1 2634 176 EPIGENOME-WIDE DNA METHYLATION PROFILING OF CONDITIONED PAIN MODULATION IN INDIVIDUALS WITH NON-SPECIFIC CHRONIC LOW BACK PAIN. BACKGROUND: THE PATHOANATOMIC CAUSE OF CHRONIC LOW BACK PAIN (CLBP) CANNOT BE IDENTIFIED FOR UP TO 90% OF INDIVIDUALS. HOWEVER, DYSFUNCTIONAL PROCESSING OF ENDOGENOUS NOCICEPTIVE INPUT, MEASURED AS CONDITIONED PAIN MODULATION (CPM), HAS BEEN ASSOCIATED WITH CLBP AND MAY INVOLVE CHANGES IN NEURONAL GENE EXPRESSION. EPIGENETIC-INDUCED CHANGES SUCH AS DNA METHYLATION (DNAM) HAVE BEEN ASSOCIATED WITH CLBP. METHODS: IN THE PRESENT STUDY, THE RELATIONSHIP BETWEEN CPM AND DNAM CHANGES IN A SAMPLE OF COMMUNITY-DWELLING ADULTS WITH NONSPECIFIC CLBP (N = 48) AND PAIN-FREE CONTROLS (PFC; N = 50) WAS EXAMINED USING REDUCED REPRESENTATION BISULFITE SEQUENCING. GENE ONTOLOGY (GO) TERM ENRICHMENT AND KYOTO ENCYCLOPEDIA OF GENES AND GENOMES (KEGG) PATHWAY ANALYSIS WERE APPLIED TO IDENTIFY KEY PATHWAYS INVOLVED IN EFFICIENT VERSUS DEFICIENT CPM. RESULTS: BASED ON CPM EFFICIENCY, WE IDENTIFIED 6006 AND 18,305 DIFFERENTIALLY METHYLATED CPG SITES (DMCS) WITH Q VALUES < 0.01 AMONG INDIVIDUALS WITH CLBP AND PFCS, RESPECTIVELY. MOST OF THE DMCS WERE HYPOMETHYLATED AND ANNOTATED TO GENES OF RELEVANCE TO PAIN, INCLUDING OPRM1, ADRB2, CACNA2D3, GNA12, LPL, NAXD, AND ASPHD1. IN BOTH CLBP AND PFC GROUPS, THE DMCS ANNOTATED GENES ENRICHED MANY GO TERMS RELEVANT TO PAIN PROCESSING, INCLUDING TRANSCRIPTION REGULATION BY RNA POLYMERASE II, NERVOUS SYSTEM DEVELOPMENT, GENERATION OF NEURONS, NEURON DIFFERENTIATION, AND NEUROGENESIS. BOTH GROUPS ALSO ENRICHED THE PATHWAYS INVOLVED IN RAP1-SIGNALING, CANCER, AND DOPAMINERGIC NEUROGENESIS. HOWEVER, MAPK-RAS SIGNALING PATHWAYS WERE ENRICHED IN THE CLBP, NOT THE PFC GROUP. CONCLUSIONS: THIS IS THE FIRST STUDY TO INVESTIGATE THE GENOME-SCALE DNA METHYLATION PROFILES OF CPM PHENOTYPE IN ADULTS WITH CLBP AND PFCS. BASED ON CPM EFFICIENCY, FEWER DMC ENRICHMENT PATHWAYS WERE UNIQUE TO THE CLBP THAN THE PFCS GROUP. OUR RESULTS SUGGEST THAT EPIGENETICALLY INDUCED MODIFICATION OF NEURONAL DEVELOPMENT/DIFFERENTIATION PATHWAYS MAY AFFECT CPM EFFICIENCY, SUGGESTING NOVEL POTENTIAL THERAPEUTIC TARGETS FOR CENTRAL SENSITIZATION. HOWEVER, CPM EFFICIENCY AND THE EXPERIENCE OF NONSPECIFIC CLBP MAY BE INDEPENDENT. FURTHER MECHANISTIC STUDIES ARE REQUIRED TO CONFIRM THE RELATIONSHIP BETWEEN CPM, CENTRAL SENSITIZATION, AND NONSPECIFIC CLBP. 2022 2 3267 22 HEPATOCELLULAR CARCINOMA AND POSSIBLE CHEMICAL AND BIOLOGICAL CAUSES: A REVIEW. THE DEVELOPMENT OF HEPATOCELLULAR CARCINOMA (HCC) IS A MULTISTEP PROCESS. IN HCC, PROGRESSIVE AND MORPHOLOGICALLY DISTINCT PRENEOPLASTIC LESIONS/ALTERATIONS ASSOCIATED WITH CHRONIC LIVER INJURY, INFLAMMATION, HEPATOCELLULAR DEGENERATION/REGENERATION, NECROSIS, AND SMALL-CELL DYSPLASIA CAN BE OBSERVED. THE INCIDENCE OF HCC EXHIBITS REGIONAL AND ETHNIC DIFFERENCES. SEVERAL CYTOTOXIC AND DNA-DAMAGING CHEMICALS ARE SUGGESTED TO BE THE UNDERLYING CAUSES OF HCC-FOR EXAMPLE, ACRYLAMIDE, PERFLUOROOCTANOIC ACID (PFOA), POLYCHLORINATED BIPHENYLS (PCBS), BENZO(A)PYRENE (BAP), PERFLUORINATED CHEMICALS (PFCS), VINYL CHLORIDE MONOMER (VCM), AND DIETARY CONTAMINANTS (AFLATOXINS, OCHRATOXINS). ALSO SUGGESTED ARE SUBSTANCES OF ABUSE (ALCOHOL) AND BIOLOGICAL AGENTS, SUCH AS HEPATITIS B AND C AND HUMAN IMMUNODEFICIENCY VIRUS 1 (HIV-1). THESE CAN ACT THROUGH GENETIC AND/OR EPIGENETIC MECHANISMS. THIS REVIEW WILL SHORTLY ADDRESS THE GENETIC AND EPIGENETIC MECHANISMS OF HCC AND FOCUS ON CYTOTOXIC AND DNA-DAMAGING CHEMICALS AND BIOLOGICAL AGENTS, EXPOSURE TO WHICH ARE SUGGESTED TO LEAD TO HCC INITIATION, PROMOTION, AND/OR PROGRESSION. 2017 3 6666 36 UPTAKE OF ASCORBIC ACID BY PANCREATIC ACINAR CELLS IS NEGATIVELY IMPACTED BY CHRONIC ALCOHOL EXPOSURE. VITAMIN C (ASCORBIC ACID, AA) IS INDISPENSABLE FOR NORMAL METABOLISM OF ALL MAMMALIAN CELLS INCLUDING PANCREATIC ACINAR CELLS (PACS). PACS OBTAIN AA FROM THEIR SURROUNDINGS VIA TRANSPORT ACROSS THE CELL MEMBRANE. CHRONIC ALCOHOL EXPOSURE NEGATIVELY AFFECTS BODY AA HOMEOSTASIS; IT ALSO INHIBITS UPTAKE OF OTHER MICRONUTRIENTS INTO PACS, BUT ITS EFFECT ON AA UPTAKE IS NOT CLEAR. WE EXAMINED THIS ISSUE USING BOTH IN VITRO (266-6 CELLS) AND IN VIVO (MICE) MODELS OF CHRONIC ALCOHOL EXPOSURE. FIRST, WE DETERMINED THE RELATIVE EXPRESSION OF THE AA TRANSPORTERS 1 AND 2 [I.E., SODIUM-DEPENDENT VITAMIN C TRANSPORTER-1 (SVCT-1) AND SVCT-2] IN MOUSE AND HUMAN PACS AND FOUND SVCT-2 TO BE THE PREDOMINANT TRANSPORTER. CHRONIC EXPOSURE OF 266-6 CELLS TO ALCOHOL SIGNIFICANTLY INHIBITED AA UPTAKE AND CAUSED A MARKED REDUCTION IN SVCT-2 EXPRESSION AT THE PROTEIN, MRNA, AND HETEROGENEOUS NUCLEAR RNA (HNRNA) LEVELS. SIMILARLY, CHRONIC ALCOHOL FEEDING OF MICE SIGNIFICANTLY INHIBITED AA UPTAKE AND CAUSED A MARKED REDUCTION IN LEVEL OF EXPRESSION OF THE SVCT-2 PROTEIN, MRNA, AND HNRNA. THESE FINDINGS SUGGEST POSSIBLE INVOLVEMENT OF TRANSCRIPTIONAL MECHANISM(S) IN MEDIATING CHRONIC ALCOHOL EFFECT ON AA UPTAKE BY PACS. WE ALSO OBSERVED SIGNIFICANT EPIGENETIC CHANGES (HISTONE MODIFICATIONS) IN THE SLC23A2 GENE (REDUCTION IN H3K4ME3 LEVEL AND AN INCREASE IN H3K27ME3 LEVEL) IN THE ALCOHOL-EXPOSED 266-6 CELLS. THESE FINDINGS SHOW THAT CHRONIC ALCOHOL EXPOSURE INHIBITS PAC AA UPTAKE AND THAT THE EFFECT IS MEDIATED, IN PART, AT THE LEVEL OF TRANSCRIPTION OF THE SLC23A2 GENE AND MAY INVOLVE EPIGENETIC MECHANISM(S). 2016 4 871 36 CHRONIC ALCOHOL EXPOSURE AFFECTS PANCREATIC ACINAR MITOCHONDRIAL THIAMIN PYROPHOSPHATE UPTAKE: STUDIES WITH MOUSE 266-6 CELL LINE AND PRIMARY CELLS. THIAMIN IS ESSENTIAL FOR NORMAL METABOLIC ACTIVITY OF ALL MAMMALIAN CELLS, INCLUDING THOSE OF THE PANCREAS. CELLS OBTAIN THIAMIN FROM THEIR SURROUNDINGS AND ENZYMATICALLY CONVERT IT INTO THIAMIN PYROPHOSPHATE (TPP) IN THE CYTOPLASM; TPP IS THEN TAKEN UP BY MITOCHONDRIA VIA A SPECIFIC CARRIER THE MITOCHONDRIAL TPP TRANSPORTER (MTPPT; PRODUCT OF THE SLC25A19 GENE). CHRONIC ALCOHOL EXPOSURE NEGATIVELY IMPACTS THE HEALTH OF PANCREATIC ACINAR CELLS (PAC), BUT ITS EFFECT ON PHYSIOLOGICAL/MOLECULAR PARAMETERS OF MTPPT IS NOT KNOWN. WE ADDRESSED THIS ISSUE USING MOUSE PANCREATIC ACINAR TUMOR CELL LINE 266-6 AND PRIMARY PAC OF WILD-TYPE AND TRANSGENIC MICE CARRYING THE SLC25A19 PROMOTER THAT WERE FED ALCOHOL CHRONICALLY. CHRONIC ALCOHOL EXPOSURE OF 266-6 CELLS (BUT NOT TO ITS NONOXIDATIVE METABOLITES ETHYL PALMITATE AND ETHYL OLEATE) LED TO A SIGNIFICANT INHIBITION IN MITOCHONDRIAL TPP UPTAKE, WHICH WAS ASSOCIATED WITH A DECREASED EXPRESSION OF MTPPT PROTEIN, MRNA, AND ACTIVITY OF THE SLC25A19 PROMOTER. SIMILARLY, CHRONIC ALCOHOL FEEDING OF MICE LED TO A SIGNIFICANT INHIBITION IN EXPRESSION OF MTPPT PROTEIN, MRNA, HETEROGENEOUS NUCLEAR RNA, AS WELL AS IN ACTIVITY OF SLC25A19 PROMOTER IN PAC. WHILE CHRONIC ALCOHOL EXPOSURE DID NOT AFFECT DNA METHYLATION OF THE SLC25A19 PROMOTER, A SIGNIFICANT DECREASE IN HISTONE H3 EUCHROMATIN MARKERS AND AN INCREASE IN H3 HETEROCHROMATIN MARKER WERE OBSERVED. THESE FINDINGS SHOW, FOR THE FIRST TIME, THAT CHRONIC ALCOHOL EXPOSURE NEGATIVELY IMPACTS PANCREATIC MTPPT, AND THAT THIS EFFECT IS EXERTED, AT LEAST IN PART, AT THE LEVEL OF SLC25A19 TRANSCRIPTION AND APPEARS TO INVOLVE EPIGENETIC MECHANISM(S). 2015 5 3727 33 INHIBITION OF PANCREATIC ACINAR MITOCHONDRIAL THIAMIN PYROPHOSPHATE UPTAKE BY THE CIGARETTE SMOKE COMPONENT 4-(METHYLNITROSAMINO)-1-(3-PYRIDYL)-1-BUTANONE. THIAMIN IS ESSENTIAL FOR NORMAL METABOLISM IN PANCREATIC ACINAR CELLS (PAC) AND IS OBTAINED FROM THEIR MICROENVIRONMENT THROUGH SPECIFIC PLASMA-MEMBRANE TRANSPORTERS, CONVERTED TO THIAMIN PYROPHOSPHATE (TPP) IN THE CYTOPLASM, FOLLOWED BY UPTAKE OF TPP BY MITOCHONDRIA THROUGH THE MITOCHONDRIAL TPP (MTPP) TRANSPORTER (MTPPT; PRODUCT OF SLC25A19 GENE). TPP IS ESSENTIAL FOR NORMAL MITOCHONDRIAL FUNCTION. WE EXAMINED THE EFFECT OF LONG-TERM/CHRONIC EXPOSURE OF PAC IN VITRO (PANCREATIC ACINAR 266-6 CELLS) AND IN VIVO (WILD-TYPE OR TRANSGENIC MICE CARRYING THE SLC25A19 PROMOTER) OF THE CIGARETTE SMOKE TOXIN, 4-(METHYLNITROSAMINO)-1-(3-PYRIDYL)-1-BUTANONE (NNK), ON THE MTPP UPTAKE PROCESS. OUR IN VITRO AND IN VIVO FINDINGS DEMONSTRATE THAT NNK NEGATIVELY AFFECTS MTPP UPTAKE AND REDUCED EXPRESSION OF MTPPT PROTEIN, MTPPT MRNA, AND HETEROGENOUS NUCLEAR RNA, AS WELL AS SLC25A19 PROMOTER ACTIVITY. THE EFFECT OF NNK ON SLC25A19 TRANSCRIPTION WAS NEITHER MEDIATED BY CHANGES IN EXPRESSION OF TRANSCRIPTIONAL FACTOR NFY-1 (KNOWN TO DRIVE SLC25A19 TRANSCRIPTION), NOR DUE TO CHANGES IN METHYLATION PROFILE OF THE SLC25A19 PROMOTER. RATHER, IT APPEARS TO BE DUE TO CHANGES IN HISTONE MODIFICATIONS THAT INVOLVE SIGNIFICANT DECREASES IN HISTONE H3K4-TRIMETHYLATION AND H3K9-ACETYLATION (ACTIVATION MARKERS). THE EFFECT OF NNK ON MTPPT FUNCTION IS MEDIATED THROUGH THE NONNEURONAL ALPHA7-NICOTINIC ACETYLCHOLINE RECEPTOR (ALPHA7-NACHR), AS INDICATED BY BOTH IN VITRO (USING THE NACHR ANTAGONIST MECAMYLAMINE) AND IN VIVO (USING AN ALPHA7-NACHR(-/-) MOUSE MODEL) STUDIES. THESE FINDINGS DEMONSTRATE THAT CHRONIC EXPOSURE OF PAC TO NNK NEGATIVELY IMPACTS PAC MTPP UPTAKE. THIS EFFECT APPEARS TO BE EXERTED AT THE LEVEL OF SLC25A19 TRANSCRIPTION, INVOLVE EPIGENETIC MECHANISM(S), AND IS MEDIATED THROUGH THE ALPHA7-NACHR. 2016 6 3488 65 IDENTIFICATION OF DNA METHYLATION ASSOCIATED ENRICHMENT PATHWAYS IN ADULTS WITH NON-SPECIFIC CHRONIC LOW BACK PAIN. CHRONIC LOW BACK PAIN (CLBP) THAT CANNOT BE ATTRIBUTABLE TO A SPECIFIC PATHOANATOMICAL CHANGE IS ASSOCIATED WITH HIGH PERSONAL AND SOCIETAL COSTS. STILL, THE UNDERLYING MECHANISM THAT CAUSES AND SUSTAINS SUCH A PHENOTYPE IS LARGELY UNKNOWN. EMERGING EVIDENCE SUGGESTS THAT EPIGENETIC CHANGES PLAY A ROLE IN CHRONIC PAIN CONDITIONS. USING REDUCED REPRESENTATION BISULFITE SEQUENCING (RRBS), WE EVALUATED DNA METHYLATION PROFILES OF ADULTS WITH NON-SPECIFIC CLBP (N = 50) AND PAIN-FREE CONTROLS (N = 48). WE IDENTIFIED 28,325 HYPERMETHYLATED AND 36,936 HYPOMETHYLATED CPG SITES (P < 0.05). AFTER CORRECTING FOR MULTIPLE TESTING, WE IDENTIFIED 159 DMRS (Q < 0.01AND METHYLATION DIFFERENCE > 10%), THE MAJORITY OF WHICH WERE LOCATED IN CPG ISLAND (50%) AND PROMOTER REGIONS (48%) ON THE ASSOCIATED GENES. THE GENES ASSOCIATED WITH THE DIFFERENTIALLY METHYLATED REGIONS WERE HIGHLY ENRICHED IN BIOLOGICAL PROCESSES THAT HAVE PREVIOUSLY BEEN IMPLICATED IN IMMUNE SIGNALING, ENDOCHONDRAL OSSIFICATION, AND G-PROTEIN COUPLED TRANSMISSIONS. OUR FINDINGS SUPPORT INFLAMMATORY ALTERATIONS AND THE ROLE OF BONE MATURATION IN CLBP. THIS STUDY SUGGESTS THAT EPIGENETIC REGULATION HAS AN IMPORTANT ROLE IN THE PATHOPHYSIOLOGY OF NON-SPECIFIC CLBP AND A BASIS FOR FUTURE STUDIES IN BIOMARKER DEVELOPMENT AND TARGETED INTERVENTIONS. 2020 7 873 36 CHRONIC ALCOHOL EXPOSURE INHIBITS BIOTIN UPTAKE BY PANCREATIC ACINAR CELLS: POSSIBLE INVOLVEMENT OF EPIGENETIC MECHANISMS. CHRONIC EXPOSURE TO ALCOHOL AFFECTS DIFFERENT PHYSIOLOGICAL ASPECTS OF PANCREATIC ACINAR CELLS (PAC), BUT ITS EFFECT ON THE UPTAKE PROCESS OF BIOTIN IS NOT KNOWN. WE ADDRESSED THIS ISSUE USING MOUSE-DERIVED PANCREATIC ACINAR 266-6 CELLS CHRONICALLY EXPOSED TO ALCOHOL AND WILD-TYPE AND TRANSGENIC MICE (CARRYING THE HUMAN SLC5A6 5'-PROMOTER) FED ALCOHOL CHRONICALLY. FIRST WE ESTABLISHED THAT BIOTIN UPTAKE BY PAC IS NA(+) DEPENDENT AND CARRIER MEDIATED AND INVOLVES SODIUM-DEPENDENT MULTIVITAMIN TRANSPORTER (SMVT). CHRONIC EXPOSURE OF 266-6 CELLS TO ALCOHOL LED TO A SIGNIFICANT INHIBITION IN BIOTIN UPTAKE, EXPRESSION OF SMVT PROTEIN, AND MRNA AS WELL AS IN THE ACTIVITY OF THE SLC5A6 PROMOTER. SIMILARLY, CHRONIC ALCOHOL FEEDING OF WILD-TYPE AND TRANSGENIC MICE CARRYING THE SLC5A6 PROMOTER LED TO A SIGNIFICANT INHIBITION IN BIOTIN UPTAKE BY PAC, AS WELL AS IN THE EXPRESSION OF SMVT PROTEIN AND MRNA AND THE ACTIVITY OF THE SLC5A6 PROMOTERS EXPRESSED IN THE TRANSGENIC MICE. WE ALSO FOUND THAT CHRONIC ALCOHOL FEEDING OF MICE IS ASSOCIATED WITH A SIGNIFICANT INCREASE IN THE METHYLATION STATUS OF CPG ISLANDS PREDICTED TO BE IN THE MOUSE SLC5A6 PROMOTERS AND A DECREASE IN THE LEVEL OF EXPRESSION OF TRANSCRIPTION FACTOR KLF-4, WHICH PLAYS AN IMPORTANT ROLE IN REGULATING SLC5A6 PROMOTER ACTIVITY. THESE RESULTS DEMONSTRATE, FOR THE FIRST TIME, THAT CHRONIC ALCOHOL EXPOSURE NEGATIVELY IMPACTS BIOTIN UPTAKE IN PAC AND THAT THIS EFFECT IS EXERTED (AT LEAST IN PART) AT THE LEVEL OF TRANSCRIPTION OF THE SLC5A6 GENE AND MAY INVOLVE EPIGENETIC/MOLECULAR MECHANISMS. 2014 8 5588 31 ROLE OF SENESCENCE IN THE CHRONIC HEALTH CONSEQUENCES OF COVID-19. WHILE THE FULL IMPACT OF COVID-19 IS NOT YET CLEAR, EARLY STUDIES HAVE INDICATED THAT UPWARDS OF 10% OF PATIENTS EXPERIENCE COVID-19 SYMPTOMS LONGER THAN 3 WEEKS, KNOWN AS LONG-HAULER'S SYNDROME OR PACS (POSTACUTE SEQUELAE OF SARS-COV-2 INFECTION). THERE IS LITTLE KNOWN ABOUT RISK FACTORS OR PREDICTORS OF SUSCEPTIBILITY FOR LONG-HAULER'S SYNDROME, BUT OLDER ADULTS ARE AT GREATER RISK FOR SEVERE OUTCOMES AND MORTALITY FROM COVID-19. THE PILLARS OF AGING (INCLUDING CELLULAR SENESCENCE, TELOMERE DYSFUNCTION, IMPAIRED PROTEOSTASIS, MITOCHONDRIAL DYSFUNCTION, DEREGULATED NUTRIENT SENSING, GENOMIC INSTABILITY, PROGENITOR CELL EXHAUSTION, ALTERED INTERCELLULAR COMMUNICATION, AND EPIGENETIC ALTERATIONS) THAT CONTRIBUTE TO AGE-RELATED DYSFUNCTION AND CHRONIC DISEASES (THE "GEROSCIENCE HYPOTHESIS") MAY INTERFERE WITH DEFENSES AGAINST VIRAL INFECTION AND CONSEQUENCES OF THESE INFECTIONS. HEIGHTENING OF THE LOW-GRADE INFLAMMATION THAT IS ASSOCIATED WITH AGING MAY GENERATE AN EXAGGERATED RESPONSE TO AN ACUTE COVID-19 INFECTION. INNATE IMMUNE SYSTEM DYSFUNCTION THAT LEADS TO DECREASED SENESCENT CELL REMOVAL AND/OR INCREASED SENESCENT CELL FORMATION COULD CONTRIBUTE TO ACCUMULATION OF SENESCENT CELLS WITH BOTH AGING AND VIRAL INFECTIONS. THESE PROCESSES MAY CONTRIBUTE TO INCREASED RISK FOR LONG-TERM COVID-19 SEQUELAE IN OLDER OR CHRONICALLY ILL PATIENTS. HENCE, SENOLYTICS AND OTHER GEROSCIENCE INTERVENTIONS THAT MAY PROLONG HEALTHSPAN AND ALLEVIATE CHRONIC DISEASES AND MULTIMORBIDITY LINKED TO FUNDAMENTAL AGING PROCESSES MIGHT BE AN OPTION FOR DELAYING, PREVENTING, OR ALLEVIATING LONG-HAULER'S SYNDROME. 2022 9 1787 38 EFFECT OF CHRONIC ALCOHOL EXPOSURE ON GUT VITAMIN B7 UPTAKE: INVOLVEMENT OF EPIGENETIC MECHANISMS AND EFFECT OF ALCOHOL METABOLITES. VITAMIN B7 (BIOTIN) IS ESSENTIAL FOR NORMAL HEALTH AND ITS DEFICIENCY/SUBOPTIMAL LEVELS OCCUR IN A VARIETY OF CONDITIONS INCLUDING CHRONIC ALCOHOLISM. MAMMALS, INCLUDING HUMANS, OBTAIN BIOTIN FROM DIET AND GUT-MICROBIOTA VIA ABSORPTION ALONG THE INTESTINAL TRACT. THE ABSORPTION PROCESS IS CARRIER MEDIATED AND INVOLVES THE SODIUM-DEPENDENT MULTIVITAMIN TRANSPORTER (SMVT; SLC5A6). WE HAVE PREVIOUSLY SHOWN THAT CHRONIC ALCOHOL EXPOSURE SIGNIFICANTLY INHIBITS INTESTINAL/COLONIC BIOTIN UPTAKE VIA SUPPRESSION OF SLC5A6 TRANSCRIPTION IN ANIMAL AND CELL LINE MODELS. HOWEVER, LITTLE IS KNOWN ABOUT THE TRANSCRIPTIONAL/EPIGENETIC FACTORS THAT MEDIATE THIS SUPPRESSION. IN ADDITION, THE EFFECT OF ALCOHOL METABOLITES (GENERATED VIA ALCOHOL METABOLISM BY GUT MICROBIOTA AND HOST TISSUES) ON BIOTIN UPTAKE IS STILL UNKNOWN. TO ADDRESS THESE QUESTIONS, WE FIRST DEMONSTRATED THAT CHRONIC ALCOHOL EXPOSURE INHIBITS SMALL INTESTINAL AND COLONIC BIOTIN UPTAKE AND SMVT EXPRESSION IN HUMAN DIFFERENTIATED ENTEROID AND COLONOID MONOLAYERS. WE THEN SHOWED THAT CHRONIC ALCOHOL EXPOSURES OF BOTH, CACO-2 CELLS AND MICE, ARE ASSOCIATED WITH A SIGNIFICANT SUPPRESSION IN EXPRESSION OF THE NUCLEAR FACTOR KLF-4 (NEEDED FOR SLC5A6 PROMOTER ACTIVITY), AS WELL AS WITH EPIGENETIC ALTERATIONS (HISTONE MODIFICATIONS). WE ALSO FOUND THAT CHRONIC EXPOSURE OF NCM460 HUMAN COLONIC EPITHELIAL CELLS AS WELL AS HUMAN DIFFERENTIATED COLONOID MONOLAYERS, TO ALCOHOL METABOLITES (ACETALDEHYDE, ETHYL PALMITATE, ETHYL OLEATE) SIGNIFICANTLY INHIBITED BIOTIN UPTAKE AND SMVT EXPRESSION. THESE FINDINGS SHED LIGHT ONTO THE MOLECULAR/EPIGENETIC MECHANISMS THAT MEDIATE THE INHIBITORY EFFECT OF CHRONIC ALCOHOL EXPOSURE ON INTESTINAL BIOTIN UPTAKE. THEY FURTHER SHOW THAT ALCOHOL METABOLITES ARE ALSO CAPABLE OF INHIBITING BIOTIN UPTAKE IN THE GUT.NEW & NOTEWORTHY USING COMPLEMENTARY MODELS, INCLUDING HUMAN DIFFERENTIATED ENTEROID AND COLONOID MONOLAYERS, THIS STUDY SHOWS THE INVOLVEMENT OF MOLECULAR AND EPIGENETIC MECHANISMS IN MEDIATING THE INHIBITORY EFFECT OF CHRONIC ALCOHOL EXPOSURE ON BIOTIN UPTAKE ALONG THE INTESTINAL TRACT. THE STUDY ALSO SHOWS THAT ALCOHOL METABOLITES (GENERATED BY GUT MICROBIOTA AND HOST TISSUES) CAUSE INHIBITION IN GUT BIOTIN UPTAKE. 2021 10 5919 31 TARGETING CELLULAR SENESCENCE FOR AGE-RELATED DISEASES: PATH TO CLINICAL TRANSLATION. BEYOND THE PALLIATIVE REACH OF TODAY'S MEDICINES, MEDICAL THERAPIES OF TOMORROW AIM TO TREAT THE ROOT CAUSE OF AGE-RELATED DISEASES BY TARGETING FUNDAMENTAL AGING MECHANISMS. PILLARS OF AGING INCLUDE, AMONG OTHERS, GENOMIC INSTABILITY, TELOMERE ATTRITION, EPIGENETIC ALTERATIONS, LOSS OF PROTEOSTASIS, DYSREGULATED NUTRIENT SENSING, MITOCHONDRIAL DYSFUNCTION, CELLULAR SENESCENCE, STEM CELL EXHAUSTION, AND ALTERED INTERCELLULAR COMMUNICATION. THE UNITARY THEORY OF FUNDAMENTAL AGING PROCESSES POSITS THAT BY TARGETING ONE FUNDAMENTAL AGING PROCESS, IT MAY BE FEASIBLE TO IMPACT SEVERAL OR ALL OTHERS GIVEN ITS INTERDEPENDENCE. INDEED, PATHOLOGIC ACCUMULATION OF SENESCENT CELLS IS IMPLICATED IN CHRONIC DISEASES AND AGE-ASSOCIATED MORBIDITIES, SUGGESTING THAT SENESCENT CELLS ARE A GOOD TARGET FOR WHOLE-BODY AGING INTERVENTION. PRECLINICAL STUDIES USING SENOLYTICS, AGENTS THAT SELECTIVELY ELIMINATE SENESCENT CELLS, AND SENOMORPHICS, AGENTS THAT INHIBIT PRODUCTION OR RELEASE OF SENESCENCE-ASSOCIATED SECRETORY PHENOTYPE FACTORS, SHOW PROMISE IN SEVERAL AGING AND DISEASE PRECLINICAL MODELS. EARLY CLINICAL TRIALS USING A SENOLYTIC COMBINATION (DASATINIB AND QUERCETIN), AND OTHER SENOLYTICS INCLUDING FLAVONOID, FISETIN, AND BCL-XL INHIBITORS, ILLUSTRATE THE POTENTIAL OF SENOLYTICS TO ALLEVIATE AGE-RELATED DYSFUNCTION AND DISEASES INCLUDING WOUND HEALING. TRANSLATION INTO CLINICAL APPLICATIONS REQUIRES PARALLEL CLINICAL TRIALS ACROSS INSTITUTIONS TO VALIDATE SENOTHERAPEUTICS AS A VANGUARD FOR DELAYING, PREVENTING, OR TREATING AGE-RELATED DISORDERS AND AESTHETIC AGING. 2022 11 865 31 CHRONIC ACRYLAMIDE EXPOSURE IN MALE MICE RESULTS IN ELEVATED DNA DAMAGE IN THE GERMLINE AND HERITABLE INDUCTION OF CYP2E1 IN THE TESTES. ACUTE ACRYLAMIDE EXPOSURE IN MALE RODENTS RESULTS IN REDUCED REPRODUCTIVE PERFORMANCE AND DOMINANT LETHALITY. HOWEVER, THE REPRODUCTIVE EFFECTS OF LOW DOSE CHRONIC EXPOSURE, WHICH BETTER REFLECTS THE NATURE OF HUMAN EXPOSURE, REMAIN FAR LESS CERTAIN. HUMAN DIETARY CONSUMPTION OF ACRYLAMIDE HAS BEEN ESTIMATED AT AN AVERAGE OF 1-4 MICROG/KG BW/DAY. IN ORDER TO SIMULATE THIS EXPOSURE, MALE MICE WERE PROVIDED WITH ACRYLAMIDE (1 MICROG/ML) VIA THEIR DRINKING WATER CONTINUOUSLY FOR SIX MONTHS, WHICH WAS EQUIVALENT TO A HUMAN DOSE OF 10.5 MICROG/ KG BW/DAY. THIS EXPOSURE REGIME INCREASED DNA DAMAGE IN THE SPERMATOZOA, WITHOUT AFFECTING A CONCOMITANT REDUCTION IN OVERALL FERTILITY. THE OFFSPRING OF ACRYLAMIDE TREATED MICE DID NOT HAVE AN INCREASED INCIDENCE OF SKIN PAPILLOMA FORMATION FOLLOWING THE TWO-STAGE TUMOR INDUCTION PROTOCOL. HOWEVER, THE MALE OFFSPRING OF ACRYLAMIDE TREATED FATHERS HAD SIGNIFICANTLY INCREASED LEVELS OF DNA DAMAGE IN THEIR SPERMATOZOA, DESPITE HAVING HAD NO DIRECT TOXICANT EXPOSURE. IT WAS ALSO FOUND THAT THE F0, AND MOST CRUCIALLY, F1 MICE HAD INCREASED LEVELS OF CYP2E1 PROTEIN IN THEIR GERM CELLS. THIS IS SIGNIFICANT AS CYP2E1 IS THE SOLE ENZYME RESPONSIBLE FOR CONVERSION OF ACRYLAMIDE TO ITS HARMFUL METABOLITE GLYCIDAMIDE. THIS ALTERED EXPRESSION MAY BE DUE TO EPIGENETIC ALTERATIONS. ADDITIONALLY, THE F0 AND F1 MICE HAD INCREASED OXIDATIVE ADDUCTS IN THE DNA OF THEIR GERM CELLS, WHICH WAS HYPOTHESIZED TO ARISE AS A BYPRODUCT OF INCREASED CYP2E1 ACTIVITY. THEREFORE, CHRONIC PATERNAL ACRYLAMIDE EXPOSURE IN MICE HAS CONSEQUENCES FOR THEIR OFFSPRING, AND RAISES CONCERNS FOR THE EFFECTS OF ACRYLAMIDE EXPOSURE IN THE HUMAN POPULATION AND THE ACCUMULATED EFFECTS WITH MULTIPLE GENERATIONS OF EXPOSURE. 2016 12 3487 44 IDENTIFICATION OF DIFFERENTIALLY METHYLATED SITES WITH WEAK METHYLATION EFFECTS. DEOXYRIBONUCLEIC ACID (DNA) METHYLATION IS AN EPIGENETIC ALTERATION CRUCIAL FOR REGULATING STRESS RESPONSES. IDENTIFYING LARGE-SCALE DNA METHYLATION AT SINGLE NUCLEOTIDE RESOLUTION IS MADE POSSIBLE BY WHOLE GENOME BISULFITE SEQUENCING. AN ESSENTIAL TASK FOLLOWING THE GENERATION OF BISULFITE SEQUENCING DATA IS TO DETECT DIFFERENTIALLY METHYLATED CYTOSINES (DMCS) AMONG TREATMENTS. MOST STATISTICAL METHODS FOR DMC DETECTION DO NOT CONSIDER THE DEPENDENCY OF METHYLATION PATTERNS ACROSS THE GENOME, THUS POSSIBLY INFLATING TYPE I ERROR. FURTHERMORE, SMALL SAMPLE SIZES AND WEAK METHYLATION EFFECTS AMONG DIFFERENT PHENOTYPE CATEGORIES MAKE IT DIFFICULT FOR THESE STATISTICAL METHODS TO ACCURATELY DETECT DMCS. TO ADDRESS THESE ISSUES, THE WAVELET-BASED FUNCTIONAL MIXED MODEL (WFMM) WAS INTRODUCED TO DETECT DMCS. TO FURTHER EXAMINE THE PERFORMANCE OF WFMM IN DETECTING WEAK DIFFERENTIAL METHYLATION EVENTS, WE USED BOTH SIMULATED AND EMPIRICAL DATA AND COMPARE WFMM PERFORMANCE TO A POPULAR DMC DETECTION TOOL METHYLKIT. ANALYSES OF SIMULATED DATA THAT REPLICATED THE EFFECTS OF THE HERBICIDE GLYPHOSATE ON DNA METHYLATION IN ARABIDOPSIS THALIANA SHOW THAT WFMM RESULTS IN HIGHER SENSITIVITY AND SPECIFICITY IN DETECTING DMCS COMPARED TO METHYLKIT, ESPECIALLY WHEN THE METHYLATION DIFFERENCES AMONG PHENOTYPE GROUPS ARE SMALL. MOREOVER, THE PERFORMANCE OF WFMM IS ROBUST WITH RESPECT TO SMALL SAMPLE SIZES, MAKING IT PARTICULARLY ATTRACTIVE CONSIDERING THE CURRENT HIGH COSTS OF BISULFITE SEQUENCING. ANALYSIS OF EMPIRICAL ARABIDOPSIS THALIANA DATA UNDER VARYING GLYPHOSATE DOSAGES, AND THE ANALYSIS OF MONOZYGOTIC (MZ) TWINS WHO HAVE DIFFERENT PAIN SENSITIVITIES-BOTH DATASETS HAVE WEAK METHYLATION EFFECTS OF <1%-SHOW THAT WFMM CAN IDENTIFY MORE RELEVANT DMCS RELATED TO THE PHENOTYPE OF INTEREST THAN METHYLKIT. DIFFERENTIALLY METHYLATED REGIONS (DMRS) ARE GENOMIC REGIONS WITH DIFFERENT DNA METHYLATION STATUS ACROSS BIOLOGICAL SAMPLES. DMRS AND DMCS ARE ESSENTIALLY THE SAME CONCEPTS, WITH THE ONLY DIFFERENCE BEING HOW METHYLATION INFORMATION ACROSS THE GENOME IS SUMMARIZED. IF METHYLATION LEVELS ARE DETERMINED BY GROUPING NEIGHBORING CYTOSINE SITES, THEN THEY ARE DMRS; IF METHYLATION LEVELS ARE CALCULATED BASED ON SINGLE CYTOSINES, THEY ARE DMCS. 2018 13 490 45 ASSESSING THE IMPACT OF ARSENIC METABOLISM EFFICIENCY ON DNA METHYLATION USING MENDELIAN RANDOMIZATION. BACKGROUND: ARSENIC EXPOSURE AFFECTS >100 MILLION PEOPLE GLOBALLY AND INCREASES RISK FOR CHRONIC DISEASES. ONE POSSIBLE TOXICITY MECHANISM IS EPIGENETIC MODIFICATION. PREVIOUS EPIGENOME-WIDE ASSOCIATION STUDIES (EWAS) HAVE IDENTIFIED ASSOCIATIONS BETWEEN ARSENIC EXPOSURE AND CPG-SPECIFIC DNA METHYLATION. TO PROVIDE ADDITIONAL EVIDENCE THAT OBSERVED ASSOCIATIONS REPRESENT CAUSAL RELATIONSHIPS, WE EXAMINE THE ASSOCIATION BETWEEN GENETIC DETERMINANTS OF ARSENIC METABOLISM EFFICIENCY (PERCENT DIMETHYLARSINIC ACID, DMA%, IN URINE) AND DNA METHYLATION AMONG INDIVIDUALS FROM THE HEALTH EFFECTS OF ARSENIC LONGITUDINAL STUDY (N = 379) AND BANGLADESH VITAMIN E AND SELENIUM TRIAL (N = 393). METHODS: WE USED MULTIVARIATE LINEAR MODELS TO ASSESS THE ASSOCIATION OF METHYLATION AT 221 ARSENIC-ASSOCIATED CPGS WITH DMA% AND MEASURES OF GENETICALLY PREDICTED DMA% DERIVED FROM THREE SNPS (RS9527, RS11191527, AND RS61735836). WE ALSO CONDUCTED TWO-SAMPLE MENDELIAN RANDOMIZATION ANALYSES TO ESTIMATE THE ASSOCIATION BETWEEN ARSENIC METABOLISM EFFICIENCY AND CPG METHYLATION. RESULTS: AMONG THE ASSOCIATIONS BETWEEN DMA% AND METHYLATION AT EACH OF 221 CPGS, 64% WERE DIRECTIONALLY CONSISTENT WITH ASSOCIATIONS OBSERVED BETWEEN ARSENIC EXPOSURE AND THE 221 CPGS FROM A PRIOR EWAS. SIMILARLY, AMONG THE ASSOCIATIONS BETWEEN GENETICALLY PREDICTED DMA% AND EACH CPG, 62% WERE DIRECTIONALLY CONSISTENT WITH THE PRIOR EWAS RESULTS. TWO-SAMPLE MENDELIAN RANDOMIZATION ANALYSES PRODUCED SIMILAR CONCLUSIONS. CONCLUSION: OUR FINDINGS SUPPORT THE HYPOTHESIS THAT ARSENIC EXPOSURE EFFECTS DNA METHYLATION AT SPECIFIC CPGS IN WHOLE BLOOD. OUR NOVEL APPROACH FOR ASSESSING THE IMPACT OF ARSENIC EXPOSURE ON DNA METHYLATION REQUIRES LARGER SAMPLES IN ORDER TO DRAW MORE ROBUST CONCLUSIONS FOR SPECIFIC CPG SITES. 2020 14 5960 36 TELOMERE LENGTH IN HEPATOCELLULAR CARCINOMA AND PAIRED ADJACENT NON-TUMOR TISSUES BY QUANTITATIVE PCR. TELOMERE SHORTENING LIMITS THE PROLIFERATIVE CAPACITY OF HUMAN CELLS, RESTRAINS THE REGENERATIVE CAPACITY OF ORGAN SYSTEMS DURING CHRONIC DISEASES AND AGING AND ALSO INDUCES CHROMOSOMAL INSTABILITY AS WELL AS INITIATION OF CANCER. PREVIOUS STUDIES DEMONSTRATED THAT TELOMERES ARE OFTEN SIGNIFICANTLY SHORTER IN TUMOR TISSUE, INCLUDING HEPATOCELLULAR CARCINOMA (HCC), COMPARED TO THE SURROUNDING TISSUE, BUT TELOMERE LENGTH IN HCC TISSUES WAS NOT CORRELATED WITH SEVERAL CLINICAL PARAMETERS, SUCH AS AGE, SEX, HBV OR HCV INFECTIONS AND TUMOR SIZE. IN THE PRESENT STUDY, THE TELOMERE LENGTH RATIO OF 36 PAIRED HCC, AND THEIR ADJACENT NON-TUMOR TISSUES WAS MEASURED BY QUANTITATIVE PCR (Q-PCR). THE MEAN TELOMERE LENGTHS (SD) FOR HCC AND ADJACENT NON-TUMOR TISSUES WERE 0.26 (0.10) AND 0.47 (0.20) RESPECTIVELY (T = 6.22, P < 0.0001). THERE WAS A LARGE DIFFERENCE IN THE DISTRIBUTION OF SUBJECTS BASED ON TELOMERE LENGTH IN TUMOR AND ADJACENT NON-TUMOR TISSUES. THE NUMBER OF TUMORS WITH TELOMERE LENGTH SHORTER THAN 0.50 WAS MUCH HIGHER THAN THAT OF ADJACENT NON-TUMOR TISSUES; MORE THAN 90% OF THE TISSUES WITH TELOMERE LENGTH > OR = 0.50 WERE ADJACENT NON-TUMOR TISSUES. THE CORRELATIONS BETWEEN TELOMERE LENGTH AND AFLATOXIN B1- AND POLYCYCLIC AROMATIC HYDROCARBON-DNA ADDUCTS LEVEL, P53 MUTATIONS AND P16 HYPERMETHYLATION STATUS WERE ALSO TESTED, BUT NO SIGNIFICANT ASSOCIATIONS WERE FOUND. THE RELATIONSHIP BETWEEN TELOMERE LENGTH SHORTENING, CHEMICAL CARCINOGEN EXPOSURE, AND GENETIC AND EPIGENETIC CHANGES IN HEPATOCARCINOGENESIS NEEDS FURTHER INVESTIGATION. 2007 15 2406 49 EPIGENETIC RESPONSES TO RHINOVIRUS EXPOSURE IN AIRWAY EPITHELIAL CELLS ARE CORRELATED WITH KEY TRANSCRIPTIONAL PATHWAYS IN CHRONIC RHINOSINUSITIS. BACKGROUND: VIRUSES MAY DRIVE IMMUNE MECHANISMS RESPONSIBLE FOR CHRONIC RHINOSINUSITIS WITH NASAL POLYPOSIS (CRSWNP), BUT LITTLE IS KNOWN ABOUT THE UNDERLYING MOLECULAR MECHANISMS. OBJECTIVES: TO IDENTIFY EPIGENETIC AND TRANSCRIPTIONAL RESPONSES TO A COMMON UPPER RESPIRATORY PATHOGEN, RHINOVIRUS (RV), THAT ARE SPECIFIC TO PATIENTS WITH CRSWNP USING A PRIMARY SINONASAL EPITHELIAL CELL CULTURE MODEL. METHODS: AIRWAY EPITHELIAL CELLS WERE COLLECTED AT SURGERY FROM PATIENTS WITH CRSWNP (CASES) AND FROM CONTROLS WITHOUT SINUS DISEASE, CULTURED, AND THEN EXPOSED TO RV OR VEHICLE FOR 48 H. DIFFERENTIAL GENE EXPRESSION AND DNA METHYLATION (DNAM) BETWEEN CASES AND CONTROLS IN RESPONSE TO RV WERE DETERMINED USING LINEAR MIXED MODELS. WEIGHTED GENE CO-EXPRESSION ANALYSIS (WGCNA) WAS USED TO IDENTIFY (A) CO-REGULATED GENE EXPRESSION AND DNAM SIGNATURES, AND (B) GENES, PATHWAYS, AND REGULATORY MECHANISMS SPECIFIC TO CRSWNP. RESULTS: WE IDENTIFIED 5585 DIFFERENTIAL TRANSCRIPTIONAL AND 261 DNAM RESPONSES (FDR <0.10) TO RV BETWEEN CRSWNP CASES AND CONTROLS. THESE DIFFERENTIAL RESPONSES FORMED THREE CO-EXPRESSION/CO-METHYLATION MODULES THAT WERE RELATED TO CRSWNP AND THREE THAT WERE RELATED TO RV (BONFERRONI CORRECTED P < .01). MOST (95%) OF THE DIFFERENTIALLY METHYLATED CPGS (DMCS) WERE IN MODULES RELATED TO CRSWNP, WHEREAS THE DIFFERENTIALLY EXPRESSED GENES (DEGS) WERE MORE EQUALLY DISTRIBUTED BETWEEN THE CRSWNP- AND RV-RELATED MODULES. GENES IN THE CRSWNP-RELATED MODULES WERE ENRICHED IN KNOWN CRS AND/OR VIRAL RESPONSE IMMUNE PATHWAYS. CONCLUSION: RV ACTIVATES SPECIFIC EPIGENETIC PROGRAMS AND CORRELATED TRANSCRIPTIONAL NETWORKS IN THE SINONASAL EPITHELIUM OF INDIVIDUALS WITH CRSWNP. THESE NOVEL OBSERVATIONS SUGGEST EPIGENETIC SIGNATURES SPECIFIC TO PATIENTS WITH CRSWNP MODULATE RESPONSE TO VIRAL PATHOGENS AT THE MUCOSAL ENVIRONMENTAL INTERFACE. DETERMINING HOW VIRAL RESPONSE PATHWAYS ARE INVOLVED IN EPITHELIAL INFLAMMATION IN CRSWNP COULD LEAD TO THERAPEUTIC TARGETS FOR THIS BURDENSOME AIRWAY DISORDER. 2023 16 4903 27 P16 PROMOTER HYPERMETHYLATION IN HUMAN HEPATOCELLULAR CARCINOMA WITH OR WITHOUT HEPATITIS VIRUS INFECTION. BACKGROUND: EPIGENETIC ALTERATION THROUGH METHYLATION IS ONE OF THE MOST IMPORTANT STEPS IN CARCINOGENESIS. HOWEVER, THE RELATION BETWEEN HEPATITIS VIRUS INFECTION AND EPIGENETIC ALTERATIONS IS POORLY UNDERSTOOD. METHODS: SIXTEEN PATIENTS WITHOUT HEPATITIS B VIRUS (HBV) AND HEPATITIS C VIRUS (HCV) AND 35 PATIENTS WITH HBV OR HCV WHO UNDERWENT LIVER RESECTION FOR HEPATOCELLULAR CARCINOMA (HCC) WERE STUDIED. MUTATION OF P53 WAS DETECTED BY DIRECT SEQUENCING. METHYLATION STATUS OF P16 WAS EVALUATED IN TUMOR AND NONCANCEROUS LIVER TISSUES BY METHYLATION-SPECIFIC POLYMERASE CHAIN REACTION. RESULTS: IN HCC WITHOUT HBV AND HCV, P53 MUTATIONS WERE DETECTED IN 5 (31%) OF 16 HCCS. METHYLATION OF P16 PROMOTER WAS DETECTED IN 2 (25%) OF 8 MODERATELY DIFFERENTIATED HCCS, 6 (75%) OF 8 POORLY DIFFERENTIATED HCCS, AND NONE OF 16 NONCANCEROUS TISSUE SPECIMENS. IN HCC WITH HBV OR HCV, P53 MUTATIONS WERE DETECTED IN 8 (23%) OF 35 HCCS. METHYLATION OF P16 PROMOTER WAS DETECTED IN 2 (100%) OF 2 WELL-DIFFERENTIATED HCCS, 13 (76%) OF 17 MODERATELY DIFFERENTIATED HCCS, 12 (75%) OF 16 POORLY DIFFERENTIATED HCCS, AND 9 (26%) OF 35 NONCANCEROUS LIVER TISSUE SPECIMENS. CONCLUSIONS: OUR RESULTS SUGGEST THAT HEPATITIS VIRUSES MIGHT INDUCE METHYLATION OF P16 PROMOTER IN LIVER WITH CHRONIC INFLAMMATION, BEFORE APPEARANCE OF HCC. 2004 17 5057 25 PHENOBARBITAL MECHANISTIC DATA AND RISK ASSESSMENT: ENZYME INDUCTION, ENHANCED CELL PROLIFERATION, AND TUMOR PROMOTION. CHRONIC EXPOSURE TO HIGH DOSES OF PHENOBARBITAL (PB) CAUSES HEPATOCELLULAR ADENOMAS IN BOTH MICE AND RATS AND HEPATOCELLULAR CARCINOMAS IN SOME STRAINS OF MICE. LONG-TERM PB THERAPY HAS NOT BEEN FOUND TO CAUSE HUMAN TUMORS. PB IS NOT DNA REACTIVE, AND MOST GENOTOXICITY TESTS HAVE YIELDED NEGATIVE RESULTS. PB HAS BEEN EXTENSIVELY STUDIED AS AN EPIGENETIC, RODENT LIVER TUMOR PROMOTER. AT EXPOSURES CAUSING RODENT LIVER TUMORS, PB HAS MEASURABLE EFFECTS ON HEPATOCYTES: PB INHIBITS CELL-TO-CELL COMMUNICATION; PB INDUCES ENZYMES, INCLUDING P450 CYTOCHROMES; PB STIMULATES PROLIFERATION AND INHIBITS APOPTOSIS OF HEPATOCYTES IN NEOPLASTIC FOCI. THRESHOLD EXPOSURES FOR SOME OF THESE ENDPOINTS COINCIDE WITH THE THRESHOLD EXPOSURE FOR TUMORIGENESIS. 1996 18 1555 50 DNA METHYLATION MAPPING IDENTIFIES GENE REGULATORY EFFECTS IN PATIENTS WITH SYSTEMIC LUPUS ERYTHEMATOSUS. OBJECTIVES: SYSTEMIC LUPUS ERYTHEMATOSUS (SLE) IS A CHRONIC AUTOIMMUNE CONDITION WITH HETEROGENEOUS PRESENTATION AND COMPLEX AETIOLOGY WHERE DNA METHYLATION CHANGES ARE EMERGING AS A CONTRIBUTING FACTOR. IN ORDER TO DISCOVER NOVEL EPIGENETIC ASSOCIATIONS AND INVESTIGATE THEIR RELATIONSHIP TO GENETIC RISK FOR SLE, WE ANALYSED DNA METHYLATION PROFILES IN A LARGE COLLECTION OF PATIENTS WITH SLE AND HEALTHY INDIVIDUALS. METHODS: DNA EXTRACTED FROM BLOOD FROM 548 PATIENTS WITH SLE AND 587 HEALTHY CONTROLS WERE ANALYSED ON THE ILLUMINA HUMANMETHYLATION 450 K BEADCHIP, WHICH TARGETS 485 000 CPG SITES ACROSS THE GENOME. SINGLE NUCLEOTIDE POLYMORPHISM (SNP) GENOTYPE DATA FOR 196 524 SNPS ON THE ILLUMINA IMMUNOCHIP FROM THE SAME INDIVIDUALS WERE UTILISED FOR METHYLATION QUANTITATIVE TRAIT LOCI (CIS-MEQTLS) ANALYSES. RESULTS: WE IDENTIFIED AND REPLICATED DIFFERENTIALLY METHYLATED CPGS (DMCS) IN SLE AT 7245 CPG SITES IN THE GENOME. THE LARGEST METHYLATION DIFFERENCES WERE OBSERVED AT TYPE I INTERFERON-REGULATED GENES WHICH EXHIBITED DECREASED METHYLATION IN SLE. WE MAPPED CIS-MEQTLS AND IDENTIFIED GENETIC REGULATION OF METHYLATION LEVELS AT 466 OF THE DMCS IN SLE. THE MEQTLS FOR DMCS IN SLE WERE ENRICHED FOR GENETIC ASSOCIATION TO SLE, AND INCLUDED SEVEN SLE GENOME-WIDE ASSOCIATION STUDY (GWAS) LOCI: PTPRC (CD45), MHC-CLASS III, UHRF1BP1, IRF5, IRF7, IKZF3 AND UBE2L3. IN ADDITION, WE OBSERVED ASSOCIATION BETWEEN GENOTYPE AND VARIANCE OF METHYLATION AT 20 DMCS IN SLE, INCLUDING AT THE HLA-DQB2 LOCUS. CONCLUSIONS: OUR RESULTS SUGGEST THAT SEVERAL OF THE GENETIC RISK VARIANTS FOR SLE MAY EXERT THEIR INFLUENCE ON THE PHENOTYPE THROUGH ALTERATION OF DNA METHYLATION LEVELS AT REGULATORY REGIONS OF TARGET GENES. 2018 19 4905 40 P16INK4A HYPERMETHYLATION IS ASSOCIATED WITH HEPATITIS VIRUS INFECTION, AGE, AND GENDER IN HEPATOCELLULAR CARCINOMA. PURPOSE: THE TUMOR SUPPRESSOR GENE P16INK4A IS MAINLY INACTIVATED BY AN EPIGENETIC CHANGE INVOLVING PROMOTER HYPERMETHYLATION IN HEPATOCARCINOGENESIS. THE POSSIBLE CLINICAL IMPACT OF P16INK4A METHYLATION AND THE POTENTIAL RISK FACTORS FOR THIS EPIGENETIC ALTERATION HAVE NOT BEEN THOROUGHLY INVESTIGATED. EXPERIMENTAL DESIGN: WE STUDIED THE METHYLATION STATUS AND MRNA AND PROTEIN EXPRESSION OF P16INK4A IN 50 HEPATOCELLULAR CARCINOMAS AND CORRESPONDING NONNEOPLASTIC LIVER LESIONS USING METHYLATION-SPECIFIC PCR, REVERSE TRANSCRIPTION-PCR, AND IMMUNOHISTOCHEMICAL TECHNIQUES. RESULTS: P16INK4A HYPERMETHYLATION WAS OBSERVED IN 58% (29 OF 50) OF THE HEPATOCELLULAR CARCINOMAS AND 16% (6 OF 38) OF THE CORRESPONDING CHRONIC HEPATITIS AND CIRRHOSIS TISSUE SAMPLES. P16INK4A METHYLATION WAS SIGNIFICANTLY ASSOCIATED WITH MRNA AND PROTEIN EXPRESSION (P <0.001 AND P=0.003, RESPECTIVELY). ALL OF THE P16INK4A-METHYLATED TUMORS WERE POSITIVE FOR HEPATITIS B VIRUS OR HEPATITIS C VIRUS MARKERS, BUT NONE OF THE VIRUS-NEGATIVE TUMORS EXHIBITED P16INK4A METHYLATION (P=0.006). THE FREQUENCY OF P16INK4A HYPERMETHYLATION TENDED TO BE HIGHER IN HEPATITIS C VIRUS-RELATED TUMORS (23 OF 32, 72%) THAN IN HEPATITIS B VIRUS-RELATED TUMORS (6 OF 13, 46%; P=0.1). ABERRANT METHYLATION OF P16INK4A WAS ALSO RELATED SIGNIFICANTLY TO INCREASING AGE, FEMALE GENDER, AND NORMAL LEVELS OF SERUM PIVKA-II (P=0.02, 0.04, AND 0.04, RESPECTIVELY). NO STATISTICALLY SIGNIFICANT DIFFERENCE IN SURVIVAL WAS OBSERVED BETWEEN PATIENTS WITH P16INK4A HYPERMETHYLATION AND THOSE WITHOUT. CONCLUSIONS: OUR OBSERVATIONS SUGGEST THAT P16INK4A HYPERMETHYLATION MAY CONTRIBUTE TO HEPATOCARCINOGENESIS FROM AN EARLY STAGE AND THAT MULTIPLE RISK FACTORS, SUCH AS VIRAL INFECTIONS, AGE, AND GENDER, MAY BE ASSOCIATED WITH P16INK4A HYPERMETHYLATION IN HEPATOCARCINOGENESIS. 2004 20 1506 36 DNA METHYLATION AND IMMUNE CELL MARKERS DEMONSTRATE EVIDENCE OF ACCELERATED AGING IN PATIENTS WITH CHRONIC HEPATITIS B VIRUS OR HEPATITIS C VIRUS, WITH OR WITHOUT HUMAN IMMUNODEFICIENCT VIRUS CO-INFECTION. BACKGROUND: SEVERAL CHRONIC DISEASES ACCELERATE BIOLOGICAL AGING. WE INVESTIGATED AGE ACCELERATION AND THE ASSOCIATION BETWEEN PERIPHERAL BLOOD DNA METHYLATION (DNAM) AND IMMUNE CELL MARKERS IN PATIENTS CHRONICALLY INFECTED WITH THE HEPATITIS B VIRUS (HBV) OR THE HEPATITIS C VIRUS (HCV) WITH AND WITHOUT HUMAN IMMUNODEFICIENCY VIRUS (HIV) CO-INFECTION. METHODS: AGE ACCELERATION WAS MEASURED AS THE DIFFERENCE BETWEEN EPIGENETIC AGE (HORVATH CLOCK) AND CHRONOLOGICAL AGE. THE IMMUNE MARKER MODEL OF AGE ACCELERATION WAS DEVELOPED USING ELASTIC NET REGRESSION TO SELECT BOTH THE IMMUNE MARKERS AND THEIR ASSOCIATED WEIGHTS IN THE FINAL LINEAR MODEL. RESULTS: PATIENTS WITH CHRONIC HBV (N = 51) HAD A SIGNIFICANTLY HIGHER MEDIAN EPIGENETIC AGE COMPARED TO CHRONOLOGICAL AGE (AGE ACCELERATED) (P < .001). IN PATIENTS WITH CHRONIC HCV INFECTION (N = 63), AGE ACCELERATION WAS ASSOCIATED WITH LIVER FIBROSIS AS ASSESSED BY HISTOLOGY (P < .05), OR PRESENCE OF HIV CO-INFECTION (P < .05), BUT NOT HCV MONO-INFECTION. AGE ACCELERATION DEFINED BY IMMUNE MARKERS WAS CONCORDANT WITH AGE ACCELERATION BY DNA METHYLATION (CORRELATION COEFFICIENT = .59 IN HBV; P = .0025). ONE-YEAR TREATMENT OF HBV PATIENTS WITH NUCLEOSIDE THERAPY WAS ASSOCIATED WITH A MODEST REDUCTION IN AGE ACCELERATION, AS MEASURED USING THE IMMUNE MARKER MODEL (-.65 YEARS, P = .018). CONCLUSION: OUR FINDINGS SUGGEST THAT PATIENTS WITH CHRONIC VIRAL HEPATITIS HAVE ACCELERATED EPIGENETIC AGING, THAT IMMUNE MARKERS DEFINE BIOLOGICAL AGE, AND HAVE THE POTENTIAL TO ASSESS THE EFFECTS OF THERAPEUTIC INTERVENTION ON AGE ACCELERATION. 2021