1 5868 127 SUPPRESSIVE EFFECTS OF METFORMIN ON T-HELPER 1-RELATED CHEMOKINES EXPRESSION IN THE HUMAN MONOCYTIC LEUKEMIA CELL LINE THP-1. PURPOSE OF THE STUDY: TYPE 1 AND TYPE 2 DIABETES MELLITUS (DM) ARE CHRONIC T-CELL-MEDIATED INFLAMMATORY DISEASES. METFORMIN IS A WIDELY USED DRUG FOR TYPE 2 DM THAT REDUCES THE NEED FOR INSULIN IN TYPE 1 DM. HOWEVER, WHETHER METFORMIN HAS AN ANTI-INFLAMMATORY EFFECT FOR TREATING DM IS UNKNOWN. WE INVESTIGATED THE ANTI-INFLAMMATORY MECHANISM OF METFORMIN IN THE HUMAN MONOCYTIC LEUKEMIA CELL LINE THP-1. MATERIALS AND METHODS: THE HUMAN MONOCYTIC LEUKEMIA CELL LINE THP-1 WAS PRETREATED WITH METFORMIN AND STIMULATED WITH LIPOPOLYSACCHARIDE (LPS). THE PRODUCTION OF T-HELPER (TH)-1-RELATED CHEMOKINES INCLUDING INTERFERON-GAMMA-INDUCED PROTEIN-10 (IP-10) AND MONOCYTE CHEMOATTRACTANT PROTEIN-1 (MCP-1), TH2-RELATED CHEMOKINE MACROPHAGE-DERIVED CHEMOKINE, AND THE PROINFLAMMATORY CHEMOKINE TUMOR NECROSIS FACTOR-ALPHA WAS MEASURED USING ENZYME-LINKED IMMUNOSORBENT ASSAY. INTRACELLULAR SIGNALING PATHWAYS WERE INVESTIGATED USING WESTERN BLOT ANALYSIS AND CHROMATIN IMMUNOPRECIPITATION ASSAY. RESULTS: METFORMIN SUPPRESSED LPS-INDUCED IP-10 AND MCP-1 PRODUCTION AS WELL AS LPS-INDUCED PHOSPHORYLATION OF C-JUN N-TERMINAL KINASE (JNK), P38, EXTRACELLULAR SIGNAL-REGULATED KINASE (ERK), AND NUCLEAR FACTOR-KAPPA B (NF-KAPPAB). MOREOVER, METFORMIN SUPPRESSED LPS-INDUCED ACETYLATION OF HISTONES H3 AND H4 AT THE IP-10 PROMOTER. CONCLUSIONS: METFORMIN SUPPRESSED THE PRODUCTION OF TH1-RELATED CHEMOKINES IP-10 AND MCP-1 IN THP-1 CELLS. SUPPRESSIVE EFFECTS OF METFORMIN ON IP-10 PRODUCTION MIGHT BE ATTRIBUTED AT LEAST PARTIALLY TO THE JNK, P38, ERK, AND NF-KAPPAB PATHWAYS AS WELL AS TO EPIGENETIC REGULATION THROUGH THE ACETYLATION OF HISTONES H3 AND H4. THESE RESULTS INDICATED THE THERAPEUTIC ANTI-INFLAMMATORY POTENTIAL OF METFORMIN. 2018 2 4211 36 METFORMIN FOR CARDIOVASCULAR PROTECTION, INFLAMMATORY BOWEL DISEASE, OSTEOPOROSIS, PERIODONTITIS, POLYCYSTIC OVARIAN SYNDROME, NEURODEGENERATION, CANCER, INFLAMMATION AND SENESCENCE: WHAT IS NEXT? DIABETES IS ACCOMPANIED BY SEVERAL COMPLICATIONS. HIGHER PREVALENCE OF CANCERS, CARDIOVASCULAR DISEASES, CHRONIC KIDNEY DISEASE (CKD), OBESITY, OSTEOPOROSIS, AND NEURODEGENERATIVE DISEASES HAS BEEN REPORTED AMONG PATIENTS WITH DIABETES. METFORMIN IS THE OLDEST ORAL ANTIDIABETIC DRUG AND CAN IMPROVE COEXISTING COMPLICATIONS OF DIABETES. CLINICAL TRIALS AND OBSERVATIONAL STUDIES UNCOVERED THAT METFORMIN CAN REMARKABLY PREVENT OR ALLEVIATE CARDIOVASCULAR DISEASES, OBESITY, POLYCYSTIC OVARIAN SYNDROME (PCOS), OSTEOPOROSIS, CANCER, PERIODONTITIS, NEURONAL DAMAGE AND NEURODEGENERATIVE DISEASES, INFLAMMATION, INFLAMMATORY BOWEL DISEASE (IBD), TUBERCULOSIS, AND COVID-19. IN ADDITION, METFORMIN HAS BEEN PROPOSED AS AN ANTIAGING AGENT. NUMEROUS MECHANISMS WERE SHOWN TO BE INVOLVED IN THE PROTECTIVE EFFECTS OF METFORMIN. METFORMIN ACTIVATES THE LKB1/AMPK PATHWAY TO INTERACT WITH SEVERAL INTRACELLULAR SIGNALING PATHWAYS AND MOLECULAR MECHANISMS. THE DRUG MODIFIES THE BIOLOGIC FUNCTION OF NF-KAPPAB, PI3K/AKT/MTOR, SIRT1/PGC-1ALPHA, NLRP3, ERK, P38 MAPK, WNT/BETA-CATENIN, NRF2, JNK, AND OTHER MAJOR MOLECULES IN THE INTRACELLULAR SIGNALING NETWORK. IT ALSO REGULATES THE EXPRESSION OF NONCODING RNAS. THEREBY, METFORMIN CAN REGULATE METABOLISM, GROWTH, PROLIFERATION, INFLAMMATION, TUMORIGENESIS, AND SENESCENCE. ADDITIONALLY, METFORMIN MODULATES IMMUNE RESPONSE, AUTOPHAGY, MITOPHAGY, ENDOPLASMIC RETICULUM (ER) STRESS, AND APOPTOSIS AND EXERTS EPIGENETIC EFFECTS. FURTHERMORE, METFORMIN PROTECTS AGAINST OXIDATIVE STRESS AND GENOMIC INSTABILITY, PRESERVES TELOMERE LENGTH, AND PREVENTS STEM CELL EXHAUSTION. IN THIS REVIEW, THE PROTECTIVE EFFECTS OF METFORMIN ON EACH DISEASE WILL BE DISCUSSED USING THE RESULTS OF RECENT META-ANALYSES, CLINICAL TRIALS, AND OBSERVATIONAL STUDIES. THEREAFTER, IT WILL BE METICULOUSLY EXPLAINED HOW METFORMIN REPROGRAMS INTRACELLULAR SIGNALING PATHWAYS AND ALTERS MOLECULAR AND CELLULAR INTERACTIONS TO MODIFY THE CLINICAL PRESENTATIONS OF SEVERAL DISEASES. 2021 3 2732 34 EXPLORING THE EPIGENETIC REGULATED MODULATION OF FIBROBLAST GROWTH FACTOR 21 INVOLVEMENT IN HIGH-FAT DIET ASSOCIATED PARKINSON'S DISEASE IN RATS. IMBALANCE IN BRAIN GLUCOSE METABOLISM AND EPIGENETIC MODULATION DURING THE DISEASE COURSE OF INSULIN RESISTANCE (IR) ASSOCIATED WITH PARKINSON'S DISEASE (PD) RISK REMAINS A PRIME CONCERN. FIBROBLAST GROWTH FACTOR 21 (FGF21), THE METABOLIC HORMONE, IMPROVES INSULIN SENSITIVITY AND ELICITS ANTI-DIABETIC PROPERTIES. CHRONIC STRESS DURING BRAIN IR MAY MODULATE THE FGF21 EXPRESSION AND ITS DYNAMIC RELEASE VIA EPIGENETIC MODIFICATIONS. METFORMIN REGULATES AND INCREASES THE EXPRESSION OF FGF21 WHICH CAN BE MODULATING IN OBESITY, DIABETES, AND IR. HENCE, THIS STUDY WAS DESIGNED TO INVESTIGATE THE FGF21 EXPRESSION MODULATION VIA AN EPIGENETIC MECHANISM IN PD AND WHETHER METFORMIN (MF), AN AUTOPHAGY ACTIVATOR, AND SODIUM BUTYRATE (NAB), A PAN HISTONE DEACETYLASE INHIBITOR, ALONE AND IN COMBINATION, EXERT ANY THERAPEUTIC BENEFIT IN PD PATHOLOGY EXACERBATED BY HIGH-FAT DIET (HFD). OUR RESULTS PORTRAY THAT THE COMBINATION TREATMENT WITH MF AND NAB POTENTIALLY ATTENUATED THE ABNORMAL LIPID PROFILE AND INCREASED MOTOR PERFORMANCE FOR THE RATS FED WITH HFD FOR 8 WEEKS FOLLOWED BY INTRASTRIATAL 6-HYDROXY DOPAMINE ADMINISTRATION. THE ENZYME-LINKED IMMUNOSORBENT ASSAY (ELISA) ESTIMATIONS OF C-REACTIVE PROTEIN, TUMOR NECROSIS FACTOR-ALPHA, INTERLEUKIN-1 BETA AND 6, AND FGF21 EXHIBITED EXTENSIVE DOWNREGULATION AFTER TREATMENT WITH THE COMBINATION. LASTLY, MRNA, WESTERN BLOT, HISTOLOGICAL, AND CRESYL VIOLET STAINING DEPICTED THAT THE COMBINATION TREATMENT CAN RESTORE DEGENERATED NEURONAL DENSITY AND INCREASE THE PROTEIN LEVEL COMPARED TO THE DISEASE GROUP. THE FINDINGS FROM THE STUDY EFFECTIVELY CONCLUDE THAT THE EPIGENETIC MECHANISM INVOLVED IN FGF21 MEDIATED FUNCTIONAL ABNORMALITIES IN IR-LINKED PD PATHOLOGY. HENCE, COMBINED TREATMENT WITH MF AND NAB MAY PROVE TO BE A NOVEL COMBINATION IN AMELIORATING IR-ASSOCIATED PD IN RATS, PROBABLY VIA THE UPREGULATION OF FGF21 EXPRESSION. 2023 4 6221 32 THE LANDSCAPE OF HISTONE MODIFICATIONS IN A HIGH-FAT DIET-INDUCED OBESE (DIO) MOUSE MODEL. TYPE 2 DIABETES (T2D) IS A MAJOR CHRONIC HEALTHCARE CONCERN WORLDWIDE. EMERGING EVIDENCE SUGGESTS THAT A HISTONE-MODIFICATION-MEDIATED EPIGENETIC MECHANISM UNDERLIES T2D. NEVERTHELESS, THE DYNAMICS OF HISTONE MARKS IN T2D HAVE NOT YET BEEN CAREFULLY ANALYZED. USING A MASS SPECTROMETRY-BASED LABEL-FREE AND CHEMICAL STABLE ISOTOPE LABELING QUANTITATIVE PROTEOMIC APPROACH, WE SYSTEMATICALLY PROFILED LIVER HISTONE POST-TRANSLATIONAL MODIFICATIONS (PTMS) IN A PREDIABETIC HIGH-FAT DIET-INDUCED OBESE (DIO) MOUSE MODEL. WE IDENTIFIED 170 HISTONE MARKS, 30 OF WHICH WERE PREVIOUSLY UNKNOWN. INTERESTINGLY, ABOUT 30% OF THE HISTONE MARKS IDENTIFIED IN DIO MOUSE LIVER BELONGED TO A SET OF RECENTLY REPORTED LYSINE ACYLATION MODIFICATIONS, INCLUDING PROPIONYLATION, BUTYRYLATION, MALONYLATION, AND SUCCINYLATION, SUGGESTING POSSIBLE ROLES OF THESE NEWLY IDENTIFIED HISTONE ACYLATIONS IN DIABETES AND OBESITY. THESE HISTONE MARKS WERE DETECTED WITHOUT PRIOR AFFINITY ENRICHMENT WITH AN ANTIBODY, DEMONSTRATING THAT THE HISTONE ACYLATION MARKS ARE PRESENT AT REASONABLY HIGH STOICHIOMETRY. FIFTEEN HISTONE MARKS DIFFERED IN ABUNDANCE IN DIO MOUSE LIVER COMPARED WITH LIVER FROM CHOW-FED MICE IN LABEL-FREE QUANTIFICATION, AND SIX HISTONE MARKS IN STABLE ISOTOPE LABELING QUANTIFICATION. ANALYSIS OF HEPATIC HISTONE MODIFICATIONS FROM METFORMIN-TREATED DIO MICE REVEALED THAT METFORMIN, A DRUG WIDELY USED FOR T2D, COULD REVERSE DIO-STIMULATED HISTONE H3K36ME2 IN PREDIABETES, SUGGESTING THAT THIS MARK IS LIKELY ASSOCIATED WITH T2D DEVELOPMENT. OUR STUDY THUS OFFERS A COMPREHENSIVE LANDSCAPE OF HISTONE MARKS IN A PREDIABETIC MOUSE MODEL, PROVIDES A RESOURCE FOR STUDYING EPIGENETIC FUNCTIONS OF HISTONE MODIFICATIONS IN OBESITY AND T2D, AND SUGGEST A NEW EPIGENETIC MECHANISM FOR THE PHYSIOLOGICAL FUNCTION OF METFORMIN. 2017 5 5915 26 TARGETING A PHOSPHO-STAT3-MIRNAS PATHWAY IMPROVES VESICULAR HEPATIC STEATOSIS IN AN IN VITRO AND IN VIVO MODEL. NON-ALCOHOLIC FATTY LIVER DISEASE (NAFLD) IS A LEADING CAUSE OF CHRONIC LIVER DISEASE. ALTHOUGH GENETIC PREDISPOSITION AND EPIGENETIC FACTORS CONTRIBUTE TO THE DEVELOPMENT OF NAFLD, OUR UNDERSTANDING OF THE MOLECULAR MECHANISM INVOLVED IN THE PATHOGENESIS OF THE DISEASE IS STILL EMERGING. HERE WE INVESTIGATED A POSSIBLE ROLE OF A MICRORNAS-STAT3 PATHWAY IN THE INDUCTION OF HEPATIC STEATOSIS. DIFFERENTIATED HEPARG CELLS TREATED WITH THE FATTY ACID SODIUM OLEATE (FATTY DHEPARG) RECAPITULATED FEATURES OF LIVER VESICULAR STEATOSIS AND ACTIVATED A CELL-AUTONOMOUS INFLAMMATORY RESPONSE, INDUCING STAT3-TYROSINE-PHOSPHORYLATION. WITH A GENOME-WIDE APPROACH (CHROMATIN IMMUNOPRECIPITATION SEQUENCING), MANY PHOSPHO-STAT3 BINDING SITES WERE IDENTIFIED IN FATTY DHEPARG CELLS AND SEVERAL STAT3 AND/OR NAFLD-REGULATED MICRORNAS SHOWED INCREASED EXPRESSION LEVELS, INCLUDING MIR-21. INNOVATIVE CARS (COHERENT ANTI-STOKES RAMAN SCATTERING) MICROSCOPY REVEALED THAT CHEMICAL INHIBITION OF STAT3 ACTIVITY DECREASED LIPID ACCUMULATION AND DEREGULATED STAT3-RESPONSIVE MICRORNAS, INCLUDING MIR-21, IN LIPID OVERLOADED DHEPARG CELLS. WE WERE ABLE TO SHOW IN VIVO THAT REDUCING PHOSPHO-STAT3-MIR-21 LEVELS IN C57/BL6 MICE LIVER, BY LONG-TERM TREATMENT WITH METFORMIN, PROTECTED MICE FROM AGING-DEPENDENT HEPATIC VESICULAR STEATOSIS. OUR RESULTS IDENTIFIED A MICRORNAS-PHOSPHOSTAT3 PATHWAY INVOLVED IN THE DEVELOPMENT OF HEPATIC STEATOSIS, WHICH MAY REPRESENT A MOLECULAR MARKER FOR BOTH DIAGNOSIS AND THERAPEUTIC TARGETING. 2018 6 5460 27 RESEARCH PERSPECTIVES ON THE REGULATION AND PHYSIOLOGICAL FUNCTIONS OF FGF21 AND ITS ASSOCIATION WITH NAFLD. FIBROBLAST GROWTH FACTOR 21 (FGF21) IS A METABOLIC HORMONE PRIMARILY SECRETED FROM THE LIVER AND FUNCTIONS IN MULTIPLE TISSUES. VARIOUS TRANSCRIPTION FACTORS INDUCE FGF21 EXPRESSION IN THE LIVER, WHICH INDICATES THAT FGF21 IS A MEDIATOR OF MULTIPLE ENVIRONMENTAL CUES. FGF21 ALTERS METABOLISM UNDER STARVATION CONDITIONS, PROTECTS THE BODY FROM ENERGY DEPLETION, AND EXTENDS LIFE SPAN. PHARMACOLOGICAL ADMINISTRATION OF FGF21 ALLEVIATES DYSLIPIDEMIA AND INDUCES WEIGHT LOSS IN OBESE ANIMALS. IN ADDITION TO THE WELL-STUDIED FUNCTIONS OF FG21, SEVERAL LINES OF RECENT EVIDENCE INDICATE A POSSIBLE LINK BETWEEN FGF21 AND NON-ALCOHOLIC FATTY LIVER DISEASE (NAFLD). HIGH SERUM LEVELS OF FGF21 ARE ASSOCIATED WITH NAFLD AND ITS RISK FACTORS, SUCH AS ENDOPLASMIC RETICULUM STRESS AND CHRONIC INFLAMMATION. IN ADDITION, FGF21 ALLEVIATES THE MAJOR RISK FACTORS OF NAFLD, INCLUDING OBESITY, DYSLIPIDEMIA, AND INSULIN INSENSITIVITY. THUS, FGF21 IS A POTENTIAL DRUG CANDIDATE FOR DISEASES, SUCH AS NAFLD, DYSLIPIDEMIA, AND TYPE 2 DIABETES. IN THIS REVIEW, THE RESEARCH PERSPECTIVES OF FGF21 AND THERAPEUTIC POTENCIES OF FGF21 AS A MODULATOR OF NAFLD ARE SUMMARIZED. 2015 7 5050 30 PHARMACOLOGICAL MIMICKING OF CALORIC RESTRICTION ELICITS EPIGENETIC REPROGRAMMING OF DIFFERENTIATED CELLS TO STEM-LIKE SELF-RENEWAL STATES. NETWORKS OF ONCOGENES AND TUMOR SUPPRESSOR GENES THAT CONTROL CANCER CELL PROLIFERATION ALSO REGULATE STEM CELL RENEWAL AND POSSIBLY STEM CELL AGING. BECAUSE (DE)DIFFERENTIATION PROCESSES MIGHT DICTATE TUMOR CELLS TO RETROGRESS TO A MORE STEM-LIKE STATE IN RESPONSE TO AGING-RELEVANT EPIGENETIC AND/OR ENVIRONMENTAL PLAYERS, WE RECENTLY ENVISIONED THAT CULTURED HUMAN CANCER CELLS MIGHT BE USED AS RELIABLE MODELS TO TEST THE ABILITY OF ANTIAGING INTERVENTIONS FOR PROMOTING THE INITIATION AND MAINTENANCE OF SELF-RENEWING DIVISIONS. CANCER CELL LINES NATURALLY BEARING UNDETECTABLE AMOUNTS OF STEM/PROGENITOR-LIKE CELL POPULATIONS WERE CONTINUOUSLY CULTURED IN THE PRESENCE OF THE CALORIC RESTRICTION MIMETIC METFORMIN FOR SEVERAL MONTHS. MICROARRAY TECHNOLOGY WAS EMPLOYED TO PROFILE EXPRESSION OF GENES RELATED TO THE IDENTIFICATION, GROWTH, AND DIFFERENTIATION OF STEM CELLS. DETECTION OF FUNCTIONALLY RELATED GENE GROUPS USING A PATHWAY ANALYSIS PACKAGE PROVIDED ANNOTATED GENETIC SIGNATURES OVER- AND UNDEREXPRESSED IN RESPONSE TO PHARMACOLOGICAL MIMICKING OF CALORIC RESTRICTION. BY FOLLOWING THIS METHODOLOGICAL APPROACH, WE RECENTLY OBTAINED DATA FITTING A MODEL IN WHICH, IN RESPONSE TO CHRONIC IMPAIRMENT OF CELLULAR BIOENERGETICS IMPOSED BY METFORMIN-INDUCED MITOCHONDRIAL UNCOUPLING AS ASSESSED BY THE PHOSPHORYLATION STATE OF CAMP-RESPONSE ELEMENT BINDING PROTEIN (CREB), TUMOR CELLS CAN RETROGRESS FROM A DIFFERENTIATED STATE TO A MORE CD44(+) STEM-LIKE PRIMITIVE STATE EPIGENETICALLY GOVERNED BY THE POLYCOMB-GROUP SUPPRESSOR BMI1-A CRUCIAL "STEMNESS" GENE INVOLVED IN THE EPIGENETIC MAINTENANCE OF ADULT STEM CELLS. THESE FINDINGS MIGHT PROVIDE A NOVEL MOLECULAR AVENUE TO INVESTIGATE IF ANTIAGING BENEFITS FROM CALORIC RESTRICTION MIMETICS MIGHT RELATE TO THEIR ABILITY TO EPIGENETICALLY REPROGRAM STEMNESS WHILE PROLONGING THE CAPACITY OF STEM-LIKE CELL STATES TO PROLIFERATE, DIFFERENTIATE, AND REPLACE MATURE CELLS IN ADULT AGING TISSUES. 2010 8 5479 36 RESVERATROL ATTENUATES CIGARETTE SMOKE EXTRACT INDUCED CELLULAR SENESCENCE IN HUMAN AIRWAY EPITHELIAL CELLS BY REGULATING THE MIR-34A/SIRT1/NF-KAPPAB PATHWAY. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS CHARACTERIZED BY ACCELERATED LUNG AGING. SMOKING IS THE CRITICAL RISK FACTOR FOR COPD. CELLULAR SENESCENCE OF AIRWAY EPITHELIAL CELLS IS THE CYTOLOGICAL BASIS OF ACCELERATED LUNG AGING IN COPD, AND THE REGULATION OF MICRORNAS (MIRNAS) IS THE CENTRAL EPIGENETIC MECHANISM OF CELLULAR SENESCENCE. RESVERATROL (RES) IS A POLYPHENOL WITH ANTI-AGING PROPERTIES. THIS STUDY INVESTIGATED WHETHER RES ATTENUATES CIGARETTE SMOKE EXTRACT (CSE)-INDUCED CELLULAR SENESCENCE IN HUMAN AIRWAY EPITHELIAL CELLS (BEAS-2B) THROUGH THE MIR-34A/SIRT1/NUCLEAR FACTOR-KAPPAB (NF-KAPPAB) PATHWAY. BEAS-2B CELLS WERE TREATED WITH RES, CSE AND TRANSFECTED WITH MIR-34A-5P MIMICS. CELLULAR SENESCENCE WAS EVALUATED BY SENESCENCE -RELATED BETA-GALACTOSIDASE (SA-BETA-GAL) STAINING AND EXPRESSION OF SENESCENCE-RELATED GENES (P16, P21, AND P53). THE EXPRESSIONS OF MIR-34A-5P, SIRT1, AND NF-KAPPAB P65 WERE EXAMINED USING QUANTITATIVE REAL TIME POLYMERASE CHAIN REACTION AND WESTERN BLOTTING. THE SENESCENCE-ASSOCIATED SECRETORY PHENOTYPE (SASP) CYTOKINES (IL-1BETA, IL-6, IL-8, TNF-ALPHA) WERE ASSESSED BY ENZYME-LINKED IMMUNOSORBENT ASSAY. THE BINDING BETWEEN MIR-34A-5P AND SIRT1 WAS CONFIRMED BY DUAL-LUCIFERASE REPORTER ASSAY. THE RESULTS SHOWED THAT CSE DOSE-DEPENDENTLY DECREASED CELL VIABILITY AND ELEVATED CELLULAR SENESCENCE, CHARACTERIZED BY INCREASED SA-BETA-GAL STAINING AND SENESCENCE-RELATED GENE EXPRESSIONS (P16, P21, AND P53). FURTHER, CSE DOSE-DEPENDENTLY INCREASED THE EXPRESSION OF MIR-34A-5P AND SASP CYTOKINES (IL-1BETA, IL-6, IL-8, TNF-ALPHA) IN BEAS-2B CELLS. PRETREATMENT WITH RES INHIBITED CSE-INDUCED CELLULAR SENESCENCE AND SECRETION OF SASP CYTOKINES (IL-1BETA, IL-6, IL-8, TNF-ALPHA) IN A DOSE-DEPENDENT MANNER. MOREOVER, RES REVERSED THE CSE-INDUCED DOWN-REGULATION OF SIRT1 AND UP-REGULATION OF MIR-34A-5P AND NF-KAPPAB P65. SIRT1 IS A TARGET OF MIR-34A-5P. OVEREXPRESSION OF MIR-34A-5P VIA TRANSFECTION WITH MIR-34A-5P MIMIC IN BEAS-2B CELLS ATTENUATED THE INHIBITORY EFFECT OF RES ON CELLULAR SENESCENCE, ACCOMPANIED BY REVERSING THE EXPRESSION OF SIRT1 AND NF-KAPPAB P65. IN CONCLUSION, RES ATTENUATED CSE-INDUCED CELLULAR SENESCENCE IN BEAS-2B CELLS BY REGULATING THE MIR-34A/SIRT1/NF-KAPPAB PATHWAY, WHICH MAY PROVIDE A NEW APPROACH FOR COPD TREATMENT. 2022 9 6456 35 THYMOSIN BETA4 PREVENTS OXIDATIVE STRESS, INFLAMMATION, AND FIBROSIS IN ETHANOL- AND LPS-INDUCED LIVER INJURY IN MICE. THYMOSIN BETA 4 (TBETA4), AN ACTIN-SEQUESTERING PROTEIN, IS INVOLVED IN TISSUE DEVELOPMENT AND REGENERATION. IT PREVENTS INFLAMMATION AND FIBROSIS IN SEVERAL TISSUES. WE INVESTIGATED THE ROLE OF TBETA4 IN CHRONIC ETHANOL- AND ACUTE LIPOPOLYSACCHARIDE- (LPS-) INDUCED MOUSE LIVER INJURY. C57BL/6 MICE WERE FED 5% ETHANOL IN LIQUID DIET FOR 4 WEEKS PLUS BINGE ETHANOL (5 G/KG, GAVAGE) WITH OR WITHOUT LPS (2 MG/KG, INTRAPERITONEAL) FOR 6 HOURS. TBETA4 (1 MG/KG, INTRAPERITONEAL) WAS ADMINISTERED FOR 1 WEEK. WE DEMONSTRATED THAT TBETA4 PREVENTED ETHANOL- AND LPS-MEDIATED INCREASE IN LIVER INJURY MARKERS AS WELL AS CHANGES IN LIVER PATHOLOGY. IT ALSO PREVENTED ETHANOL- AND LPS-MEDIATED INCREASE IN OXIDATIVE STRESS BY DECREASING ROS AND LIPID PEROXIDATION AND INCREASING THE ANTIOXIDANTS, REDUCED GLUTATHIONE AND MANGANESE-DEPENDENT SUPEROXIDE DISMUTASE. IT ALSO PREVENTED THE ACTIVATION OF NUCLEAR FACTOR KAPPA B BY BLOCKING THE PHOSPHORYLATION OF THE INHIBITORY PROTEIN, IKAPPAB, THEREBY PREVENTED PROINFLAMMATORY CYTOKINE PRODUCTION. MOREOVER, TBETA4 PREVENTED FIBROGENESIS BY SUPPRESSING THE EPIGENETIC REPRESSOR, METHYL-CPG-BINDING PROTEIN 2, THAT COORDINATELY REVERSED THE EXPRESSION OF PEROXISOME PROLIFERATOR-ACTIVATED RECEPTOR-GAMMA AND DOWNREGULATED FIBROGENIC GENES, PLATELET-DERIVED GROWTH FACTOR-BETA RECEPTOR, ALPHA-SMOOTH MUSCLE ACTIN, COLLAGEN 1, AND FIBRONECTIN, RESULTING IN REDUCED FIBROSIS. OUR DATA SUGGEST THAT TBETA4 HAS ANTIOXIDANT, ANTI-INFLAMMATORY, AND ANTIFIBROTIC POTENTIAL DURING ALCOHOLIC LIVER INJURY. 2018 10 6085 95 THE EFFECTS OF ACARBOSE ON CHEMOKINE AND CYTOKINE PRODUCTION IN HUMAN MONOCYTIC THP-1 CELLS. BACKGROUND AND OBJECTIVES: CHRONIC INFLAMMATION INDUCED BY PROINFLAMMATORY CYTOKINES AND CHEMOKINES IS POSTULATED TO BE INVOLVED IN INSULIN RESISTANCE AND BETA-CELL DYSFUNCTION IN TYPE 2 DIABETES MELLITUS (T2DM). ACARBOSE, THE ALPHA-GLUCOSIDASE INHIBITOR, IS AN ORAL ANTIDIABETIC DRUG FOR T2DM. ACARBOSE SUPPRESSES INFLAMMATORY CYTOKINE PRODUCTION IN PATIENTS WITH T2DM, THOUGH THE UNDERLYING MECHANISMS ARE UNCLEAR. IN THE PRESENT STUDY, WE AIMED TO INVESTIGATE THE ANTI-INFLAMMATORY EFFECTS AND THE EXACT MECHANISMS OF ACARBOSE IN HUMAN MONOCYTIC THP-1 CELLS. METHODS: THP-1 CELLS WERE PRETREATED WITH ACARBOSE AND THEN STIMULATED WITH LIPOPOLYSACCHARIDE (LPS). THE LEVELS OF TH1-RELATED CHEMOKINES, INCLUDING INTERFERON-GAMMA-INDUCIBLE PROTEIN-10 (IP-10), MONOCYTE CHEMOATTRACTANT PROTEIN-1 (MCP-1), TH2-RELATED CHEMOKINE MACROPHAGE-DERIVED CHEMOKINE (MDC), AND PROINFLAMMATORY CYTOKINE TUMOR NECROSIS FACTOR-ALPHA (TNF-ALPHA), WERE DETERMINED BY ENZYME-LINKED IMMUNOSORBENT ASSAY. INTRACELLULAR SIGNALING PATHWAYS WERE EXPLORED BY WESTERN BLOT ANALYSIS AND USING A CHROMATIN IMMUNOPRECIPITATION ASSAY. RESULTS: ACARBOSE SUPPRESSED THE LEVELS OF IP-10, MCP-1, MDC, AND TNF-ALPHA AND DOWNREGULATED PHOSPHORYLATION OF P38, C-JUN N-TERMINAL KINASE (JNK), EXTRACELLULAR SIGNAL-REGULATED KINASE (ERK), AND NUCLEAR FACTOR-KAPPA B-P65 (NF-KAPPAB-P65) IN LPS-STIMULATED THP-1 CELLS. ACARBOSE SUPPRESSED LPS-INDUCED ACETYLATION OF HISTONES H3 (H3) AND H4 IN THE IP-10 AND MCP-1 PROMOTER REGIONS. THESE FINDINGS REVEALED THE SUPPRESSIVE EFFECTS OF ACARBOSE ON IP-10, MCP-1, MDC, AND TNF-ALPHA PRODUCTION IN THP-1 CELLS VIA, AT LEAST PARTIALLY, THE P38, JNK, ERK, AND NF-KAPPAB-P65 PATHWAYS, AS WELL AS THROUGH EPIGENETIC REGULATION VIA HISTONE H3 AND H4 ACETYLATION. CONCLUSION: OUR STUDY POINTS TO THE THERAPEUTIC ANTI-INFLAMMATORY POTENTIAL OF ACARBOSE. 2019 11 4210 27 METFORMIN AND VITAMIN D MODULATE INFLAMMATION AND AUTOPHAGY DURING ADIPOSE-DERIVED STEM CELL DIFFERENTIATION. ADIPOSE-DERIVED STEM CELLS (ADSCS) CAME OUT FROM THE REGENERATIVE MEDICINE LANDSCAPE FOR THEIR ABILITY TO DIFFERENTIATE INTO SEVERAL PHENOTYPES, CONTRIBUTING TO TISSUE REGENERATION BOTH IN VITRO AND IN VIVO. DYSREGULATION IN STEM CELL RECRUITMENT AND DIFFERENTIATION DURING ADIPOGENESIS IS LINKED TO A CHRONIC LOW-GRADE INFLAMMATION AND MACROPHAGE INFILTRATION INSIDE THE ADIPOSE TISSUE, INSULIN RESISTANCE, CARDIOVASCULAR DISEASE AND OBESITY. IN THE PRESENT PAPER WE AIMED TO EVALUATE THE ROLE OF METFORMIN AND VITAMIN D, ALONE OR IN COMBINATION, IN MODULATING INFLAMMATION AND AUTOPHAGY IN ADSCS DURING ADIPOGENIC COMMITMENT. ADSCS WERE CULTURED FOR 21 DAYS IN THE PRESENCE OF A SPECIFIC ADIPOGENIC DIFFERENTIATION MEDIUM, TOGETHER WITH METFORMIN, OR VITAMIN D, OR BOTH. WE THEN ANALYZED THE EXPRESSION OF FOXO1 AND HEAT SHOCK PROTEINS (HSP) AND THE SECRETION OF PROINFLAMMATORY CYTOKINES IL-6 AND TNF-ALPHA BY ELISA. AUTOPHAGY WAS ALSO ASSESSED BY SPECIFIC WESTERN BLOT ANALYSIS OF ATG12, LC3B I, AND LC3B II EXPRESSION. OUR RESULTS SHOWED THE ABILITY OF THE CONDITIONED MEDIA TO MODULATE ADIPOGENIC DIFFERENTIATION, FINELY TUNING THE INFLAMMATORY RESPONSE AND AUTOPHAGY. WE OBSERVED A MODULATION IN HSP MRNA LEVELS, AND A SIGNIFICANT DOWNREGULATION IN CYTOKINE SECRETION. TAKEN TOGETHER, OUR FINDINGS SUGGEST THE POSSIBLE APPLICATION OF THESE MOLECULES IN CLINICAL PRACTICE TO COUNTERACT UNCONTROLLED LIPOGENESIS AND PREVENT OBESITY AND OBESITY-RELATED METABOLIC DISORDERS. 2021 12 4301 28 MICRORNA-21-ENRICHED EXOSOMES AS EPIGENETIC REGULATORS IN MELANOMAGENESIS AND MELANOMA PROGRESSION: THE IMPACT OF WESTERN LIFESTYLE FACTORS. DNA MUTATION-INDUCED ACTIVATION OF RAS-BRAF-MEK-ERK SIGNALING ASSOCIATED WITH INTERMITTENT OR CHRONIC ULTRAVIOLET (UV) IRRADIATION CANNOT EXCLUSIVELY EXPLAIN THE EXCESSIVE INCREASE OF MALIGNANT MELANOMA (MM) INCIDENCE SINCE THE 1950S. MALIGNANT CONVERSION OF A MELANOCYTE TO AN MM CELL AND METASTATIC MM IS ASSOCIATED WITH A STEADY INCREASE IN MICRORNA-21 (MIR-21). AT THE EPIGENETIC LEVEL, MIR-21 INHIBITS KEY TUMOR SUPPRESSORS OF THE RAS-BRAF SIGNALING PATHWAY ENHANCING PROLIFERATION AND MM PROGRESSION. INCREASED MM CELL LEVELS OF MIR-21 EITHER RESULT FROM ENDOGENOUS UPREGULATION OF MELANOCYTIC MIR-21 EXPRESSION OR BY UPTAKE OF MIR-21-ENRICHED EXOGENOUS EXOSOMES. BASED ON EPIDEMIOLOGICAL DATA AND TRANSLATIONAL EVIDENCE, THIS REVIEW PROVIDES DEEPER INSIGHTS INTO ENVIRONMENTALLY AND METABOLICALLY INDUCED EXOSOMAL MIR-21 TRAFFICKING BEYOND UV-IRRADIATION IN MELANOMAGENESIS AND MM PROGRESSION. SOURCES OF MIR-21-ENRICHED EXOSOMES INCLUDE UV-IRRADIATED KERATINOCYTES, ADIPOCYTE-DERIVED EXOSOMES IN OBESITY, AIRWAY EPITHELIUM-DERIVED EXOSOMES GENERATED BY SMOKING AND POLLUTION, DIET-RELATED EXOSOMES AND INFLAMMATION-INDUCED EXOSOMES, WHICH MAY SYNERGISTICALLY INCREASE THE EXOSOMAL MIR-21 BURDEN OF THE MELANOCYTE, THE TRANSFORMED MM CELL AND ITS TUMOR ENVIRONMENT. SEVERAL THERAPEUTIC AGENTS THAT SUPPRESS MM CELL GROWTH AND PROLIFERATION ATTENUATE MIR-21 EXPRESSION. THESE INCLUDE MIR-21 ANTAGONISTS, METFORMIN, KINASE INHIBITORS, BETA-BLOCKERS, VITAMIN D, AND PLANT-DERIVED BIOACTIVE COMPOUNDS, WHICH MAY REPRESENT NEW OPTIONS FOR THE PREVENTION AND TREATMENT OF MM. 2020 13 4663 30 NEW HORIZONS: NOVEL APPROACHES TO ENHANCE HEALTHSPAN THROUGH TARGETING CELLULAR SENESCENCE AND RELATED AGING MECHANISMS. THE ELDERLY POPULATION IS INCREASING FASTER THAN OTHER SEGMENTS OF THE POPULATION THROUGHOUT THE WORLD. AGE IS THE LEADING PREDICTOR FOR MOST CHRONIC DISEASES AND DISORDERS, MULTIMORBIDITY, GERIATRIC SYNDROMES, AND IMPAIRED ABILITY TO RECOVER FROM ACCIDENTS OR ILLNESSES. ENHANCING THE DURATION OF HEALTH AND INDEPENDENCE, TERMED HEALTHSPAN, WOULD BE MORE DESIRABLE THAN EXTENDING LIFESPAN MERELY BY PROLONGING THE PERIOD OF MORBIDITY TOWARD THE END OF LIFE. THE GEROSCIENCE HYPOTHESIS POSITS THAT HEALTHSPAN CAN BE EXTENDED BY TARGETING FUNDAMENTAL AGING MECHANISMS, RATHER THAN ATTEMPTING TO ADDRESS EACH AGE-RELATED DISEASE ONE AT A TIME, ONLY SO THE AFFLICTED INDIVIDUAL SURVIVES DISABLED AND DIES SHORTLY AFTERWARD OF ANOTHER AGE-RELATED DISEASE. THESE FUNDAMENTAL AGING MECHANISMS INCLUDE, AMONG OTHERS, CHRONIC INFLAMMATION, FIBROSIS, STEM CELL/ PROGENITOR DYSFUNCTION, DNA DAMAGE, EPIGENETIC CHANGES, METABOLIC SHIFTS, DESTRUCTIVE METABOLITE GENERATION, MITOCHONDRIAL DYSFUNCTION, MISFOLDED OR AGGREGATED PROTEIN ACCUMULATION, AND CELLULAR SENESCENCE. THESE PROCESSES APPEAR TO BE TIGHTLY INTERLINKED, AS TARGETING ANY ONE APPEARS TO AFFECT MANY OF THE REST, UNDERLYING OUR UNITARY THEORY OF FUNDAMENTAL AGING MECHANISMS. INTERVENTIONS TARGETING MANY FUNDAMENTAL AGING PROCESSES ARE BEING DEVELOPED, INCLUDING DIETARY MANIPULATIONS, METFORMIN, MTOR (MECHANISTIC TARGET OF RAPAMYCIN) INHIBITORS, AND SENOLYTICS, WHICH ARE IN EARLY HUMAN TRIALS. THESE INTERVENTIONS COULD LEAD TO GREATER HEALTHSPAN BENEFITS THAN TREATING AGE-RELATED DISEASES ONE AT A TIME. TO ILLUSTRATE THESE POINTS, WE FOCUS ON CELLULAR SENESCENCE AND THERAPIES IN DEVELOPMENT TO TARGET SENESCENT CELLS. COMBINING INTERVENTIONS TARGETING AGING MECHANISMS WITH DISEASE-SPECIFIC DRUGS COULD RESULT IN MORE THAN ADDITIVE BENEFITS FOR CURRENTLY DIFFICULT-TO-TREAT OR INTRACTABLE DISEASES. MORE RESEARCH ATTENTION NEEDS TO BE DEVOTED TO TARGETING FUNDAMENTAL AGING PROCESSES. 2021 14 4117 34 MECHANISMS OF AUTOPHAGIC RESPONSES TO ALTERED NUTRITIONAL STATUS. AUTOPHAGY IS A DYNAMIC PROCESS AND CRITICAL FOR CELLULAR REMODELING AND ORGANELLE QUALITY CONTROL. IN RESPONSE TO ALTERED NUTRITIONAL STATUS (E.G., FASTING AND FEEDING), AUTOPHAGIC ACTIVITY IS FINELY TUNED BY TRANSCRIPTIONAL, POSTTRANSLATIONAL, AND EPIGENETIC REGULATIONS VIA VARIOUS SIGNALING PATHWAYS, INCLUDING ENERGY SENSORS (E.G., MECHANISTIC TARGET OF RAPAMYCIN (MTOR)/ AMP-ACTIVATED PROTEIN KINASE - UNC-51 LIKE AUTOPHAGY ACTIVATING KINASE 1, MTORC1- WD REPEAT DOMAIN, PHOSPHOINOSITIDE INTERACTING 2, MTORC1- TRANSCRIPTION FACTOR EB, PERILIPIN 5- SIRTUIN 1, AND SIRTUIN 1-MEDIATED DEACETYLATION OF AUTOPHAGY PROTEINS), FASTING OR FEEDING INDUCED HORMONES (E.G., FIBROBLAST GROWTH FACTOR [FGF21]- PROTEIN KINASE A - JUMONJI DOMAIN-CONTAINING PROTEIN D3, FGF21- DOWNSTREAM REGULATORY ELEMENT ANTAGONIST MODULATOR - E3 LIGASE MIDLINE-1- TRANSCRIPTION FACTOR EB, FGF19-SHP- LYSINE-SPECIFIC DEMETHYLASE, INSULIN- INSULIN RECEPTOR SUBSTRATE - PROTEIN KINASE B - FORKHEAD BOX O, GLUCAGON- PROTEIN KINASE A - CAMP RESPONSE BINDING PROTEIN), AND LYSOSOMAL ENZYMES (E.G., CATHEPSIN B AND CATHEPSIN L). IN CONTRAST TO FASTING THAT INDUCES AUTOPHAGY AND HEALTH BENEFITS, NUTRIENT OVERSUPPLY (OVERFEEDING OR FEEDING ON HIGH ENERGY DIETS) DYSREGULATES AUTOPHAGY, WHICH HAS BEEN INCREASINGLY OBSERVED IN ANIMAL MODELS OF HUMAN CHRONIC DISEASES SUCH AS OBESITY, DIABETES, NON-ALCOHOLIC FATTY LIVER DISEASE, AND CARDIOVASCULAR DISEASE. STUDIES HAVE REVEALED MULTIFACETED EFFECTS OF HIGH ENERGY DIETS ON AUTOPHAGY, BEING EITHER AN INHIBITOR OR ENHANCER OF AUTOPHAGY. THE CONUNDRUM MAY ARISE FROM THE VARIATIONS IN METHODS FOR AUTOPHAGY ANALYSIS, COMPONENTS OF HIGH ENERGY DIETS AND CONTROL DIETS FOR TREATMENTS, TREATMENT DURATIONS, AND THE AGES OF GENETIC BACKGROUNDS OF LABORATORY ANIMALS. IN THIS ARTICLE, WE REVIEWED THE EVIDENCE FROM BOTH HUMAN AND ANIMAL STUDIES, PRESENTING THE MOLECULAR MECHANISM OF AUTOPHAGIC RESPONSE TO ALTERED NUTRITIONAL STATUS AND DISCUSSING THE CONTRIBUTING FACTORS OF AND POSSIBLE SOLUTION TO THE CURRENT CONUNDRUM CONCERNING THE EXACT ROLE OF HIGH ENERGY DIETS IN AUTOPHAGIC REGULATION. 2022 15 2045 25 EPIGENETIC CLOCK ANALYSIS OF DIET, EXERCISE, EDUCATION, AND LIFESTYLE FACTORS. BEHAVIORAL AND LIFESTYLE FACTORS HAVE BEEN SHOWN TO RELATE TO A NUMBER OF HEALTH-RELATED OUTCOMES, YET THERE IS A NEED FOR STUDIES THAT EXAMINE THEIR RELATIONSHIP TO MOLECULAR AGING RATES. TOWARD THIS END, WE USE RECENT EPIGENETIC BIOMARKERS OF AGE THAT HAVE PREVIOUSLY BEEN SHOWN TO PREDICT ALL-CAUSE MORTALITY, CHRONIC CONDITIONS, AND AGE-RELATED FUNCTIONAL DECLINE. WE ANALYZE CROSS-SECTIONAL DATA FROM 4,173 POSTMENOPAUSAL FEMALE PARTICIPANTS FROM THE WOMEN'S HEALTH INITIATIVE, AS WELL AS 402 MALE AND FEMALE PARTICIPANTS FROM THE ITALIAN COHORT STUDY, INVECCHIARE NEL CHIANTI.EXTRINSIC EPIGENETIC AGE ACCELERATION (EEAA) EXHIBITS SIGNIFICANT ASSOCIATIONS WITH FISH INTAKE (P=0.02), MODERATE ALCOHOL CONSUMPTION (P=0.01), EDUCATION (P=3X10(-5)), BMI (P=0.01), AND BLOOD CAROTENOID LEVELS (P=1X10(-5))-AN INDICATOR OF FRUIT AND VEGETABLE CONSUMPTION, WHEREAS INTRINSIC EPIGENETIC AGE ACCELERATION (IEAA) IS ASSOCIATED WITH POULTRY INTAKE (P=0.03) AND BMI (P=0.05). BOTH EEAA AND IEAA WERE ALSO FOUND TO RELATE TO INDICATORS OF METABOLIC SYNDROME, WHICH APPEAR TO MEDIATE THEIR ASSOCIATIONS WITH BMI. METFORMIN-THE FIRST-LINE MEDICATION FOR THE TREATMENT OF TYPE 2 DIABETES-DOES NOT DELAY EPIGENETIC AGING IN THIS OBSERVATIONAL STUDY. FINALLY, LONGITUDINAL DATA SUGGESTS THAT AN INCREASE IN BMI IS ASSOCIATED WITH INCREASE IN BOTH EEAA AND IEAA.OVERALL, THE EPIGENETIC AGE ANALYSIS OF BLOOD CONFIRMS THE CONVENTIONAL WISDOM REGARDING THE BENEFITS OF EATING A HIGH PLANT DIET WITH LEAN MEATS, MODERATE ALCOHOL CONSUMPTION, PHYSICAL ACTIVITY, AND EDUCATION, AS WELL AS THE HEALTH RISKS OF OBESITY AND METABOLIC SYNDROME. 2017 16 3164 29 GREEN TEA PREVENTS NAFLD BY MODULATION OF MIR-34A AND MIR-194 EXPRESSION IN A HIGH-FAT DIET MOUSE MODEL. BACKGROUND/AIMS: NONALCOHOLIC FATTY LIVER DISEASE (NAFLD) IS CONSIDERED THE HEPATIC MANIFESTATION OF METABOLIC SYNDROME. IT IS CURRENTLY THE MOST COMMON CHRONIC LIVER DISEASE WITH COMPLEX PATHOGENESIS AND CHALLENGING TREATMENT. HERE, WE INVESTIGATED THE HEPATOPROTECTIVE ROLE OF GREEN TEA (GT) AND DETERMINED THE INVOLVEMENT OF MIRNAS AND ITS MECHANISM OF ACTION. METHODS: MALE C57BL/6 MICE WERE FED WITH A HIGH-FAT DIET FOR 4 WEEKS. AFTER THIS PERIOD, THE ANIMALS RECEIVED GAVAGE WITH GT (500 MG/KG BODY WEIGHT) OVER 12 WEEKS (5 DAYS/WEEK). HEPG2 CELL LINES WERE TRANSFECTED WITH MIR-34A OR MIR-194 MIMETICS AND INHIBITORS TO VALIDATE THE IN VIVO RESULTS OR WERE TREATED WITH TNF-ALPHA TO EVALUATE MIRNA REGULATION. RESULTS: GT SUPPLEMENTATION PROTECTS AGAINST NAFLD DEVELOPMENT BY ALTERING LIPID METABOLISM, INCREASING GENE EXPRESSION INVOLVED IN TRIGLYCERIDES AND FATTY ACID CATABOLISM, AND DECREASING UPTAKE AND LIPID ACCUMULATION. THIS PHENOTYPE WAS ACCOMPANIED BY MIR-34A DOWNREGULATION AND AN INCREASE IN THEIR MRNA TARGETS SIRT1, PPARALPHA, AND INSIG2. GT UPREGULATED HEPATIC MIR-194 BY INHIBITING TNF-ALPHA ACTION LEADING TO A DECREASE IN MIR-194 TARGET GENES HMGCS/APOA5. CONCLUSION: OUR STUDY IDENTIFIED FOR THE FIRST TIME THAT THE BENEFICIAL EFFECTS OF GT IN THE LIVER CAN BE DUE TO THE MODULATION OF MIRNAS, OPENING NEW PERSPECTIVES FOR THE TREATMENT OF NAFLD FOCUSING ON EPIGENETIC REGULATION OF MIR-34A AND MIR-194 AS GREEN TEA TARGETS. 2019 17 5074 36 PHYSIOLOGIC AND EPIGENETIC EFFECTS OF NUTRIENTS ON DISEASE PATHWAYS. BACKGROUND/OBJECTIVES: EPIGENETIC REGULATION BY NUTRIENTS CAN INFLUENCE THE DEVELOPMENT OF SPECIFIC DISEASES. THIS STUDY SOUGHT TO EXAMINE THE EFFECT OF INDIVIDUAL NUTRIENTS AND NUTRIENT FAMILIES IN THE CONTEXT OF PREVENTING CHRONIC METABOLIC DISEASES VIA EPIGENETIC REGULATION. THE INHIBITION OF LIPID ACCUMULATION AND INFLAMMATION BY NUTRIENTS INCLUDING PROTEINS, LIPIDS, VITAMINS, AND MINERALS WERE OBSERVED, AND HISTONE ACETYLATION BY HISTONE ACETYLTRANSFERASE (HAT) WAS MEASURED. CORRELATIVE ANALYSES WERE ALSO PERFORMED. MATERIALS/METHODS: NUTRIENTS WERE SELECTED ACCORDING TO INFORMATION FROM THE KOREAN MINISTRY OF FOOD AND DRUG SAFETY. SELECTED NUTRIENT FUNCTIONALITIES, INCLUDING THE ATTENUATION OF FATTY ACID-INDUCED LIPID ACCUMULATION AND LIPOPOLYSACCHARIDE-MEDIATED ACUTE INFLAMMATION WERE EVALUATED IN MOUSE MACROPHAGE RAW264.7 AND MOUSE HEPATOCYTE AML-12 CELLS. EFFECTS OF THE SELECTED NUTRIENTS ON IN VITRO HAT INHIBITION WERE ALSO EVALUATED. RESULTS: NITRIC OXIDE (NO) PRODUCTION CORRELATED WITH HAT ACTIVITY, WHICH WAS REGULATED BY THE AMINO ACIDS GROUP, SUGGESTING THAT AMINO ACIDS POTENTIALLY CONTRIBUTE TO THE ATTENUATION OF NO PRODUCTION VIA THE INHIBITION OF HAT ACTIVITY. UNSATURATED FATTY ACIDS TENDED TO ATTENUATE INFLAMMATION BY INHIBITING NO PRODUCTION, WHICH MAY BE ATTRIBUTABLE TO THE INHIBITION OF IN VITRO HAT ACTIVITY. IN CONTRAST TO WATER-SOLUBLE VITAMINS, THE LIPID-SOLUBLE VITAMINS SIGNIFICANTLY DECREASED NO PRODUCTION. WATER- AND LIPID-SOLUBLE VITAMINS BOTH EXHIBITED SIGNIFICANT INHIBITORY ACTIVITIES AGAINST HAT. IN ADDITION, CALCIUM AND MANGANESE SIGNIFICANTLY INHIBITED LIPID ACCUMULATION, NO PRODUCTION, AND HAT ACTIVITY. CONCLUSIONS: SEVERAL CANDIDATE NUTRIENTS AND THEIR FAMILY MEMBERS MAY HAVE ROLES IN THE PREVENTION OF DISEASES, INCLUDING HEPATIC STEATOSIS AND INFLAMMATION-RELATED DISEASES (I.E., NONALCOHOLIC STEATOHEPATITIS) VIA EPIGENETIC REGULATION. FURTHER STUDIES ARE WARRANTED TO DETERMINE WHICH SPECIFIC AMINO ACIDS, UNSATURATED FATTY ACIDS AND LIPID-SOLUBLE VITAMINS OR SPECIFIC MINERALS INFLUENCE THE DEVELOPMENT OF STEATOSIS AND INFLAMMATORY-RELATED DISEASES. 2023 18 312 36 ALCOHOL FEEDING IN MICE PROMOTES COLONIC HYPERPERMEABILITY AND CHANGES IN COLONIC ORGANOID STEM CELL FATE. BACKGROUND: ALCOHOL INCREASES INTESTINAL PERMEABILITY TO PROINFLAMMATORY MICROBIAL PRODUCTS THAT PROMOTE LIVER DISEASE, EVEN AFTER A PERIOD OF SOBRIETY. WE SOUGHT TO TEST THE HYPOTHESIS THAT ALCOHOL AFFECTS INTESTINAL STEM CELLS USING AN IN VIVO MODEL AND EX VIVO ORGANOIDS GENERATED FROM JEJUNUM AND COLON FROM MICE FED CHRONIC ALCOHOL. METHODS: MICE WERE FED A CONTROL OR AN ALCOHOL DIET. INTESTINAL PERMEABILITY, LIVER STEATOSIS-INFLAMMATION, AND STOOL SHORT-CHAIN FATTY ACIDS (SCFAS) WERE MEASURED. JEJUNUM AND COLONIC ORGANOIDS AND TISSUE WERE STAINED FOR STEM CELL, CELL LINEAGE, AND APICAL JUNCTION MARKERS WITH ASSESSMENT OF MRNA BY PCR AND RNA-SEQ. CHIP-PCR ANALYSIS WAS CARRIED OUT FOR NOTCH1 USING AN ANTIBODY SPECIFIC FOR ACETYLATED HISTONE 3. RESULTS: ALCOHOL-FED MICE EXHIBITED COLONIC (BUT NOT SMALL INTESTINAL) HYPERPERMEABILITY, STEATOHEPATITIS, AND DECREASED BUTYRATE/TOTAL SCFA RATIO IN STOOL. STEM CELL, CELL LINEAGE, AND APICAL JUNCTION MARKER STAINING IN TISSUE OR ORGANOIDS FROM JEJUNUM TISSUE WERE NOT IMPACTED BY ALCOHOL. ONLY CHROMOGRANIN A (CHGA) WAS INCREASED IN JEJUNUM ORGANOIDS BY QPCR. HOWEVER, COLONIC TISSUE AND ORGANOID STAINING EXHIBITED AN ALCOHOL-INDUCED SIGNIFICANT DECREASE IN CYTOKERATIN 20+ (KRT20+) ABSORPTIVE LINEAGE ENTEROCYTES, A DECREASE IN OCCLUDIN AND E-CADHERIN APICAL JUNCTION PROTEINS, AN INCREASE IN CHGA, AND AN INCREASE IN THE LGR5 STEM CELL MARKER. QPCR REVEALED AN ALCOHOL-INDUCED DECREASE IN COLONIC ORGANOID AND TISSUE NOTCH1, HES1, AND KRT20 AND INCREASED CHGA, SUPPORTING AN ALTERATION IN STEM CELL FATE DUE TO DECREASED NOTCH1 EXPRESSION. COLONIC TISSUE CHIP-PCR REVEALED ALCOHOL FEEDING SUPPRESSED NOTCH1 MRNA EXPRESSION (VIA DEACETYLATION OF HISTONE H3) AND DECREASED NOTCH1 TISSUE STAINING. CONCLUSIONS: DATA SUPPORT A MODEL FOR ALCOHOL-INDUCED COLONIC HYPERPERMEABILITY VIA EPIGENETIC EFFECTS ON NOTCH1, AND THUS HES1, SUPPRESSION THROUGH A MECHANISM INVOLVING HISTONE H3 DEACETYLATION AT THE NOTCH1 LOCUS. THIS DECREASED ENTEROCYTE AND INCREASED ENTEROENDOCRINE CELL COLONIC STEM CELL FATE AND DECREASED APICAL JUNCTIONAL PROTEINS LEADING TO HYPERPERMEABILITY. 2017 19 328 23 ALPHA-KETOGLUTARIC ACID AMELIORATES INTERVERTEBRAL DISC DEGENERATION BY BLOCKING THE IL-6/JAK2/STAT3 PATHWAY. INTERVERTEBRAL DISC DEGENERATION (IVDD) IS THE MAJOR CAUSE OF LOW BACK PAIN. ALPHA-KETOGLUTARIC ACID (ALPHA-KG), AN IMPORTANT INTERMEDIATE IN ENERGY METABOLISM, HAS VARIOUS FUNCTIONS, INCLUDING EPIGENETIC REGULATION, MAINTENANCE OF REDOX HOMEOSTASIS, AND ANTI-AGING, BUT WHETHER IT CAN AMELIORATE IVDD HAS NOT BEEN REPORTED. HERE, WE EXAMINED THE IMPACTS OF LONG-TERM ADMINISTRATION OF A-KG ON AGING-ASSOCIATED IVDD IN ADULT RATS. IN VIVO AND IN VITRO EXPERIMENTS SHOWED THAT ALPHA-KG SUPPLEMENTATION EFFECTIVELY AMELIORATED IVDD IN RATS AND THE SENESCENCE OF NUCLEUS PULPOSUS CELLS (NPCS). ALPHA-KG SUPPLEMENTATION SIGNIFICANTLY ATTENUATED SENESCENCE, APOPTOSIS AND MMP-13 PROTEIN EXPRESSION, AND IT INCREASED THE SYNTHESIS OF AGGRECAN AND COLLAGEN II IN IL-1BETA-TREATED NPCS. IN ADDITION, ALPHA-KG SUPPLEMENTATION REDUCED THE LEVELS OF IL-6, PHOSPHORYLATED JAK2 AND STAT3, AND THE NUCLEAR TRANSLOCATION OF P-STAT3 IN IL-1BETA-INDUCED DEGENERATING NPCS. THE EFFECTS OF ALPHA-KG WERE ENHANCED BY AG490 IN NPCS. THE UNDERLYING MECHANISM MAY INVOLVE THE INHIBITION OF JAK2/STAT3 PHOSPHORYLATION AND THE REDUCTION OF IL-6 EXPRESSION. OUR FINDINGS MAY HELP IN THE DEVELOPMENT OF NEW THERAPEUTIC STRATEGIES FOR IVDD. 2023 20 5305 50 PROTEOMICS ANALYSIS OF HUMAN OBESITY REVEALS THE EPIGENETIC FACTOR HDAC4 AS A POTENTIAL TARGET FOR OBESITY. SEDENTARY LIFESTYLE AND EXCESSIVE ENERGY INTAKE ARE PROMINENT CONTRIBUTORS TO OBESITY; A MAJOR RISK FACTORS FOR THE DEVELOPMENT OF INSULIN RESISTANCE, TYPE 2 DIABETES AND CARDIOVASCULAR DISEASES. ELUCIDATING THE MOLECULAR MECHANISMS UNDERLYING THESE CHRONIC CONDITIONS IS OF RELEVANT IMPORTANCE AS IT MIGHT LEAD TO THE IDENTIFICATION OF NOVEL ANTI-OBESITY TARGETS. THE PURPOSE OF THE CURRENT STUDY IS TO INVESTIGATE DIFFERENTIALLY EXPRESSED PROTEINS BETWEEN LEAN AND OBESE SUBJECTS THROUGH A SHOT-GUN QUANTITATIVE PROTEOMICS APPROACH USING PERIPHERAL BLOOD MONONUCLEAR CELLS (PBMCS) EXTRACTS AS WELL AS POTENTIAL MODULATION OF THOSE PROTEINS BY PHYSICAL EXERCISE. USING THIS APPROACH, A TOTAL OF 47 PROTEINS SHOWED AT LEAST 1.5 FOLD CHANGE BETWEEN LEAN AND OBESE SUBJECTS. IN OBESE, THE PROTEOMIC PROFILING BEFORE AND AFTER 3 MONTHS OF PHYSICAL EXERCISE SHOWED DIFFERENTIAL EXPRESSION OF 38 PROTEINS. THROMBOSPONDIN 1 (TSP1) WAS AMONG THE PROTEINS THAT WERE UPREGULATED IN OBESE SUBJECTS AND THEN DECREASED BY PHYSICAL EXERCISE. CONVERSELY, THE HISTONE DEACETYLASE 4 (HDAC4) WAS DOWNREGULATED IN OBESE SUBJECTS AND THEN INDUCED BY PHYSICAL EXERCISE. THE PROTEOMIC DATA WAS FURTHER VALIDATED BY QRT-PCR, WESTERN BLOT AND IMMUNOHISTOCHEMISTRY IN BOTH PBMCS AND ADIPOSE TISSUE. WE ALSO SHOWED THAT HDAC4 LEVELS CORRELATED POSITIVELY WITH MAXIMUM OXYGEN CONSUMPTION (VO2 MAX) BUT NEGATIVELY WITH BODY MASS INDEX, PERCENT BODY FAT, AND THE INFLAMMATORY CHEMOKINE RANTES. IN FUNCTIONAL ASSAYS, OUR DATA INDICATED THAT ECTOPIC EXPRESSION OF HDAC4 SIGNIFICANTLY IMPAIRED TNF-ALPHA-DEPENDENT ACTIVATION OF NF-KAPPAB, ESTABLISHING THUS A LINK BETWEEN HDAC4 AND REGULATION OF THE IMMUNE SYSTEM. TOGETHER, THE EXPRESSION PATTERN OF HDAC4 IN OBESE SUBJECTS BEFORE AND AFTER PHYSICAL EXERCISE, ITS CORRELATION WITH VARIOUS PHYSICAL, CLINICAL AND METABOLIC PARAMETERS ALONG WITH ITS INHIBITORY EFFECT ON NF-KAPPAB ARE SUGGESTIVE OF A PROTECTIVE ROLE OF HDAC4 AGAINST OBESITY. HDAC4 COULD THEREFORE REPRESENT A POTENTIAL THERAPEUTIC TARGET FOR THE CONTROL AND MANAGEMENT OF OBESITY AND PRESUMABLY INSULIN RESISTANCE. 2013