1 2579 61 EPIGENETICS OF KIDNEY DISEASE. DNA METHYLATION AND HISTONE MODIFICATIONS DETERMINE RENAL PROGRAMMING AND THE DEVELOPMENT AND PROGRESSION OF RENAL DISEASE. THE IDENTIFICATION OF THE WAY IN WHICH THE RENAL CELL EPIGENOME IS ALTERED BY ENVIRONMENTAL MODIFIERS DRIVING THE ONSET AND PROGRESSION OF RENAL DISEASES HAS EXTENDED OUR UNDERSTANDING OF THE PATHOPHYSIOLOGY OF KIDNEY DISEASE PROGRESSION. IN THIS REVIEW, WE FOCUS ON CURRENT KNOWLEDGE CONCERNING THE IMPLICATIONS OF EPIGENETIC MODIFICATIONS DURING RENAL DISEASE FROM EARLY DEVELOPMENT TO CHRONIC KIDNEY DISEASE PROGRESSION INCLUDING RENAL FIBROSIS, DIABETIC NEPHROPATHY AND THE TRANSLATIONAL POTENTIAL OF IDENTIFYING NEW BIOMARKERS AND TREATMENTS FOR THE PREVENTION AND THERAPY OF CHRONIC KIDNEY DISEASE AND END-STAGE KIDNEY DISEASE. 2017 2 970 17 CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) AND LUNG CANCER: COMMON PATHWAYS FOR PATHOGENESIS. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) AND LUNG CANCER COMPRISE THE LEADING CAUSES OF LUNG DISEASE-RELATED MORTALITY WORLDWIDE. EXPOSURE TO TOBACCO SMOKE IS A MUTUAL AETIOLOGY UNDERLYING THE TWO DISEASES, ACCOUNTING FOR ALMOST 90% OF CASES. THERE IS ACCUMULATING EVIDENCE SUPPORTING THE ROLE OF IMMUNE DYSFUNCTION, THE LUNG MICROBIOME, EXTRACELLULAR VESICLES AND UNDERLYING GENETIC SUSCEPTIBILITY IN THE DEVELOPMENT OF COPD AND LUNG CANCER. FURTHER, EPIGENETIC FACTORS, INVOLVING DNA METHYLATION AND MICRORNA EXPRESSION, HAVE BEEN IMPLICATED IN BOTH DISEASES. CHRONIC INFLAMMATION IS A KEY FEATURE OF COPD AND COULD BE A POTENTIAL DRIVER OF LUNG CANCER DEVELOPMENT. USING NEXT GENERATION TECHNOLOGIES, FURTHER STUDIES INVESTIGATING THE GENOMICS, EPIGENETICS AND GENE-ENVIRONMENT INTERACTION IN KEY MOLECULAR PATHWAYS WILL CONTINUE TO ELUCIDATE THE PATHOGENIC MECHANISMS UNDERLYING THE DEVELOPMENT OF COPD AND LUNG CANCER, AND CONTRIBUTE TO THE DEVELOPMENT OF NOVEL DIAGNOSTIC AND PROGNOSTIC TOOLS FOR EARLY INTERVENTION AND PERSONALISED THERAPEUTIC STRATEGIES. 2019 3 1871 28 EMERGING ROLE OF EPIGENETICS IN EXPLAINING RELATIONSHIP OF PERIODONTITIS AND CARDIOVASCULAR DISEASES. CARDIOVASCULAR DISEASES SUCH AS ISCHEMIC HEART DISEASES OR STROKE ARE AMONG THE LEADING CAUSE OF DEATHS GLOBALLY, AND EVIDENCE SUGGESTS THAT THESE DISEASES ARE MODULATED BY A MULTIFACTORIAL AND COMPLEX INTERPLAY OF GENETIC, ENVIRONMENTAL, AND LIFESTYLE FACTORS. GENETIC PREDISPOSITION AND CHRONIC EXPOSURE TO MODIFIABLE RISK FACTORS HAVE BEEN EXPLORED TO BE INVOLVED IN THE PATHOPHYSIOLOGY OF CVD. ENVIRONMENTAL FACTORS CONTRIBUTE TO AN INDIVIDUAL'S PROPENSITY TO DEVELOP MAJOR CARDIOVASCULAR RISK FACTORS THROUGH EPIGENETIC MODIFICATIONS OF DNA AND HISTONES VIA MIRNA REGULATION OF PROTEIN TRANSLATION THAT ARE TYPES OF EPIGENETIC MECHANISMS AND PARTICIPATE IN DISEASE DEVELOPMENT. PERIODONTAL DISEASE (PD) IS ONE OF THE MOST COMMON ORAL DISEASES IN HUMANS THAT IS CHARACTERIZED BY LOW-GRADE INFLAMMATION AND HAS BEEN SHOWN TO INCREASE THE RISK OF CVDS. RISK FACTORS INVOLVED IN PD AND CVD ARE DETERMINED BOTH GENETICALLY AND BEHAVIORALLY. PERIODONTAL DISEASES SUCH AS CHRONIC INFLAMMATION PROMOTE DNA METHYLATION. EPIGENETIC MODIFICATIONS INVOLVED IN THE INITIATION AND PROGRESSION OF ATHEROSCLEROSIS PLAY AN ESSENTIAL ROLE IN PLAQUE DEVELOPMENT AND VULNERABILITY. EPIGENETICS HAS OPENED A NEW WORLD TO UNDERSTAND AND MANAGE HUMAN DISEASES, INCLUDING CVDS AND PERIODONTAL DISEASES. GENETIC MEDICINE HAS STARTED A NEW ERA OF EPIGENETICS TO OVERCOME HUMAN DISEASES WITH VARIOUS NEW METHODOLOGY. EPIGENETIC PROFILING MAY AID IN BETTER DIAGNOSIS AND STRATIFICATION OF PATIENTS SHOWING POTENTIAL PREDISPOSED STATES FOR DISEASE. A BETTER UNDERSTANDING OF THE EXACT REGULATORY MECHANISMS OF EPIGENETIC PATHWAYS DRIVING INFLAMMATION IS SLOWLY EMERGING AND WILL AID IN DEVELOPING NOVEL TOOLS FOR THE TREATMENT OF DISEASE. 2021 4 6799 19 [EPIGENETIC AND CURRENT TREATMENT APPROACHES IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE]. EPIGENETICS MECHANISMS SUCH AS DNA METHYLATION, HISTONE ACETYLATION AND NON-CODING RNAS MAY PLAY ARE A ROLE IN THE PATHOGENESIS OF CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD). RESEARCHS WITH REGARD EPIGENETIC IN COPD CAN SHED LIGHT ON PATHOGENES AND MAY BE RELEVANT IN THE DEVELOPMENT OF NOVEL TARGETED THERAPIES. THE AIM OF THIS ARTICLE IS TO REVIEW EPIGENETIC MECHANISMS NEW TREATMENTS APPROACHES IN COPD. 2016 5 1539 24 DNA METHYLATION IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS A LUNG DISEASE AFFECTED BY BOTH GENETIC AND ENVIRONMENTAL FACTORS. THEREFORE, THE ROLE OF EPIGENETICS IN THE PATHOGENESIS OF COPD HAS ATTRACTED MUCH ATTENTION. AS ONE OF THE THREE EPIGENETIC MECHANISMS, DNA METHYLATION HAS BEEN EXTENSIVELY STUDIED IN COPD. THE PRESENT REVIEW AIMS AT OVERVIEWING THE EFFECT OF DNA METHYLATION ON ETIOLOGY, PATHOGENESIS, PATHOPHYSIOLOGICAL CHANGES, AND COMPLICATIONS OF COPD. THE CLARIFICATION OF ABERRANT METHYLATION OF TARGET GENES, WHICH PLAY IMPORTANT ROLES IN THE INITIATION AND PROGRESSION OF COPD, WILL PROVIDE NEW DISEASE-SPECIFIC BIOMARKER AND TARGETS FOR EARLY DIAGNOSIS AND THERAPY. 2020 6 5323 22 PULMONARY INVOLVEMENT IN SYSTEMIC SCLEROSIS: EXPLORING CELLULAR, GENETIC AND EPIGENETIC MECHANISMS. SYSTEMIC SCLEROSIS (SSC) IS A CHRONIC PROGRESSIVE AUTOIMMUNE DISEASE CHARACTERIZED BY IMMUNE INFLAMMATION, VASCULOPATHY, AND FIBROSIS. THERE ARE STILL NUMEROUS UNCERTAINTIES IN THE UNDERSTANDING OF DISEASE INITIATION AND PROGRESSION. PULMONARY INVOLVEMENT IN SSC, AND PARTICULARLY PULMONARY FIBROSIS, IS CRITICAL FOR ALL ORGAN SYSTEMS AFFECTIONS IN THIS DISEASE. THIS REVIEW IS AIMED TO DESCRIBE AND ANALYZE NEW FINDINGS IN THE PATHOPHYSIOLOGY OF SSC-ASSOCIATED PULMONARY INVOLVEMENT AND TO EXPLORE PERSPECTIVE DIAGNOSTIC AND THERAPEUTIC STRATEGIES. A MYRIAD OF CELLULAR INTERACTIONS IS EXPLORED IN THE DYNAMICS OF PROGRESSIVE INTERSTITIAL LUNG DISEASE (ILD) AND PULMONARY HYPERTENSION (PH) IN SSC. THE ROLE OF EXOSOMES, MICROVESICLES, AND APOPTOTIC BODIES IS EXAMINED AND THE IMPACT OF MICRO AND LONG NON-CODING RNAS, DNA METHYLATION, AND HISTONE MODIFICATION IN SSC IS DISCUSSED. 2020 7 2988 19 GENETIC FACTORS AND SYSTEMIC SCLEROSIS. SYSTEMIC SCLEROSIS (SSC) IS A RARE CONNECTIVE TISSUE DISEASE OF UNKNOWN ETIOLOGY CHARACTERIZED BY CHRONIC INFLAMMATION AND FIBROSIS OF THE SKIN, VASCULAR ABNORMALITIES, AND VARIABLE INVOLVEMENT OF ORGANS INCLUDING KIDNEYS, GASTROINTESTINAL TRACT, HEART, AND LUNGS. SSC SHOWS A COMPLEX ETIOLOGY IN WHICH BOTH ENVIRONMENTAL AND GENETIC FACTORS SEEM TO INFLUENCE THE ONSET AND OUTCOME OF THE DISEASE. WE PROVIDE AN EXTENSIVE OVERVIEW OF THE GENETIC FACTORS AND EPIGENETIC MODIFICATIONS AND WHAT THEIR KNOWLEDGE HAS REVEALED IN TERMS OF ETIOPATHOGENESIS OF SSC. 2016 8 97 21 A PRIMER ON THE EPIGENETICS OF KIDNEY FIBROSIS. DESPITE EXTENSIVE KNOWLEDGE OF THE VARIOUS MOLECULAR PATHWAYS THAT CONTRIBUTE TO TUBULOINTERSTITIAL FIBROSIS, IT REMAINS AN UNSOLVED QUESTION WHY THE PROGRESSION RATE OF CHRONIC KIDNEY DISEASE VARIES SUBSTANTIALLY FROM PATIENT TO PATIENT, EVEN AMONG PATIENTS WITH COMMON UNDERLYING NEPHROPATHIES AND COMORBIDITIES. POSSIBLE EXPLANATIONS FOR DIFFERENT SUSCEPTIBILITIES OF INDIVIDUAL PATIENTS TO DEVELOP END-STAGE RENAL FAILURE INCLUDE GENETIC OR EPIGENETIC VARIATIONS, WHICH MODIFY HOW INDIVIDUAL PATIENTS RESPOND TO KIDNEY INJURY. HERE WE REVIEW PRINCIPLES OF EPIGENETIC MECHANISMS IN CONTEXT OF CHRONIC KIDNEY DISEASE AND DISCUSS HOW SUCH INSIGHTS MAY BE UTILIZED FOR FUTURE THERAPEUTIC STRATEGIES AND MAY LEAD TO NOVEL DIAGNOSTIC TOOLS IN THE FUTURE. 2012 9 5364 29 RECENT ADVANCES IN EPIGENETICS OF AGE-RELATED KIDNEY DISEASES. RENAL AGING HAS ATTRACTED INCREASING ATTENTION IN TODAY'S AGING SOCIETY, AS ELDERLY PEOPLE WITH ADVANCED AGE ARE MORE SUSCEPTIBLE TO VARIOUS KIDNEY DISORDERS SUCH AS ACUTE KIDNEY INJURY (AKI) AND CHRONIC KIDNEY DISEASE (CKD). THERE IS NO CLEAR-CUT UNIVERSAL MECHANISM FOR IDENTIFYING AGE-RELATED KIDNEY DISEASES, AND THEREFORE, THEY POSE A CONSIDERABLE MEDICAL AND PUBLIC HEALTH CHALLENGE. EPIGENETICS REFERS TO THE STUDY OF HERITABLE MODIFICATIONS IN THE REGULATION OF GENE EXPRESSION THAT DO NOT REQUIRE CHANGES IN THE UNDERLYING GENOMIC DNA SEQUENCE. A VARIETY OF EPIGENETIC MODIFIERS SUCH AS HISTONE DEACETYLASES (HDAC) INHIBITORS AND DNA METHYLTRANSFERASE (DNMT) INHIBITORS HAVE BEEN PROPOSED AS POTENTIAL BIOMARKERS AND THERAPEUTIC TARGETS IN NUMEROUS FIELDS INCLUDING CARDIOVASCULAR DISEASES, IMMUNE SYSTEM DISEASE, NERVOUS SYSTEM DISEASES, AND NEOPLASMS. ACCUMULATING EVIDENCE IN RECENT YEARS INDICATES THAT EPIGENETIC MODIFICATIONS HAVE BEEN IMPLICATED IN RENAL AGING. HOWEVER, NO PREVIOUS SYSTEMATIC REVIEW HAS BEEN PERFORMED TO SYSTEMATICALLY GENERALIZE THE RELATIONSHIP BETWEEN EPIGENETICS AND AGE-RELATED KIDNEY DISEASES. IN THIS REVIEW, WE AIM TO SUMMARIZE THE RECENT ADVANCES IN EPIGENETIC MECHANISMS OF AGE-RELATED KIDNEY DISEASES AS WELL AS DISCUSS THE APPLICATION OF EPIGENETIC MODIFIERS AS POTENTIAL BIOMARKERS AND THERAPEUTIC TARGETS IN THE FIELD OF AGE-RELATED KIDNEY DISEASES. IN SUMMARY, THE MAIN TYPES OF EPIGENETIC PROCESSES INCLUDING DNA METHYLATION, HISTONE MODIFICATIONS, NON-CODING RNA (NCRNA) MODULATION HAVE ALL BEEN IMPLICATED IN THE PROGRESSION OF AGE-RELATED KIDNEY DISEASES, AND THERAPEUTIC TARGETING OF THESE PROCESSES WILL YIELD NOVEL THERAPEUTIC STRATEGIES FOR THE PREVENTION AND/OR TREATMENT OF AGE-RELATED KIDNEY DISEASES. 2022 10 2224 21 EPIGENETIC MODIFICATIONS IN THE PATHOGENESIS OF SYSTEMIC SCLEROSIS. SYSTEMIC SCLEROSIS IS A RARE CHRONIC AUTOIMMUNE DISEASE, WHICH MAINLY MANIFESTS AS IMMUNE DISORDERS, VASCULAR DAMAGE, AND PROGRESSIVE FIBROSIS. THE ETIOLOGY OF SSC IS COMPLEX AND INVOLVES MULTIPLE FACTORS. BOTH GENETIC AND ENVIRONMENTAL FACTORS ARE INVOLVED IN ITS PATHOGENESIS. AS ONE OF THE MOLECULAR MECHANISMS OF ENVIRONMENTAL FACTORS, EPIGENETIC REGULATION PLAYS AN IMPORTANT ROLE IN THE OCCURRENCE AND DEVELOPMENT OF SYSTEMIC SCLEROSIS, WHICH INVOLVES DNA METHYLATION, HISTONE MODIFICATION AND NON-CODING RNA REGULATION. THIS REVIEW SUMMARIZES RESEARCH ADVANCES IN EPIGENETICS, INCLUDING EXOSOMES, LNCRNA, AND MENTIONS POSSIBLE BIOMARKERS AND THERAPEUTIC TARGETS AMONG THEM. 2022 11 6276 26 THE PATHOGENIC ROLE OF DYSREGULATED EPIGENETIC MODIFICATIONS IN AUTOIMMUNE DISEASES. AUTOIMMUNE DISEASES CAN BE CHRONIC WITH RELAPSE OF INFLAMMATORY SYMPTOMS, BUT IT CAN BE ALSO ACUTE AND LIFE-THREATENING IF IMMUNE CELLS DESTROY LIFE-SUPPORTING ORGANS, SUCH AS LUPUS NEPHRITIS. THE ETIOPATHOGENESIS OF AUTOIMMUNE DISEASES HAS BEEN REVEALED AS THAT GENETICS AND ENVIRONMENTAL FACTORS-MEDIATED DYSREGULATED IMMUNE RESPONSES CONTRIBUTE TO THE INITIATION AND DEVELOPMENT OF AUTOIMMUNE DISORDERS. HOWEVER, THE CURRENT UNDERSTANDING OF PATHOGENESIS IS LIMITED AND THE UNDERLYING MECHANISM HAS NOT BEEN WELL DEFINED, WHICH LOWS THE DEVELOPMENT OF NOVEL BIOMARKERS AND NEW THERAPEUTIC STRATEGIES FOR AUTOIMMUNE DISEASES. TO IMPROVE THIS, BROADENING AND DEEPENING OUR UNDERSTANDING OF PATHOGENESIS IS AN UNMET NEED. AS GENETIC SUSCEPTIBILITY CANNOT EXPLAIN THE LOW ACCORDANCE RATE OF INCIDENCE IN HOMOZYGOUS TWINS, EPIGENETIC REGULATIONS MIGHT BE AN ADDITIONAL EXPLANATION. THEREFORE, THIS REVIEW WILL SUMMARIZE CURRENT PROGRESS OF STUDIES ON EPIGENETIC DYSREGULATIONS CONTRIBUTING TO AUTOIMMUNE DISEASES, INCLUDING SLE, RHEUMATOID ARTHRITIS (RA), PSORIASIS, TYPE 1 DIABETES (T1D), AND SYSTEMIC SCLEROSIS (SSC), HOPEFULLY PROVIDING OPINIONS ON ORIENTATION OF FUTURE RESEARCH, AS WELL AS DISCUSSING THE CLINICAL UTILIZATION OF POTENTIAL BIOMARKERS AND THERAPEUTIC STRATEGIES FOR THESE DISEASES. 2019 12 4844 23 ONE YEAR IN REVIEW 2019: PATHOGENESIS OF RHEUMATOID ARTHRITIS. RHEUMATOID ARTHRITIS (RA) IS A CHRONIC INFLAMMATORY AUTOIMMUNE DISEASE INFLUENCED BY BOTH GENETIC AND ENVIRONMENTAL FACTORS. OVER THE LAST FEW YEARS, PARTICULAR ATTENTION HAS BEEN GIVEN TO NOVEL GENES AND TO THE CLOSE INTERACTION BETWEEN GENETIC FACTORS AND EPIGENETIC MECHANISMS. RESEARCH HAS ALSO FOCUSED ON THE INFLUENCE OF ENVIRONMENTAL FACTORS ON DISEASE DEVELOPMENT, AND ON NEW MECHANISMS OF THE INNATE AND ADAPTIVE IMMUNE SYSTEM THAT CAN INFLUENCE THE DIFFERENT STAGES OF RA. HOWEVER, THERE ARE STILL SEVERAL ASPECTS OF THE DISEASE THAT NEED FURTHER INVESTIGATION. SHEDDING SOME LIGHT ON THE DIFFERENT ASPECTS OF RA PATHOGENESIS WILL HELP TO IMPROVE THE CURRENT DIAGNOSTIC TOOLS AND TO IDENTIFY NEW TARGETS FOR THE DEVELOPMENT OF DISEASE-MODIFYING THERAPIES. THUS, IN THIS REVIEW WE SUMMARISE THE NEW INSIGHTS IN RA PATHOGENESIS, RESULTING FROM LITERATURE RESEARCH DATA PUBLISHED IN THE LAST YEAR. 2019 13 6204 25 THE INFLUENCE OF EPIGENETICS AND INFLAMMATION ON CARDIOMETABOLIC RISKS. CARDIOMETABOLIC DISEASES INCLUDE METABOLIC SYNDROME, OBESITY, TYPE 2 DIABETES MELLITUS, AND HYPERTENSION. EPIGENETIC MODIFICATIONS PARTICIPATE IN CARDIOMETABOLIC DISEASES THROUGH SEVERAL PATHWAYS, INCLUDING INFLAMMATION, VASCULAR DYSFUNCTION, AND INSULIN RESISTANCE. EPIGENETIC MODIFICATIONS, WHICH ENCOMPASS ALTERATIONS TO GENE EXPRESSION WITHOUT MUTATING THE DNA SEQUENCE, HAVE GAINED MUCH ATTENTION IN RECENT YEARS, SINCE THEY HAVE BEEN CORRELATED WITH CARDIOMETABOLIC DISEASES AND MAY BE TARGETED FOR THERAPEUTIC INTERVENTIONS. EPIGENETIC MODIFICATIONS ARE GREATLY INFLUENCED BY ENVIRONMENTAL FACTORS, SUCH AS DIET, PHYSICAL ACTIVITY, CIGARETTE SMOKING, AND POLLUTION. SOME MODIFICATIONS ARE HERITABLE, INDICATING THAT THE BIOLOGICAL EXPRESSION OF EPIGENETIC ALTERATIONS MAY BE OBSERVED ACROSS GENERATIONS. MOREOVER, MANY PATIENTS WITH CARDIOMETABOLIC DISEASES PRESENT WITH CHRONIC INFLAMMATION, WHICH CAN BE INFLUENCED BY ENVIRONMENTAL AND GENETIC FACTORS. THE INFLAMMATORY ENVIRONMENT WORSENS THE PROGNOSIS OF CARDIOMETABOLIC DISEASES AND FURTHER INDUCES EPIGENETIC MODIFICATIONS, PREDISPOSING PATIENTS TO THE DEVELOPMENT OF OTHER METABOLISM-ASSOCIATED DISEASES AND COMPLICATIONS. A DEEPER UNDERSTANDING OF INFLAMMATORY PROCESSES AND EPIGENETIC MODIFICATIONS IN CARDIOMETABOLIC DISEASES IS NECESSARY TO IMPROVE OUR DIAGNOSTIC CAPABILITIES, PERSONALIZED MEDICINE APPROACHES, AND THE DEVELOPMENT OF TARGETED THERAPEUTIC INTERVENTIONS. FURTHER UNDERSTANDING MAY ALSO ASSIST IN PREDICTING DISEASE OUTCOMES, ESPECIALLY IN CHILDREN AND YOUNG ADULTS. THIS REVIEW DESCRIBES EPIGENETIC MODIFICATIONS AND INFLAMMATORY PROCESSES UNDERLYING CARDIOMETABOLIC DISEASES, AND FURTHER DISCUSSES ADVANCES IN THE RESEARCH FIELD WITH A FOCUS ON SPECIFIC POINTS FOR INTERVENTIONAL THERAPY. 2023 14 2555 25 EPIGENETICS IN RENAL DISEASES. WITH AGING, PREVALENCE OF OBESITY, HYPERTENSION, DIABETES AND RENAL DISEASES HAVE INCREASED GLOBALLY. OVER THE LAST TWO DECADES, THE PREVALENCE OF RENAL DISEASES HAS BEEN INTENSELY INCREASING. RENAL DISEASE AND RENAL PROGRAMMING ARE REGULATED BY EPIGENETIC MODIFICATIONS LIKE DNA METHYLATION AND HISTONE MODIFICATIONS. ENVIRONMENTAL FACTORS HAVE SIGNIFICANT ROLE IN THE PATHOPHYSIOLOGY OF RENAL DISEASE PROGRESSION. UNDERSTANDING THE POTENTIAL OF EPIGENETIC REGULATION OF GENE EXPRESSION MAY BE USEFUL IN RENAL DISEASE PROGNOSIS, DIAGNOSIS AND PROVIDES NOVEL THERAPEUTIC MEASURES. IN A NUTSHELL, THIS CHAPTER TALKS ABOUT THE ROLE OF EPIGENETIC MECHANISMS-DNA METHYLATION, HISTONE MODIFICATION, AND NONCODING RNA IN DIFFERENT RENAL DISEASES. THESE INCLUDE DIABETIC KIDNEY DISEASE, DIABETIC NEPHROPATHY, RENAL FIBROSIS, ETC. 2023 15 6628 23 UNDERSTANDING THE GENETICS OF CHRONIC OBSTRUCTIVE PULMONARY DISEASE, ALPHA1-ANTITRYPSIN DEFICIENCY, AND IMPLICATIONS FOR CLINICAL PRACTICE. CIGARETTE SMOKING AND POOR AIR QUALITY ARE THE GREATEST RISK FACTORS FOR DEVELOPING CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD), BUT GROWING EVIDENCE INDICATES THAT GENETIC FACTORS ALSO AFFECT PREDISPOSITION TO AND CLINICAL EXPRESSION OF DISEASE. WITH THE EXCEPTION OF ALPHA1-ANTITRYPSIN DEFICIENCY (AATD), A RARE AUTOSOMAL RECESSIVE DISORDER THAT IS PRESENT IN 1-3% OF INDIVIDUALS WITH COPD, NO SINGLE GENE IS ASSOCIATED WITH THE DEVELOPMENT OF OBSTRUCTIVE LUNG DISEASE. INSTEAD, A COMPLEX INTERPLAY OF GENETIC, EPIGENETIC, AND ENVIRONMENTAL FACTORS IS THE BASIS FOR PERSISTENT INFLAMMATORY RESPONSES, ACCELERATED CELL AGING, CELL DEATH, AND FIBROSIS, LEADING TO THE CLINICAL SYMPTOMS OF COPD AND DIFFERENT PHENOTYPIC PRESENTATIONS. IN THIS BRIEF REVIEW, WE DISCUSS CURRENT UNDERSTANDING OF THE GENETICS OF COPD, PATHOGENETICS OF AATD, EPIGENETIC INFLUENCES ON THE DEVELOPMENT OF OBSTRUCTIVE LUNG DISEASE, AND HOW CLASSIFYING COPD BY PHENOTYPE CAN INFLUENCE CLINICAL TREATMENT AND PATIENT OUTCOMES. 2021 16 6377 27 THE ROLE OF NON-CODING RNAS IN DIABETIC NEPHROPATHY: POTENTIAL APPLICATIONS AS BIOMARKERS FOR DISEASE DEVELOPMENT AND PROGRESSION. DIABETIC NEPHROPATHY, A PROGRESSIVE KIDNEY DISEASE THAT DEVELOPS SECONDARY TO DIABETES, IS THE MAJOR CAUSE OF CHRONIC KIDNEY DISEASE IN DEVELOPED COUNTRIES, AND CONTRIBUTES SIGNIFICANTLY TO INCREASED MORBIDITY AND MORTALITY AMONG INDIVIDUALS WITH DIABETES. ALTHOUGH THE CAUSES OF DIABETIC NEPHROPATHY ARE NOT FULLY UNDERSTOOD, RECENT STUDIES DEMONSTRATE A ROLE FOR EPIGENETIC FACTORS IN THE DEVELOPMENT OF THE DISEASE. FOR EXAMPLE, NON-CODING RNA (NCRNA) MOLECULES, INCLUDING MICRORNAS (MIRNAS), HAVE BEEN SHOWN TO BE FUNCTIONALLY IMPORTANT IN MODULATING RENAL RESPONSE TO HYPERGLYCEMIA AND PROGRESSION OF DIABETIC NEPHROPATHY. CHARACTERIZATION OF MIRNA EXPRESSION IN DIABETIC NEPHROPATHY FROM STUDIES OF ANIMAL MODELS OF DIABETES, AND IN VITRO INVESTIGATIONS USING DIFFERENT TYPES OF KIDNEY CELLS ALSO SUPPORT THIS ROLE. THE GOAL OF THIS REVIEW, THEREFORE, IS TO SUMMARIZE THE CURRENT STATE OF KNOWLEDGE OF SPECIFIC NCRNAS INVOLVED IN THE DEVELOPMENT OF DIABETIC NEPHROPATHY, WITH A FOCUS ON THE POTENTIAL ROLE OF MIRNAS TO SERVE AS SENSITIVE, NON-INVASIVE BIOMARKERS OF KIDNEY DISEASE AND PROGRESSION. NON-CODING RNAS ARE CURRENTLY RECOGNIZED AS POTENTIALLY IMPORTANT REGULATORS OF GENES INVOLVED IN PROCESSES RELATED TO THE DEVELOPMENT OF DIABETIC NEPHROPATHY, AND AS SUCH, REPRESENT VIABLE TARGETS FOR BOTH CLINICAL DIAGNOSTIC STRATEGIES AND THERAPEUTIC INTERVENTION. 2013 17 2570 21 EPIGENETICS OF CHRONIC INFLAMMATORY DISEASES. CHRONIC, NONCOMMUNICABLE, AND INFLAMMATION-ASSOCIATED DISEASES REMAIN THE LARGEST CAUSE OF MORBIDITY AND MORTALITY GLOBALLY AND WITHIN THE UNITED STATES. THIS IS MAINLY DUE TO OUR LIMITED UNDERSTANDING OF THE MOLECULAR MECHANISMS THAT UNDERLIE THESE COMPLEX PATHOLOGIES. THE AVAILABLE EVIDENCE INDICATES THAT STUDIES OF EPIGENETICS (TRADITIONALLY DEFINED AS THE HERITABLE CHANGES TO GENE EXPRESSION THAT ARE INDEPENDENT OF CHANGES TO DNA) ARE SIGNIFICANTLY ADVANCING OUR KNOWLEDGE OF THESE INFLAMMATORY CONDITIONS. THIS REVIEW WILL FOCUS ON EPIGENETIC STUDIES OF THREE DISEASES, THAT ARE AMONG THE MOST BURDENSOME GLOBALLY: CARDIOVASCULAR DISEASE, THE NUMBER ONE CAUSE OF DEATHS WORLDWIDE, TYPE 2 DIABETES AND, ALZHEIMER'S DISEASE. THE CURRENT STATUS OF EPIGENETIC RESEARCH, INCLUDING THE ABILITY TO PREDICT DISEASE RISK, AND KEY PATHOPHYSIOLOGICAL DEFECTS ARE DISCUSSED. THE SIGNIFICANCE OF DEFINING THE CONTRIBUTION OF EPIGENETIC DEFECTS TO NONRESOLVING INFLAMMATION AND AGING, EACH ASSOCIATED WITH THESE DISEASES, IS HIGHLIGHTED, AS THESE ARE LIKELY TO PROVIDE NEW INSIGHTS INTO INFLAMMATORY DISEASE PATHOGENESIS. 2019 18 763 19 CAUSES OF PULMONARY FIBROSIS IN THE ELDERLY. IDIOPATHIC PULMONARY FIBROSIS (IPF) IS THE MOST COMMON AND MOST LETHAL TYPE OF IDIOPATHIC INTERSTITIAL PNEUMONIA. IT IS A CHRONIC, AGING-ASSOCIATED LUNG DISEASE CHARACTERIZED BY FIBROTIC FOCI AND INFLAMMATORY INFILTRATES, WITH NO CURE AND VERY LIMITED THERAPEUTIC OPTIONS. ALTHOUGH ITS ETIOLOGY IS UNKNOWN, SEVERAL PATHOGENIC PATHWAYS HAVE BEEN DESCRIBED THAT COULD EXPLAIN THIS PROCESS, INVOLVING AGING, ENVIRONMENTAL FACTORS, GENOMIC INSTABILITY, LOSS OF PROTEOSTASIS, TELOMERE ATTRITION, EPIGENETIC CHANGES, MITOCHONDRIAL DYSFUNCTION, CELL SENESCENCE, AND ALTERED INTERCELLULAR COMMUNICATION. ONE OF THE MAIN PROGNOSTIC FACTORS FOR THE DEVELOPMENT OF IPF IN BROAD EPIDEMIOLOGICAL STUDIES IS AGE. THE INCIDENCE INCREASES WITH AGE, MAKING THIS A DISEASE THAT PREDOMINANTLY AFFECTS THE ELDERLY POPULATION, BEING EXCEPTIONAL UNDER 45 YEARS OF AGE. HOWEVER, THE DEGREE TO WHICH EACH OF THESE MECHANISMS IS INVOLVED IN THE ETIOLOGY OF THE UNCONTROLLED FIBROGENESIS THAT DEFINES IPF IS STILL UNKNOWN. CLARIFYING THESE QUESTIONS IS CRUCIAL TO THE DEVELOPMENT OF POINTS OF INTERVENTION IN THE PATHOGENESIS OF THE DISEASE. THIS REVIEW BRIEFLY SUMMARIZES WHAT IS KNOWN ABOUT EACH POSSIBLE ETIOLOGICAL FACTOR, AND THE QUESTIONS THAT MOST URGENTLY NEED TO BE ADDRESSED. 2018 19 1259 28 CURRENT VIEWS IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE PATHOGENESIS AND MANAGEMENT. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS A PROGRESSIVE LUNG DYSFUNCTION CAUSED MAINLY BY INHALING TOXIC PARTICLES AND CIGARETTE SMOKING (CS). THE CONTINUOUS EXPOSURE TO RUINOUS MOLECULES CAN LEAD TO ABNORMAL INFLAMMATORY RESPONSES, PERMANENT DAMAGES TO THE RESPIRATORY SYSTEM, AND IRREVERSIBLE PATHOLOGICAL CHANGES. OTHER FACTORS, SUCH AS GENETICS AND AGING, INFLUENCE THE DEVELOPMENT OF COPD. IN THE LAST DECADE, ACCUMULATING EVIDENCE SUGGESTED THAT MITOCHONDRIAL ALTERATION, INCLUDING MITOCHONDRIAL DNA DAMAGE, INCREASED MITOCHONDRIAL REACTIVE OXYGEN SPECIES (ROS), ABNORMAL AUTOPHAGY, AND APOPTOSIS, HAVE BEEN IMPLICATED IN THE PATHOGENESIS OF COPD. THE ALTERATION CAN ALSO EXTEND TO EPIGENETICS, NAMELY DNA METHYLATION, HISTONE MODIFICATION, AND NON-CODING RNA. THIS REVIEW WILL DISCUSS THE RECENT PROGRESSIONS IN COPD PATHOLOGY, PATHOPHYSIOLOGY, AND MOLECULAR PATHWAYS. MORE FOCUS WILL BE SHED ON MITOCHONDRIAL AND EPIGENETIC VARIATIONS RELATED TO COPD DEVELOPMENT AND THE ROLE OF NANOMEDICINE AS A POTENTIAL TOOL FOR THE PREVENTION AND TREATMENT OF THIS DISEASE. 2021 20 5916 22 TARGETING AGING PATHWAYS IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) HAS BECOME A GLOBAL EPIDEMIC AND IS THE THIRD LEADING CAUSE OF DEATH WORLDWIDE. COPD IS CHARACTERIZED BY CHRONIC AIRWAY INFLAMMATION, LOSS OF ALVEOLAR-CAPILLARY UNITS, AND PROGRESSIVE DECLINE IN LUNG FUNCTION. MAJOR RISK FACTORS FOR COPD ARE CIGARETTE SMOKING AND AGING. COPD-ASSOCIATED PATHOMECHANISMS INCLUDE MULTIPLE AGING PATHWAYS SUCH AS TELOMERE ATTRITION, EPIGENETIC ALTERATIONS, ALTERED NUTRIENT SENSING, MITOCHONDRIAL DYSFUNCTION, CELL SENESCENCE, STEM CELL EXHAUSTION AND CHRONIC INFLAMMATION. IN THIS REVIEW, WE WILL HIGHLIGHT THE CURRENT LITERATURE THAT FOCUSES ON THE ROLE OF AGE AND AGING-ASSOCIATED SIGNALING PATHWAYS AS WELL AS THEIR IMPACT ON CURRENT TREATMENT STRATEGIES IN THE PATHOGENESIS OF COPD. FURTHERMORE, WE WILL DISCUSS ESTABLISHED AND EXPERIMENTAL COPD TREATMENTS INCLUDING SENOLYTIC AND ANTI-AGING THERAPIES AND THEIR POTENTIAL USE AS NOVEL TREATMENT STRATEGIES IN COPD. 2020