1 2775 92 EXTRACELLULAR VESICLES AND ASTHMA-MORE THAN JUST A CO-EXISTENCE. EXTRACELLULAR VESICLES (EVS) ARE MEMBRANOUS STRUCTURES, WHICH ARE SECRETED BY ALMOST EVERY CELL TYPE ANALYZED SO FAR. IN ADDITION TO THEIR IMPORTANCE FOR CELL-CELL COMMUNICATION UNDER PHYSIOLOGICAL CONDITIONS, EVS ARE ALSO RELEASED DURING PATHOGENESIS AND MECHANISTICALLY CONTRIBUTE TO THIS PROCESS. HERE WE SUMMARIZE THEIR FUNCTIONAL RELEVANCE IN ASTHMA, ONE OF THE MOST COMMON CHRONIC NON-COMMUNICABLE DISEASES. ASTHMA IS A COMPLEX PERSISTENT INFLAMMATORY DISORDER OF THE AIRWAYS CHARACTERIZED BY REVERSIBLE AIRFLOW OBSTRUCTION AND, FROM A LONG-TERM PERSPECTIVE, AIRWAY REMODELING. OVERALL, MECHANISTIC STUDIES SUMMARIZED HERE INDICATE THE IMPORTANCE OF DIFFERENT SUBTYPES OF EVS AND THEIR VARIABLE CARGOES IN THE FUNCTIONING OF THE PATHWAYS UNDERLYING ASTHMA, AND SHOW SOME INTERESTING POTENTIAL FOR THE DEVELOPMENT OF FUTURE THERAPEUTIC INTERVENTIONS. ASSOCIATION STUDIES IN TURN DEMONSTRATE A GOOD DIAGNOSTIC POTENTIAL OF EVS IN ASTHMA. 2021 2 2330 32 EPIGENETIC REGULATION OF IMMUNE FUNCTION IN ASTHMA. ASTHMA IS A COMMON COMPLEX RESPIRATORY DISEASE CHARACTERIZED BY CHRONIC AIRWAY INFLAMMATION AND PARTIALLY REVERSIBLE AIRFLOW OBSTRUCTION RESULTING FROM GENETIC AND ENVIRONMENTAL DETERMINANTS. BECAUSE EPIGENETIC MARKS INFLUENCE GENE EXPRESSION AND CAN BE MODIFIED BY BOTH ENVIRONMENTAL EXPOSURES AND GENETIC VARIATION, THEY ARE INCREASINGLY RECOGNIZED AS RELEVANT TO THE PATHOGENESIS OF ASTHMA AND MAY BE A KEY LINK BETWEEN ENVIRONMENTAL EXPOSURES AND ASTHMA SUSCEPTIBILITY. UNLIKE CHANGES TO DNA SEQUENCE, EPIGENETIC SIGNATURES ARE DYNAMIC AND REVERSIBLE, CREATING AN OPPORTUNITY FOR NOT ONLY THERAPEUTIC TARGETS BUT MAY SERVE AS BIOMARKERS TO FOLLOW DISEASE COURSE AND IDENTIFY MOLECULAR SUBTYPES IN HETEROGENEOUS DISEASES SUCH AS ASTHMA. IN THIS REVIEW, WE WILL EXAMINE THE RELATIONSHIP BETWEEN ASTHMA AND 3 KEY EPIGENETIC PROCESSES THAT MODIFY GENE EXPRESSION: DNA METHYLATION, MODIFICATION OF HISTONE TAILS, AND NONCODING RNAS. IN ADDITION TO PRESENTING A COMPREHENSIVE ASSESSMENT OF THE EXISTING EPIGENETIC STUDIES FOCUSING ON IMMUNE REGULATION IN ASTHMA, WE WILL DISCUSS FUTURE DIRECTIONS FOR EPIGENETIC INVESTIGATION IN ALLERGIC AIRWAY DISEASE. 2022 3 2333 24 EPIGENETIC REGULATION OF INFLAMMATION: THE METABOLOMICS CONNECTION. EPIGENETIC FACTORS ARE CONSIDERED THE REGULATOR OF COMPLEX MACHINERY BEHIND INFLAMMATORY DISORDERS AND SIGNIFICANTLY CONTRIBUTED TO THE EXPRESSION OF INFLAMMATION-ASSOCIATED GENES. EPIGENETIC MODIFICATIONS MODULATE VARIATION IN THE EXPRESSION PATTERN OF TARGET GENES WITHOUT AFFECTING THE DNA SEQUENCE. THE CURRENT KNOWLEDGE OF EPIGENETIC RESEARCH FOCUSED ON THEIR ROLE IN THE PATHOGENESIS OF VARIOUS INFLAMMATORY DISEASES THAT CAUSES MORBIDITY AND MORTALITY WORLDWIDE. INFLAMMATORY DISEASES ARE CATEGORIZED AS ACUTE AND CHRONIC BASED ON THE DISEASE SEVERITY AND ARE REGULATED BY THE EXPRESSION PATTERN OF VARIOUS GENES. HENCE, UNDERSTANDING THE ROLE OF EPIGENETIC MODIFICATIONS DURING INFLAMMATION PROGRESSION WILL CONTRIBUTE TO THE DISEASE OUTCOMES AND THERAPEUTIC APPROACHES. THIS REVIEW ALSO FOCUSES ON THE METABOLOMICS APPROACH ASSOCIATED WITH THE STUDY OF INFLAMMATORY DISORDERS. INFLAMMATORY RESPONSES AND METABOLIC REGULATION ARE HIGHLY INTEGRATED AND VARIOUS ADVANCED TECHNIQUES ARE ADOPTED TO STUDY THE METABOLIC SIGNATURE MOLECULES. HERE WE DISCUSS SEVERAL METABOLOMICS APPROACHES USED TO LINK INFLAMMATORY DISORDERS AND EPIGENETIC CHANGES. WE PROPOSED THAT DECIPHERING THE MECHANISM BEHIND THE INFLAMMATION-METABOLISM LOOP MAY HAVE IMMENSE IMPORTANCE IN BIOMARKERS RESEARCH AND MAY ACT AS A PRINCIPAL COMPONENT IN DRUG DISCOVERY AS WELL AS THERAPEUTIC APPLICATIONS. 2022 4 5552 23 ROLE OF EPIGENETICS IN THE PATHOGENESIS OF ASTHMA. ASTHMA IS A COMPLEX, HETEROGENEOUS AND CHRONIC AIRWAY INFLAMMATORY DISEASE WITH DIFFERENT CLINICAL PHENOTYPES CAUSED BY DIVERSE TRIGGERS AND PATHOPHYSIOLOGICAL MECHANISMS. ASTHMA HERITABILITY HAS BEEN ESTABLISHED IN MANY GENETIC STUDIES BUT IT IS EVIDENT THAT ONLY GENETIC ELEMENTS ARE NOT RESPONSIBLE FOR THE DEVELOPMENT OF ASTHMA. INCREASING RATE OF ASTHMA INCIDENCE DURING PAST DECADES HAS IMPLICATED THE ROLE OF EPIGENETICS IN DEVELOPMENT OF ASTHMA. ENVIRONMENTAL FACTORS PERFORM AS INITIATOR SIGNALS THROUGH EPIGENETIC MECHANISMS. THREE EPIGENETIC MECHANISMS HAVE BEEN IDENTIFIED, INCLUDING DNA METHYLATION, HISTONE MODIFICATIONS, AND SMALL NONCODING RNAS. THESE MECHANISMS REGULATE THE IMMUNE RESPONSES AND INFLAMMATORY GENES EXPRESSION IN ASTHMA AND ALLERGY. THIS REVIEW EXPLAINS THE ROLE OF EPIGENETIC MODIFICATIONS IN CONTROLLING TH2 RESPONSE AND IGE PRODUCTION IN ASTHMA AND ALSO BRIEFLY OVERVIEWS THE ROLE OF ENVIRONMENTAL FACTORS SUCH AS POLLUTIONS, ALLERGENS, PRENATAL EXPOSURES AND DIET IN DEVELOPING ASTHMA. RECOGNIZING ENVIRONMENTAL RISK FACTORS AND THEIR EFFECTS ON EPIGENETIC MECHANISMS WOULD BE OF GREAT INTEREST FOR PROGNOSTIC AND PREVENTIVE ASPECT IN TREATMENT OF ASTHMA. 2017 5 5534 25 ROLE OF AIRWAY EPITHELIAL CELLS IN THE DEVELOPMENT OF DIFFERENT ASTHMA PHENOTYPES. THE TERM (BRONCHIAL) ASTHMA DESCRIBES A DISORDER SYNDROME THAT COMPRISES SEVERAL DISEASE PHENOTYPES, ALL CHARACTERIZED BY CHRONIC INFLAMMATION IN THE BRONCHIAL EPITHELIUM, WITH A VARIETY OF SUBSEQUENT FUNCTIONAL CONSEQUENCES. THUS, THE EPITHELIUM IN THE CONDUCTING AIRWAYS IS THE MAIN LOCALIZATION OF THE COMPLEX PATHOLOGICAL CHANGES IN THE DISEASE. IN THIS REGARD, BRONCHIAL EPITHELIAL CELLS ARE NOT PASSIVELY AFFECTED BY INFLAMMATORY MECHANISMS INDUCED BY IMMUNOLOGICAL PROCESSES BUT RATHER ACTIVELY INVOLVED IN ALL STEPS OF DISEASE DEVELOPMENT FROM INITIATION AND PERPETUATION TO CHRONIFICATION. IN RECENT YEARS IT TURNED OUT THAT BRONCHIAL EPITHELIAL CELLS SHOW A HIGH LEVEL OF STRUCTURAL AND FUNCTIONAL DIVERSITY AND PLASTICITY WITH EPIGENETIC MECHANISMS PLAYING A CRUCIAL ROLE IN THE REGULATION OF THESE PROCESSES. THUS, IT IS QUITE REASONABLE THAT DIFFERENTIAL FUNCTIONAL ACTIVITIES OF THE BRONCHIAL EPITHELIUM ARE INVOLVED IN THE DEVELOPMENT OF DIFFERENT ASTHMA PHENOTYPES AND/OR STAGES OF DISEASE. THE CURRENT KNOWLEDGE ON THIS TOPIC WILL BE DISCUSSED IN THIS REVIEW ARTICLE. 2020 6 2497 19 EPIGENETICS AND ENVIRONMENTAL LUNG DISEASE. GENE-ENVIRONMENT INTERACTIONS ARE THE INDISPUTABLE CAUSE OF MOST RESPIRATORY DISEASES. HOWEVER, WE STILL HAVE VERY LIMITED UNDERSTANDING OF THE MECHANISMS THAT GUIDE THESE INTERACTIONS. ALTHOUGH THE CONCEPTUAL APPROACHES TO ENVIRONMENTAL GENOMICS WERE ESTABLISHED SEVERAL DECADES AGO, THE TOOLS ARE ONLY NOW AVAILABLE TO BETTER DEFINE THE MECHANISMS THAT UNDERLIE THE INTERACTION BETWEEN THESE IMPORTANT ETIOLOGIC FEATURES OF LUNG DISEASE. EPIGENETIC MECHANISMS CAN MEDIATE THE EFFECT OF THE ENVIRONMENT ON THE HUMAN GENOME BY CONTROLLING THE TRANSCRIPTIONAL ACTIVITY OF SPECIFIC GENES, AT SPECIFIC POINTS IN TIME, IN SPECIFIC ORGANS. IN THIS ARTICLE, WE DEMONSTRATE THE POTENTIAL IMPORTANCE OF EPIGENETIC MECHANISMS IN THE DEVELOPMENT AND PROGRESSION OF CHRONIC OBSTRUCTIVE PULMONARY DISEASE AND ASTHMA. 2010 7 3028 20 GENETICS OF COMPLEX AIRWAY DISEASE. THE PAST 3 YEARS HAVE SEEN HIGHLY SIGNIFICANT GENETIC EFFECTS IDENTIFIED FOR A WIDE VARIETY OF COMMON COMPLEX DISEASES, INCLUDING THE AIRWAY DISORDERS OF ASTHMA AND CHRONIC OBSTRUCTIVE PULMONARY DISEASE. IT APPEARS THAT ONLY A PORTION OF THE GENETICALLY MEDIATED SUSCEPTIBILITY TO COMPLEX DISEASES HAS BEEN IDENTIFIED, AND THERE IS MUCH LEFT TO BE DISCOVERED. THIS REVIEW BRIEFLY DESCRIBES THE RESULTS OF THE GENOME-WIDE ASSOCIATION STUDIES OF ASTHMA AND GIVES AN OVERVIEW OF THE PARALLEL AND INCREASINGLY LARGE-SCALE STUDIES THAT ARE TAKING PLACE WITH CHRONIC OBSTRUCTIVE PULMONARY DISEASE. THE FUTURE IMPACT IS DISCUSSED OF TECHNOLOGICAL ADVANCES THAT ALLOW INCREASINGLY LARGE-SCALE GENE EXPRESSION STUDIES, NEXT-GENERATION SEQUENCING, AND GENOME-WIDE TESTING FOR EPIGENETIC EFFECTS. THE USE OF GENETIC TECHNOLOGY TO EXAMINE THE AIRWAY MICROBIOTA THAT INTERACT WITH THE MUCOSA IN HEALTH AND DISEASE IS DESCRIBED. 2011 8 2531 29 EPIGENETICS IN ASTHMA. PURPOSE OF REVIEW: ASTHMA IS ONE OF THE MOST COMMON CHRONIC RESPIRATORY DISEASES LINKED WITH INCREASED MORBIDITY AND HEALTHCARE UTILIZATION. THE UNDERLYING PATHOPHYSIOLOGICAL PROCESSES AND CAUSAL RELATIONSHIPS OF ASTHMA WITH EPIGENETIC MECHANISMS ARE PARTIALLY UNDERSTOOD. HERE WE REVIEW HUMAN STUDIES OF EPIGENETIC MECHANISMS IN ASTHMA, WITH A SPECIAL FOCUS ON DNA METHYLATION. RECENT FINDINGS: EPIGENETIC STUDIES OF CHILDHOOD ASTHMA HAVE IDENTIFIED SPECIFIC METHYLATION SIGNATURES ASSOCIATED WITH ALLERGIC INFLAMMATION IN THE AIRWAY AND IMMUNE CELLS, DEMONSTRATING A REGULATORY ROLE FOR METHYLATION IN ASTHMA PATHOGENESIS. DESPITE THESE NOVEL FINDINGS, ADDITIONAL RESEARCH IN THE ROLE OF EPIGENETIC MECHANISMS UNDERLYING ASTHMA ENDOTYPES IS NEEDED. SIMILARLY, STUDIES OF HISTONE MODIFICATIONS ARE ALSO LACKING IN ASTHMA. FUTURE STUDIES OF EPIGENETIC MECHANISMS IN ASTHMA WILL BENEFIT FROM DATA INTEGRATION IN WELL PHENOTYPED COHORTS. THIS REVIEW PROVIDES AN OVERVIEW OF THE CURRENT LITERATURE ON EPIGENETIC STUDIES IN HUMAN ASTHMA, WITH SPECIAL EMPHASIS ON METHYLATION AND CHILDHOOD ASTHMA. 2019 9 2299 31 EPIGENETIC REGULATION OF AIRWAY EPITHELIUM IMMUNE FUNCTIONS IN ASTHMA. ASTHMA IS A CHRONIC INFLAMMATORY DISEASE OF THE RESPIRATORY TRACT CHARACTERIZED BY RECURRENT BREATHING PROBLEMS RESULTING FROM AIRWAY OBSTRUCTION AND HYPERRESPONSIVENESS. HUMAN AIRWAY EPITHELIUM PLAYS AN IMPORTANT ROLE IN THE INITIATION AND CONTROL OF THE IMMUNE RESPONSES TO DIFFERENT TYPES OF ENVIRONMENTAL FACTORS CONTRIBUTING TO ASTHMA PATHOGENESIS. USING PATTERN RECOGNITION RECEPTORS AIRWAY EPITHELIUM SENSES EXTERNAL STIMULI, SUCH AS ALLERGENS, MICROBES, OR POLLUTANTS, AND SUBSEQUENTLY SECRETES ENDOGENOUS DANGER SIGNALING MOLECULES ALARMING AND ACTIVATING DENDRITIC CELLS. HENCE, AIRWAY EPITHELIAL CELLS NOT ONLY MEDIATE INNATE IMMUNE RESPONSES BUT ALSO BRIDGE THEM WITH ADAPTIVE IMMUNE RESPONSES INVOLVING T AND B CELLS THAT PLAY A CRUCIAL ROLE IN THE PATHOGENESIS OF ASTHMA. THE EFFECTS OF ENVIRONMENTAL FACTORS ON THE DEVELOPMENT OF ASTHMA ARE MEDIATED, AT LEAST IN PART, BY EPIGENETIC MECHANISMS. THOSE COMPRISE CLASSICAL EPIGENETICS INCLUDING DNA METHYLATION AND HISTONE MODIFICATIONS AFFECTING TRANSCRIPTION, AS WELL AS MICRORNAS INFLUENCING TRANSLATION. THE COMMON FEATURE OF SUCH MECHANISMS IS THAT THEY REGULATE GENE EXPRESSION WITHOUT AFFECTING THE NUCLEOTIDE SEQUENCE OF THE GENOMIC DNA. EPIGENETIC MECHANISMS PLAY A PIVOTAL ROLE IN THE REGULATION OF DIFFERENT CELL POPULATIONS INVOLVED IN ASTHMA PATHOGENESIS, WITH THE REMARKABLE EXAMPLE OF T CELLS. RECENTLY, HOWEVER, THERE IS INCREASING EVIDENCE THAT EPIGENETIC MECHANISMS ARE ALSO CRUCIAL FOR THE REGULATION OF AIRWAY EPITHELIAL CELLS, ESPECIALLY IN THE CONTEXT OF EPIGENETIC TRANSFER OF ENVIRONMENTAL EFFECTS CONTRIBUTING TO ASTHMA PATHOGENESIS. IN THIS REVIEW, WE SUMMARIZE THE ACCUMULATING EVIDENCE FOR THIS VERY IMPORTANT ASPECT OF AIRWAY EPITHELIAL CELL PATHOBIOLOGY. 2020 10 6005 27 THE AIRWAY EPITHELIUM-A CENTRAL PLAYER IN ASTHMA PATHOGENESIS. ASTHMA IS A CHRONIC INFLAMMATORY AIRWAY DISEASE CHARACTERIZED BY VARIABLE AIRFLOW OBSTRUCTION IN RESPONSE TO A WIDE RANGE OF EXOGENOUS STIMULI. THE AIRWAY EPITHELIUM IS THE FIRST LINE OF DEFENSE AND PLAYS AN IMPORTANT ROLE IN INITIATING HOST DEFENSE AND CONTROLLING IMMUNE RESPONSES. INDEED, INCREASING EVIDENCE INDICATES A RANGE OF ABNORMALITIES IN VARIOUS ASPECTS OF EPITHELIAL BARRIER FUNCTION IN ASTHMA. A CENTRAL PART OF THIS IMPAIRMENT IS A DISRUPTION OF THE AIRWAY EPITHELIAL LAYER, ALLOWING INHALED SUBSTANCES TO PASS MORE EASILY INTO THE SUBMUCOSA WHERE THEY MAY INTERACT WITH IMMUNE CELLS. FURTHERMORE, MANY OF THE IDENTIFIED SUSCEPTIBILITY GENES FOR ASTHMA ARE EXPRESSED IN THE AIRWAY EPITHELIUM. THIS REVIEW FOCUSES ON THE BIOLOGY OF THE AIRWAY EPITHELIUM IN HEALTH AND ITS PATHOBIOLOGY IN ASTHMA. WE WILL SPECIFICALLY DISCUSS EXTERNAL TRIGGERS SUCH AS ALLERGENS, VIRUSES AND ALARMINS AND THE EFFECT OF TYPE 2 INFLAMMATORY RESPONSES ON AIRWAY EPITHELIAL FUNCTION IN ASTHMA. WE WILL ALSO DISCUSS EPIGENETIC MECHANISMS RESPONDING TO EXTERNAL STIMULI ON THE LEVEL OF TRANSCRIPTIONAL AND POSTTRANSCRIPTIONAL REGULATION OF GENE EXPRESSION, AS WELL THE AIRWAY EPITHELIUM AS A POTENTIAL TREATMENT TARGET IN ASTHMA. 2020 11 485 25 ARTIFICIAL AIRWAYS FOR THE STUDY OF RESPIRATORY DISEASE. THIS REVIEW WILL FOCUS ON HUMAN CELL-BASED EXPERIMENTAL MODELS TO STUDY RESPIRATORY DISEASES, IN PARTICULAR MODELS OF THE LARGE AIRWAYS RELEVANT TO ASTHMA AND CHRONIC OBSTRUCTIVE PULMONARY DISEASE. SUCH MODELS HAVE THE ADVANTAGE OF INCORPORATING CELLS THAT CAN BE DERIVED FROM DISEASE-RELEVANT TISSUE AND SO HAVE RETAINED IMPORTANT GENETIC AND EPIGENETIC FEATURES THAT CONTRIBUTE TO THE HUMAN DISEASE. THESE MODELS CAN BE USED FOR MECHANISTIC STUDIES, TARGET IDENTIFICATION AND VALIDATION AND TOXICOLOGICAL TESTING. WHILE MANY MODELS HAVE BEEN DEVELOPED TO VARYING DEGREES OF SOPHISTICATION, THE CHALLENGE REMAINS TO DEVELOP AN INTEGRATED SYSTEM THAT RECAPITULATES THE COMPLEX CELL-CELL AND CELL-MATRIX INTERACTIONS THAT OCCUR IN VIVO AND TO PROVIDE THESE WITH A 'CIRCULATION' TO STUDY THE DYNAMICS OF IMMUNE AND INFLAMMATORY CELL INFLUX AND EFFLUX. 2011 12 2984 27 GENETIC DETERMINANTS OF POOR RESPONSE TO TREATMENT IN SEVERE ASTHMA. SEVERE ASTHMA IS A MULTIFACTORIAL DISORDER WITH MARKED PHENOTYPIC HETEROGENEITY AND COMPLEX INTERACTIONS BETWEEN GENETICS AND ENVIRONMENTAL RISK FACTORS, WHICH COULD, AT LEAST IN PART, EXPLAIN WHY DURING STANDARD PHARMACOLOGIC TREATMENT, MANY PATIENTS REMAIN POORLY CONTROLLED AND AT AN INCREASED RISK OF AIRWAY REMODELING AND DISEASE PROGRESSION. THE CONCEPT OF "PRECISION MEDICINE" TO BETTER SUIT INDIVIDUAL UNIQUE NEEDS IS AN EMERGING TREND IN THE MANAGEMENT OF CHRONIC RESPIRATORY DISEASES. OVER THE PAST FEW YEARS, GENOME-WIDE ASSOCIATION STUDIES (GWAS) HAVE REVEALED NOVEL PHARMACOGENETIC VARIANTS RELATED TO RESPONSES TO INHALED CORTICOSTEROIDS AND THE CLINICAL EFFICACY OF BRONCHODILATORS. OPTIMAL CLINICAL RESPONSE TO TREATMENT MAY VARY BETWEEN RACIAL/ETHNIC GROUPS OR INDIVIDUALS DUE TO GENETIC DIFFERENCES. IT IS ALSO PLAUSIBLE TO ASSUME THAT EPIGENETIC FACTORS PLAY A KEY ROLE IN THE MODULATION OF GENE EXPRESSION PATTERNS AND INFLAMMATORY CYTOKINES. REMARKABLY, SPECIFIC GENETIC VARIANTS RELATED TO TREATMENT EFFECTIVENESS MAY INDICATE PROMISING PATHWAYS FOR NOVEL THERAPIES IN SEVERE ASTHMA. IN THIS REVIEW, WE PROVIDE A CONCISE UPDATE OF GENETIC DETERMINANTS OF POOR RESPONSE TO TREATMENT IN SEVERE ASTHMA AND FUTURE DIRECTIONS IN THE FIELD. 2021 13 6199 26 THE IMPORTANCE OF EPIGENETICS IN THE DEVELOPMENT OF CHRONIC OBSTRUCTIVE PULMONARY DISEASE. IT IS GENERALLY ACCEPTED THAT GENETIC PREDISPOSITION PLAYS A ROLE IN COPD DEVELOPMENT IN SUSCEPTIBLE INDIVIDUALS. THEREFORE, MANY CANDIDATE GENES THAT COULD BE LINKED TO THE DEVELOPMENT OF DISEASE HAVE BEEN EXAMINED IN COPD. HOWEVER, INCONSISTENT RESULTS IN DIFFERENT STUDY POPULATIONS OFTEN LIMIT THIS APPROACH, SUGGESTING THAT NOT ONLY GENETICS, BUT ALSO OTHER FACTORS, MAY BE CONTRIBUTED TO THE SUSCEPTIBILITY TO COPD. EPIGENETIC MECHANISMS CAN AFFECT THE TRANSCRIPTIONAL ACTIVITY OF SPECIFIC GENES, AT DIFFERENT POINTS IN TIME, AND IN DIFFERENT ORGANS. MOREOVER, THESE MECHANISMS CAN HAVE AN EFFECT ON PEOPLE'S HEALTH. RECENTLY, THERE IS EMERGING EVIDENCE SUPPORTING A ROLE OF EPIGENETICS FOR THE REGULATION OF INFLAMMATORY GENES IN DISEASES SUCH AS ASTHMA AND COPD. MOREOVER, RECENT STUDIES SUGGEST THAT THE CURRENTLY USED TREATMENTS INCLUDING CORTICOSTEROIDS MAY WORK THROUGH EPIGENETIC MECHANISMS. EPIGENETIC REGULATION CAN BE REPROGRAMMED, POTENTIALLY AFFECTING THE RISK, AETIOLOGY AND TREATMENT OF VARIOUS DISEASE STATES. THE EPIGENETICALLY INFLUENCED PHENOTYPE COULD BE REVERSED WITH DEMETHYLATING OR DEACETYLATING AGENTS, CONSISTENT WITH EPIGENETIC PLASTICITY. THE POSTNATAL REVERSIBILITY OF THESE METHYLATION OR ACETYLATION EVENTS MAY THEREFORE PROVIDE GOOD OPPORTUNITIES FOR INTERVENTION. THE RECOGNITION OF THE ROLE OF GENETIC AND EPIGENETIC MECHANISMS IN THE DEVELOPMENT OF COPD MAY IDENTIFY NOVEL TARGETS THAT HATCH NEW THERAPIES FOR PATIENTS WITH COPD. 2011 14 6735 28 WHAT HAVE MECHANISTIC STUDIES TAUGHT US ABOUT CHILDHOOD ASTHMA? CHILDHOOD ASTHMA IS A CHRONIC HETEROGENEOUS SYNDROME CONSISTING OF DIFFERENT DISEASE ENTITIES OR PHENOTYPES. THE IMMUNOLOGIC AND CELLULAR PROCESSES THAT OCCUR DURING ASTHMA DEVELOPMENT ARE STILL NOT FULLY UNDERSTOOD BUT REPRESENT DISTINCT ENDOTYPES. MECHANISTIC STUDIES HAVE EXAMINED THE ROLE OF GENE EXPRESSION, PROTEIN LEVELS, AND CELL TYPES IN EARLY LIFE DEVELOPMENT AND THE MANIFESTATION OF ASTHMA, MANY UNDER THE INFLUENCE OF ENVIRONMENTAL STIMULI, WHICH CAN BE BOTH PROTECTIVE AND RISK FACTORS FOR ASTHMA. GENETIC VARIANTS CAN REGULATE GENE EXPRESSION, CONTROLLED PARTLY BY DIFFERENT EPIGENETIC MECHANISMS. IN ADDITION, ENVIRONMENTAL FACTORS, SUCH AS LIVING SPACE, NUTRITION, AND SMOKING, CAN CONTRIBUTE TO THESE MECHANISMS. ALL OF THESE FACTORS PRODUCE MODIFICATIONS IN GENE EXPRESSION THAT CAN ALTER THE DEVELOPMENT AND FUNCTION OF IMMUNE AND EPITHELIAL CELLS AND SUBSEQUENTLY DIFFERENT TRAJECTORIES OF CHILDHOOD ASTHMA. THESE EARLY CHANGES IN A PARTIALLY IMMATURE IMMUNE SYSTEM CAN HAVE DRAMATIC EFFECTS (E.G., CAUSING DYSREGULATION), WHICH IN TURN CONTRIBUTE TO DIFFERENT DISEASE ENDOTYPES AND MAY HELP TO EXPLAIN DIFFERENTIAL RESPONSIVENESS TO ASTHMA TREATMENT. IN THIS REVIEW, WE SUMMARIZE PUBLISHED STUDIES THAT HAVE AIMED TO UNCOVER DISTINCT MECHANISMS IN CHILDHOOD ASTHMA, CONSIDERING GENETICS, EPIGENETICS, AND ENVIRONMENT. MOREOVER, A DISCUSSION OF NEW, POWERFUL TOOLS FOR SINGLE-CELL IMMUNOLOGIC ASSAYS FOR PHENOTYPIC AND FUNCTIONAL ANALYSIS IS INCLUDED, WHICH PROMISE NEW MECHANISTIC INSIGHTS INTO CHILDHOOD ASTHMA DEVELOPMENT AND THERAPEUTIC AND PREVENTIVE STRATEGIES. 2023 15 5472 25 RESPIRATORY VIRAL INFECTIONS IN EXACERBATION OF CHRONIC AIRWAY INFLAMMATORY DISEASES: NOVEL MECHANISMS AND INSIGHTS FROM THE UPPER AIRWAY EPITHELIUM. RESPIRATORY VIRUS INFECTION IS ONE OF THE MAJOR SOURCES OF EXACERBATION OF CHRONIC AIRWAY INFLAMMATORY DISEASES. THESE EXACERBATIONS ARE ASSOCIATED WITH HIGH MORBIDITY AND EVEN MORTALITY WORLDWIDE. THE CURRENT UNDERSTANDING ON VIRAL-INDUCED EXACERBATIONS IS THAT VIRAL INFECTION INCREASES AIRWAY INFLAMMATION WHICH AGGRAVATES DISEASE SYMPTOMS. RECENT ADVANCES IN IN VITRO AIR-LIQUID INTERFACE 3D CULTURES, ORGANOID CULTURES AND THE USE OF NOVEL HUMAN AND ANIMAL CHALLENGE MODELS HAVE EVOKED NEW UNDERSTANDINGS AS TO THE MECHANISMS OF VIRAL EXACERBATIONS. IN THIS REVIEW, WE WILL FOCUS ON RECENT NOVEL FINDINGS THAT ELUCIDATE HOW RESPIRATORY VIRAL INFECTIONS ALTER THE EPITHELIAL BARRIER IN THE AIRWAYS, THE UPPER AIRWAY MICROBIAL ENVIRONMENT, EPIGENETIC MODIFICATIONS INCLUDING MIRNA MODULATION, AND OTHER CHANGES IN IMMUNE RESPONSES THROUGHOUT THE UPPER AND LOWER AIRWAYS. FIRST, WE REVIEWED THE PREVALENCE OF DIFFERENT RESPIRATORY VIRAL INFECTIONS IN CAUSING EXACERBATIONS IN CHRONIC AIRWAY INFLAMMATORY DISEASES. SUBSEQUENTLY WE ALSO SUMMARIZED HOW RECENT MODELS HAVE EXPANDED OUR APPRECIATION OF THE MECHANISMS OF VIRAL-INDUCED EXACERBATIONS. FURTHER WE HIGHLIGHTED THE IMPORTANCE OF THE VIROME WITHIN THE AIRWAY MICROBIOME ENVIRONMENT AND ITS IMPACT ON SUBSEQUENT BACTERIAL INFECTION. THIS REVIEW CONSOLIDATES THE UNDERSTANDING OF VIRAL INDUCED EXACERBATION IN CHRONIC AIRWAY INFLAMMATORY DISEASES AND INDICATES PATHWAYS THAT MAY BE TARGETED FOR MORE EFFECTIVE MANAGEMENT OF CHRONIC INFLAMMATORY DISEASES. 2020 16 5406 19 REGULATING THE REGULATORS: MICRORNA AND ASTHMA. ONE OBSTACLE TO DEVELOPING AN EFFECTIVE THERAPEUTIC STRATEGY TO TREAT OR PREVENT ASTHMA IS THAT THE FUNDAMENTAL CAUSES OF ASTHMA ARE NOT TOTALLY UNDERSTOOD. ASTHMA IS THOUGHT TO BE A CHRONIC TH2 IMMUNE-MEDIATED INFLAMMATORY DISEASE. EPIGENETIC CHANGES ARE RECOGNIZED TO PLAY A ROLE IN THE INITIATION AND MAINTENANCE OF A TH2 RESPONSE. MICRORNAS (MIRNAS) ARE KEY EPIGENETIC REGULATORS OF GENE EXPRESSION, AND THEIR EXPRESSION IS HIGHLY REGULATED, THEREFORE, DEREGULATION OF MIRNAS MAY PLAY AN IMPORTANT ROLE IN THE PATHOGENESIS OF ASTHMA. PROFILING CIRCULATING MIRNA MIGHT PROVIDE THE HIGHEST SPECIFICITY AND SENSITIVITY TO DIAGNOSE ASTHMA; SIMILARLY, CORRECTING POTENTIAL DEFECTS IN THE MIRNA REGULATION NETWORK MAY LEAD TO NEW THERAPEUTIC MODALITIES TO TREAT THIS DISEASE. 2011 17 3966 31 LONG NONCODING TRANSCRIPTOME IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE. CHRONIC AIRWAY INFLAMMATION FROM RECURRING EXPOSURES TO NOXIOUS ENVIRONMENTAL STIMULI RESULTS IN A PROGRESSIVE AND IRREVERSIBLE AIRFLOW LIMITATION AND THE LUNG PARENCHYMAL DAMAGE THAT CHARACTERIZES CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD). THE LARGE VARIABILITY OBSERVED IN THE ONSET AND PROGRESSION OF COPD IS PRIMARILY DRIVEN BY COMPLEX GENE-ENVIRONMENT INTERACTIONS. THE TRANSCRIPTOMIC AND EPIGENETIC MEMORY POTENTIAL OF LUNG EPITHELIAL AND INNATE IMMUNE CELLS DRIVE RESPONSES, SUCH AS MUCUS HYPERREACTIVITY AND AIRWAY REMODELING, THAT ARE TIGHTLY REGULATED BY VARIOUS MOLECULAR MECHANISMS, FOR WHICH SEVERAL CANDIDATE SUSCEPTIBILITY GENES HAVE BEEN DESCRIBED. HOWEVER, THE RECENTLY DESCRIBED NONCODING RNA SPECIES, IN PARTICULAR THE LONG NONCODING RNAS, MAY ALSO HAVE AN IMPORTANT ROLE IN MODULATING PULMONARY RESPONSES TO CHRONIC INHALATION OF TOXIC SUBSTANCES AND THE DEVELOPMENT OF COPD. THIS REVIEW OUTLINES THE FEATURES OF LONG NONCODING RNAS THAT HAVE BEEN IMPLICATED IN REGULATING THE AIRWAY INFLAMMATORY RESPONSES TO CIGARETTE SMOKE EXPOSURE AND THEIR POSSIBLE ASSOCIATION WITH COPD PATHOGENESIS. AS COPD CONTINUES TO DEBILITATE THE INCREASINGLY AGING POPULATION AND CONTRIBUTE TO HIGHER MORBIDITY AND MORTALITY RATES WORLDWIDE, THE SEARCH FOR BETTER BIOMARKERS AND ALTERNATIVE THERAPEUTIC OPTIONS IS PIVOTAL. 2019 18 288 28 AGING AND INDUCED SENESCENCE AS FACTORS IN THE PATHOGENESIS OF LUNG EMPHYSEMA. CLASSICALLY, THE DEVELOPMENT OF EMPHYSEMA IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE IS BELIEVED TO INVOLVE INFLAMMATION INDUCED BY CIGARETTE SMOKE AND LEUKOCYTE ACTIVATION, INCLUDING OXIDANT-ANTIOXIDANT AND PROTEASE-ANTIPROTEASE IMBALANCES. WHILE THERE IS SUBSTANTIAL EVIDENCE FOR THIS, ADDITIONAL ASPECTS HAVE BEEN SUGGESTED BY A NUMBER OF CLINICAL AND EXPERIMENTAL OBSERVATIONS. SMOKERS EXHIBIT SIGNS OF PREMATURE AGING, PARTICULARLY OBVIOUS IN THE SKIN. THE LINK BETWEEN AGING AND CHRONIC DISEASE IS WELL-KNOWN, E.G., FOR THE BRAIN AND MUSCULOSKELETAL OR CARDIOVASCULAR SYSTEM, AS WELL AS THE CLINICAL LINK BETWEEN MALNUTRITION AND EMPHYSEMA, AND THE EXPERIMENTAL LINK TO CALORIC RESTRICTION. INTERESTINGLY, THIS INTERVENTION ALSO INCREASES LIFESPAN, IN PARALLEL WITH ALTERATIONS IN METABOLISM, OXIDANT BURDEN AND ENDOCRINE SIGNALING. OF SPECIAL INTEREST IS THE OBSERVATION THAT, EVEN IN THE ABSENCE OF AN INFLAMMATORY ENVIRONMENT, LUNG FIBROBLASTS FROM PATIENTS WITH EMPHYSEMA SHOW PERSISTENT ALTERATIONS, POSSIBLY BASED ON EPIGENETIC MECHANISMS. THE IMPORTANCE OF THESE MECHANISMS FOR CELLULAR REPROGRAMMING AND RESPONSE PATTERNS, INDIVIDUAL RISK PROFILE AND THERAPEUTIC OPTIONS IS BECOMING INCREASINGLY RECOGNIZED. THE SAME APPLIES TO CELLULAR SENESCENCE. RECENT FINDINGS FROM PATIENTS AND EXPERIMENTAL MODELS OPEN NOVEL VIEWS INTO THE ARENA OF GENE-ENVIRONMENT INTERACTIONS, INCLUDING THE ROLE OF SYSTEMIC ALTERATIONS, CELLULAR STRESS, TELOMERES, CDK INHIBITORS SUCH AS P16, P21, PRB, PI3K, MTOR, FOXO TRANSCRIPTION FACTORS, HISTONE MODIFICATIONS, AND SIRTUINS. THIS ARTICLE AIMS TO OUTLINE THIS EMERGING PICTURE AND TO STIMULATE THE IDENTIFICATION OF CHALLENGING QUESTIONS. SUCH INSIGHTS ALSO BEAR IMPLICATIONS FOR THE LONG-TERM COURSE OF THE DISEASE IN RELATION TO EXISTING OR FUTURE THERAPIES AND THE EXPLORATION OF POTENTIAL LUNG REGENERATION. 2008 19 4901 23 OXIDATIVE, INFLAMMATORY, GENETIC, AND EPIGENETIC BIOMARKERS ASSOCIATED WITH CHRONIC OBSTRUCTIVE PULMONARY DISORDER. A LARGE BODY OF EVIDENCE INDICATES THAT CHRONIC OBSTRUCTIVE PULMONARY DISORDER (COPD) IS ACCOMPANIED BY OXIDATIVE STRESS AND INFLAMMATORY AND GENETIC PATHWAYS. EPIDEMIOLOGICAL STUDIES INDICATE THAT COPD IS A MAJOR CAUSE OF MORTALITY AND MORBIDITY IN THE WORLD. RECENT RESEARCH DEVELOPMENT IN COPD FOCUSES ON ACCELERATED AGING AND VARIOUS OXIDATIVE STRESS BIOMARKERS. IT INVOLVES THE CLINICAL MANIFESTATION OF THE DISEASE PROCESS AND MAY ALSO CONTAIN BIOCHEMICAL, IMMUNOLOGICAL, PHYSIOLOGICAL, MORPHOLOGICAL, AND GENETIC ASPECTS THAT ADD TO THE PROGRESSIVENESS OF THE DISEASE. HEREIN, WE SUMMARIZE FINDINGS THAT HIGHLIGHT THE ROLE OF DIMENSIONS OF COPD IN THE INVESTIGATION OF OXIDATIVE STRESS, INFLAMMATORY RESPONSES, GENETIC AND EPIGENETIC STUDIES, AND PHARMACOLOGICAL AND DIETARY ANTIOXIDANT INTERVENTION. 2019 20 2457 23 EPIGENETIC TARGETS FOR THERAPEUTIC APPROACHES IN COPD AND ASTHMA. NUTRIGENOMICS - POSSIBLE OR ILLUSIVE. OXIDATIVE STRESS GENERATED BY CIGARETTE SMOKING, ENVIRONMENTAL POLLUTION, OR OTHER NOXIOUS PARTICLES LEADS TO EPIGENETIC CHANGES IN THE CELLS OF THE RESPIRATORY TRACT. THEY REFLECT CELL ADAPTATION IN RESPONSE TO CHRONIC EXPOSURE TO EXTERNAL FACTORS. ALTHOUGH THERE IS NO CHANGE IN THE GENETIC CODE, EPIGENETIC CHANGES MAY BE HERITABLE AND TRANSLATED FROM ONE GENERATION TO ANOTHER, ACCUMULATING ABNORMALITIES AND RENDERING CELLS INTO ENTIRELY DIFFERENT PHENOTYPE, CAUSING DISEASE. DNA METHYLATION, POST-TRANSLATION HISTONE MODIFICATION, UBIQUITINATION, SUMOYLATION AND MIRNA TRANSCRIPTIONAL REGULATION ARE THE MAJOR PROCESSES THAT ARE RESPONSIBLE FOR THE EPIGENETIC CONTROL OF GENE EXPRESSION. ALL OF THEM ARE REVERSIBLE. THEY CAN BE REGULATED BY TARGETING SPECIFIC ENZYMES/PROTEINS INVOLVED IN THE PROCESS IN ORDER TO MITIGATE INFLAMMATION. CHRONIC RESPIRATORY DISEASES HAVE EPIGENETIC SIGNATURES THAT AFFECT GENE EXPRESSION IN THE LUNG. TARGETING THEM PROVIDES THE DEVELOPMENT OF NOVEL DIAGNOSTIC AND THERAPEUTIC APPROACHES IN RESPIRATORY MEDICINE. NUTRIGENOMICS REVEALS THE BENEFICIAL EFFECT OF NATURAL PHYTOCHEMICALS, AFFECTING KEY STEPS IN THE SIGNALING PATHWAYS OF CHRONIC RESPIRATORY DISEASES. 2019