1 6396 117 THE ROLE OF THE MIR-148/-152 FAMILY IN PHYSIOLOGY AND DISEASE. MICRORNAS (MIRNAS) ARE ENDOGENOUSLY ENCODED APPROXIMATELY 22 NT SMALL NON-CODING RNAS. THEY FUNCTION AS KEY PLAYERS OF MANY CELLULAR PROCESSES BY BASE PAIRING WITH TARGET MRNAS AND THEREBY IMPAIRING GENE EXPRESSION AT THE POST-TRANSCRIPTIONAL LEVEL. RECENT FINDINGS DEMONSTRATE A CRITICAL ROLE OF MANY MIRNAS IN IMMUNE CELL DIFFERENTIATION AND IMMUNE RESPONSES, WHICH IS ALSO ASSOCIATED WITH THE DEVELOPMENT AND PROGRESSION OF MANY TUMOR AND NON-TUMOR DISEASES. HERE WE REVIEW THE MULTIFACETED MIRNA-148/-152 FAMILY MEMBERS CONSISTING OF MIR-148A, MIR-148B AND MIR-152. NEXT TO REGULATION MECHANISMS THAT CONTROL THE EXPRESSION OF THIS MIRNA FAMILY, WE WILL FOCUS ON (I) THE ROLE OF MIR-148A IN REGULATING B AND T LYMPHOCYTE FUNCTION AND ITS ROLE IN ASSOCIATED DISEASES AND (II) THE IMPORTANCE OF MIR-148/-152 FAMILY MEMBERS FOR CANCER INITIATION, TUMOR GROWTH AND METASTASIS FORMATION. IN ADDITION, THIS REVIEW AIMS TO HIGHLIGHT SOME SELECTED TARGETS OF THE MIRNA-148/-152 FAMILY MEMBERS, WHICH ARE INVOLVED IN THE BIOLOGY OF CANCER AND MAINTENANCE OF EPIGENETIC PATTERNS. IN CONCLUSION, MEMBERS OF THE MIR-148/-152 FAMILY MIGHT REPRESENT PROGNOSTIC MARKERS AND/OR POTENTIAL THERAPEUTIC TARGETS FOR TREATMENT OF AUTOIMMUNE DISORDERS, CHRONIC INFLAMMATORY DISEASES AND MULTIPLE TYPES OF CANCER. 2017 2 3772 32 INTERACTION BETWEEN MICRORNA AND DNA METHYLATION IN ATHEROSCLEROSIS. ATHEROSCLEROSIS (AS) IS A CHRONIC INFLAMMATORY DISEASE ACCOMPANIED BY COMPLEX PATHOLOGICAL CHANGES, SUCH AS ENDOTHELIAL DYSFUNCTION, FOAM CELL FORMATION, AND VASCULAR SMOOTH MUSCLE CELL PROLIFERATION. MANY APPROACHES, INCLUDING REGULATING AS-RELATED GENE EXPRESSION IN THE TRANSCRIPTIONAL OR POST-TRANSCRIPTIONAL LEVEL, CONTRIBUTE TO ALLEVIATING AS DEVELOPMENT. THE DNA METHYLATION IS A CRUCIAL EPIGENETIC MODIFICATION IN REGULATING CELL FUNCTION BY SILENCING THE RELATIVE GENE EXPRESSION. THE MICRORNA (MIRNA) IS A TYPE OF NONCODING RNA THAT PLAYS AN IMPORTANT ROLE IN GENE POST-TRANSCRIPTIONAL REGULATION AND DISEASE DEVELOPMENT. THE DNA METHYLATION AND THE MIRNA ARE IMPORTANT EPIGENETIC FACTORS IN AS. HOWEVER, RECENT STUDIES HAVE FOUND A MUTUAL REGULATION BETWEEN THESE TWO FACTORS IN AS DEVELOPMENT. IN THIS STUDY, RECENT INSIGHTS INTO THE ROLES OF MIRNA AND DNA METHYLATION AND THEIR INTERACTION IN THE AS PROGRESSION ARE REVIEWED. 2021 3 4289 35 MICRORNA IN OSTEOARTHRITIS. OSTEOARTHRITIS (OA) IS THE MOST PREVALENT DEGENERATIVE JOINT DISEASE AND IS ACCOMPANIED BY PAIN AND JOINT DYSFUNCTION. ITS CLINICAL TREATMENT TENDS TO BE UNSATISFACTORY. NOVEL TARGETS IN OA INCLUDE GENES THAT ARE INVOLVED IN OA PATHOPHYSIOLOGY AND HAVE BEEN DISCOVERED USING GENE NETWORK, EPIGENETIC AND MICRORNA (MIRNA) APPROACHES. MIRNA HAS BEEN IMPLICATED IN IMPORTANT CELLULAR PROCESSES SUCH AS LIPID METABOLISM, APOPTOSIS, DIFFERENTIATION AND ORGAN DEVELOPMENT. THE IMPORTANCE OF MIRNA REGULATION IN CELLULAR FUNCTION IS BECOMING INCREASINGLY CLEAR AS NEW MIRNA TARGETS ARE REVEALED. THE PRESENT REVIEW SUMMARIZES THE CURRENT EVIDENCE OF THE IMPORTANT ROLE PLAYED BY MIRNA IN DETERMINING THE COMPLEX GENE EXPRESSION PATTERNS OF OA CHONDROCYTES AND THEIR ROLE IN THE REGULATION OF TRANSCRIPTION, AND POSSIBLE DEMETHYLATION MECHANISMS THAT MIGHT BE APPLICABLE IN OA. IN SUMMARY, MIRNA MAY HAVE IMPORTANT DIAGNOSTIC AND THERAPEUTIC POTENTIAL, AND MIGHT PROVIDE A NOVEL MEANS OF TREATING OA. 2011 4 4285 41 MICRORNA EPIGENETIC SIGNATURES IN HUMAN DISEASE. MICRORNAS (MIRNAS) ARE SHORT NON-CODING RNAS THAT ACT AS IMPORTANT REGULATORS OF GENE EXPRESSION AS PART OF THE EPIGENETIC MACHINERY. IN ADDITION TO POSTTRANSCRIPTIONAL GENE SILENCING BY MIRNAS, THE EPIGENETIC MECHANISMS ALSO INCLUDE DNA METHYLATION, HISTONE MODIFICATIONS AND THEIR CROSSTALK. EPIGENETIC MODIFICATIONS WERE REPORTED TO PLAY AN IMPORTANT ROLE IN MANY DISEASE ONSETS AND PROGRESSIONS AND CAN BE USED TO EXPLAIN SEVERAL FEATURES OF COMPLEX DISEASES, SUCH AS LATE ONSET AND FLUCTUATION OF SYMPTOMS. HOWEVER, MIRNAS NOT ONLY FUNCTION AS A PART OF EPIGENETIC MACHINERY, BUT ARE ALSO EPIGENETICALLY MODIFIED BY DNA METHYLATION AND HISTONE MODIFICATION LIKE ANY OTHER PROTEIN-CODING GENE. THERE IS A STRONG CONNECTION BETWEEN EPIGENOME AND MIRNOME, AND ANY DYSREGULATION OF THIS COMPLEX SYSTEM CAN RESULT IN VARIOUS PHYSIOLOGICAL AND PATHOLOGICAL CONDITIONS. IN ADDITION, MIRNAS PLAY AN IMPORTANT ROLE IN TOXICOGENOMICS AND MAY EXPLAIN THE RELATIONSHIP BETWEEN TOXICANT EXPOSURE AND TUMORIGENESIS. THE PRESENT REVIEW PROVIDES INFORMATION ON 63 MIRNA GENES SHOWN TO BE EPIGENETICALLY REGULATED IN ASSOCIATION WITH 21 DISEASES, INCLUDING 11 CANCER TYPES: CARDIAC FIBROSIS, CARDIOVASCULAR DISEASE, PREECLAMPSIA, HIRSCHSPRUNG'S DISEASE, RHEUMATOID ARTHRITIS, SYSTEMIC SCLEROSIS, SYSTEMIC LUPUS ERYTHEMATOSUS, TEMPORAL LOBE EPILEPSY, AUTISM, PULMONARY FIBROSIS, MELANOMA, ACUTE MYELOID LEUKEMIA, CHRONIC LYMPHOCYTIC LEUKEMIA, COLORECTAL, GASTRIC, CERVICAL, OVARIAN, PROSTATE, LUNG, BREAST, AND BLADDER CANCER. THE REVIEW REVEALED THAT HSA-MIR-34A, HSA-MIR-34B, AND HSA-MIR-34C ARE THE MOST FREQUENTLY REPORTED EPIGENETICALLY DYSREGULATED MIRNAS. THERE IS A NEED TO FURTHER STUDY MOLECULAR MECHANISMS OF VARIOUS DISEASES TO BETTER UNDERSTAND THE CROSSTALK BETWEEN EPIGENETICS AND GENE EXPRESSION AND TO DEVELOP NEW THERAPEUTIC OPTIONS AND BIOMARKERS. 2016 5 5406 30 REGULATING THE REGULATORS: MICRORNA AND ASTHMA. ONE OBSTACLE TO DEVELOPING AN EFFECTIVE THERAPEUTIC STRATEGY TO TREAT OR PREVENT ASTHMA IS THAT THE FUNDAMENTAL CAUSES OF ASTHMA ARE NOT TOTALLY UNDERSTOOD. ASTHMA IS THOUGHT TO BE A CHRONIC TH2 IMMUNE-MEDIATED INFLAMMATORY DISEASE. EPIGENETIC CHANGES ARE RECOGNIZED TO PLAY A ROLE IN THE INITIATION AND MAINTENANCE OF A TH2 RESPONSE. MICRORNAS (MIRNAS) ARE KEY EPIGENETIC REGULATORS OF GENE EXPRESSION, AND THEIR EXPRESSION IS HIGHLY REGULATED, THEREFORE, DEREGULATION OF MIRNAS MAY PLAY AN IMPORTANT ROLE IN THE PATHOGENESIS OF ASTHMA. PROFILING CIRCULATING MIRNA MIGHT PROVIDE THE HIGHEST SPECIFICITY AND SENSITIVITY TO DIAGNOSE ASTHMA; SIMILARLY, CORRECTING POTENTIAL DEFECTS IN THE MIRNA REGULATION NETWORK MAY LEAD TO NEW THERAPEUTIC MODALITIES TO TREAT THIS DISEASE. 2011 6 6371 49 THE ROLE OF MICRORNAS IN THE PATHOGENESIS AND TREATMENT OF HEMATOPOIETIC MALIGNANCIES. MICRORNAS (MIRNAS) COMPRISE A RECENTLY DISCOVERED CLASS OF NON-CODING RNAS WITH REGULATORY FUNCTIONS IN POST-TRANSCRIPTIONAL GENE EXPRESSION CONTROL. MANY MIRNAS ARE LOCATED IN GENOMIC REGIONS THAT ARE FREQUENTLY DELETED IN CANCER, OR ARE SUBJECT TO EPIGENETIC AND TRANSCRIPTIONAL DEREGULATION IN CANCER CELLS. THE MIRNA TRANSCRIPTOME OF CANCER CELLS IS VERY DIFFERENT FROM THAT OF THEIR NORMAL CELL COUNTERPARTS. MIRNAS CAN EXHIBIT ONCOGENIC OR TUMOR SUPPRESSIVE OR EVEN BOTH PROPERTIES DEPENDING ON THE SPECIFIC TARGETS AND CELLULAR CONTEXT. IT IS BECOMING INCREASINGLY CLEAR THAT MIRNAS NOT ONLY SERVE AS USEFUL TUMOR BIOMARKERS WITH IMPLICATIONS FOR DIAGNOSIS, PROGNOSIS AND THE PREDICTION OF TREATMENT RESPONSES, BUT MAY ALSO BE USED FOR TARGETED CANCER TREATMENT AND EVEN AS THERAPEUTICS. IN THIS REVIEW, WE PROVIDE AN OVERVIEW OF RECENT ADVANCES IN OUR UNDERSTANDING OF THE TUMOR SUPPRESSOR MIRNAS AND ONCOMIRS INVOLVED IN THE PATHOGENESIS OF LEUKEMIAS AND LYMPHOMAS, AND THEIR TARGET TRANSCRIPTS IN CANCER SIGNALING NETWORKS. IN PARTICULAR, WE FOCUS ON THE ROLE OF MIRNAS IN CHRONIC LYMPHOCYTIC AND ACUTE LYMPHOBLASTIC LEUKEMIA AND IN B-CELL LYMPHOMAS. IN THE SECOND PART, WE REVIEW THE VARIOUS ALTERNATIVE STRATEGIES OF TARGETING MIRNAS IN CANCER THERAPY. METHODS OF ONCOMIR ANTAGONIZATION BY ANTAGOMIRS OR LOCKED NUCLEID ACIDS ARE CONTRASTED WITH STRATEGIES THAT HARNESS THE TUMOR SUPPRESSIVE PROPERTIES OF CERTAIN MIRNAS FOR CANCER TREATMENT. PRECLINICAL PROGRESS, ALSO WITH REGARD TO DELIVERY STRATEGIES, POSSIBLE SIDE EFFECTS AND OTHER PHARMACOLOGICAL ASPECTS, IS PRESENTED ALONG WITH RESULTS FROM THE FIRST HUMAN TRIALS ASSESSING THE SAFETY AND EFFICACY OF MIRNA-TARGETING THERAPEUTICS. 2013 7 4372 44 MIRNAS, OXIDATIVE STRESS, AND CANCER: A COMPREHENSIVE AND UPDATED REVIEW. OXIDATIVE STRESS REFERS TO ELEVATED LEVELS OF INTRACELLULAR REACTIVE OXYGEN SPECIES (ROS). ROS HOMEOSTASIS FUNCTIONS AS A SIGNALING PATHWAY FOR NORMAL CELL SURVIVAL AND APPROPRIATE CELL SIGNALING. CHRONIC INFLAMMATION INDUCED BY IMBALANCED LEVELS OF ROS CONTRIBUTES TO MANY DISEASES AND DIFFERENT TYPES OF CANCER. ROS CAN ALTER THE EXPRESSION OF ONCOGENES AND TUMOR SUPPRESSOR GENES THROUGH EPIGENETIC MODIFICATIONS, TRANSCRIPTION FACTORS, AND NON-CODING RNAS. MICRORNAS (MIRNAS) ARE SMALL NON-CODING RNAS THAT PLAY A KEY ROLE IN MOST BIOLOGICAL PATHWAYS. EACH MIRNA REGULATES HUNDREDS OF TARGET GENES BY INHIBITING PROTEIN TRANSLATION AND/OR PROMOTING MESSENGER RNA DEGRADATION. IN NORMAL CONDITIONS, MIRNAS PLAY A PHYSIOLOGICAL ROLE IN CELL PROLIFERATION, DIFFERENTIATION, AND APOPTOSIS. HOWEVER, DIFFERENT FACTORS THAT CAN DYSREGULATE CELL SIGNALING AND CELLULAR HOMEOSTASIS CAN ALSO AFFECT MIRNA EXPRESSION. THE ALTERATION OF MIRNA EXPRESSION CAN WORK AGAINST DISTURBING FACTORS OR MEDIATE THEIR EFFECTS. OXIDATIVE STRESS IS ONE OF THESE FACTORS. CONSIDERING THE COMPLEX INTERPLAY BETWEEN ROS LEVEL AND MIRNA REGULATION AND BOTH OF THESE WITH CANCER DEVELOPMENT, WE REVIEW THE ROLE OF MIRNAS IN CANCER, FOCUSING ON THEIR FUNCTION IN OXIDATIVE STRESS. 2020 8 3350 42 HISTONE DEACETYLATION MEETS MIRNA: EPIGENETICS AND POST-TRANSCRIPTIONAL REGULATION IN CANCER AND CHRONIC DISEASES. INTRODUCTION: EPIGENETIC REGULATION VIA DNA METHYLATION, HISTONE ACETYLATION, AS WELL AS BY MICRORNAS (MIRNAS) IS CURRENTLY IN THE SCIENTIFIC FOCUS DUE TO ITS ROLE IN CARCINOGENESIS AND ITS INVOLVEMENT IN INITIATION, PROGRESSION AND METASTASIS. WHILE MANY TARGET GENES OF DNA METHYLATION, HISTONE ACETYLATION AND MIRNAS ARE KNOWN, EVEN LESS INFORMATION EXISTS AS TO HOW THESE MECHANISMS COOPERATE AND HOW THEY MAY REGULATE EACH OTHER IN A SPECIFIC PATHOLOGICAL CONTEXT. FOR FURTHER DEVELOPMENT OF THERAPEUTIC APPROACHES, THIS REVIEW PRESENTS THE CURRENT STATUS OF THE CROSSTALK OF HISTONE ACETYLATION AND MIRNAS IN HUMAN CARCINOGENESIS AND CHRONIC DISEASES. AREAS COVERED: THIS ARTICLE REVIEWS INFORMATION FROM COMPREHENSIVE PUBMED SEARCHES TO EVALUATE RELEVANT LITERATURE WITH A FOCUS ON POSSIBLE ASSOCIATION BETWEEN HISTONE ACETYLATION, MIRNAS AND THEIR TARGETS. OUR ANALYSIS IDENTIFIED SPECIFIC MIRNAS WHICH COLLABORATE WITH HISTONE DEACETYLASES (HDACS) AND COOPERATIVELY REGULATE SEVERAL RELEVANT TARGET GENES. EXPERT OPINION: FOURTEEN MIRNAS COULD BE LINKED TO THE EXPRESSION OF EIGHT HDACS INFLUENCING THE ALPHA-(1,6)-FUCOSYLTRANSFERASE, POLYCYSTIN-2 AND THE FIBROBLAST-GROWTH-FACTOR 2 PATHWAYS. FOCUSING ON THE COMPLEX LINKAGE OF MIRNA AND HDAC EXPRESSION COULD GIVE DEEPER INSIGHTS IN NEW 'DRUGGABLE' TARGETS AND MIGHT PROVIDE POSSIBLE NOVEL THERAPEUTIC APPROACHES IN FUTURE. 2015 9 3949 47 LNCRNAS IN T LYMPHOCYTES: RNA REGULATION AT THE HEART OF THE IMMUNE RESPONSE. GENOME-WIDE ANALYSES IN THE LAST DECADE HAVE UNCOVERED THE PRESENCE OF A LARGE NUMBER OF LONG NON-PROTEIN-CODING TRANSCRIPTS THAT SHOW HIGHLY TISSUE- AND STATE-SPECIFIC EXPRESSION PATTERNS. HIGH-THROUGHPUT SEQUENCING ANALYSES IN DIVERSE SUBSETS OF IMMUNE CELLS HAVE REVEALED A COMPLEX AND DYNAMIC EXPRESSION PATTERN FOR THESE LONG NONCODING RNAS (LNCRNAS) THAT CORRELATE WITH THE FUNCTIONAL STATES OF IMMUNE CELLS. ALTHOUGH THE VAST MAJORITY OF LNCRNAS EXPRESSED IN IMMUNE CELLS REMAIN UNSTUDIED, FUNCTIONAL STUDIES PERFORMED ON A SMALL SUBSET HAVE INDICATED THAT THEIR STATE-SPECIFIC EXPRESSIONS PATTERN FREQUENTLY HAS A REGULATORY IMPACT ON THE FUNCTION OF IMMUNE CELLS. IN VIVO AND IN VITRO STUDIES HAVE POINTED TO THE INVOLVEMENT OF LNCRNAS IN A WIDE VARIETY OF CELLULAR PROCESSES, INCLUDING BOTH THE INNATE AND ADAPTIVE IMMUNE RESPONSE THROUGH MECHANISMS RANGING FROM EPIGENETIC AND TRANSCRIPTIONAL REGULATION TO SEQUESTRATION OF FUNCTIONAL MOLECULES IN SUBCELLULAR COMPARTMENTS. THIS REVIEW WILL FOCUS MAINLY ON THE ROLE OF LNCRNAS IN CD4(+) AND CD8(+) T CELLS, WHICH PLAY PIVOTAL ROLES IN ADAPTIVE IMMUNITY. RECENT STUDIES HAVE POINTED TO KEY PHYSIOLOGICAL FUNCTIONS FOR LNCRNAS DURING SEVERAL DEVELOPMENTAL AND FUNCTIONAL STAGES OF THE LIFE CYCLE OF LYMPHOCYTES. ALTHOUGH LNCRNAS PLAY IMPORTANT PHYSIOLOGICAL ROLES IN LYMPHOCYTIC RESPONSE TO ANTIGENIC STIMULATION, DIFFERENTIATION INTO EFFECTOR CELLS, AND SECRETION OF CYTOKINES, THEIR DYSREGULATED EXPRESSION CAN PROMOTE OR SUSTAIN PATHOLOGICAL STATES SUCH AS AUTOIMMUNITY, CHRONIC INFLAMMATION, CANCER, AND VIREMIA. THIS, TOGETHER WITH THEIR HIGHLY CELL TYPE-SPECIFIC EXPRESSION PATTERNS, MAKES LNCRNAS IDEAL THERAPEUTIC TARGETS AND UNDERSCORES THE NEED FOR ADDITIONAL STUDIES INTO THE ROLE OF THESE UNDERSTUDIED TRANSCRIPTS IN ADAPTIVE IMMUNE RESPONSE. 2021 10 4228 28 METHYLATION OF INFLAMMATORY CELLS IN LUNG DISEASES. THIS CHAPTER OVERVIEWS ROLES OF DNA METHYLATION IN INFLAMMATORY CELL BIOLOGY WITH THE FOCUSES ON LYMPHOCYTES AND MACROPHAGES/MONOCYTES IN LUNG DISEASES, ALTHOUGH THE MOLECULAR MECHANISMS BY WHICH TARGET GENES ARE METHYLATED AND REGULATED IN LUNG DISEASES REMAIN UNCLEAR. MOST OF EPIGENETIC STUDIES ON DNA METHYLATION OF TARGET GENES IN LUNG DISEASES MAINLY DEMONSTRATED THE CORRELATION OF DNA METHYLATION OF TARGET GENES WITH THE LEVELS OF OTHER CORRESPONDING FACTORS, WITH THE SPECIFICITY OF CLINICAL PHENOMES, AND WITH THE SEVERITY OF LUNG DISEASES. THERE IS AN URGENT NEED TO IDENTIFY AND VALIDATE THE SPECIFICITY AND REGULATORY MECHANISMS OF INFLAMMATORY CELL EPIGENETICS IN DEPTH. THE EPIGENETIC HETEROGENEITY AMONG DIFFERENT SUBSETS OF T CELLS AND AMONG PROMOTERS OR NON-PROMOTERS OF TARGET GENES SHOULD BE FURTHERMORE CLARIFIED IN ACUTE OR CHRONIC LUNG DISEASES AND CANCERS. THE HYPER/HYPO-METHYLATION AND MODIFICATIONS OF CHROMOSOL AND EXTRACHROMOSOMAL DNA MAY RESULT IN ALTERNATIONS IN PROTEINS WITHIN INFLAMMATORY CELLS, WHICH CAN BE IDENTIFIED AS DISEASE-SPECIFIC BIOMARKERS AND THERAPEUTIC TARGETS. 2020 11 4335 55 MICRORNAS: SMALL MOLECULES WITH SIGNIFICANT FUNCTIONS, PARTICULARLY IN THE CONTEXT OF VIRAL HEPATITIS B AND C INFECTION. A MICRORNA (MIRNA) IS DEFINED AS A SMALL MOLECULE OF NON-CODING RNA (NCRNA). ITS MOLECULAR SIZE IS ABOUT 20 NUCLEOTIDES (NT), AND IT ACTS ON GENE EXPRESSION'S REGULATION AT THE POST-TRANSCRIPTION LEVEL THROUGH BINDING TO THE 3'UNTRANSLATED REGIONS (UTR), CODING SEQUENCES, OR 5'UTR OF THE TARGET MESSENGER RNAS (MRNAS), WHICH LEADS TO THE SUPPRESSION OR DEGRADATION OF THE MRNA. IN RECENT YEARS, A HUGE EVOLUTION HAS IDENTIFIED THE ORIGIN AND FUNCTION OF MIRNAS, FOCUSING ON THEIR IMPORTANT EFFECTS IN RESEARCH AND CLINICAL APPLICATIONS. FOR EXAMPLE, MICRORNAS ARE KEY PLAYERS IN HCV INFECTION AND HAVE IMPORTANT HOST CELLULAR FACTORS REQUIRED FOR HCV REPLICATION AND CELL GROWTH. ALTERED EXPRESSION OF MIRNAS AFFECTS THE PATHOGENICITY ASSOCIATED WITH HCV INFECTION THROUGH REGULATING DIFFERENT SIGNALING PATHWAYS THAT CONTROL HCV/IMMUNITY INTERACTIONS, PROLIFERATION, AND CELL DEATH. ON THE OTHER HAND, CIRCULATING MIRNAS CAN BE USED AS NOVEL BIOMARKERS AND DIAGNOSTIC TOOLS FOR HCV PATHOGENESIS AND EARLY THERAPEUTIC RESPONSE. MOREOVER, MICRORNAS (MIRNA) HAVE BEEN INVOLVED IN HEPATITIS B VIRUS (HBV) GENE EXPRESSION AND ADVANCED ANTIVIRAL DISCOVERY. THEY REGULATE HBV/HCV REPLICATION AND PATHOGENESIS WITH DIFFERENT PATHWAYS INVOLVING FACILITATION, INHIBITION, ACTIVATION OF THE IMMUNE SYSTEM (INNATE AND ADAPTIVE), AND EPIGENETIC MODIFICATIONS. IN THIS SHORT REVIEW, WE WILL DISCUSS HOW MICRORNAS CAN BE USED AS PROGNOSTIC, DIAGNOSTIC, AND THERAPEUTIC TOOLS, ESPECIALLY FOR CHRONIC HEPATITIS VIRUSES (HBV AND HCV), AS WELL AS HOW THEY COULD BE USED AS NEW BIOMARKERS DURING INFECTION AND ADVANCED TREATMENT. 2023 12 5264 30 PROMISING DIRECTIONS IN ATHEROSCLEROSIS TREATMENT BASED ON EPIGENETIC REGULATION USING MICRORNAS AND LONG NONCODING RNAS. ATHEROSCLEROSIS IS ONE OF THE LEADING CAUSES OF MORTALITY FROM CARDIOVASCULAR DISEASE (CVD) AND IS A CHRONIC INFLAMMATORY DISEASE OF THE MIDDLE AND LARGE ARTERIES CAUSED BY A DISRUPTION OF LIPID METABOLISM. NONCODING RNA (NCRNA), INCLUDING MICRORNA (MIRNA), SMALL INTERFERING RNA (SIRNA) AND LONG NONCODING RNA (LNCRNA), WAS INVESTIGATED FOR THE TREATMENT OF ATHEROSCLEROSIS. REGULATION OF THE EXPRESSION OF NONCODING RNA TARGETS THE CONSTITUENT ELEMENT OF THE PATHOGENESIS OF ATHEROSCLEROSIS. CURRENTLY, MIRNA THERAPY COMMONLY EMPLOYS MIRNA ANTAGONISTS AND MIMIC COMPOUNDS. IN THIS REVIEW, ATTENTION IS FOCUSED ON APPROACHES TO CORRECTING MOLECULAR DISORDERS BASED ON THE GENETIC REGULATION OF THE TRANSCRIPTION OF KEY GENES RESPONSIBLE FOR THE DEVELOPMENT OF ATHEROSCLEROSIS. PROMISING TECHNOLOGIES WERE CONSIDERED FOR THE TREATMENT OF ATHEROSCLEROSIS, AND EXAMPLES ARE GIVEN FOR TECHNOLOGIES THAT HAVE BEEN SHOWN TO BE EFFECTIVE IN CLINICAL TRIALS. 2019 13 3964 41 LONG NONCODING RNAS IN LUNG CANCER. DESPITE GREAT PROGRESS IN RESEARCH AND TREATMENT OPTIONS, LUNG CANCER REMAINS THE LEADING CAUSE OF CANCER-RELATED DEATHS WORLDWIDE. ONCOGENIC DRIVER MUTATIONS IN PROTEIN-ENCODING GENES WERE DEFINED AND ALLOW FOR PERSONALIZED THERAPIES BASED ON GENETIC DIAGNOSES. NONETHELESS, DIAGNOSIS OF LUNG CANCER MOSTLY OCCURS AT LATE STAGES, AND CHRONIC TREATMENT IS FOLLOWED BY A FAST ONSET OF CHEMORESISTANCE. HENCE, THERE IS AN URGENT NEED FOR RELIABLE BIOMARKERS AND ALTERNATIVE TREATMENT OPTIONS. WITH THE ERA OF WHOLE GENOME AND TRANSCRIPTOME SEQUENCING TECHNOLOGIES, LONG NONCODING RNAS EMERGED AS A NOVEL CLASS OF VERSATILE, FUNCTIONAL RNA MOLECULES. ALTHOUGH FOR MOST OF THEM THE MECHANISM OF ACTION REMAINS TO BE DEFINED, ACCUMULATING EVIDENCE CONFIRMS THEIR INVOLVEMENT IN VARIOUS ASPECTS OF LUNG TUMORIGENESIS. THEY ARE FUNCTIONAL ON THE EPIGENETIC, TRANSCRIPTIONAL, AND POSTTRANSCRIPTIONAL LEVEL AND ARE REGULATORS OF PATHOPHYSIOLOGICAL KEY PATHWAYS INCLUDING CELL GROWTH, APOPTOSIS, AND METASTASIS. LONG NONCODING RNAS ARE GAINING INCREASING ATTENTION AS POTENTIAL BIOMARKERS AND A NOVEL CLASS OF DRUGGABLE MOLECULES. IT HAS BECOME CLEAR THAT WE ARE ONLY BEGINNING TO UNDERSTAND THE COMPLEXITY OF TUMORIGENIC PROCESSES. THE CLINICAL INTEGRATION OF LONG NONCODING RNAS IN TERMS OF PROGNOSTIC AND PREDICTIVE BIOMARKER SIGNATURES AND ADDITIONAL CANCER TARGETS COULD PROVIDE A CHANCE TO INCREASE THE THERAPEUTIC BENEFIT. HERE, WE REVIEW THE CURRENT KNOWLEDGE ABOUT THE EXPRESSION, REGULATION, BIOLOGICAL FUNCTION, AND CLINICAL RELEVANCE OF LONG NONCODING RNAS IN LUNG CANCER. 2016 14 4330 48 MICRORNAS: AN EPIGENETIC TOOL TO STUDY CELIAC DISEASE. THIS ARTICLE SUMMARIZES RECENT FINDINGS ON THE ROLE OF MICRORNAS (MIRNAS) IN BIOLOGICAL PROCESSES ASSOCIATED WITH THE REGULATION OF CHRONIC INFLAMMATION AND AUTOIMMUNITY. MIRNAS ARE SMALL NON-CODING RNA MOLECULES THAT HAVE BEEN RECENTLY EMERGED AS A NEW CLASS OF MODULATORS OF GENE EXPRESSION AT THE POST-TRANSCRIPTIONAL LEVEL. MIRNAS BIND TO COMPLEMENTARY SEQUENCES OF SPECIFIC TARGETS OF MESSENGERS RNA, WHICH CAN INTERFERE WITH PROTEIN SYNTHESIS. WE REVIEWED STUDIES THAT EVALUATED THE EXPRESSION PATTERNS OF MIRNAS IN DIFFERENT AUTOIMMUNE DISEASES, ESPECIALLY IN CELIAC DISEASE (CD). CD IS A CHRONIC ENTEROPATHY TRIGGERED BY GLUTEN PROTEINS, CHARACTERIZED BY ALTERED IMMUNE RESPONSES IN GENETICALLY SUSCEPTIBLE INDIVIDUALS THAT RESULTS IN DAMAGE TO THE BOWEL MUCOSA. CD HAS A HIGH PREVALENCE AND AN EFFECTIVE TREATMENT BY A SPECIFIC DIET ("GLUTEN FREE DIET"). GENETIC FACTORS CONFER SUSCEPTIBILITY BUT DO NOT EXPLAIN THE WHOLE DISEASE, SUGGESTING THAT ENVIRONMENTAL FACTORS DO PLAY A RELEVANT ROLE IN THE DEVELOPMENT OF THE CONDITION.THE EVALUATION OF THE POTENTIAL ROLE OF MIRNA IS OF PARTICULAR INTEREST IN CD GIVEN THAT THESE EPIGENETIC MECHANISMS IN THE PATHOGENESIS OF AUTOIMMUNE AND INFLAMMATORY DISEASES HAVE BEEN RECENTLY DESCRIBED. IMPROVING OUR UNDERSTANDING OF MIRNAS IN CD WILL CONTRIBUTE TO CLARIFY THE ROLE OF ALTERED EPIGENETIC REGULATION IN THE DEVELOPMENT AND COURSE OF THIS DISEASE. 2014 15 5573 41 ROLE OF MICRORNA IN SEVERE ASTHMA. THE VARIOUS ROLES OF MICRORNAS (MIRNAS) IN THE EPIGENETIC REGULATION OF HUMAN DISEASE ARE GAINING IMPORTANCE AS AREAS OF RESEARCH, AND A BETTER UNDERSTANDING OF THESE ROLES MAY IDENTIFY TARGETS FOR DEVELOPMENT OF NOVEL THERAPIES FOR SEVERE ASTHMA. MIRNAS, A CLASS OF SMALL NON-CODING RNAS THAT SERVE AS POST-TRANSCRIPTIONAL GENE REPRESSORS, ARE RECOGNIZED AS CRITICAL COMPONENTS IN REGULATING TISSUE HOMEOSTASIS. ALTERATION IN MIRNA EXPRESSION DISRUPTS HOMEOSTASIS AND IS AN UNDERLYING MECHANISM FOR DEVELOPMENT OF CHRONIC RESPIRATORY DISEASES, INCLUDING ASTHMA. DIFFERENTIAL PROFILES OF MIRNA EXPRESSION ARE INVOLVED IN INFLAMMATION AND REMODELING PATHOGENICITY VIA ACTIVATING AIRWAY STRUCTURAL CELLS AND IMMUNE CELLS AND INDUCING CYTOKINE RELEASES. MIRNA ACTION LEADS TO ASTHMA PROGRESSION FROM MILD TO SEVERE STAGES. HERE, CURRENT KNOWLEDGE OF THE HETEROGENEOUS ROLES OF MIRNAS IN SEVERE ASTHMA, INCLUDING BIOLOGICAL MECHANISMS UNDERLYING TH2 AND MACROPHAGE POLARIZATION, TYPE 2 INNATE LYMPHOID CELL (ILC2) BIOLOGY REGULATION, STEROID-RESISTANT ASTHMA PHENOTYPE, AIRWAY SMOOTH MUSCLE (ASM) DYSFUNCTION, AND IMPAIRED ANTI-VIRAL INNATE IMMUNE, ARE REVIEWED. 2019 16 1172 35 CONTRIBUTION OF THE ENVIRONMENT, EPIGENETIC MECHANISMS AND NON-CODING RNAS IN PSORIASIS. DESPITE THE INCREASING RESEARCH AND CLINICAL INTEREST IN THE PREDISPOSITION OF PSORIASIS, A CHRONIC INFLAMMATORY SKIN DISEASE, THE MULTITUDE OF GENETIC AND ENVIRONMENTAL FACTORS INVOLVED IN ITS PATHOGENESIS REMAIN UNCLEAR. THIS COMPLEXITY IS FURTHER EXACERBATED BY THE SEVERAL CELL TYPES THAT ARE IMPLICATED IN PSORIASIS'S PROGRESSION, INCLUDING KERATINOCYTES, MELANOCYTES AND VARIOUS IMMUNE CELL TYPES. THE OBSERVED INTERACTIONS BETWEEN THE GENETIC SUBSTRATE AND THE ENVIRONMENT LEAD TO EPIGENETIC ALTERATIONS THAT DIRECTLY OR INDIRECTLY AFFECT GENE EXPRESSION. CHANGES IN DNA METHYLATION AND HISTONE MODIFICATIONS THAT ALTER DNA-BINDING SITE ACCESSIBILITY, AS WELL AS NON-CODING RNAS IMPLICATED IN THE POST-TRANSCRIPTIONAL REGULATION, ARE MECHANISMS OF GENE TRANSCRIPTIONAL ACTIVITY MODIFICATION AND THEREFORE AFFECT THE PATHWAYS INVOLVED IN THE PATHOGENESIS OF PSORIASIS. IN THIS REVIEW, WE SUMMARIZE THE RESEARCH CONDUCTED ON THE ENVIRONMENTAL FACTORS CONTRIBUTING TO THE DISEASE ONSET, EPIGENETIC MODIFICATIONS AND NON-CODING RNAS EXHIBITING DEREGULATION IN PSORIASIS, AND WE FURTHER CATEGORIZE THEM BASED ON THE UNDER-STUDY CELL TYPES. WE ALSO ASSESS THE RECENT LITERATURE CONSIDERING THERAPEUTIC APPLICATIONS TARGETING MOLECULES THAT COMPROMISE THE EPIGENOME, AS A WAY TO SUPPRESS THE INFLAMMATORY CUTANEOUS CASCADE. 2022 17 1716 35 DYSREGULATED CD4+ T CELLS AND MICRORNAS IN MYOCARDITIS. MYOCARDITIS IS A POLYMORPHIC DISEASE COMPLICATED WITH INDETERMINATE ETIOLOGY AND PATHOGENESIS, AND REPRESENTS ONE OF THE MOST CHALLENGING CLINICAL PROBLEMS LACKING SPECIFIC DIAGNOSIS AND EFFECTIVE THERAPY. IT IS CAUSED BY A COMPLEX INTERPLAY OF ENVIRONMENTAL AND GENETIC FACTORS, AND CAUSAL LINKS BETWEEN DYSREGULATED MICRORIBONUCLEIC ACIDS (MIRNAS) AND MYOCARDITIS HAVE ALSO BEEN SUPPORTED BY RECENT EPIGENETIC RESEARCHES. BOTH DYSREGULATED CD4+ T CELLS AND MIRNAS PLAY CRITICAL ROLES IN THE PATHOGENESIS OF MYOCARDITIS, AND THE CLASSIC TRIPHASIC MODEL OF ITS PATHOGENESIS CONSISTS OF THE ACUTE INFECTIOUS, SUBACUTE IMMUNE, AND RECOVERY/CHRONIC MYOPATHIC PHASE. CD4+ T CELLS ARE KEY PATHOGENIC FACTORS UNDERLYING THE DEVELOPMENT AND PROGRESSION OF MYOCARDITIS, AND THE EFFECTOR AND REGULATORY SUBSETS, RESPECTIVELY, PROMOTE AND INHIBIT AUTOIMMUNE RESPONSES. FURTHERMORE, THE RECIPROCAL INTERPLAY OF THESE SUBSETS INFLUENCES THE PATHOGENESIS AS WELL. DYSREGULATED MIRNAS ALONG WITH THEIR MRNA AND PROTEIN TARGETS HAVE BEEN IDENTIFIED IN HEART BIOPSIES (INTRACELLULAR MIRNAS) AND BODY FLUIDS (CIRCULATING MIRNAS) DURING MYOCARDITIS. THESE MIRNAS SHOW PHASE-DEPENDENT CHANGES, AND CORRELATE WITH VIRAL INFECTION, IMMUNE STATUS, FIBROSIS, DESTRUCTION OF CARDIOMYOCYTES, ARRHYTHMIAS, CARDIAC FUNCTIONS, AND OUTCOMES. THUS, MIRNAS ARE PROMISING DIAGNOSTIC MARKERS AND THERAPEUTIC TARGETS IN MYOCARDITIS. IN THIS REVIEW, WE REVIEW MYOCARDITIS WITH AN EMPHASIS ON ITS PATHOGENESIS, AND PRESENT A SUMMARY OF CURRENT KNOWLEDGE OF DYSREGULATED CD4+ T CELLS AND MIRNAS IN MYOCARDITIS. 2020 18 6340 32 THE ROLE OF EPIGENETIC FACTORS IN PSORIASIS. PSORIASIS IS A CHRONIC, SYSTEMIC, IMMUNE-MEDIATED DISEASE WITH AN INCIDENCE OF APPROXIMATELY 2%. THE PATHOGENESIS OF THE DISEASE IS COMPLEX AND NOT YET FULLY UNDERSTOOD. GENETIC FACTORS PLAY A SIGNIFICANT ROLE IN THE PATHOGENESIS OF THE DISEASE. IN PREDISPOSED INDIVIDUALS, MULTIPLE TRIGGER FACTORS MAY CONTRIBUTE TO DISEASE ONSET AND EXACERBATIONS OF SYMPTOMS. ENVIRONMENTAL FACTORS (STRESS, INFECTIONS, CERTAIN MEDICATIONS, NICOTINISM, ALCOHOL, OBESITY) PLAY A SIGNIFICANT ROLE IN THE PATHOGENESIS OF PSORIASIS. IN ADDITION, EPIGENETIC MECHANISMS ARE CONSIDERED RESULT IN MODULATION OF INDIVIDUAL GENE EXPRESSION AND AN INCREASED LIKELIHOOD OF THE DISEASE. STUDIES HIGHLIGHT THE SIGNIFICANT ROLE OF EPIGENETIC FACTORS IN THE ETIOLOGY AND PATHOGENESIS OF PSORIASIS. EPIGENETIC MECHANISMS IN PSORIASIS INCLUDE DNA METHYLATION, HISTONE MODIFICATIONS AND NON-CODING RNAS. EPIGENETIC MECHANISMS INDUCE GENE EXPRESSION CHANGES UNDER THE INFLUENCE OF CHEMICAL MODIFICATIONS OF DNA AND HISTONES, WHICH ALTER CHROMATIN STRUCTURE AND ACTIVATE TRANSCRIPTION FACTORS OF SELECTED GENES, THUS LEADING TO TRANSLATION OF NEW MRNA WITHOUT AFFECTING THE DNA SEQUENCE. EPIGENETIC FACTORS CAN REGULATE GENE EXPRESSION AT THE TRANSCRIPTIONAL (VIA HISTONE MODIFICATION, DNA METHYLATION) AND POSTTRANSCRIPTIONAL LEVELS (VIA MICRORNAS AND LONG NON-CODING RNAS). THIS STUDY AIMS TO PRESENT AND DISCUSS THE DIFFERENT EPIGENETIC MECHANISMS IN PSORIASIS BASED ON A REVIEW OF THE AVAILABLE LITERATURE. 2021 19 6309 27 THE REGULATION OF MIRNAS IN INFLAMMATION-RELATED CARCINOGENESIS. CHRONIC INFLAMMATION PLAYS IMPORTANT ROLES IN THE INITIATION AND DEVELOPMENT OF VARIOUS CANCERS, PARTICULARLY GASTROINTESTINAL CANCER. CANCER IS CHARACTERIZED BY STEPWISE ACCUMULATION OF GENETIC AND EPIGENETIC ALTERATIONS OF GENES. AS A HIGH RISK FACTOR FOR CANCER, CHRONIC INFLAMMATORY RESPONSE PRODUCES GREAT AMOUNT OF MEDIATORS, INCLUDING CYTOKINES, REACTIVE OXYGEN AND NITROGEN SPECIES, PROTEINASES, WHICH CAN INDUCE GENETIC AND EPIGENETIC CHANGES OF CANCER-ASSOCIATED GENES AND PATHWAYS. FURTHERMORE, INFLAMMATION ALSO MODULATES THE EXPRESSION OF MIRNAS THAT NOT ONLY REGULATE THE EXPRESSION OF TUMOR-RELATED PROTEINS BUT ALSO ENHANCE THE TUMOR-PROMOTING INFLAMMATORY PROCESS. IN THE CURRENT REVIEW, WE SUMMARIZE THE MECHANISMS BY WHICH INFLAMMATORY MEDIATORS AND SIGNALING REGULATE THE BIOSYNTHESIS OF MIRNAS, AS WELL AS THE INVOLVEMENT OF MIRNAS IN THE FEEDBACK LOOPS PROMOTING INFLAMMATION-ASSOCIATED CARCINOGENESIS. 2015 20 3703 28 INFLAMMATORY SIGNALLING AS MEDIATOR OF EPIGENETIC MODULATION IN TISSUE-SPECIFIC CHRONIC INFLAMMATION. RECENT SUCCESSES OF THERAPEUTIC INTERVENTION IN CHRONIC INFLAMMATORY DISEASES USING EPIGENETIC MODIFIERS SUCH AS HISTONE DEACETYLASE INHIBITORS AND INHIBITORS OF DNA METHYLATION SUGGEST THAT EPIGENETIC REPROGRAMMING PLAYS A ROLE IN THE AETIOLOGY OF THESE DISEASES. THE EPIGENETIC SIGNATURE OF A GIVEN IMMUNE CELL IS REFLECTED IN THE HISTORY OF MODIFICATIONS FROM DIFFERENT SIGNALS THE CELL HAS BEEN SUBJECTED TO DURING DIFFERENTIATION. LIKE OTHER CELLS, DIFFERENTIATING IMMUNE CELLS ARE DEPENDENT ON A COMPLEX COMBINATION OF INTER- AND INTRACELL SIGNALLING AS WELL AS TRANSCRIPTION MACHINERIES TO MODULATE THEIR EPIGENOMES IN ORDER TO MEDIATE DIFFERENTIATION. DESPITE EXTENSIVE RESEARCH INTO THESE PROCESSES, THE LINK BETWEEN CELLULAR SIGNALLING AND EPIGENETIC MODULATION REMAINS POORLY UNDERSTOOD. HERE, WE REVIEW RECENT PROGRESS AND DISCUSS KEY FACTORS DRIVING EPIGENETIC MODULATION IN CHRONIC INFLAMMATION. 2009