEADING TO ENDOPLASMIC RETICULUM STRESS AND OXIDATIVE STRESS. ER FUNCTIONING MAY BE EPIGENETICALLY DETERMINED. CHRONIC ER STRESS IS EMERGING AS A KEY CONTRIBUTOR TO A GROWING LIST OF HUMAN DISEASES, INCLUDING CMD AND NPD. TELOMERE LOSS CAUSES CHROMOSOMAL FUSION, ACTIVATION OF THE CONTROL OF DNA DAMAGE-RESPONSES, UNSTABLE GENOME AND ALTERED STEM CELL FUNCTION, WHICH MAY UNDERLIE THE COMORBIDITY OF CMD AND NPD. THE LENGTH OF TELOMERES IS RELATED TO OXIDATIVE STRESS AND MAY BE EPIGENETICALLY PROGRAMMED. PATHWAYS INVOLVED IN DNA REPAIR MAY BE EPIGENETICALLY PROGRAMMED AND MAY CONTRIBUTE TO DISEASES. IN THIS PAPER, WE DESCRIBE SUBCELLULAR MECHANISMS THAT ARE DETERMINED BY EPIGENETIC MARKERS AND THEIR POSSIBLE RELATION TO THE DEVELOPMENT OF INCREASED SUSCEPTIBILITY TO DEVELOP CMD AND NPD. 2018 15 650 22 BISPHENOL A AND HUMAN CHRONIC DISEASES: CURRENT EVIDENCES, POSSIBLE MECHANISMS, AND FUTURE PERSPECTIVES. BISPHENOL-A (BPA) IS ONE OF THE HIGHEST VOLUME CHEMICALS PRODUCED WORLDWIDE, WITH OVER 6BILLION POUNDS PRODUCED AND OVER 100T RELEASED INTO THE ATMOSPHERE EACH YEAR. RECENT EXTENSIVE LITERATURE HAS RAISED CONCERNS ABOUT ITS POSSIBLE IMPLICATION IN THE ETIOLOGY OF SOME HUMAN CHRONIC DISEASES SUCH AS DIABETES, OBESITY, REPRODUCTIVE DISORDERS, CARDIOVASCULAR DISEASES, BIRTH DEFECTS, CHRONIC RESPIRATORY AND KIDNEY DISEASES AND BREAST CANCER. IN THIS REVIEW, WE PRESENT THE HIGHLIGHTED EVIDENCES ON THE RELATIONSHIP BETWEEN BPA EXPOSURE AND HUMAN CHRONIC DISEASES AND WE DISCUSS ITS EVENTUAL MECHANISMS OF ACTION, ESPECIALLY GENETIC, EPIGENETIC AND ENDOCRINE DISRUPTION MECHANISMS WITH THE POSSIBLE INVOLVEMENT OF OXIDATIVE STRESS, MITOCHONDRIAL DYSFUNCTION AND CELL SIGNALING. 2014 16 5011 29 PEROXIREDOXIN6, A MULTITASK ANTIOXIDANT ENZYME INVOLVED IN THE PATHOPHYSIOLOGY OF CHRONIC NONCOMMUNICABLE DISEASES. SIGNIFICANCE: CHRONIC NONCOMMUNICABLE DISEASES (NCDS) ARE THE LEADING CAUSES OF DISABILITY AND DEATH WORLDWIDE. NCDS MAINLY COMPRISE DIABETES MELLITUS, CARDIOVASCULAR DISEASES, CHRONIC OBSTRUCTIVE PULMONARY DISEASE, CANCER, AND NEUROLOGICAL DEGENERATIVE DISEASES, WHICH KILL MORE THAN 80% OF POPULATION, ESPECIALLY THE ELDERLY, WORLDWIDE. RECENT ADVANCES: SEVERAL RECENT THEORIES ESTABLISHED NCDS AS MULTIFACTORIAL DISEASES, WHERE A COMBINATION OF GENETIC, EPIGENETIC, AND ENVIRONMENTAL FACTORS CONTRIBUTES TO THEIR PATHOGENESIS. NEVERTHELESS, RECENT FINDINGS SUGGEST THAT THE COMMON FACTOR LINKING ALL THESE PATHOLOGIES IS AN INCREASE IN OXIDATIVE STRESS AND THE AGE-RELATED LOSS OF THE ANTIOXIDANT MECHANISMS OF DEFENSE AGAINST IT. IMPAIRMENT IN MITOCHONDRIAL HOMEOSTASIS WITH CONSEQUENT DEREGULATION IN OXIDATIVE STRESS BALANCE HAS ALSO BEEN SUGGESTED. CRITICAL ISSUES: THEREFORE, ANTIOXIDANT PROTEINS DESERVE PARTICULAR ATTENTION FOR THEIR POTENTIAL ROLE AGAINST NCDS. IN PARTICULAR, PEROXIREDOXIN(PRDX)6 IS A UNIQUE ANTIOXIDANT ENZYME, BELONGING TO THE PRDX FAMILY, WITH DOUBLE PROPERTIES, PEROXIDASE AND PHOSPHOLIPASE ACTIVITIES. THROUGH THESE ACTIVITIES, PRDX6 HAS BEEN SHOWN TO BE A POWERFUL ANTIOXIDANT ENZYME, IMPLICATED IN THE PATHOGENESIS OF DIFFERENT NCDS. RECENTLY, WE DESCRIBED A PHENOTYPE OF DIABETES MELLITUS IN PRDX6 KNOCKOUT MICE, SUGGESTING A PIVOTAL ROLE OF PRDX6 IN THE PATHOGENESIS OF CARDIOMETABOLIC DISEASES. FUTURE DIRECTIONS: INCREASING AWARENESS ON THE ROLE OF ANTIOXIDANT DEFENSES IN THE PATHOGENESIS OF NCDS MAY OPEN NOVEL THERAPEUTIC APPROACHES TO REDUCE THE BURDEN OF THIS PANDEMIC PHENOMENON. HOWEVER, KNOWLEDGE OF THE ROLE OF PRDX6 IN NCD PREVENTION AND PATHOGENESIS IS STILL NOT CLARIFIED. 2019 17 4414 30 MOLECULAR AND CELLULAR MECHANISMS OF PROPOLIS AND ITS POLYPHENOLIC COMPOUNDS AGAINST CANCER. IN RECENT YEARS, INTEREST IN NATURAL PRODUCTS SUCH AS ALTERNATIVE SOURCES OF PHARMACEUTICALS FOR NUMEROUS CHRONIC DISEASES, INCLUDING TUMORS, HAS BEEN RENEWED. PROPOLIS, A NATURAL PRODUCT COLLECTED BY HONEYBEES, AND POLYPHENOLIC/FLAVONOID PROPOLIS-RELATED COMPONENTS MODULATE ALL STEPS OF THE CANCER PROGRESSION PROCESS. ANTICANCER ACTIVITY OF PROPOLIS AND ITS COMPOUNDS RELIES ON VARIOUS MECHANISMS: CELL-CYCLE ARREST AND ATTENUATION OF CANCER CELLS PROLIFERATION, REDUCTION IN THE NUMBER OF CANCER STEM CELLS, INDUCTION OF APOPTOSIS, MODULATION OF ONCOGENE SIGNALING PATHWAYS, INHIBITION OF MATRIX METALLOPROTEINASES, PREVENTION OF METASTASIS, ANTI-ANGIOGENESIS, ANTI-INFLAMMATORY EFFECTS ACCOMPANIED BY THE MODULATION OF THE TUMOR MICROENVIRONMENT (BY MODIFYING MACROPHAGE ACTIVATION AND POLARIZATION), EPIGENETIC REGULATION, ANTIVIRAL AND BACTERICIDAL ACTIVITIES, MODULATION OF GUT MICROBIOTA, AND ATTENUATION OF CHEMOTHERAPY-INDUCED DELETERIOUS SIDE EFFECTS. INGREDIENTS FROM PROPOLIS ALSO "SENSITIZE" CANCER CELLS TO CHEMOTHERAPEUTIC AGENTS, LIKELY BY BLOCKING THE ACTIVATION OF THE TRANSCRIPTION FACTOR NUCLEAR FACTOR KAPPA-LIGHT-CHAIN-ENHANCER OF ACTIVATED B CELLS (NF-KAPPAB). IN THIS REVIEW, WE SUMMARIZE THE CURRENT KNOWLEDGE RELATED TO THE THE EFFECTS OF FLAVONOIDS AND OTHER POLYPHENOLIC COMPOUNDS FROM PROPOLIS ON TUMOR GROWTH AND METASTASIZING ABILITY, AND DISCUSS POSSIBLE MOLECULAR AND CELLULAR MECHANISMS INVOLVED IN THE MODULATION OF INFLAMMATORY PATHWAYS AND CELLULAR PROCESSES THAT AFFECT SURVIVAL, PROLIFERATION, INVASION, ANGIOGENESIS, AND METASTASIS OF THE TUMOR. 2022 18 1241 32 CURRENT AND FUTURE NUTRITIONAL STRATEGIES TO MODULATE INFLAMMATORY DYNAMICS IN METABOLIC DISORDERS. OBESITY, TYPE 2 DIABETES, AND OTHER METABOLIC DISORDERS HAVE A LARGE IMPACT ON GLOBAL HEALTH, ESPECIALLY IN WESTERN COUNTRIES. AN IMPORTANT HALLMARK OF METABOLIC DISORDERS IS CHRONIC LOW-GRADE INFLAMMATION. A KEY PLAYER IN CHRONIC LOW-GRADE INFLAMMATION IS DYSMETABOLISM, WHICH IS DEFINED AS THE INABILITY TO KEEP HOMEOSTASIS RESULTING IN LOSS OF LIPID CONTROL, OXIDATIVE STRESS, INFLAMMATION, AND INSULIN RESISTANCE. ALTHOUGH OFTEN NOT YET DETECTABLE IN THE CIRCULATION, CHRONIC LOW-GRADE INFLAMMATION CAN BE PRESENT IN ONE OR MULTIPLE ORGANS. THE RESPONSE TO A METABOLIC CHALLENGE CONTAINING LIPIDS MAY MAGNIFY DYSFUNCTIONALITIES AT THE TISSUE LEVEL, CAUSING AN OVERFLOW OF INFLAMMATORY MARKERS INTO THE CIRCULATION AND HENCE ALLOW DETECTION OF EARLY LOW-GRADE INFLAMMATION. HERE, WE SUMMARIZE THE EVIDENCE OF SUCCESSFUL APPLICATION OF METABOLIC CHALLENGE TESTS IN TYPE 2 DIABETES, METABOLIC SYNDROME, OBESITY, AND UNHEALTHY AGING. WE ALSO REVIEW HOW METABOLIC CHALLENGE TESTS HAVE BEEN SUCCESSFULLY APPLIED TO EVALUATE NUTRITIONAL INTERVENTION EFFECTS, INCLUDING AN "ANTI-INFLAMMATORY" MIXTURE, DARK CHOCOLATE, WHOLE GRAIN WHEAT AND OVERFEEDING. ADDITIONALLY, WE ELABORATE ON FUTURE STRATEGIES TO (RE)GAIN INFLAMMATORY FLEXIBILITY. THROUGH EPIGENETIC AND METABOLIC REGULATION, THE INFLAMMATORY RESPONSE MAY BE TRAINED BY REGULAR MILD AND METABOLIC TRIGGERS, WHICH CAN BE UNDERSTOOD FROM THE PERSPECTIVE OF TRAINED IMMUNITY, HORMESIS AND PRO-RESOLUTION. NEW STRATEGIES TO OPTIMIZE DYNAMICS OF INFLAMMATION MAY BECOME AVAILABLE. 2019 19 2100 31 EPIGENETIC EFFECTS OF NATURAL POLYPHENOLS: A FOCUS ON SIRT1-MEDIATED MECHANISMS. POLYPHENOLS ARE A CLASS OF NATURAL COMPOUNDS WIDELY DISTRIBUTED IN FRUITS, VEGETABLES, AND PLANTS. THEY HAVE BEEN REPORTED TO POSSESS A WIDE RANGE OF ACTIVITIES IN PREVENTION AND ALLEVIATION OF VARIOUS DISEASES LIKE CANCER, NEUROINFLAMMATION, DIABETES, AND AGING. POLYPHENOLS ARE EFFECTIVE AGAINST CHRONIC DISEASES AND RECENT REPORTS INDICATED STRONG EPIGENETIC EFFECTS OF POLYPHENOLS. MOST OF THE STUDIES INVESTIGATING EPIGENETIC EFFECTS OF NATURAL POLYPHENOLS HAVE FOCUSED ON THEIR BENEFICIAL EFFECTS IN CANCER TREATMENT. HOWEVER, EPIGENETIC DEFECTS HAVE BEEN DEMONSTRATED IN MANY OTHER DISEASES AS WELL, AND APPLICATION OF POLYPHENOLS TO MODULATE THE EPIGENOME IS BECOMING AN INTERESTING FIELD OF RESEARCH. THIS REVIEW SUMMARIZES THE EFFECTS OF NATURAL POLYPHENOLS IN MODULATING EPIGENETIC-RELATED ENZYMES AS WELL AS THEIR EFFECT IN PREVENTION AND TREATMENT OF CHRONIC DISEASES WITH A FOCUS ON SIRT1 MODULATION. WE HAVE ALSO DISCUSSED THE RELATION BETWEEN THE STRUCTURE AND FUNCTION OF EPIGENETIC-MODIFYING POLYPHENOLS. 2014 20 6258 28 THE MOLECULAR MECHANISM OF POLYPHENOLS IN THE REGULATION OF AGEING HALLMARKS. AGEING IS A COMPLEX PROCESS CHARACTERIZED MAINLY BY A DECLINE IN THE FUNCTION OF CELLS, TISSUES, AND ORGANS, RESULTING IN AN INCREASED RISK OF MORTALITY. THIS PROCESS INVOLVES SEVERAL CHANGES, DESCRIBED AS HALLMARKS OF AGEING, WHICH INCLUDE GENOMIC INSTABILITY, TELOMERE ATTRITION, EPIGENETIC CHANGES, LOSS OF PROTEOSTASIS, DYSREGULATED NUTRIENT SENSING, MITOCHONDRIAL DYSFUNCTION, CELLULAR SENESCENCE, STEM CELL DEPLETION, AND ALTERED INTRACELLULAR COMMUNICATION. THE DETERMINING ROLE THAT ENVIRONMENTAL FACTORS SUCH AS DIET AND LIFESTYLE PLAY ON HEALTH, LIFE EXPECTANCY, AND SUSCEPTIBILITY TO DISEASES, INCLUDING CANCER AND NEURODEGENERATIVE DISEASES, IS WELLESTABLISHED. IN VIEW OF THE GROWING INTEREST IN THE BENEFICIAL EFFECTS OF PHYTOCHEMICALS IN THE PREVENTION OF CHRONIC DISEASES, SEVERAL STUDIES HAVE BEEN CONDUCTED, AND THEY STRONGLY SUGGEST THAT THE INTAKE OF DIETARY POLYPHENOLS MAY BRING NUMEROUS BENEFITS DUE TO THEIR ANTIOXIDANT AND ANTI-INFLAMMATORY PROPERTIES, AND THEIR INTAKE HAS BEEN ASSOCIATED WITH IMPAIRED AGEING IN HUMANS. POLYPHENOL INTAKE HAS BEEN SHOWN TO BE EFFECTIVE IN AMELIORATING SEVERAL AGE-RELATED PHENOTYPES, INCLUDING OXIDATIVE STRESS, INFLAMMATORY PROCESSES, IMPAIRED PROTEOSTASIS, AND CELLULAR SENESCENCE, AMONG OTHER FEATURES, WHICH CONTRIBUTE TO AN INCREASED RISK OF AGEING-ASSOCIATED DISEASES. THIS REVIEW AIMS TO ADDRESS, IN A GENERAL WAY, THE MAIN FINDINGS DESCRIBED IN THE LITERATURE ABOUT THE BENEFITS OF POLYPHENOLS IN EACH OF THE HALLMARKS OF AGEING, AS WELL AS THE MAIN REGULATORY MECHANISMS RESPONSIBLE FOR THE OBSERVED ANTIAGEING EFFECTS. 2023