1 6485 126 TOXICOLOGICAL MECHANISM OF INDIVIDUAL SUSCEPTIBILITY TO FORMALDEHYDE-INDUCED RESPIRATORY EFFECTS. UNDERSTANDING THE MECHANISMS OF INDIVIDUAL SUSCEPTIBILITY TO EXPOSURE TO ENVIRONMENTAL POLLUTANTS HAS BEEN A CHALLENGE IN HEALTH RISK ASSESSMENT. HERE, AN INTEGRATED APPROACH COMBINING A CRISPR SCREEN IN HUMAN CELLS AND EPIDEMIOLOGICAL ANALYSIS WAS DEVELOPED TO IDENTIFY THE INDIVIDUAL SUSCEPTIBILITY TO THE ADVERSE HEALTH EFFECTS OF AIR POLLUTANTS BY TAKING FORMALDEHYDE (FA) AND THE ASSOCIATED CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) AS A CASE STUDY. AMONG THE PRIMARY HITS OF CRISPR SCREENING OF FA IN HUMAN A549 CELLS, HTR4 WAS THE ONLY GENE GENETICALLY ASSOCIATED WITH COPD SUSCEPTIBILITY IN GLOBAL POPULATIONS. HOWEVER, THE ASSOCIATION BETWEEN HTR4 AND FA-INDUCED RESPIRATORY TOXICITY IS UNKNOWN IN THE LITERATURE. ADVERSE OUTCOME PATHWAY (AOP) NETWORK ANALYSIS OF CRISPR SCREEN HITS PROVIDED A POTENTIAL MECHANISTIC LINK BETWEEN ACTIVATION OF HTR4 (MOLECULAR INITIATING EVENT) AND FA-INDUCED LUNG INJURY (ADVERSE OUTCOME). SYSTEMATIC TOXICOLOGY TESTS (IN VITRO AND ANIMAL EXPERIMENTS) WERE CONDUCTED TO REVEAL THE HTR4-INVOLVED BIOLOGICAL MECHANISMS UNDERLYING THE SUSCEPTIBILITY TO ADVERSE HEALTH EFFECTS OF FA. FUNCTIONALITY AND ENHANCED EXPRESSION OF HTR4 WERE REQUIRED FOR SUSCEPTIBILITY TO FA-INDUCED LUNG INJURY, AND FA-INDUCED EPIGENETIC CHANGES COULD RESULT IN ENHANCED EXPRESSION OF HTR4. SPECIFIC EPIGENETIC AND GENETIC CHARACTERISTICS OF HTR4 WERE ASSOCIATED WITH THE PROGRESSION AND PREVALENCE OF COPD, RESPECTIVELY, AND THESE GENETIC RISK FACTORS FOR COPD COULD BE POTENTIAL BIOMARKERS OF INDIVIDUAL SUSCEPTIBILITY TO ADVERSE RESPIRATORY EFFECTS OF FA. THESE BIOMARKERS COULD BE OF GREAT SIGNIFICANCE FOR DEFINING SUBPOPULATIONS SUSCEPTIBLE TO EXPOSURE TO FA AND REDUCING UNCERTAINTY IN THE NEXT-GENERATION HEALTH RISK ASSESSMENT OF AIR POLLUTANTS. OUR STUDY DELINEATED A NOVEL TOXICOLOGICAL PATHWAY MEDIATED BY HTR4 IN FA-INDUCED LUNG INJURY, WHICH COULD PROVIDE A MECHANISTIC UNDERSTANDING OF THE POTENTIAL BIOMARKERS OF INDIVIDUAL SUSCEPTIBILITY TO ADVERSE RESPIRATORY EFFECTS OF FA. 2022 2 3106 40 GENOMICS AND THE RESPIRATORY EFFECTS OF AIR POLLUTION EXPOSURE. ADVERSE HEALTH EFFECTS FROM AIR POLLUTANTS REMAIN IMPORTANT, DESPITE IMPROVEMENT IN AIR QUALITY IN THE PAST FEW DECADES. THE EXACT MECHANISMS OF LUNG INJURY FROM EXPOSURE TO AIR POLLUTANTS ARE NOT YET FULLY UNDERSTOOD. STUDYING THE GENOME (E.G. SINGLE-NUCLEOTIDE POLYMORPHISMS (SNP) ), EPIGENOME (E.G. METHYLATION OF GENES), TRANSCRIPTOME (MRNA EXPRESSION) AND MICRORNAOME (MICRORNA EXPRESSION) HAS THE POTENTIAL TO IMPROVE OUR UNDERSTANDING OF THE ADVERSE EFFECTS OF AIR POLLUTANTS. GENOME-WIDE ASSOCIATION STUDIES OF SNP HAVE DETECTED SNP ASSOCIATED WITH RESPIRATORY PHENOTYPES; HOWEVER, TO DATE, ONLY CANDIDATE GENE STUDIES OF AIR POLLUTION EXPOSURE HAVE BEEN PERFORMED. CHANGES IN EPIGENETIC PROCESSES, SUCH DNA METHYLATION THAT LEADS TO GENE SILENCING WITHOUT ALTERING THE DNA SEQUENCE, OCCUR WITH AIR POLLUTANT EXPOSURE, ESPECIALLY GLOBAL AND GENE-SPECIFIC METHYLATION CHANGES. RESPIRATORY CELL LINE AND ANIMAL MODELS DEMONSTRATE DISTINCT GENE EXPRESSION SIGNATURES IN THE TRANSCRIPTOME, ARISING FROM EXPOSURE TO PARTICULATE MATTER OR OZONE. PARTICULATE MATTER AND OTHER ENVIRONMENTAL TOXINS ALTER EXPRESSION OF MICRORNA, WHICH ARE SHORT NON-CODING RNA THAT REGULATE GENE EXPRESSION. WHILE IT IS CLEARLY IMPORTANT TO CONTAIN RISING LEVELS OF AIR POLLUTION, STRATEGIES ALSO NEED TO BE DEVELOPED TO MINIMIZE THE DAMAGING EFFECTS OF AIR POLLUTANT EXPOSURE ON THE LUNG, ESPECIALLY FOR PATIENTS WITH CHRONIC LUNG DISEASE AND FOR PEOPLE AT RISK OF FUTURE LUNG DISEASE. CAREFUL STUDY OF GENOMIC RESPONSES WILL IMPROVE OUR UNDERSTANDING OF MECHANISMS OF LUNG INJURY FROM AIR POLLUTION AND ENABLE FUTURE CLINICAL TESTING OF INTERVENTIONS AGAINST THE TOXIC EFFECTS OF AIR POLLUTANTS. 2012 3 4025 38 LUNG CANCER AND CHRONIC OBSTRUCTIVE PULMONARY DISEASE: NEEDS AND OPPORTUNITIES FOR INTEGRATED RESEARCH. LUNG CANCER AND CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) ARE LEADING CAUSES OF MORBIDITY AND MORTALITY IN THE UNITED STATES AND WORLDWIDE. THEY SHARE A COMMON ENVIRONMENTAL RISK FACTOR IN CIGARETTE SMOKE EXPOSURE AND A GENETIC PREDISPOSITION REPRESENTED BY THE INCIDENCE OF THESE DISEASES IN ONLY A FRACTION OF SMOKERS. THE PRESENCE OF COPD INCREASES THE RISK OF LUNG CANCER UP TO 4.5-FOLD. TO INVESTIGATE COMMONALITIES IN DISEASE MECHANISMS AND PERSPECTIVES FOR DISEASE CHEMOPREVENTION, THE NATIONAL HEART, LUNG, AND BLOOD INSTITUTE (NHLBI) AND THE NATIONAL CANCER INSTITUTE (NCI) HELD A WORKSHOP. THE PARTICIPANTS IDENTIFIED FOUR RESEARCH OBJECTIVES: 1) CLARIFY COMMON EPIDEMIOLOGICAL CHARACTERISTICS OF LUNG CANCER AND COPD; 2) IDENTIFY SHARED GENETIC AND EPIGENETIC RISK FACTORS; 3) IDENTIFY AND VALIDATE BIOMARKERS, MOLECULAR SIGNATURES, AND IMAGING-DERIVED MEASUREMENTS OF EACH DISEASE; AND 4) DETERMINE COMMON AND DISPARATE PATHOGENETIC MECHANISMS. THESE OBJECTIVES SHOULD BE REACHED VIA FOUR RESEARCH APPROACHES: 1) IDENTIFY, PUBLICIZE, AND ENABLE THE EVALUATION AND ANALYSIS OF EXISTING DATASETS AND REPOSITORIES OF BIOSPECIMENS; 2) OBTAIN PHENOTYPIC AND OUTCOME DATA AND BIOSPECIMENS FROM LARGE STUDIES OF SUBJECTS WITH AND/OR AT RISK FOR COPD AND LUNG CANCER; 3) DEVELOP AND USE ANIMAL AND OTHER PRECLINICAL MODELS TO INVESTIGATE PATHOGENETIC LINKS BETWEEN THE DISEASES; AND 4) CONDUCT EARLY-PHASE CLINICAL TRIALS OF POTENTIAL CHEMOPREVENTIVE AGENTS. TO FOSTER MUCH NEEDED RESEARCH INTERACTIONS, TWO FINAL RECOMMENDATIONS WERE MADE BY THE PARTICIPANTS: 1) INCORPORATE BASELINE PHENOTYPING AND OUTCOME MEASURES FOR BOTH DISEASES IN FUTURE LONGITUDINAL STUDIES OF EACH DISEASE AND 2) EXPAND COLLABORATIVE EFFORTS BETWEEN THE NCI AND NHLBI. 2009 4 642 41 BIOMARKERS OF PARTICULATE MATTER EXPOSURE IN PATIENTS WITH CHRONIC OBSTRUCTIVE PULMONARY DISEASE: A SYSTEMATIC REVIEW. BACKGROUND: IN RECENT YEARS, AMBIENT PARTICULATE MATTER (PM) EXPOSURE HAS BEEN STRONGLY LINKED WITH HEALTH EFFECTS. ELEVATED LEVELS OF PM IN POLLUTED AIR HAVE BEEN CORRELATED WITH THE ONSET AND DEVELOPMENT OF CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD). THIS SYSTEMATIC REVIEW WAS CONDUCTED TO EVALUATE BIOMARKERS THAT COULD REFLECT THE EFFECTS OF PM EXPOSURE IN PATIENTS WITH COPD. METHODS: WE PERFORMED A SYSTEMATIC REVIEW OF STUDIES PUBLISHED ON BIOMARKERS ASSOCIATED WITH PM EXPOSURE IN PATIENTS WITH COPD BETWEEN JANUARY 01, 2012 AND JUNE 30, 2022 IN PUBMED/MEDLINE, EMBASE, AND COCHRANE DATABASES. STUDIES THAT INCLUDED DATA ON BIOMARKERS WITH COPD EXPOSED PM WERE ELIGIBLE FOR INCLUSION. BIOMARKERS WERE CLASSIFIED INTO 4 GROUPS ACCORDING TO THEIR MECHANISMS. RESULTS: OF THE 105 STUDIES IDENTIFIED, 22 WERE INCLUDED IN THIS STUDY. NEARLY 50 BIOMARKERS HAVE BEEN PROPOSED IN THE STUDIES INCLUDED IN THIS REVIEW, AND THE MOST STUDIED IN RELATION TO PM ARE SEVERAL INTERLEUKINS. VARIOUS MECHANISMS HAVE BEEN REPORTED BY WHICH PM INDUCES AND AGGRAVATES COPD. SIX STUDIES RELATED TO OXIDATIVE STRESS, ONE RELATED TO DIRECT EFFECT OF INNATE AND ADAPTIVE IMMUNE SYSTEMS, 16 ASSOCIATED WITH GENETIC REGULATION OF INFLAMMATION, AND TWO RELATED TO EPIGENETIC REGULATION OF PHYSIOLOGY AND SUSCEPTIBILITY WERE FOUND. BIOMARKERS RELATED TO THESE MECHANISMS WERE DETECTED IN SERUM, SPUTUM, URINE, EXHALED BREATH CONCENTRATION (EBC), AND SHOWED VARIOUS CORRELATIONS WITH PM IN COPD. CONCLUSIONS: VARIOUS BIOMARKERS HAVE SHOWN POTENTIAL IN PREDICTING THE EXTENT OF PM EXPOSURE IN COPD PATIENTS. FUTURE STUDIES ARE NEEDED TO ESTABLISH RECOMMENDATIONS FOR REGULATION TO REDUCE AIRBORNE PM, WHICH COULD BE USED TO DEVELOP STRATEGIES FOR PREVENTION AND MANAGEMENT OF ENVIRONMENTAL RESPIRATORY DISEASES. 2023 5 396 39 AN UPDATE ON EPIGENETICS AND CHILDHOOD RESPIRATORY DISEASES. EPIGENETIC MECHANISMS, DEFINED AS CHANGES IN PHENOTYPE OR GENE EXPRESSION CAUSED BY MECHANISMS OTHER THAN CHANGES IN THE UNDERLYING DNA SEQUENCE, HAVE BEEN PROPOSED TO CONSTITUTE A LINK BETWEEN GENETIC AND ENVIRONMENTAL FACTORS THAT AFFECT COMPLEX DISEASES. RECENT STUDIES SHOW THAT DNA METHYLATION, ONE OF THE KEY EPIGENETIC MECHANISMS, IS ALTERED IN CHILDREN EXPOSED TO AIR POLLUTANTS AND ENVIRONMENTAL TOBACCO SMOKE EARLY IN LIFE. SEVERAL CANDIDATE GENE STUDIES ON EPIGENETICS HAVE BEEN PUBLISHED TO DATE, BUT IT IS ONLY RECENTLY THAT GLOBAL METHYLATION ANALYSES HAVE BEEN PERFORMED FOR RESPIRATORY DISORDERS SUCH AS ASTHMA AND CHRONIC OBSTRUCTIVE PULMONARY DISEASE. HOWEVER, LARGE-SCALE STUDIES WITH ADEQUATE POWER ARE YET TO BE PRESENTED IN CHILDREN, AND IMPLICATIONS FOR CLINICAL USE REMAIN TO BE EVALUATED. IN THIS REVIEW, WE SUMMARIZE THE RECENT ADVANCES IN EPIGENETICS AND RESPIRATORY DISORDERS IN CHILDREN, WITH A MAIN FOCUS ON METHODOLOGICAL CHALLENGES AND ANALYSES RELATED TO PHENOTYPE AND EXPOSURE USING GLOBAL METHYLATION APPROACHES. 2014 6 3631 32 INCORPORATING BIOMARKERS IN COPD MANAGEMENT: THE RESEARCH KEEPS GOING. GLOBALLY, CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) REMAINS A MAJOR CAUSE OF MORBIDITY AND MORTALITY, HAVING A SIGNIFICANT SOCIOECONOMIC EFFECT. SEVERAL MOLECULAR MECHANISMS HAVE BEEN RELATED TO COPD INCLUDING CHRONIC INFLAMMATION, TELOMERE SHORTENING, AND EPIGENETIC MODIFICATIONS. NOWADAYS, THERE IS AN INCREASING NEED FOR NOVEL THERAPEUTIC APPROACHES FOR THE MANAGEMENT OF COPD. THESE TREATMENT STRATEGIES SHOULD BE BASED ON FINDING THE SOURCE OF ACUTE EXACERBATION OF COPD EPISODES AND ESTIMATING THE PATIENT'S OWN RISK. THE USE OF BIOMARKERS AND THE MEASUREMENT OF THEIR LEVELS IN CONJUNCTION WITH COPD EXACERBATION RISK AND DISEASE PROGNOSIS IS CONSIDERED AN ENCOURAGING APPROACH. MANY TYPES OF COPD BIOMARKERS HAVE BEEN IDENTIFIED WHICH INCLUDE BLOOD PROTEIN BIOMARKERS, CELLULAR BIOMARKERS, AND PROTEASE ENZYMES. THEY HAVE BEEN ISOLATED FROM DIFFERENT SOURCES INCLUDING PERIPHERAL BLOOD, SPUTUM, BRONCHOALVEOLAR FLUID, EXHALED AIR, AND GENETIC MATERIAL. HOWEVER, THERE IS STILL NOT AN EXCLUSIVE BIOMARKER THAT IS USED FOR THE EVALUATION OF COPD BUT RATHER A COMBINATION OF THEM, AND THIS IS ATTRIBUTED TO DISEASE COMPLEXITY. IN THIS REVIEW, WE SUMMARIZE THE CLINICAL SIGNIFICANCE OF COPD-RELATED BIOMARKERS, THEIR ASSOCIATION WITH DISEASE OUTCOMES, AND COPD PATIENTS' MANAGEMENT. FINALLY, WE DEPICT THE VARIOUS SAMPLES THAT ARE USED FOR IDENTIFYING AND MEASURING THESE BIOMARKERS. 2022 7 6790 31 [DNA METHYLATION ANALYSIS IN ENVIRONMENTAL AND OCCUPATIONAL CANCER RESEARCH]. THE PRESENT PAPER REVIEWS RECENT LABORATORY METHODS AND EXPERIMENTAL EVIDENCE CONCERNING EPIGENETIC BIOMARKERS INVOLVED IN CARCINOGENESIS MECHANISMS. WE INTRODUCE DNA METHYLATION AND ITS ROLE IN GENE EXPRESSION CONTROL. DNA METHYLATION ANALYSIS MAY ALLOW TO IDENTIFY EARLY CHANGES LEADING TO CANCER AND OTHER CHRONIC DISEASES. WE DESCRIBE HERE STRATEGIES FOR LABORATORY ANALYSES AND THEIR POSSIBLE APPLICATIONS. WE EXAMINE RESULTS FROM RECENT EXPERIMENTAL STUDIES SUGGESTING THAT THE EFFECTS OF CERTAIN OCCUPATIONAL AGENTS ARE MEDIATED BY ALTERATIONS IN DNA METHYLATION. PLANNING AND CONDUCTING INVESTIGATIONS ON EXPOSED HUMAN SUBJECTS WILL ALLOW TO VERIFY WHETHER DNA METHYLATION CHANGES IDENTIFIED IN ANIMAL AND IN-VITRO STUDIES MAY BE USED AS EARLY-EFFECT AND SUSCEPTIBILITY BIOMARKERS. DNA METHYLATION ANALYSIS HAS THE POTENTIAL FOR FUTURE APPLICATIONS IN RISK ASSESSMENT AND PREVENTION PROGRAMS CONDUCTED ON SUBJECTS EXPOSED TO HUMAN CARCINOGENS. 2005 8 1324 38 DEOXYRIBONUCLEIC ACID (DNA) METHYLATION IN CHILDREN EXPOSED TO AIR POLLUTION: A POSSIBLE MECHANISM UNDERLYING RESPIRATORY HEALTH EFFECTS DEVELOPMENT. AIR POLLUTION IS A SUBSTANTIAL ENVIRONMENTAL THREAT TO CHILDREN AND ACTS AS ACUTE AND CHRONIC DISEASE RISK FACTORS ALIKE. SEVERAL STUDIES HAVE PREVIOUSLY EVALUATED EPIGENETIC MODIFICATIONS CONCERNING ITS EXPOSURE ACROSS VARIOUS LIFE STAGES. HOWEVER, FINDINGS ON EPIGENETIC MODIFICATIONS AS THE CONSEQUENCES OF AIR POLLUTION DURING CHILDHOOD ARE RATHER MINIMAL. THIS REVIEW EVALUATED HIGHLY RELEVANT STUDIES IN THE FIELD TO ANALYZE THE EXISTING LITERATURE REGARDING EXPOSURE TO AIR POLLUTION, WITH A FOCUS ON EPIGENETIC ALTERATIONS DURING CHILDHOOD AND THEIR CONNECTIONS WITH RESPIRATORY HEALTH EFFECTS. THE SEARCH WAS CONDUCTED USING READILY AVAILABLE ELECTRONIC DATABASES (PUBMED AND SCIENCEDIRECT) TO SCREEN FOR CHILDREN'S STUDIES ON EPIGENETIC MECHANISMS FOLLOWING EITHER PRE- OR POST-NATAL EXPOSURE TO AIR POLLUTANTS. STUDIES RELEVANT ENOUGH AND MATCHED THE PREDETERMINED CRITERIA WERE CHOSEN TO BE REVIEWED. NON-ENGLISH ARTICLES AND STUDIES THAT DID NOT REPORT BOTH AIR MONITORING AND EPIGENETIC OUTCOMES IN THE SAME ARTICLE WERE EXCLUDED. THE REVIEW FOUND THAT EPIGENETIC CHANGES HAVE BEEN LINKED WITH EXPOSURE TO AIR POLLUTANTS DURING EARLY LIFE WITH EVIDENCE AND REPORTS OF HOW THEY MAY DEREGULATE THE EPIGENOME BALANCE, THUS INDUCING DISEASE PROGRESSION IN THE FUTURE. EPIGENETIC STUDIES EVOLVE AS A PROMISING NEW APPROACH IN DECIPHERING THE UNDERLYING IMPACTS OF AIR POLLUTION ON DEOXYRIBONUCLEIC ACID (DNA) DUE TO LINKS ESTABLISHED BETWEEN SOME OF THESE EPIGENETIC MECHANISMS AND ILLNESSES. 2021 9 3027 35 GENETICS OF CHRONIC OBSTRUCTIVE PULMONARY DISEASE. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS A COMPLEX DISEASE WITH MULTIFACTORIAL BACKGROUND, BASED ON THE INTERACTION OF ENVIRONMENTAL AND GENETIC FACTORS. ENVIRONMENTAL FACTORS ARE CLEARLY RELATED TO THE DEVELOPMENT OF THE DISEASE. HOWEVER, FAMILY AND TWIN STUDIES SUGGESTED GENETICS FACTORS TO BE ONE OF THE IMPORTANT DETERMINANTS FOR THE DEVELOPMENT OF COPD. DIFFERENT APPROACHES HAVE BEEN USED TO IDENTIFY GENES OF INTEREST. GENOMEWIDE LINKAGE ANALYSIS FOUND AREAS OF INTEREST ON DIFFERENT CHROMOSOMES, WITH SOME GENES LOCATED IN THIS REGIONS BEING IDENTIFIED AND REPLICATED AS SUSCEPTIBILITY GENES. NUMEROUS OF CANDIDATE GENES THAT COULD BE LINKED TO DISEASE PATHOGENESIS HAVE BEEN IMPLICATED IN COPD GENETICS. HOWEVER, THE CANDIDATE GENE APPROACH IS OFTEN LIMITED BY INCONSISTENT RESULTS IN OTHER STUDY POPULATIONS. RECENTLY, A COMBINATION OF DIFFERENT METHODS IS USED GIVING MORE EVIDENCE FOR SOME CANDIDATE GENES, INCLUDING TGFBETA-1, SURFACTANT, SERPINE2 AND MICROSOMAL EPOXIDE HYDROLASE. IN THE FUTURE ONGOING EXACT PHENOTYPE DEFINITION, COMBINATION OF SEVERAL APPROACHES, GENOME-WIDE ASSOCIATION STUDIES AND ANIMAL MODEL GENETICS WILL LEAD TO NEW INSIGHTS INTO THE GENETICS OF COPD, WITH EPIGENETIC FACTORS NEEDS TO BE FURTHER INVESTIGATED AND CONSIDERED IN CONCERT WITH GENETIC FINDINGS. 2007 10 6834 27 [IMMUNOPATHOLOGY OF CHRONIC OBSTRUCTIVE PULMONARY DISEASE]. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS A COMMON, PREVENTABLE AND TREATABLE CONDITION THAT HAS A COMPLEX PATHOPHYSIOLOGY AND AN EVEN MORE COMPLEX IMMUNOPATHOLOGICAL PROCESS. THE PURPOSE OF THIS REVIEW WAS TO ANALYZE COPD IMMUNOPATHOLOGICAL ASPECTS, WHICH WAS ADDRESSED BY UNDERTAKING A LITERATURE SEARCH FOR THE MOST RELEVANT DOCUMENTS INDEXED IN THE PUBMED DATABASE OVER THE LAST 10 YEARS. DIFFERENT CONCLUSIONS COULD BE DRAWN: IN COPD IMMUNOPATHOLOGY THERE ARE IMMUNE AND NON-IMMUNE INFLAMMATORY CHANGES WITH OXIDATIVE STRESS IMBALANCE, THERE ARE ALTERATIONS IN THE PROTEASE/ANTI-PROTEASE RATIO CAUSED BY DIRECT AND INDIRECT GENETIC AND EPIGENETIC-ENVIRONMENTAL DEFECTS; COPD PRODUCES IRREVERSIBLE TISSUE DAMAGE AND CHRONIC INFLAMMATION WITH TISSUE REPAIR ALTERATION, WHICH INDUCES CHRONIC OBSTRUCTION OF THE AIRWAY, BRONCHITIS AND SYSTEMIC DAMAGE. MOST COMMON RESULTING COMORBIDITIES INCLUDE CARDIOVASCULAR DISEASE, METABOLIC SYNDROME, OSTEOPOROSIS, DEPRESSION, MUSCULOSKELETAL DYSFUNCTION, INCREASED BIOLOGICAL AGE, LUNG CANCER AND OTHER TYPES OF MALIGNANCIES. IN THE CONCEPTION OF COPD, RECOGNIZING THAT IT IS A NON-TRANSMITTABLE AND PREVENTABLE DISEASE IS INDISPENSABLE. 2017 11 4112 43 MECHANISMS CONTRIBUTING TO THE COMORBIDITY OF COPD AND LUNG CANCER. LUNG CANCER AND CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) OFTEN CO-OCCUR, AND INDIVIDUALS WITH COPD ARE AT A HIGHER RISK OF DEVELOPING LUNG CANCER. WHILE THE UNDERLYING MECHANISM FOR THIS RISK IS NOT WELL UNDERSTOOD, ITS MAJOR CONTRIBUTING FACTORS HAVE BEEN PROPOSED TO INCLUDE GENOMIC, IMMUNE, AND MICROENVIRONMENT DYSREGULATION. HERE, WE REVIEW THE EVIDENCE AND SIGNIFICANT STUDIES THAT EXPLORE THE MECHANISMS UNDERLYING THE HEIGHTENED LUNG CANCER RISK IN PEOPLE WITH COPD. GENETIC AND EPIGENETIC CHANGES, AS WELL AS THE ABERRANT EXPRESSION OF NON-CODING RNAS, PREDISPOSE THE LUNG EPITHELIUM TO CARCINOGENESIS BY ALTERING THE EXPRESSION OF CANCER- AND IMMUNE-RELATED GENES. OXIDATIVE STRESS GENERATED BY TOBACCO SMOKING PLAYS A ROLE IN REDUCING GENOMIC INTEGRITY, PROMOTING EPITHELIAL-MESENCHYMAL-TRANSITION, AND GENERATING A CHRONIC INFLAMMATORY ENVIRONMENT. THIS LEADS TO ABNORMAL IMMUNE RESPONSES THAT PROMOTE CANCER DEVELOPMENT, THOUGH NOT ALL SMOKERS DEVELOP LUNG CANCER. SEX DIFFERENCES IN THE METABOLISM OF TOBACCO SMOKE PREDISPOSE FEMALES TO DEVELOPING COPD AND ACCUMULATING DAMAGE FROM OXIDATIVE STRESS THAT POSES A RISK FOR THE DEVELOPMENT OF LUNG CANCER. DYSREGULATION OF THE LUNG MICROENVIRONMENT AND MICROBIOME CONTRIBUTES TO CHRONIC INFLAMMATION, WHICH IS OBSERVED IN COPD AND KNOWN TO FACILITATE CANCER INITIATION IN VARIOUS TUMOR TYPES. FURTHER, THERE IS A NEED TO BETTER CHARACTERIZE AND IDENTIFY THE PROPORTION OF INDIVIDUALS WITH COPD WHO ARE AT A HIGH RISK FOR DEVELOPING LUNG CANCER. WE EVALUATE POSSIBLE NOVEL AND INDIVIDUALIZED SCREENING STRATEGIES, INCLUDING BIOMARKERS IDENTIFIED IN GENETIC STUDIES AND EXHALED BREATH CONDENSATE ANALYSIS. WE ALSO DISCUSS THE USE OF CORTICOSTEROIDS AND STATINS AS CHEMOPREVENTIVE AGENTS TO PREVENT LUNG CANCER. IT IS CRUCIAL THAT WE OPTIMIZE THE CURRENT METHODS FOR THE EARLY DETECTION AND MANAGEMENT OF LUNG CANCER AND COPD IN ORDER TO IMPROVE THE HEALTH OUTCOMES FOR A LARGE AFFECTED POPULATION. 2023 12 6783 29 [CHRONIC OBSTRUCTIVE PULMONARY DISEASE IN WOMEN]. FOR THE PAST SEVERAL YEARS THE NUMBER OF WOMEN SUFFERING FROM CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) HAS BEEN STEADILY INCREASING. THIS FACT PROMPTS THE DEBATE WHICH FACTORS, IN ADDITION TO CONSIDERABLY INCREASING PREVALENCE OF CIGARETTE SMOKING AMONG YOUNG WOMEN, ARE RESPONSIBLE FOR THESE EPIDEMIOLOGIC CHANGES. DIFFERENCES IN THE NATURAL HISTORY AND PROGNOSIS OF COPD IN FEMALES AND MALES ARE PRESENTED IN THE PAPER, AS WELL AS THE NUMBER OF POTENTIAL ETHIOPATHOGENETIC AND PATHOPHYSIOLOGIC FACTORS INFLUENCING THESE VARIATIONS. AMONG THEM, DIFFERENCES IN THE COPD RISK FACTORS SPECTRUM IN BOTH GENDERS AND IN AIRWAYS ANATOMY ARE POINTED OUT, AND THE MECHANISMS RESPONSIBLE FOR GREATER WOMEN'S SUSCEPTIBILITY TO COMPONENTS OF CIGARETTE SMOKE, WHICH REFLECT GENETIC (ENZYME POLYMORPHISMS), EPIGENETIC (DIMINISHED DNA METHYLATION) AND HORMONAL (ESTROGENS) INFLUENCES ON XENOBIOTICS METABOLISM. FURTHER, SEX-RELATED DIFFERENCES REGARDING COPD PHENOTYPES (CHRONIC BRONCHITIS VS. EMPHYSEMA), IMMUNOLOGICAL MARKERS AND CLINICAL MANIFESTATION OF DISEASE ARE UNDERLINED IN THE PAPER. MORE FREQUENT COEXISTENCE OF ANXIETY AND DEPRESSION, COPD EXACERBATIONS AND WORSE QUALITY OF LIFE IN WOMEN ARE ALSO EMPHASIZED. OTHER DIFFERENCES, POINTED OUT BY AUTHORS INCLUDE AUTOIMMUNOLOGICAL CONCEPTION OF PATHOGENESIS OF COPD (GREATER FEMALE SUSCEPTIBILITY TO PRODUCE AUTOANTIBODIES), RISK FACTORS OF DISEASE EXACERBATION AND, AT LAST, RESPONSE TO CERTAIN FORMS OF COPD TREATMENT (NICOTINE REPLACEMENT THERAPY, LONG-TERM OXYGEN THERAPY). 2012 13 540 35 ATMOSPHERIC FINE PARTICULATE MATTER AND EPITHELIAL MESENCHYMAL TRANSITION IN PULMONARY CELLS: STATE OF THE ART AND CRITICAL REVIEW OF THE IN VITRO STUDIES. EXPOSURE TO FINE PARTICULATE MATTER (PM(2.5)) HAS BEEN ASSOCIATED WITH SEVERAL DISEASES INCLUDING ASTHMA, CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) AND LUNG CANCER. MECHANISMS SUCH AS OXIDATIVE STRESS AND INFLAMMATION ARE WELL-DOCUMENTED AND ARE CONSIDERED AS THE STARTING POINT OF SOME OF THE PATHOLOGICAL RESPONSES. HOWEVER, A NUMBER OF STUDIES ALSO FOCUSED ON EPITHELIAL-MESENCHYMAL TRANSITION (EMT), WHICH IS A BIOLOGICAL PROCESS INVOLVED IN FIBROTIC DISEASES AND CANCER PROGRESSION NOTABLY VIA METASTASIS INDUCTION. UP UNTIL NOW, EMT WAS WIDELY REPORTED IN VIVO AND IN VITRO IN VARIOUS CELL TYPES BUT INVESTIGATIONS DEALING WITH IN VITRO STUDIES OF PM(2.5) INDUCED EMT IN PULMONARY CELLS ARE LIMITED. FURTHER, FEW INVESTIGATIONS COMBINED THE NECESSARY ENDPOINTS FOR VALIDATION OF THE EMT STATE IN CELLS: SUCH AS EXPRESSION OF SEVERAL SURFACE, CYTOSKELETON OR EXTRACELLULAR MATRIX BIOMARKERS AND ACTIVATION OF TRANSCRIPTION MARKERS AND EPIGENETIC FACTORS. STUDIES EXPLORED VARIOUS CELL TYPES, CULTURED UNDER DIFFERING CONDITIONS AND EXPOSED FOR VARIOUS DURATIONS TO DIFFERENT DOSES. SUCH UNHARMONIZED PROTOCOLS (1) MIGHT INTRODUCE BIAS, (2) MAKE DIFFICULT COMPARISON OF RESULTS AND (3) PRECLUDE REACHING A DEFINITIVE CONCLUSION REGARDING THE ABILITY OF AIRBORNE PM(2.5) TO INDUCE EMT IN PULMONARY CELLS. SOME QUESTIONS REMAIN, IN PARTICULAR THE SPECIFIC PM(2.5) COMPONENTS RESPONSIBLE FOR EMT TRIGGERING. THE AIM OF THIS REVIEW IS TO EXAMINE THE AVAILABLE PM(2.5) INDUCED EMT IN VITRO STUDIES ON PULMONARY CELLS WITH SPECIAL EMPHASIS ON THE CRITICAL PARAMETERS CONSIDERED TO CARRY OUT FUTURE RESEARCH IN THIS FIELD. THIS CLARIFICATION APPEARS NECESSARY FOR PRODUCTION OF RELIABLE AND COMPARABLE RESULTS. 2020 14 228 34 ADAPTATION OF THE HUMAN POPULATION TO THE ENVIRONMENT: CURRENT KNOWLEDGE, CLUES FROM CZECH CYTOGENETIC AND "OMICS" BIOMONITORING STUDIES AND POSSIBLE MECHANISMS. THE HUMAN POPULATION IS CONTINUALLY EXPOSED TO NUMEROUS HARMFUL ENVIRONMENTAL STRESSORS, CAUSING NEGATIVE HEALTH EFFECTS AND/OR DEREGULATION OF BIOMARKER LEVELS. HOWEVER, STUDIES REPORTING NO OR EVEN POSITIVE IMPACTS OF SOME STRESSORS ON HUMANS ARE ALSO SOMETIMES PUBLISHED. THE MAIN AIM OF THIS REVIEW IS TO PROVIDE A COMPREHENSIVE OVERVIEW OF THE LAST DECADE OF CZECH BIOMONITORING RESEARCH, CONCERNING THE EFFECT OF VARIOUS LEVELS OF AIR POLLUTION (BENZO[A]PYRENE) AND RADIATION (URANIUM, X-RAY EXAMINATION AND NATURAL RADON BACKGROUND), ON THE DIFFERENTLY EXPOSED POPULATION GROUPS. BECAUSE SOME RESULTS OBTAINED FROM CYTOGENETIC STUDIES WERE OPPOSITE THAN HYPOTHESIZED, WE HAVE SEARCHED FOR A MEANINGFUL INTERPRETATION IN GENOMIC/EPIGENETIC STUDIES. A DETAILED ANALYSIS OF OUR DATA SUPPORTED BY THE STUDIES OF OTHERS AND CURRENT EPIGENETIC KNOWLEDGE, LEADS TO A HYPOTHESIS OF THE VERSATILE MECHANISM OF ADAPTATION TO ENVIRONMENTAL STRESSORS VIA DNA METHYLATION SETTINGS WHICH MAY EVEN ORIGINATE IN PRENATAL DEVELOPMENT, AND HELP TO REDUCE THE RESULTING DNA DAMAGE LEVELS. THIS HYPOTHESIS IS FULLY IN AGREEMENT WITH UNEXPECTED DATA FROM OUR STUDIES (E.G. LOWER LEVELS OF DNA DAMAGE IN SUBJECTS FROM HIGHLY POLLUTED REGIONS THAN IN CONTROLS OR IN SUBJECTS EXPOSED REPEATEDLY TO A POLLUTANT THAN IN THOSE WITHOUT PREVIOUS EXPOSURE), AND IS ALSO SUPPORTED BY DIFFERENCES IN DNA METHYLATION PATTERNS IN GROUPS FROM REGIONS WITH VARIOUS LEVELS OF POLLUTION. IN LIGHT OF THE ADAPTATION HYPOTHESIS, THE FOLLOWING POINTS MAY BE SUGGESTED FOR FUTURE RESEARCH: (I) THE CHRONIC AND ACUTE EXPOSURE OF STUDY SUBJECTS SHOULD BE DISTINGUISHED; (II) THE EXPOSURE HISTORY SHOULD BE MAPPED INCLUDING PLACE OF RESIDENCE DURING THE LIFE AND PRENATAL DEVELOPMENT; (III) CHANGES OF EPIGENETIC MARKERS SHOULD BE MONITORED OVER TIME. IN SUMMARY, INVESTIGATION OF HUMAN ADAPTATION TO THE ENVIRONMENT, ONE OF THE MOST IMPORTANT PROCESSES OF SURVIVAL, IS A NEW CHALLENGE FOR FUTURE RESEARCH IN THE FIELD OF HUMAN BIOMONITORING THAT MAY CHANGE OUR VIEW ON THE RESULTS OF BIOMARKER ANALYSES AND POTENTIAL NEGATIVE HEALTH IMPACTS OF THE ENVIRONMENT. 2017 15 3100 38 GENOMIC IMPACT OF CIGARETTE SMOKE, WITH APPLICATION TO THREE SMOKING-RELATED DISEASES. THERE IS CONSIDERABLE EVIDENCE THAT INHALED TOXICANTS SUCH AS CIGARETTE SMOKE CAN CAUSE BOTH IRREVERSIBLE CHANGES TO THE GENETIC MATERIAL (DNA MUTATIONS) AND PUTATIVELY REVERSIBLE CHANGES TO THE EPIGENETIC LANDSCAPE (CHANGES IN THE DNA METHYLATION AND CHROMATIN MODIFICATION STATE). THE DISEASES THAT ARE BELIEVED TO INVOLVE GENETIC AND EPIGENETIC PERTURBATIONS INCLUDE LUNG CANCER, CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD), AND CARDIOVASCULAR DISEASE (CVD), ALL OF WHICH ARE STRONGLY LINKED EPIDEMIOLOGICALLY TO CIGARETTE SMOKING. IN THIS REVIEW, WE HIGHLIGHT THE SIGNIFICANCE OF GENOMICS AND EPIGENOMICS IN THESE MAJOR SMOKING-RELATED DISEASES. WE ALSO SUMMARIZE THE IN VITRO AND IN VIVO FINDINGS ON THE SPECIFIC PERTURBATIONS THAT SMOKE AND ITS CONSTITUENT COMPOUNDS CAN INFLICT UPON THE GENOME, PARTICULARLY ON THE PULMONARY SYSTEM. FINALLY, WE REVIEW STATE-OF-THE-ART GENOMICS AND NEW TECHNIQUES SUCH AS HIGH-THROUGHPUT SEQUENCING AND GENOME-WIDE CHROMATIN ASSAYS, RAPIDLY EVOLVING TECHNIQUES WHICH HAVE ALLOWED EPIGENETIC CHANGES TO BE CHARACTERIZED AT THE GENOME LEVEL. THESE TECHNIQUES HAVE THE POTENTIAL TO SIGNIFICANTLY IMPROVE OUR UNDERSTANDING OF THE SPECIFIC MECHANISMS BY WHICH EXPOSURE TO ENVIRONMENTAL CHEMICALS CAUSES DISEASE. SUCH MECHANISTIC KNOWLEDGE PROVIDES A VARIETY OF OPPORTUNITIES FOR ENHANCED PRODUCT SAFETY ASSESSMENT AND THE DISCOVERY OF NOVEL THERAPEUTIC INTERVENTIONS. 2012 16 5299 44 PROTEIN INTERACTION NETWORKS PROVIDE INSIGHT INTO FETAL ORIGINS OF CHRONIC OBSTRUCTIVE PULMONARY DISEASE. BACKGROUND: CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS A LEADING CAUSE OF DEATH IN ADULTS THAT MAY HAVE ORIGINS IN EARLY LUNG DEVELOPMENT. IT IS A COMPLEX DISEASE, INFLUENCED BY MULTIPLE FACTORS INCLUDING GENETIC VARIANTS AND ENVIRONMENTAL FACTORS. MATERNAL SMOKING DURING PREGNANCY MAY INFLUENCE THE RISK FOR DISEASES DURING ADULTHOOD, POTENTIALLY THROUGH EPIGENETIC MODIFICATIONS INCLUDING METHYLATION. METHODS: IN THIS WORK, WE EXPLORE THE FETAL ORIGINS OF COPD BY UTILIZING LUNG DNA METHYLATION MARKS ASSOCIATED WITH IN UTERO SMOKE (IUS) EXPOSURE, AND EVALUATE THE NETWORK RELATIONSHIPS BETWEEN METHYLOMIC AND TRANSCRIPTOMIC SIGNATURES ASSOCIATED WITH ADULT LUNG TISSUE FROM FORMER SMOKERS WITH AND WITHOUT COPD. TO IDENTIFY POTENTIAL PATHOBIOLOGICAL MECHANISMS THAT MAY LINK FETAL LUNG, SMOKE EXPOSURE AND ADULT LUNG DISEASE, WE STUDY THE INTERACTIONS (PHYSICAL AND FUNCTIONAL) OF IDENTIFIED GENES USING PROTEIN-PROTEIN INTERACTION NETWORKS. RESULTS: WE BUILD IUS-EXPOSURE AND COPD MODULES, WHICH IDENTIFY CONNECTED SUBNETWORKS LINKING FETAL LUNG SMOKE EXPOSURE TO ADULT COPD. STUDYING THE RELATIONSHIPS AND CONNECTIVITY AMONG THE DIFFERENT MODULES FOR FETAL SMOKE EXPOSURE AND ADULT COPD, WE IDENTIFY ENRICHED PATHWAYS, INCLUDING THE AGE-RAGE AND FOCAL ADHESION PATHWAYS. CONCLUSIONS: THE MODULES IDENTIFIED IN OUR ANALYSIS ADD NEW AND POTENTIALLY IMPORTANT INSIGHTS TO UNDERSTANDING THE EARLY LIFE MOLECULAR PERTURBATIONS RELATED TO THE PATHOGENESIS OF COPD. WE IDENTIFY AGE-RAGE AND FOCAL ADHESION AS TWO BIOLOGICALLY PLAUSIBLE PATHWAYS THAT MAY REVEAL LUNG DEVELOPMENTAL CONTRIBUTIONS TO COPD. WE WERE NOT ONLY ABLE TO IDENTIFY MEANINGFUL MODULES BUT WERE ALSO ABLE TO STUDY INTERCONNECTIONS BETWEEN SMOKE EXPOSURE AND LUNG DISEASE, AUGMENTING OUR KNOWLEDGE ABOUT THE FETAL ORIGINS OF COPD. 2022 17 3028 32 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 18 4266 37 MICRO-RNAS: CROSSROADS BETWEEN THE EXPOSURE TO ENVIRONMENTAL PARTICULATE POLLUTION AND THE OBSTRUCTIVE PULMONARY DISEASE. ENVIRONMENTAL POLLUTION HAS REACHED A GLOBAL ECHO AND REPRESENTS A SERIOUS PROBLEM FOR HUMAN HEALTH. AIR POLLUTION ENCOMPASSES A SET OF HAZARDOUS SUBSTANCES, SUCH AS PARTICULATE MATTER AND HEAVY METALS (E.G., CADMIUM, LEAD, AND ARSENIC), AND HAS A STRONG IMPACT ON THE ENVIRONMENT BY AFFECTING GROUNDWATER, SOIL, AND AIR. AN ADAPTIVE RESPONSE TO ENVIRONMENTAL CUES IS ESSENTIAL FOR HUMAN SURVIVAL, WHICH IS ASSOCIATED WITH THE INDUCTION OF ADAPTIVE PHENOTYPES. THE EPIGENETIC MECHANISMS REGULATING THE EXPRESSION PATTERNS OF SEVERAL GENES ARE PROMISING CANDIDATES TO PROVIDE MECHANISTIC AND PROGNOSTIC INSIGHTS INTO THIS. MICRO-RNAS (MIRNAS) FULFIL THESE FEATURES GIVEN THEIR ABILITY TO RESPOND TO ENVIRONMENTAL FACTORS AND THEIR CRITICAL ROLE IN DETERMINING PHENOTYPES. THESE MOLECULES ARE PRESENT IN EXTRACELLULAR FLUIDS, AND THEIR EXPRESSION PATTERNS ARE ORGAN-, TISSUE-, OR CELL-SPECIFIC. MOREOVER, THE EXPERIMENTAL SETTINGS FOR THEIR QUANTITATIVE AND QUALITATIVE ANALYSIS ARE ROBUST, STANDARDIZED, AND INEXPENSIVE. IN THIS REVIEW, WE PROVIDE AN UPDATE ON THE ROLE OF MIRNAS AS SUITABLE TOOLS FOR UNDERSTANDING THE MECHANISMS BEHIND THE PHYSIOPATHOLOGICAL RESPONSE TO TOXICANTS AND THE PROGNOSTIC VALUE OF THEIR EXPRESSION PATTERN ASSOCIABLE WITH SPECIFIC EXPOSURES. WE LOOK AT THE MECHANISTIC EVIDENCE ASSOCIABLE TO THE ROLE OF MIRNAS IN THE PROCESSES LEADING TO ENVIRONMENTAL-INDUCED PULMONARY DISEASE (I.E., CHRONIC OBSTRUCTIVE PULMONARY DISEASE). 2020 19 6781 47 [BREATHING: AMBIENT AIR POLLUTION AND HEALTH - PART III]. THE THIRD PART OF THE DGP STATEMENT INTRODUCES THE CURRENT BODY OF KNOWLEDGE ON LESS STUDIED HEALTH OUTCOMES ASSOCIATED WITH EXPOSURE TO AMBIENT AIR POLLUTION: THE NEGATIVE IMPACT ON METABOLISM LEADING TO IMPAIRED GLUCOSE TOLERANCE AND DIABETES AS WELL AS CONTRIBUTION TO THE DEVELOPMENT OF NEURODEGENERATIVE DISORDERS AND DELAYED COGNITIVE FUNCTION IN CHILDREN. FURTHERMORE, PRENATAL EXPOSURE AND ADVERSE EFFECTS ON MOTHER AND CHILD ARE ADDRESSED. FINALLY, THE CURRENTLY DISCUSSED BIOLOGICAL MECHANISMS UNDERLYING VARIOUS HEALTH EFFECTS ASSOCIATED WITH EXPOSURE TO AIR POLLUTION ARE DESCRIBED.DIFFERING, BUT OFTEN COMPLEMENTARY BIOLOGICAL MECHANISMS CREATE THE BASIS FOR THE DIVERSE HEALTH OUTCOMES CAUSED BY AIR POLLUTION. OXIDATIVE STRESS AND A SUBCLINICAL INFLAMMATORY RESPONSE IN THE LUNGS AND ON A SYSTEMIC LEVEL ("LOW-GRADE SYSTEMIC INFLAMMATION") ARE CONSIDERED TO BE KEY MECHANISMS. THEY PROMOTE SECONDARY ALTERATIONS IN THE BODY, SUCH AS VASCULAR OR METABOLIC PROCESSES, AND MAY ALSO RESULT IN THE CURRENTLY STUDIED EPIGENETIC PHENOMENA OR NEUROINFLAMMATION. IN THIS CONTEXT, THE HEALTH SIGNIFICANCE OF SOLUBLE PARTICULATE MATTER AND THE ROLE OF ULTRAFINE PARTICLES TRANSLOCATED ACROSS BIOLOGICAL MEMBRANES INTO BLOOD VESSEL AND TRANSPORTED VIA THE CIRCULATION TO SECONDARY TARGET ORGANS, SUCH AS LIVER, BRAIN OR THE FETUS, ARE INTENSIVELY DISCUSSED.DIABETES IS ONE OF THE LEADING CHRONIC DISEASES WORLDWIDE, WITH A PREVALENCE OF ALMOST 14 % IN GERMANY. ALTHOUGH LIFESTYLE FACTORS ARE THE MAIN CAUSES, CURRENT EVIDENCE SUGGESTS THAT LONG-TERM EXPOSURE TO AIR POLLUTION MAY ADDITIONALLY INCREASE THE RISK FOR TYPE 2 DIABETES. SUPPORTING EVIDENCE FOR A CAUSAL ROLE OF AIR POLLUTION IS PROVIDED BY STUDIES ADDRESSING THE REGULATION OF THE BLOOD GLUCOSE LEVELS IN METABOLICALLY HEALTHY PARTICIPANTS, INSULIN SENSITIVITY, OR PREGNANCY-RELATED DIABETES. EXPERIMENTAL STUDIES PROVIDE FURTHER SUPPORT FOR PLAUSIBLE BIOLOGICAL MECHANISMS. HOWEVER, PROSPECTIVE STUDIES ARE NEEDED TO GAIN MORE EVIDENCE, TAKING MULTIPLE LIFESTYLE AND ENVIRONMENTAL FACTORS, SUCH AS GREEN SPACE AND NOISE, AND AN IMPROVED INDIVIDUAL EXPOSURE ASSESSMENT INTO ACCOUNT.THE AGING POPULATION HAS AN INCREASED RISK OF NEURODEGENERATIVE DISEASES. FIRST STUDIES POINT TOWARDS A CONTRIBUTION OF CHRONIC EXPOSURE TO AIR POLLUTION, SPECIFICALLY BY PARTICULATE MATTER. SEVERAL STUDIES REPORT ITS ASSOCIATION WITH DECREASED NEUROCOGNITIVE CAPACITY OR AN INCREASED PREVALENCE OF DEMENTIA OR ALZHEIMER'S DISEASE IN ADULTS. HOWEVER, THE STUDIES ARE INHOMOGENEOUS REGARDING DESIGN, EXPOSURE AND OUTCOME, LEADING TO INCONSISTENT RESULTS. WITH RESPECT TO THE INFLUENCE ON NEUROCOGNITIVE DEVELOPMENT OF CHILDREN, FIRST STUDIES SUGGEST AN ASSOCIATION BETWEEN THE LEVEL OF AIR POLLUTION, E. G. AT SCHOOL, AND DELAYED COGNITIVE DEVELOPMENT.EVEN THOUGH THE EVIDENCE FOR THE DIFFERENT BIOLOGICAL ENDPOINTS DURING PREGNANCY IS STILL HETEROGENEOUS, THE STUDIES GENERALLY POINT TOWARDS AN ADVERSE IMPACT OF AIR POLLUTION ON THE MATERNAL AND FETAL ORGANISMS. THE STRONGEST EVIDENCE EXISTS FOR LOW BIRTH WEIGHT, WITH SMALL EFFECT SIZES OF ONLY SOME GRAMS, AND FOR A HIGHER INCIDENCE OF REDUCED BIRTH WEIGHT (< 2500 G). AN INCREASED RISK FOR GESTATIONAL HYPERTENSION AND PREECLAMPSIA UNDERSCORES THE POSSIBLE IMPACT OF EXPOSURE TO AIR POLLUTION ON THE MATERNAL ORGANISM. HOWEVER, THE CURRENT BODY OF EVIDENCE DOES NOT YET ALLOW A FINAL CONCLUSION ON THE INFLUENCE OF INTRAUTERINE EXPOSURE TO AIR POLLUTION REGARDING EARLY CHILDHOOD LUNG FUNCTION AND DEVELOPMENT OF ALLERGIES, PARTICULARLY IN LIGHT OF THE FACT THAT IT IS HARD TO DISTINGUISH IN EPIDEMIOLOGICAL STUDIES BETWEEN THE EFFECTS OF PRE- AND POSTNATAL EXPOSURE. 2019 20 485 30 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