1 4315 78 MICRORNAS AS NEW TARGETS OF DIETARY POLYPHENOLS. IN THE LASTS YEARS IT HAS BECOME EVIDENT THAT POLYPHENOLS MODIFY CELL FUNCTIONALITY THROUGH EPIGENETIC MECHANISMS, SUCH AS MODULATING MICRORNA (MIRNA) LEVELS. MIRNAS ARE SMALL NON-CODING RNAS OF ABOUT 22 NUCLEOTIDES IN LENGTH, THAT MODULATE GENE EXPRESSION AT THE POST-TRANSCRIPTIONAL LEVEL. MIRNAS ARE INVOLVED IN ALMOST ALL BIOLOGICAL PROCESSES, AFFECT MOST METABOLIC PATHWAYS AND RECENT EVIDENCE SUGGESTS THEIR DYSREGULATION IN A NUMBER OF METABOLIC DISORDERS AND DISEASES. IN THIS SENSE, MIRNAS ARE EMERGING AS POTENTIAL BIOMARKERS OF NUMEROUS PATHOLOGIES AND THEREFORE AS NEW THERAPEUTIC TARGETS. POLYPHENOLIC MODULATION OF MIRNAS IS VERY ATTRACTIVE AS A STRATEGY TO TARGET NUMEROUS CELL PROCESSES AND POTENTIALLY REDUCE THE RISK OF CHRONIC DISEASES. 2014 2 4460 24 MOLECULAR MECHANISMS OF ENVIRONMENTAL EXPOSURES AND HUMAN DISEASE. A SUBSTANTIAL PROPORTION OF DISEASE RISK FOR COMMON COMPLEX DISORDERS IS ATTRIBUTABLE TO ENVIRONMENTAL EXPOSURES AND POLLUTANTS. AN APPRECIATION OF HOW ENVIRONMENTAL POLLUTANTS ACT ON OUR CELLS TO PRODUCE DELETERIOUS HEALTH EFFECTS HAS LED TO ADVANCES IN OUR UNDERSTANDING OF THE MOLECULAR MECHANISMS UNDERLYING THE PATHOGENESIS OF CHRONIC DISEASES, INCLUDING CANCER AND CARDIOVASCULAR, NEURODEGENERATIVE AND RESPIRATORY DISEASES. HERE, WE DISCUSS EMERGING RESEARCH ON THE INTERPLAY OF ENVIRONMENTAL POLLUTANTS WITH THE HUMAN GENOME AND EPIGENOME. WE REVIEW EVIDENCE SHOWING THE ENVIRONMENTAL IMPACT ON GENE EXPRESSION THROUGH EPIGENETIC MODIFICATIONS, INCLUDING DNA METHYLATION, HISTONE MODIFICATION AND NON-CODING RNAS. WE ALSO HIGHLIGHT RECENT STUDIES THAT EVALUATE RECENTLY DISCOVERED MOLECULAR PROCESSES THROUGH WHICH THE ENVIRONMENT CAN EXERT ITS EFFECTS, INCLUDING EXTRACELLULAR VESICLES, THE EPITRANSCRIPTOME AND THE MITOCHONDRIAL GENOME. FINALLY, WE DISCUSS CURRENT CHALLENGES WHEN STUDYING THE EXPOSOME - THE CUMULATIVE MEASURE OF ENVIRONMENTAL INFLUENCES OVER THE LIFESPAN - AND ITS INTEGRATION INTO FUTURE ENVIRONMENTAL HEALTH RESEARCH. 2023 3 3965 24 LONG NONCODING RNAS IN THE METABOLIC CONTROL OF INFLAMMATION AND IMMUNE DISORDERS. THE METABOLIC CONTROL OF IMMUNE CELL DEVELOPMENT AND FUNCTION HAS BEEN SHOWN TO BE CRITICAL FOR THE MAINTENANCE OF IMMUNE HOMEOSTASIS AND IS ALSO INVOLVED IN THE PATHOGENESIS OF IMMUNE DISORDERS. PATHOGENIC INFECTIONS OR CANCERS MAY INDUCE METABOLIC REPROGRAMMING THROUGH DIFFERENT PATHWAYS TO MEET THE ENERGY AND METABOLITE DEMANDS FOR PATHOGEN PROPAGATION OR CANCER PROGRESSION. IN ADDITION, SOME DEREGULATED METABOLITES COULD TRIGGER OR REGULATE IMMUNE RESPONSES, THUS CAUSING CHRONIC INFLAMMATION OR IMMUNE DISORDERS, SUCH AS VIRAL INFECTION, CANCER AND OBESITY. THEREFORE, THE METHODS THROUGH WHICH METABOLISM IS REGULATED AND THE ROLE OF METABOLIC REGULATION IN INFLAMMATION AND IMMUNITY ATTRACT MUCH ATTENTION. EPIGENETIC REGULATION OF INFLAMMATION AND IMMUNITY IS AN EMERGING FIELD. LONG NONCODING RNAS (LNCRNAS) HAVE BEEN WELL DOCUMENTED TO PLAY CRUCIAL ROLES IN MANY BIOLOGICAL PROCESSES THROUGH DIVERSE MECHANISMS, INCLUDING IMMUNE REGULATION AND METABOLIC ALTERNATION. HERE, WE REVIEW THE FUNCTIONS AND MECHANISMS OF LNCRNAS IN THE METABOLIC REGULATION OF INFLAMMATORY IMMUNE DISORDERS, AIMING TO DEEPEN OUR UNDERSTANDING OF THE EPIGENETIC REGULATION OF INFLAMMATION AND IMMUNITY. 2019 4 6333 33 THE ROLE OF DIETARY PHENOLIC COMPOUNDS IN EPIGENETIC MODULATION INVOLVED IN INFLAMMATORY PROCESSES. A BETTER UNDERSTANDING OF THE INTERACTIONS BETWEEN DIETARY PHENOLIC COMPOUNDS AND THE EPIGENETICS OF INFLAMMATION MAY IMPACT PATHOLOGICAL CONDITIONS AND THEIR TREATMENT. PHENOLIC COMPOUNDS ARE WELL-KNOWN FOR THEIR ANTIOXIDANT, ANTI-INFLAMMATORY, ANTI-ANGIOGENIC, AND ANTI-CANCER PROPERTIES, WITH POTENTIAL BENEFITS IN THE TREATMENT OF VARIOUS HUMAN DISEASES. EMERGING STUDIES BRING EVIDENCE THAT NUTRITION MAY PLAY AN ESSENTIAL ROLE IN IMMUNE SYSTEM MODULATION ALSO BY ALTERING GENE EXPRESSION. THIS REVIEW DISCUSSES EPIGENETIC MECHANISMS SUCH AS DNA METHYLATION, POST-TRANSLATIONAL HISTONE MODIFICATION, AND NON-CODING MICRORNA ACTIVITY THAT REGULATE THE GENE EXPRESSION OF MOLECULES INVOLVED IN INFLAMMATORY PROCESSES. SPECIAL ATTENTION IS PAID TO THE MOLECULAR BASIS OF NF-KAPPAB MODULATION BY DIETARY PHENOLIC COMPOUNDS. THE REGULATION OF HISTONE ACETYLTRANSFERASE AND HISTONE DEACETYLASE ACTIVITY, WHICH ALL INFLUENCE NF-KAPPAB SIGNALING, SEEMS TO BE A CRUCIAL MECHANISM OF THE EPIGENETIC CONTROL OF INFLAMMATION BY PHENOLIC COMPOUNDS. MOREOVER, CHRONIC INFLAMMATORY PROCESSES ARE REPORTED TO BE CLOSELY CONNECTED TO THE MAJOR STAGES OF CARCINOGENESIS AND OTHER NON-COMMUNICABLE DISEASES. THEREFORE, DIETARY PHENOLIC COMPOUNDS-TARGETED EPIGENETICS IS BECOMING AN ATTRACTIVE APPROACH FOR DISEASE PREVENTION AND INTERVENTION. 2020 5 2188 35 EPIGENETIC MECHANISMS UNDERLYING THE BENEFITS OF FLAVONOIDS IN CARDIOVASCULAR HEALTH AND DISEASES: ARE LONG NON-CODING RNAS RISING STARS? CARDIOVASCULAR DISEASES (CVDS) RANK AS THE FIRST LEADING CAUSE OF DEATH GLOBALLY. HIGH DIETARY POLYPHENOL (ESPECIALLY FLAVONOIDS) INTAKE HAS STRONGLY BEEN ASSOCIATED WITH LOW INCIDENCE OF THE PRIMARY OUTCOME, OVERALL MORTALITY, BLOOD PRESSURE, INFLAMMATORY BIOMARKERS, ONSET OF NEW-ONSET TYPE 2 DIABETES MELLITUS (T2DM), AND OBESITY. PHYTOGENIC FLAVONOIDS AFFECT THE PHYSIOLOGICAL AND PATHOLOGICAL PROCESSES OF CVDS BY MODULATING VARIOUS BIOCHEMICAL SIGNALING PATHWAYS. NON-CODING RNAS (NCRNAS) HAVE ATTRACTED INCREASING ATTENTION AS FUNDAMENTAL REGULATOR OF GENE EXPRESSION INVOLVED IN CVDS. AMONG THE DIFFERENT NCRNA SUBGROUPS, LONG NCRNAS (LNCRNAS) 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 CVDS BY MODULATING ACUTE AND CHRONIC INFLAMMATION, ADIPOGENESIS AND LIPID METABOLISM, AND CELLULAR PHYSIOLOGY. THIS REVIEW SUMMARIZES THIS RESEARCH ON THE MODULATORY EFFECTS OF LNCRNAS AND THEIR ROLES IN MEDIATING CELLULAR PROCESSES. THE MECHANISMS OF ACTION OF FLAVONOIDS UNDERLYING THEIR THERAPEUTIC EFFECTS ON CVDS ARE ALSO DISCUSSED. BASED ON OUR REVIEW, FLAVONOIDS MIGHT FACILITATE A SIGNIFICANT EPIGENETIC MODIFICATION AS PART (IF NOT FULL) OF THEIR TISSUE-/CELL-RELATED BIOLOGICAL EFFECTS. THIS FINDING MAY BE ATTRIBUTED TO THEIR INTERACTION WITH CELLULAR SIGNALING PATHWAYS INVOLVED IN CHRONIC DISEASES. CERTAIN LNCRNAS MIGHT BE THE TARGET OF SPECIFIC FLAVONOIDS, AND SOME CRITICAL SIGNALING PROCESSES INVOLVED IN THE INTERVENTION OF CVDS MIGHT MEDIATE THE THERAPEUTIC ROLES OF FLAVONOIDS. 2022 6 4145 20 MECHANISMS OF VASCULAR AGING. AGING OF THE VASCULATURE PLAYS A CENTRAL ROLE IN MORBIDITY AND MORTALITY OF OLDER PEOPLE. TO DEVELOP NOVEL TREATMENTS FOR AMELIORATION OF UNSUCCESSFUL VASCULAR AGING AND PREVENTION OF AGE-RELATED VASCULAR PATHOLOGIES, IT IS ESSENTIAL TO UNDERSTAND THE CELLULAR AND FUNCTIONAL CHANGES THAT OCCUR IN THE VASCULATURE DURING AGING. IN THIS REVIEW, THE PATHOPHYSIOLOGICAL ROLES OF FUNDAMENTAL CELLULAR AND MOLECULAR MECHANISMS OF AGING, INCLUDING OXIDATIVE STRESS, MITOCHONDRIAL DYSFUNCTION, IMPAIRED RESISTANCE TO MOLECULAR STRESSORS, CHRONIC LOW-GRADE INFLAMMATION, GENOMIC INSTABILITY, CELLULAR SENESCENCE, EPIGENETIC ALTERATIONS, LOSS OF PROTEIN HOMEOSTASIS, DEREGULATED NUTRIENT SENSING, AND STEM CELL DYSFUNCTION IN THE VASCULAR SYSTEM ARE CONSIDERED IN TERMS OF THEIR CONTRIBUTION TO THE PATHOGENESIS OF BOTH MICROVASCULAR AND MACROVASCULAR DISEASES ASSOCIATED WITH OLD AGE. THE IMPORTANCE OF PROGERONIC AND ANTIGERONIC CIRCULATING FACTORS IN RELATION TO DEVELOPMENT OF VASCULAR AGING PHENOTYPES ARE DISCUSSED. FINALLY, FUTURE DIRECTIONS AND OPPORTUNITIES TO DEVELOP NOVEL INTERVENTIONS TO PREVENT/DELAY AGE-RELATED VASCULAR PATHOLOGIES BY TARGETING FUNDAMENTAL CELLULAR AND MOLECULAR AGING PROCESSES ARE PRESENTED. 2018 7 3640 26 INCREASED EXTRACELLULAR MATRIX PROTEIN PRODUCTION IN CHRONIC DIABETIC COMPLICATIONS: IMPLICATIONS OF NON-CODING RNAS. MANAGEMENT OF CHRONIC DIABETIC COMPLICATIONS REMAINS A MAJOR MEDICAL CHALLENGE WORLDWIDE. ONE OF THE CHARACTERISTIC FEATURES OF ALL CHRONIC DIABETIC COMPLICATIONS IS AUGMENTED PRODUCTION OF EXTRACELLULAR MATRIX (ECM) PROTEINS. SUCH ECM PROTEINS ARE DEPOSITED IN ALL TISSUES AFFECTED BY CHRONIC COMPLICATIONS, ULTIMATELY CAUSING ORGAN DAMAGE AND DYSFUNCTION. A CONTRIBUTING FACTOR TO THIS PATHOGENETIC PROCESS IS GLUCOSE-INDUCED ENDOTHELIAL DAMAGE, WHICH INVOLVES PHENOTYPIC TRANSFORMATION OF ENDOTHELIAL CELLS (ECS). THIS PHENOTYPIC TRANSITION OF ECS, FROM A QUIESCENT STATE TO AN ACTIVATED DYSFUNCTIONAL STATE, CAN BE MEDIATED THROUGH ALTERATIONS IN THE SYNTHESIS OF CELLULAR PROTEINS. IN THIS REVIEW, WE DISCUSSED THE ROLES OF NON-CODING RNAS, SPECIFICALLY MICRORNAS (MIRNAS) AND LONG NON-CODING RNAS (LNCRNAS), IN SUCH PROCESSES. WE FURTHER OUTLINED OTHER EPIGENETIC MECHANISMS REGULATING THE BIOGENESIS AND/OR FUNCTION OF NON-CODING RNAS. OVERALL, WE BELIEVE THAT BETTER UNDERSTANDING OF SUCH MOLECULAR PROCESSES MAY LEAD TO THE DEVELOPMENT OF NOVEL BIOMARKERS AND THERAPEUTIC STRATEGIES IN THE FUTURE. 2019 8 4784 29 NUTRIMIROMICS: ROLE OF MICRORNAS AND NUTRITION IN MODULATING INFLAMMATION AND CHRONIC DISEASES. NUTRIMIROMICS STUDIES THE INFLUENCE OF THE DIET ON THE MODIFICATION OF GENE EXPRESSION DUE TO EPIGENETIC PROCESSES RELATED TO MICRORNAS (MIRNAS), WHICH MAY AFFECT THE RISK FOR THE DEVELOPMENT OF CHRONIC DISEASES. MIRNAS ARE A CLASS OF NON-CODING ENDOGENOUS RNA MOLECULES THAT ARE USUALLY INVOLVED IN POST-TRANSCRIPTIONAL GENE SILENCING BY INDUCING MRNA DEGRADATION OR TRANSLATIONAL REPRESSION BY BINDING TO A TARGET MESSENGER RNA. THEY CAN BE CONTROLLED BY ENVIRONMENTAL AND DIETARY FACTORS, PARTICULARLY BY ISOLATED NUTRIENTS OR BIOACTIVE COMPOUNDS, INDICATING THAT DIET MANIPULATION MAY HOLD PROMISE AS A THERAPEUTIC APPROACH IN MODULATING THE RISK OF CHRONIC DISEASES. THIS REVIEW SUMMARIZES THE EVIDENCE REGARDING THE INFLUENCE OF NUTRIENTS AND BIOACTIVE COMPOUNDS ON THE EXPRESSION OF MIRNAS RELATED TO INFLAMMATION AND CHRONIC DISEASE IN SEVERAL MODELS (CELL CULTURE, ANIMAL MODELS, AND HUMAN TRIALS). 2017 9 282 25 AGEING AND LOW-LEVEL CHRONIC INFLAMMATION: THE ROLE OF THE BIOLOGICAL CLOCK. AGEING IS A MULTIFACTORIAL PHYSIOLOGICAL MANIFESTATION THAT OCCURS INEXORABLY AND GRADUALLY IN ALL FORMS OF LIFE. THIS PROCESS IS LINKED TO THE DECAY OF HOMEOSTASIS DUE TO THE PROGRESSIVE DECREASE IN THE REPARATIVE AND REGENERATIVE CAPACITY OF TISSUES AND ORGANS, WITH REDUCED PHYSIOLOGICAL RESERVE IN RESPONSE TO STRESS. AGEING IS CLOSELY RELATED TO OXIDATIVE DAMAGE AND INVOLVES IMMUNOSENESCENCE AND TISSUE IMPAIRMENT OR METABOLIC IMBALANCES THAT TRIGGER INFLAMMATION AND INFLAMMASOME FORMATION. ONE OF THE MAIN AGEING-RELATED ALTERATIONS IS THE DYSREGULATION OF THE IMMUNE RESPONSE, WHICH RESULTS IN CHRONIC LOW-LEVEL, SYSTEMIC INFLAMMATION, TERMED "INFLAMMAGING". GENETIC AND EPIGENETIC CHANGES, AS WELL AS ENVIRONMENTAL FACTORS, PROMOTE AND/OR MODULATE THE MECHANISMS OF AGEING AT THE MOLECULAR, CELLULAR, ORGAN, AND SYSTEM LEVELS. MOST OF THESE MECHANISMS ARE CHARACTERIZED BY TIME-DEPENDENT PATTERNS OF VARIATION DRIVEN BY THE BIOLOGICAL CLOCK. IN THIS REVIEW, WE DESCRIBE THE INVOLVEMENT OF AGEING-RELATED PROCESSES WITH INFLAMMATION IN RELATION TO THE FUNCTIONING OF THE BIOLOGICAL CLOCK AND THE MECHANISMS OPERATING THIS INTRICATE INTERACTION. 2022 10 115 21 A STEM CELL AGING FRAMEWORK, FROM MECHANISMS TO INTERVENTIONS. STEM CELLS PLAY CENTRAL ROLES IN TISSUE DEVELOPMENT, HOMEOSTASIS, AND REGENERATION. DECADES OF SCIENTIFIC RESEARCH HAVE UNCOVERED PROCESSES OF STEM CELL DECLINE IN TISSUE AND ORGANISMAL AGING, AND MORE RECENTLY, PIONEERING TECHNOLOGIES PERMIT THE DISSECTION OF ITS UNDERLYING MECHANISMS AND INFORM THERAPEUTIC DEVELOPMENT FOR AGING AND AGING-ASSOCIATED DISORDERS. IN THIS REVIEW, WE ELUCIDATE AGING-RELATED FEATURES ACROSS DIFFERENT SOMATIC STEM CELL TYPES, WITH A SPECIFIC FOCUS ON EPIGENETIC CHANGES, LOSS OF PROTEIN HOMEOSTASIS, AND SYSTEMIC INFLUENCING FACTORS, INCLUDING CHRONIC INFLAMMATION, CIRCADIAN RHYTHM DYSREGULATION, AND METABOLIC DISORDER. OUR SURVEY OF ORGANISMAL STEM CELL AGING SUMMARIZES ITS UNDERLYING BIOLOGICAL IMPLICATIONS, POINTS TO POTENTIAL BIOMARKERS OF STEM CELL AGING, AND DISCUSSES STEM CELL-BASED THERAPEUTIC STRATEGIES WITH THE POTENTIAL FOR PROMOTING HEALTHY AGING AND COMBATING AGING AND AGE-RELATED DISEASES. 2022 11 6183 24 THE IMPACT OF ENVIRONMENTAL FACTORS IN INFLUENCING EPIGENETICS RELATED TO OXIDATIVE STATES IN THE CARDIOVASCULAR SYSTEM. OXIDATIVE STATES EXERT A SIGNIFICANT INFLUENCE ON A WIDE RANGE OF BIOLOGICAL AND MOLECULAR PROCESSES AND FUNCTIONS. WHEN THEIR BALANCE IS SHIFTED TOWARDS ENHANCED AMOUNTS OF FREE RADICALS, PATHOLOGICAL PHENOMENA CAN OCCUR, AS THE GENERATION OF REACTIVE OXYGEN SPECIES (ROS) IN TISSUE MICROENVIRONMENT OR IN THE SYSTEMIC CIRCULATION CAN BE DETRIMENTAL. EPIDEMIC CHRONIC DISEASES OF WESTERN SOCIETIES, SUCH AS CARDIOVASCULAR DISEASE, OBESITY, AND DIABETES CORRELATE WITH THE IMBALANCE OF REDOX HOMEOSTASIS. CURRENT ADVANCES IN OUR UNDERSTANDING OF EPIGENETICS HAVE REVEALED A PARALLEL SCENARIO SHOWING THE INFLUENCE OF OXIDATIVE STRESS AS A MAJOR REGULATOR OF EPIGENETIC GENE REGULATION VIA MODIFICATION OF DNA METHYLATION, HISTONES, AND MICRORNAS. THIS HAS PROVIDED BOTH THE BIOLOGICAL LINK AND A POTENTIAL MOLECULAR EXPLANATION BETWEEN OXIDATIVE STRESS AND CARDIOVASCULAR/METABOLIC PHENOMENA. ACCORDINGLY, IN THIS REVIEW, WE WILL PROVIDE CURRENT INSIGHTS ON THE PHYSIOLOGICAL AND PATHOLOGICAL IMPACT OF CHANGES IN OXIDATIVE STATES ON CARDIOVASCULAR DISORDERS, BY SPECIFICALLY FOCUSING ON THE INFLUENCE OF EPIGENETIC REGULATION. A SPECIAL EMPHASIS WILL HIGHLIGHT THE EFFECT ON EPIGENETIC REGULATION OF HUMAN'S CURRENT LIFE HABITS, EXTERNAL AND ENVIRONMENTAL FACTORS, INCLUDING FOOD INTAKE, TOBACCO, AIR POLLUTION, AND ANTIOXIDANT-BASED APPROACHES. ADDITIONALLY, THE STRATEGY TO QUANTIFY OXIDATIVE STATES IN HUMANS IN ORDER TO DETERMINE WHICH BIOLOGICAL MARKER COULD BEST MATCH A SUBJECT'S PROFILE WILL BE DISCUSSED. 2017 12 4323 25 MICRORNAS IN PSYCHOLOGICAL STRESS REACTIONS AND THEIR USE AS STRESS-ASSOCIATED BIOMARKERS, ESPECIALLY IN HUMAN SALIVA. MICRORNAS (MIRNAS) PLAY A CENTRAL ROLE IN THE REGULATION OF MANY CELLULAR PROCESSES INCLUDING PHYSIOLOGICAL AND PSYCHOLOGICAL STRESS REACTION PATHWAYS. PSYCHOLOGICAL STRESS IS AN IMPORTANT FACTOR FOR THE GENESIS AND MAINTENANCE OF MANY DISEASES. SEVERAL MIRNAS HAVE ALREADY BEEN DESCRIBED TO BE INVOLVED IN ITS REGULATION. THE PRESENCE OF MIRNAS IN ALL BODY FLUIDS IMPLIES A WIDESPREAD ROLE IN COMMUNICATION THROUGHOUT THE WHOLE ORGANISM AND TOGETHER WITH THEIR STABILITY MAKES THEM FORMIDABLE CANDIDATES AS BIOMARKERS. ALTERATIONS OF STRESS-ASSOCIATED MIRNA EXPRESSION LEVELS HAVE BEEN FOUND IN THE BRAIN AND WHOLE BLOOD OF HUMANS AND ANIMALS. IN THIS PAPER, WE REVIEW THE PARTICIPATION OF MIRNAS IN STRESS-REACTIVE PROCESSES AS WELL AS THEIR USABILITY AS SALIVARY BIOMARKERS OF SUCH PROCESSES. IN CONCLUSION, WE SUGGEST THAT SALIVARY MIRNAS MAY BE USEFUL AS NONINVASIVE BIOMARKERS TO ASSESS EPIGENETIC REGULATION PROCESSES OF CHRONIC OR ACUTE PSYCHOLOGICAL STRESS REACTIONS. 2017 13 1838 32 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 14 4914 23 PAIN VULNERABILITY: A NEUROBIOLOGICAL PERSPECTIVE. THERE ARE MANY KNOWN RISK FACTORS FOR CHRONIC PAIN CONDITIONS, YET THE BIOLOGICAL UNDERPINNINGS THAT LINK THESE FACTORS TO ABNORMAL PROCESSING OF PAINFUL SIGNALS ARE ONLY JUST BEGINNING TO BE EXPLORED. THIS REVIEW WILL DISCUSS THE POTENTIAL MECHANISMS THAT HAVE BEEN PROPOSED TO UNDERLIE VULNERABILITY AND RESILIENCE TOWARD DEVELOPING CHRONIC PAIN. PARTICULAR FOCUS WILL BE GIVEN TO GENETIC AND EPIGENETIC PROCESSES, PRIMING EFFECTS ON A CELLULAR LEVEL, AND ALTERATIONS IN BRAIN NETWORKS CONCERNED WITH REWARD, MOTIVATION/LEARNING AND DESCENDING MODULATORY CONTROL. ALTHOUGH RESEARCH IN THIS AREA IS STILL IN ITS INFANCY, A BETTER UNDERSTANDING OF HOW PAIN VULNERABILITY EMERGES HAS THE POTENTIAL TO HELP IDENTIFY INDIVIDUALS AT RISK AND MAY OPEN UP NEW THERAPEUTIC AVENUES. 2014 15 5577 28 ROLE OF MICRORNAS IN THE PATHOPHYSIOLOGY OF ADDICTION. ADDICTION IS A CHRONIC AND RELAPSING BRAIN DISORDER CHARACTERIZED BY COMPULSIVE SEEKING DESPITE ADVERSE CONSEQUENCES. THERE ARE BOTH HERITABLE AND EPIGENETIC MECHANISMS UNDERLYING DRUG ADDICTION. EMERGING EVIDENCE SUGGESTS THAT NON-CODING RNAS (NCRNAS) SUCH AS MICRORNAS (MIRNAS), LONG NON-CODING RNAS, AND CIRCULAR RNAS REGULATE SYNAPTIC PLASTICITY AND RELATED BEHAVIORS CAUSED BY SUBSTANCES OF ABUSE. THESE NCRNAS MODIFY GENE EXPRESSION AND MAY CONTRIBUTE TO THE BEHAVIORAL PHENOTYPES OF ADDICTION. AMONG THE NCRNAS, THE MOST WIDELY RESEARCHED AND IMPACTFUL ARE MIRNAS. THE GOAL IN THIS SYSTEMATIC REVIEW IS TO PROVIDE A DETAILED ACCOUNT OF RECENT RESEARCH INVOLVING THE ROLE OF MIRNAS IN ADDICTION. THIS ARTICLE IS CATEGORIZED UNDER: RNA INTERACTIONS WITH PROTEINS AND OTHER MOLECULES > SMALL MOLECULE-RNA INTERACTIONS RNA IN DISEASE AND DEVELOPMENT > RNA IN DISEASE. 2021 16 2543 27 EPIGENETICS IN LIVER DISEASE. EPIGENETICS IS A TERM THAT ENCOMPASSES A VARIETY OF REGULATORY PROCESSES THAT ARE ABLE TO CROSSTALK IN ORDER TO INFLUENCE GENE EXPRESSION AND CELL PHENOTYPE IN RESPONSE TO ENVIRONMENTAL CUES. A DEEP UNDERSTANDING OF EPIGENETICS OFFERS THE POTENTIAL FOR FRESH INSIGHTS INTO THE BASIS FOR COMPLEX CHRONIC DISEASES AND IMPROVED DIAGNOSTIC AND PROGNOSTIC TOOLS. MOREOVER, AS EPIGENETIC MODIFICATIONS ARE HIGHLY PLASTIC AND RESPONSIVE TO THE ENVIRONMENT, THERE IS MUCH EXCITEMENT AROUND THE THEME OF EPIGENETIC THERAPEUTICS, INCLUDING NOT ONLY NEW DRUGS BUT ALSO MORE INFORMED PATIENT ADVICE ON LIFESTYLE CHOICES AND THEIR IMPACT ON PATHOLOGY. THIS REVIEW BRIEFLY EXPLAINS THE MOLECULAR NATURE OF THE INDIVIDUAL REGULATORY PROCESS THAT CONSTITUTE EPIGENETICS, INCLUDING DNA METHYLATION, HISTONE MODIFICATIONS, CHROMATIN REMODELING, TRANSCRIPTIONAL CONTROL, AND NONCODING RNAS. THE WAYS IN WHICH THESE EPIGENETIC MECHANISMS INFLUENCE LIVER PHYSIOLOGY AND DISEASE WILL BE CONSIDERED IN DETAIL, PARTICULARLY IN THE CONTEXT OF CANCER, FIBROSIS, AND NONALCOHOLIC STEATOHEPATITIS. THE CURRENT LIMITATIONS ASSOCIATED WITH EPIGENETIC PROFILING AND THERAPEUTICS IN LIVER DISEASE ARE DISCUSSED, AS IS THE INTRIGUING POSSIBILITY THAT ENVIRONMENTAL-INDUCED EPIGENETIC CHANGES MAY BECOME STABLE AND HERITABLE. CONCLUSION: THE AIM OF THE REVIEW IS TO INFORM HEPATOLOGISTS OF THE EMERGING KEY EPIGENETIC IDEAS OF RELEVANCE TO LIVER DISEASES THAT ARE HIGHLY LIKELY TO FORM A COMPONENT OF PATIENT MANAGEMENT AND CARE IN THE NEXT DECADE. 2014 17 6322 18 THE ROLE FOR EPIGENETIC MODIFICATIONS IN PAIN AND ANALGESIA RESPONSE. PAIN REMAINS A POORLY UNDERSTOOD AND MANAGED SYMPTOM. A LIMITED MECHANISTIC UNDERSTANDING OF INTERINDIVIDUAL DIFFERENCES IN PAIN AND ANALGESIA RESPONSE SHAPES CURRENT APPROACHES TO ASSESSMENT AND TREATMENT. OPPORTUNITIES EXIST TO IMPROVE PAIN CARE THROUGH INCREASED UNDERSTANDING OF HOW DYNAMIC EPIGENOMIC REMODELING SHAPES INJURY, ILLNESS, PAIN, AND TREATMENT RESPONSE. TIGHTLY REGULATED ALTERATIONS OF THE DNA-HISTONE CHROMATIN COMPLEX ENABLE CELLS TO CONTROL TRANSCRIPTION, REPLICATION, GENE EXPRESSION, AND PROTEIN PRODUCTION. PATHOLOGICAL ALTERATIONS TO CHROMATIN SHAPE THE ABILITY OF THE CELL TO RESPOND TO PHYSIOLOGIC AND ENVIRONMENTAL CUES LEADING TO DISEASE AND REDUCED TREATMENT EFFECTIVENESS. THIS REVIEW PROVIDES AN OVERVIEW OF CRITICAL EPIGENETIC PROCESSES SHAPING PATHOLOGY AND PAIN, HIGHLIGHTS CURRENT RESEARCH SUPPORT FOR THE ROLE OF EPIGENOMIC MODIFICATION IN THE DEVELOPMENT OF CHRONIC PAIN, AND SUMMARIZES THE THERAPEUTIC POTENTIAL TO ALTER EPIGENETIC PROCESSES TO IMPROVE HEALTH OUTCOMES. 2013 18 6802 18 [EPIGENETIC MECHANISMS IN MODELS OF CHRONIC PAIN - A TARGET FOR NOVEL THERAPY?]. EVIDENCE OF EPIGENETICS' ROLE IN PAIN RESPONSE IS ACCUMULATING IN RECENT YEARS. TIGHTLY REGULATED EPIGENETIC ALTERATIONS ON DNA AND HISTONES IN THE SENSORY CIRCUIT SHAPE THE PHYSIOLOGICAL RESPONSE TO INJURY. ALTERING THOSE EPIGENETIC PROCESSES HINDERS THERAPEUTIC POTENTIAL IN PAIN. THIS REVIEW PROVIDES AN OVERVIEW OF EPIGENOMIC MODIFICATION IN THE DEVELOPMENT OF CHRONIC PAIN, AND SUMMARIZES THE THERAPEUTIC POTENTIAL TO ALTER EPIGENETIC PROCESSES. 2018 19 4715 26 NON-CODING RNA REGULATION OF T CELL BIOLOGY: IMPLICATIONS FOR AGE-ASSOCIATED CARDIOVASCULAR DISEASES. PREVALENCE OF AGE-ASSOCIATED CARDIOVASCULAR DISEASES (CVD) HAS DRAMATICALLY INCREASED AS A RESULT OF IMPROVEMENTS IN LIFE EXPECTANCY. CHRONIC INFLAMMATION IS A SHARED PATHOPHYSIOLOGICAL FEATURE OF AGE-ASSOCIATED CVDS, INDICATING A ROLE FOR THE IMMUNE SYSTEM IN THE ONSET AND DEVELOPMENT OF CVDS. INDEED, AGEING ELICITS PROFOUND CHANGES IN BOTH THE CARDIOVASCULAR AND IMMUNE SYSTEM, ESPECIALLY IN THE T CELL COMPARTMENT. ALTHOUGH SUCH CHANGES HAVE BEEN WELL DESCRIBED AT THE CELLULAR LEVEL, THE MOLECULAR MECHANISMS UNDERLYING IMMUNE-MEDIATED CARDIOVASCULAR AGEING REMAIN LARGELY UNEXPLORED. NON-CODING RNAS (NCRNAS) COMPRISE A HETEROGENEOUS FAMILY OF RNA TRANSCRIPTS THAT REGULATE GENE EXPRESSION AT THE EPIGENETIC, TRANSCRIPTIONAL, POST-TRANSCRIPTIONAL, AND POST-TRANSLATIONAL LEVELS. NON-CODING RNAS HAVE RECENTLY EMERGED AS MASTER MODULATORS OF T CELL IMMUNITY. IN THIS REVIEW, THE STATE-OF-THE-ART KNOWLEDGE ON NCRNA REGULATORY EFFECTS OVER T CELL DIFFERENTIATION, FUNCTION, AND AGEING IN THE CONTEXT OF AGE-ASSOCIATED CVDS, SUCH AS ATHEROSCLEROSIS, ACUTE CORONARY SYNDROMES, AND HEART FAILURE, IS DISCUSSED. 2018 20 2307 21 EPIGENETIC REGULATION OF CELLULAR FUNCTIONS IN WOUND HEALING. STRINGENT SPATIOTEMPORAL REGULATION OF THE WOUND HEALING PROCESS INVOLVING MULTIPLE CELL TYPES IS ASSOCIATED WITH EPIGENETIC MECHANISMS OF GENE REGULATION, SUCH AS DNA METHYLATION, HISTONE MODIFICATION AND CHROMATIN REMODELLING, AS WELL AS NON-CODING RNAS. HERE, WE DISCUSS THE EPIGENETIC CHANGES THAT OCCUR DURING WOUND HEALING AND THE RAPIDLY EXPANDING UNDERSTANDING OF HOW THESE MECHANISMS AFFECT HEALING RESOLUTION IN BOTH ACUTE AND CHRONIC WOUND MILIEU. WE PROVIDE A FOCUSSED OVERVIEW OF CURRENT RESEARCH INTO EPIGENETIC REGULATORS THAT CONTRIBUTE TO WOUND HEALING BY SPECIFIC CELL TYPE. WE HIGHLIGHT THE ROLE OF EPIGENETIC REGULATORS IN THE MOLECULAR PATHOPHYSIOLOGY OF CHRONIC WOUND CONDITIONS. THE UNDERSTANDING OF HOW EPIGENETIC REGULATORS CAN AFFECT CELLULAR FUNCTIONS DURING NORMAL AND IMPAIRED WOUND HEALING COULD LEAD TO NOVEL THERAPEUTIC APPROACHES, AND WE OUTLINE QUESTIONS THAT CAN PROVIDE GUIDANCE FOR FUTURE RESEARCH ON EPIGENETIC-BASED INTERVENTIONS TO PROMOTE HEALING. DISSECTING THE DYNAMIC INTERPLAY BETWEEN CELLULAR SUBTYPES INVOLVED IN WOUND HEALING AND EPIGENETIC PARAMETERS DURING BARRIER REPAIR WILL DEEPEN OUR UNDERSTANDING OF HOW TO IMPROVE HEALING OUTCOMES IN PATIENTS AFFECTED BY CHRONIC NON-HEALING WOUNDS. 2021