1 6364 123 THE ROLE OF LONG NONCODING RNAS IN NEURODEGENERATIVE DISEASES. LONG NONCODING RNAS (LNCRNAS) ARE TRANSCRIPTS WITH LOW PROTEIN-CODING POTENTIAL BUT OCCUPY A LARGE PART OF TRANSCRIPTIONAL OUTPUT. THEIR ROLES INCLUDE REGULATING GENE EXPRESSION AT THE EPIGENETIC, TRANSCRIPTIONAL, AND POST-TRANSCRIPTIONAL LEVEL IN CELLULAR HOMEOSTASIS. HOWEVER, LNCRNA STUDIES ARE STILL IN THEIR INFANCY AND THE FUNCTIONS OF THE VAST MAJORITY OF LNCRNA TRANSCRIPTS REMAIN UNKNOWN. IT IS GENERALLY KNOWN THAT THE FUNCTION OF THE HUMAN NERVOUS SYSTEM LARGELY RELIES ON THE PRECISE REGULATION OF GENE EXPRESSION. VARIOUS STUDIES HAVE SHOWN THAT LNCRNAS HAVE A SIGNIFICANT IMPACT ON NORMAL NEURAL DEVELOPMENT AND ON THE DEVELOPMENT AND PROGRESSION OF NEURODEGENERATIVE DISEASES. IN THIS REVIEW, WE FOCUSED ON RECENT STUDIES ASSOCIATED WITH LNCRNAS IN NEURODEGENERATIVE DISEASES, INCLUDING ALZHEIMER'S DISEASE (AD), PARKINSON'S DISEASE (PD), HUNTINGTON'S DISEASE (HD), AMYOTROPHIC LATERAL SCLEROSIS (ALS), MULTIPLE SYSTEM ATROPHY (MSA), FRONTOTEMPORAL LOBAR DEGENERATION (FTLD), AND GLAUCOMA. GLAUCOMA, CAUSED BY UNEXPLAINED GANGLION CELL LESION AND APOPTOSIS, IS NOW LABELED AS A CHRONIC NEURODEGENERATIVE DISORDER [1], AND THEREFORE, WE DISCUSSED THE ASSOCIATION OF LNCRNAS WITH GLAUCOMA AS WELL. WE ILLUSTRATE THE ROLE OF SOME SPECIFIC LNCRNAS, WHICH MAY PROVIDE NEW INSIGHTS INTO OUR UNDERSTANDING OF THE ETIOLOGY AND PATHOPHYSIOLOGY OF THE NEURODEGENERATIVE DISEASES MENTIONED ABOVE. 2017 2 6347 34 THE ROLE OF EPIGENETICS IN NEUROINFLAMMATORY-DRIVEN DISEASES. NEURODEGENERATIVE DISORDERS ARE CHARACTERIZED BY THE PROGRESSIVE LOSS OF CENTRAL AND/OR PERIPHERAL NERVOUS SYSTEM NEURONS. WITHIN THIS CONTEXT, NEUROINFLAMMATION COMES UP AS ONE OF THE MAIN FACTORS LINKED TO NEURODEGENERATION PROGRESSION. IN FACT, NEUROINFLAMMATION HAS BEEN RECOGNIZED AS AN OUTSTANDING FACTOR FOR ALZHEIMER'S DISEASE (AD), AMYOTROPHIC LATERAL SCLEROSIS (ALS), PARKINSON'S DISEASE (PD), AND MULTIPLE SCLEROSIS (MS). INTERESTINGLY, NEUROINFLAMMATORY DISEASES ARE CHARACTERIZED BY DRAMATIC CHANGES IN THE EPIGENETIC PROFILE, WHICH MIGHT PROVIDE NOVEL PROGNOSTIC AND THERAPEUTIC FACTORS TOWARDS NEUROINFLAMMATORY TREATMENT. DEEP CHANGES IN DNA AND HISTONE METHYLATION, ALONG WITH HISTONE ACETYLATION AND ALTERED NON-CODING RNA EXPRESSION, HAVE BEEN REPORTED AT THE ONSET OF INFLAMMATORY DISEASES. THE AIM OF THIS WORK IS TO REVIEW THE CURRENT KNOWLEDGE ON THIS FIELD. 2022 3 6734 45 WHAT DO WE KNOW ABOUT THE ROLE OF LNCRNAS IN MULTIPLE SCLEROSIS? MULTIPLE SCLEROSIS IS A CHRONIC, INFLAMMATORY AND DEGENERATIVE DISEASE OF THE CENTRAL NERVOUS SYSTEM OF UNKNOWN AETIOLOGY ALTHOUGH WELL-DEFINED EVIDENCE SUPPORTS AN AUTOIMMUNE PATHOGENESIS. SO FAR, THE EXACT MECHANISMS LEADING TO AUTOIMMUNE DISEASES ARE STILL ONLY PARTIALLY UNDERSTOOD. WE KNOW THAT GENETIC, EPIGENETIC, MOLECULAR, AND CELLULAR FACTORS RESULTING IN PATHOGENIC INFLAMMATORY RESPONSES ARE CERTAINLY INVOLVED. LONG NON-CODING RNAS (LNCRNAS) ARE NON-PROTEIN CODING TRANSCRIPTS LONGER THAN 200 NUCLEOTIDES THAT PLAY AN IMPORTANT ROLE IN BOTH INNATE AND ACQUIRED IMMUNITY, SO THERE IS GREAT INTEREST IN LNCRNAS INVOLVED IN AUTOIMMUNE DISEASES. THE RESEARCH ON MULTIPLE SCLEROSIS HAS BEEN ENRICHED WITH MANY STUDIES ON THE MOLECULAR ROLE OF LNCRNAS IN THE PATHOGENESIS OF THE DISEASE AND THEIR POTENTIAL APPLICATION AS DIAGNOSTIC AND PROGNOSTIC BIOMARKERS. IN PARTICULAR, MANY MULTIPLE SCLEROSIS FIELDS OF RESEARCH ARE BASED ON THE IDENTIFICATION OF LNCRNAS AS POSSIBLE BIOMARKERS ABLE TO PREDICT THE ONSET OF THE DISEASE, ITS ACTIVITY DEGREE, ITS PROGRESSION PHASE AND THE RESPONSE TO DISEASE-MODIFYING DRUGS. LAST BUT NOT LEAST, STUDIES ON LNCRNAS CAN PROVIDE A NEW MOLECULAR TARGET FOR NEW THERAPIES, MISSING, SO FAR, A CURE FOR MULTIPLE SCLEROSIS. WHILE OUR KNOWLEDGE ON THE ROLE OF LNCRNA IN MULTIPLE SCLEROSIS HAS RECENTLY IMPROVED, FURTHER STUDIES ARE REQUIRED TO BETTER UNDERSTAND THE SPECIFIC ROLE OF LNCRNAS IN THIS NEUROLOGICAL DISEASE. IN THIS REVIEW, WE PRESENT THE MOST RECENT STUDIES ON MOLECULAR CHARACTERIZATION OF LNCRNAS IN MULTIPLE SCLEROSIS DISORDER DISCUSSING THEIR CLINICAL RELEVANCE AS BIOMARKERS FOR DIAGNOSIS AND TREATMENTS. 2021 4 5583 40 ROLE OF NON-CODING RNAS IN NON-AGING-RELATED NEUROLOGICAL DISORDERS. PROTEIN CODING SEQUENCES REPRESENT ONLY 2% OF THE HUMAN GENOME. RECENT ADVANCES HAVE DEMONSTRATED THAT A SIGNIFICANT PORTION OF THE GENOME IS ACTIVELY TRANSCRIBED AS NON-CODING RNA MOLECULES. THESE NON-CODING RNAS ARE EMERGING AS KEY PLAYERS IN THE REGULATION OF BIOLOGICAL PROCESSES, AND ACT AS "FINE-TUNERS" OF GENE EXPRESSION. NEUROLOGICAL DISORDERS ARE CAUSED BY A WIDE RANGE OF GENETIC MUTATIONS, EPIGENETIC AND ENVIRONMENTAL FACTORS, AND THE EXACT PATHOPHYSIOLOGY OF MANY OF THESE CONDITIONS IS STILL UNKNOWN. IT IS CURRENTLY RECOGNIZED THAT DYSREGULATIONS IN THE EXPRESSION OF NON-CODING RNAS ARE PRESENT IN MANY NEUROLOGICAL DISORDERS AND MAY BE RELEVANT IN THE MECHANISMS LEADING TO DISEASE. IN ADDITION, CIRCULATING NON-CODING RNAS ARE EMERGING AS POTENTIAL BIOMARKERS WITH GREAT POTENTIAL IMPACT IN CLINICAL PRACTICE. IN THIS REVIEW, WE DISCUSS MAINLY THE ROLE OF MICRORNAS AND LONG NON-CODING RNAS IN SEVERAL NEUROLOGICAL DISORDERS, SUCH AS EPILEPSY, HUNTINGTON DISEASE, FRAGILE X-ASSOCIATED ATAXIA, SPINOCEREBELLAR ATAXIAS, AMYOTROPHIC LATERAL SCLEROSIS (ALS), AND PAIN. IN ADDITION, WE GIVE INFORMATION ABOUT THE CONDITIONS WHERE MICRORNAS HAVE DEMONSTRATED TO BE POTENTIAL BIOMARKERS SUCH AS IN EPILEPSY, PAIN, AND ALS. 2018 5 3961 45 LONG NON-CODING RNAS: THE NEW FRONTIER INTO UNDERSTANDING THE ETIOLOGY OF ALCOHOL USE DISORDER. ALCOHOL USE DISORDER (AUD) IS A COMPLEX, CHRONIC, DEBILITATING CONDITION IMPACTING MILLIONS WORLDWIDE. GENETIC, ENVIRONMENTAL, AND EPIGENETIC FACTORS ARE KNOWN TO CONTRIBUTE TO THE DEVELOPMENT OF AUD. LONG NON-CODING RNAS (LNCRNAS) ARE A CLASS OF REGULATORY RNAS, COMMONLY REFERRED TO AS THE "DARK MATTER" OF THE GENOME, WITH LITTLE TO NO PROTEIN-CODING POTENTIAL. LNCRNAS HAVE BEEN IMPLICATED IN NUMEROUS PROCESSES CRITICAL FOR CELL SURVIVAL, SUGGESTING THAT THEY PLAY IMPORTANT FUNCTIONAL ROLES IN REGULATING DIFFERENT CELL PROCESSES. LNCRNAS WERE ALSO SHOWN TO DISPLAY HIGHER TISSUE SPECIFICITY THAN PROTEIN-CODING GENES AND HAVE A HIGHER ABUNDANCE IN THE BRAIN AND CENTRAL NERVOUS SYSTEM, DEMONSTRATING A POSSIBLE ROLE IN THE ETIOLOGY OF PSYCHIATRIC DISORDERS. INDEED, GENETIC (E.G., GENOME-WIDE ASSOCIATION STUDIES (GWAS)), MOLECULAR (E.G., EXPRESSION QUANTITATIVE TRAIT LOCI (EQTL)) AND EPIGENETIC STUDIES FROM POSTMORTEM BRAIN TISSUES HAVE IDENTIFIED A GROWING LIST OF LNCRNAS ASSOCIATED WITH NEUROPSYCHIATRIC AND SUBSTANCE USE DISORDERS. GIVEN THAT THE EXPRESSION PATTERNS OF LNCRNAS HAVE BEEN ASSOCIATED WITH WIDESPREAD CHANGES IN THE TRANSCRIPTOME, INCLUDING METHYLATION, CHROMATIN ARCHITECTURE, AND ACTIVATION OR SUPPRESSION OF TRANSLATIONAL ACTIVITY, THE REGULATORY NATURE OF LNCRNAS MAY BE UBIQUITOUS AND AN INNATE COMPONENT OF GENE REGULATION. IN THIS REVIEW, WE PRESENT A SYNOPSIS OF THE FUNCTIONAL IMPACT THAT LNCRNAS MAY PLAY IN THE ETIOLOGY OF AUD. WE ALSO DISCUSS THE CLASSIFICATIONS OF LNCRNAS, THEIR KNOWN FUNCTIONAL ROLES, AND THERAPEUTIC ADVANCEMENTS IN THE FIELD OF LNCRNAS TO FURTHER CLARIFY THE FUNCTIONAL RELATIONSHIP BETWEEN LNCRNAS AND AUD. 2022 6 2010 46 EPIGENETIC BASIS OF LEAD-INDUCED NEUROLOGICAL DISORDERS. ENVIRONMENTAL LEAD (PB) EXPOSURE IS CLOSELY ASSOCIATED WITH PATHOGENESIS OF A RANGE OF NEUROLOGICAL DISORDERS, INCLUDING ALZHEIMER'S DISEASE (AD), PARKINSON'S DISEASE (PD), AMYOTROPHIC LATERAL SCLEROSIS (ALS), ATTENTION DEFICIT/HYPERACTIVITY DISORDER (ADHD), ETC. EPIGENETIC MACHINERY MODULATES NEURAL DEVELOPMENT AND ACTIVITIES, WHILE FAULTY EPIGENETIC REGULATION CONTRIBUTES TO THE DIVERSE FORMS OF CNS (CENTRAL NERVOUS SYSTEM) ABNORMALITIES AND DISEASES. AS A POTENT EPIGENETIC MODIFIER, LEAD IS THOUGHT TO CAUSE NEUROLOGICAL DISORDERS THROUGH MODULATING EPIGENETIC MECHANISMS. SPECIFICALLY, INCREASING EVIDENCE LINKED ABERRANT DNA METHYLATIONS, HISTONE MODIFICATIONS AS WELL AS NCRNAS (NON-CODING RNAS) WITH AD CASES, AMONG WHICH CIRCRNA (CIRCULAR RNA) STANDS OUT AS A NEW AND PROMISING FIELD FOR ASSOCIATION STUDIES. IN 23-YEAR-OLD PRIMATES WITH DEVELOPMENTAL LEAD TREATMENT, ZAWIA GROUP DISCOVERED A VARIETY OF EPIGENETIC CHANGES RELATING TO AD PATHOGENESIS. THIS IS A DIRECT EVIDENCE IMPLICATING EPIGENETIC BASIS IN LEAD-INDUCED AD ANIMALS WITH AN ENTIRE LIFESPAN. ADDITIONALLY, SOME EPIGENETIC MOLECULES ASSOCIATED WITH AD ETIOLOGY WERE ALSO KNOWN TO RESPOND TO CHRONIC LEAD EXPOSURE IN COMPARABLE DISEASE MODELS, INDICATING POTENTIALLY INTERLACED MECHANISMS WITH RESPECT TO THE STUDIED NEUROTOXIC AND PATHOLOGICAL EVENTS. OF NOTE, EPIGENETIC MOLECULES ACTED VIA GLOBALLY OR SELECTIVELY INFLUENCING THE EXPRESSION OF DISEASE-RELATED GENES. COMPARED TO AD, THE ASSOCIATION OF LEAD EXPOSURE WITH OTHER NEUROLOGICAL DISORDERS WERE PRIMARILY SUPPORTED BY EPIDEMIOLOGICAL SURVEY, WITH FEWER REPORTS CONNECTING EPIGENETIC REGULATORS WITH LEAD-INDUCED PATHOGENESIS. SOME PHARMACEUTICALS, SUCH AS HDAC (HISTONE DEACETYLASE) INHIBITORS AND DNA METHYLATION INHIBITORS, WERE DEVELOPED TO DEAL WITH CNS DISEASE BY TARGETING EPIGENETIC COMPONENTS. STILL, UNDERSTANDINGS ARE INSUFFICIENT REGARDING THE CAUSE-CONSEQUENCE RELATIONS OF EPIGENETIC FACTORS AND NEUROLOGICAL ILLNESS. THEREFORE, CLEAR EVIDENCE SHOULD BE PROVIDED IN FUTURE INVESTIGATIONS TO ADDRESS DETAILED ROLES OF NOVEL EPIGENETIC FACTORS IN LEAD-INDUCED NEUROLOGICAL DISORDERS, AND EFFORTS OF DEVELOPING SPECIFIC EPIGENETIC THERAPEUTICS SHOULD BE APPRAISED. 2020 7 5598 41 ROLES OF NON-CODING RNA IN ALZHEIMER'S DISEASE PATHOPHYSIOLOGY. ALZHEIMER'S DISEASE (AD) IS A CHRONIC NEURODEGENERATIVE DISORDER THAT IS ACCOMPANIED BY DEFICITS IN MEMORY AND COGNITIVE FUNCTIONS. THE DISEASE IS PATHOLOGICALLY CHARACTERISED BY THE ACCUMULATION AND AGGREGATION OF AN EXTRACELLULAR PEPTIDE REFERRED TO AS AMYLOID-BETA (ABETA) IN THE FORM OF AMYLOID PLAQUES AND THE INTRACELLULAR AGGREGATION OF A HYPERPHOSPHORELATED PROTEIN TAU IN THE FORM OF NEUROFIBRILLARY TANGLES (NFTS) THAT CAUSE NEUROINFLAMMATION, SYNAPTIC DYSFUNCTION, AND OXIDATIVE STRESS. THE SEARCH FOR PATHOMECHANISMS LEADING TO DISEASE ONSET AND PROGRESSION HAS IDENTIFIED MANY KEY PLAYERS THAT INCLUDE GENETIC, EPIGENETIC, BEHAVIOURAL, AND ENVIRONMENTAL FACTORS, WHICH LEND SUPPORT TO THE FACT THAT THIS IS A MULTI-FACETED DISEASE WHERE FAILURE IN VARIOUS SYSTEMS CONTRIBUTES TO DISEASE ONSET AND PROGRESSION. ALTHOUGH THE VAST MAJORITY OF INDIVIDUALS PRESENT WITH THE SPORADIC (NON-GENETIC) FORM OF THE DISEASE, DYSFUNCTIONS IN NUMEROUS PROTEIN-CODING AND NON-CODING GENES HAVE BEEN IMPLICATED IN MECHANISMS CONTRIBUTING TO THE DISEASE. RECENT STUDIES HAVE PROVIDED STRONG EVIDENCE FOR THE ASSOCIATION OF NON-CODING RNAS (NCRNAS) WITH AD. IN THIS REVIEW, WE HIGHLIGHT THE CURRENT FINDINGS ON CHANGES OBSERVED IN CIRCULAR RNA (CIRCRNA), MICRORNA (MIRNA), SHORT INTERFERING RNA (SIRNA), PIWI-INTERACTING RNA (PIRNA), AND LONG NON-CODING RNA (LNCRNA) IN AD. VARIATIONS IN THESE NCRNAS COULD POTENTIALLY SERVE AS BIOMARKERS OR THERAPEUTIC TARGETS FOR THE DIAGNOSIS AND TREATMENT OF ALZHEIMER'S DISEASE. WE ALSO DISCUSS THE RESULTS OF STUDIES THAT HAVE TARGETED THESE NCRNAS IN CELLULAR AND ANIMAL MODELS OF AD WITH A VIEW FOR TRANSLATING THESE FINDINGS INTO THERAPIES FOR ALZHEIMER'S DISEASE. 2023 8 4130 32 MECHANISMS OF FERROPTOSIS AND EMERGING LINKS TO THE PATHOLOGY OF NEURODEGENERATIVE DISEASES. NEURODEGENERATIVE DISEASES ARE A DIVERSE CLASS OF DISEASES ATTRIBUTED TO CHRONIC PROGRESSIVE NEURONAL DEGENERATION AND SYNAPTIC LOSS IN THE BRAIN AND/OR SPINAL CORD, INCLUDING ALZHEIMER'S DISEASE, PARKINSON'S DISEASE, HUNTINGTON'S DISEASE, AMYOTROPHIC LATERAL SCLEROSIS AND MULTIPLE SCLEROSIS. THE PATHOGENESIS OF NEURODEGENERATIVE DISEASES IS COMPLEX AND DIVERSE, OFTEN INVOLVING MITOCHONDRIAL DYSFUNCTION, NEUROINFLAMMATION, AND EPIGENETIC CHANGES. HOWEVER, THE PATHOGENESIS OF NEURODEGENERATIVE DISEASES HAS NOT BEEN FULLY ELUCIDATED. RECENTLY, ACCUMULATING EVIDENCE REVEALED THAT FERROPTOSIS, A NEWLY DISCOVERED IRON-DEPENDENT AND LIPID PEROXIDATION-DRIVEN TYPE OF PROGRAMMED CELL DEATH, PROVIDES ANOTHER EXPLANATION FOR THE OCCURRENCE AND PROGRESSION OF NEURODEGENERATIVE DISEASES. HERE, WE PROVIDE AN OVERVIEW OF THE PROCESS AND REGULATION MECHANISMS OF FERROPTOSIS, AND SUMMARIZE CURRENT RESEARCH PROGRESSES THAT SUPPORT THE CONTRIBUTION OF FERROPTOSIS TO THE PATHOGENESIS OF NEURODEGENERATIVE DISEASES. A COMPREHENSIVE UNDERSTANDING OF THE EMERGING ROLES OF FERROPTOSIS IN NEURODEGENERATIVE DISEASES WILL SHED LIGHT ON THE DEVELOPMENT OF NOVEL THERAPEUTIC TECHNOLOGIES AND STRATEGIES FOR SLOWING DOWN THE PROGRESSION OF THESE DISEASES. 2022 9 6907 32 [THE ROLE OF THE CIRCULAR RNAS IN MULTIPLE SCLEROSIS AND OTHER NEUROIMMUNE DISORDERS]. IN RECENT YEARS NON-CODING RNAS HAVE RECEIVED INCREASING ATTENTION AS AN IMPORTANT EPIGENETIC MECHANISM, WITH PARTICULAR ROLE OF MICRO RNAS. AS THE REGULATION OF MIRNA EXPRESSION IS HIGHLY DYNAMIC AND COMPLEX, GROWING EVIDENCE SUGGESTS THE EXISTENCE OF ANOTHER HIGHER LEVEL OF REGULATORY MECHANISM INVOLVED IN MIRNA ACTIVITY - CIRCULAR RNAS (CIRCRNAS). CIRCRNAS REPRESENT NOVEL, UNIQUE CLASS OF ENDOGENOUS NCRNAS CONTROLLING THE EXPRESSION AND FUNCTION OF MIRNA. THEY ARE CALLED NATURAL MIRNA "SPONGES". ACCUMULATING EVIDENCE REVEALS CIRCRNAS ROLE IN PHYSIOLOGICAL AND PATHOLOGICAL PROCESSES INCLUDING CNS AND IMMUNE REGULATION. PREVIOUS STUDIES IMPLICATED MIRNAS IN REGULATION OF AUTOIMMUNE DEMYELINATION IN MS. MULTIPLE SCLEROSIS IS A CHRONIC NEUROLOGICAL INFLAMMATORY DEMYELINATING DISORDER OF THE CENTRAL NERVOUS SYSTEM. WHILE THE ETIOLOGY OF MS IS STILL NOT FULLY UNDERSTOOD, ACCUMULATING EVIDENCE SUGGESTS THAT IT IS A MULTIFACTORIAL ENTITY WITH SIGNIFICANT INVOLVEMENT OF AUTOIMMUNE PROCESSES. 2022 10 4721 45 NONCODING RNAS IN MULTIPLE SCLEROSIS. MULTIPLE SCLEROSIS (MS), A CHRONIC INFLAMMATORY DEMYELINATING DISEASE OF THE CENTRAL NERVOUS SYSTEM, IS CHARACTERIZED BY AXONAL DEGENERATION AND GLIOSIS. ALTHOUGH THE CAUSES OF MS REMAIN UNKNOWN, GENE DYSREGULATION IN THE CENTRAL NERVOUS SYSTEM HAS BEEN ASSOCIATED WITH THE DISEASE PATHOGENESIS. AS SUCH, THE VARIOUS REGULATORS OF GENE EXPRESSION MAY BE CONTRIBUTING FACTORS. THE NONCODING (NC) RNAS HAVE PIQUED THE INTEREST OF MS RESEARCHERS DUE TO THEIR KNOWN FUNCTIONS IN HUMAN PHYSIOLOGY AND VARIOUS PATHOLOGICAL PROCESSES, DESPITE BEING GENERALLY CHARACTERIZED AS TRANSCRIPTS WITHOUT APPARENT PROTEIN-CODING CAPACITY. ACCUMULATING EVIDENCE HAS INDICATED THAT NCRNAS PARTICIPATE IN THE REGULATION OF MS BY ACTING AS EPIGENETIC FACTORS, ESPECIALLY THE LONG (L) NCRNAS AND THE MICRO (MI) RNAS, AND THEY ARE NOW RECOGNIZED AS KEY REGULATORY MOLECULES IN MS. IN THIS REVIEW, WE SUMMARIZE THE MOST CURRENT STUDIES ON THE CONTRIBUTION OF NCRNAS IN MS PATHOGENIC PROCESSES AND DISCUSS THEIR POTENTIAL APPLICATIONS IN THE DIAGNOSIS AND TREATMENT OF MS. 2018 11 4451 34 MOLECULAR MECHANISMS AND FUNCTIONS OF LNCRNAS IN THE INFLAMMATORY REACTION OF DIABETES MELLITUS. DIABETES IS A CHRONIC INFLAMMATORY STATE, AND SEVERAL STUDIES HAVE SHOWN THAT THE MECHANISMS OF INSULIN RESISTANCE AND ABNORMAL ISLET BETA-CELL FUNCTION IN DIABETES ARE CLOSELY RELATED TO INFLAMMATORY REACTIONS. INFLAMMATION PLAYS A CRITICAL ROLE IN DIABETIC COMPLICATIONS. LONG NONCODING RNAS (LNCRNAS), A NEW AREA OF GENOMIC RESEARCH FOR GENE REGULATION, HAVE COMPLEX BIOLOGICAL FUNCTIONS IN VARIOUS ASPECTS OF CELLULAR BIOLOGICAL ACTIVITY. RECENT STUDIES HAVE SHOWN THAT LNCRNAS ARE ASSOCIATED WITH THE REGULATION OF INFLAMMATORY RESPONSES IN VARIOUS WAYS, INCLUDING AT THE EPIGENETIC, TRANSCRIPTIONAL, AND POSTTRANSCRIPTIONAL LEVELS. THIS PAPER PRESENTS A BRIEF REVIEW OF STUDIES ON THE MECHANISMS OF LNCRNAS IN DIABETIC INFLAMMATION. THE PURPOSE OF THIS ARTICLE IS TO DETERMINE THE ROLE OF LNCRNAS IN THE PROCESS OF DIABETIC INFLAMMATION AND TO PROVIDE NEW STRATEGIES FOR THE USE OF LNCRNAS IN THE TREATMENTS FOR DIABETIC INFLAMMATION. 2021 12 6136 34 THE EPIGENETICS OF MULTIPLE SCLEROSIS AND OTHER RELATED DISORDERS. MULTIPLE SCLEROSIS (MS) IS A DEMYELINATING DISEASE CHARACTERIZED BY CHRONIC INFLAMMATION OF THE CENTRAL NERVOUS SYSTEM (CNS) GRAY AND WHITE MATTER. ALTHOUGH THE CAUSE OF MS IS UNKNOWN, IT IS WIDELY APPRECIATED THAT INNATE AND ADAPTIVE IMMUNE PROCESSES CONTRIBUTE TO ITS PATHOGENESIS. THESE INCLUDE MICROGLIA/MACROPHAGE ACTIVATION, PRO-INFLAMMATORY T-CELL (TH1) RESPONSES AND HUMORAL RESPONSES. ADDITIONALLY, THERE IS EVIDENCE INDICATING THAT MS HAS A NEURODEGENERATIVE COMPONENT SINCE NEURONAL AND AXONAL LOSS OCCURS EVEN IN THE ABSENCE OF OVERT INFLAMMATION. THESE ASPECTS ALSO FORM THE RATIONALE FOR CLINICAL MANAGEMENT OF THE DISEASE. HOWEVER, THE CURRENTLY AVAILABLE THERAPIES TO CONTROL THE DISEASE ARE ONLY PARTIALLY EFFECTIVE AT BEST INDICATING THAT MORE EFFECTIVE THERAPEUTIC SOLUTIONS ARE URGENTLY NEEDED. IT IS APPRECIATED THAT IN THE IMMUNE-DRIVEN AND NEURODEGENERATIVE PROCESSES MS-SPECIFIC DEREGULATION OF GENE EXPRESSIONS AND RESULTING PROTEIN DYSFUNCTION ARE THOUGHT TO PLAY A CENTRAL ROLE. THESE DEVIATIONS IN GENE EXPRESSION PATTERNS CONTRIBUTE TO THE INFLAMMATORY RESPONSE IN THE CNS, AND TO NEURONAL OR AXONAL LOSS. EPIGENETIC MECHANISMS CONTROL TRANSCRIPTION OF MOST, IF NOT ALL GENES, IN NUCLEATED CELLS INCLUDING CELLS OF THE CNS AND IN HAEMATOPOIETIC CELLS. MS-SPECIFIC ALTERATIONS IN EPIGENETIC REGULATION OF GENE EXPRESSION MAY THEREFORE LIE AT THE HEART OF THE DEREGULATION OF GENE EXPRESSION IN MS. AS SUCH, EPIGENETIC MECHANISMS MOST LIKELY PLAY AN IMPORTANT ROLE IN DISEASE PATHOGENESIS. IN THIS REVIEW WE DISCUSS A ROLE FOR MS-SPECIFIC DEREGULATION OF EPIGENETIC FEATURES THAT CONTROL GENE EXPRESSION IN THE CNS AND IN THE PERIPHERY. FURTHERMORE, WE DISCUSS THE APPLICATION OF SMALL MOLECULE INHIBITORS THAT TARGET THE EPIGENETIC MACHINERY TO AMELIORATE DISEASE IN EXPERIMENTAL ANIMAL MODELS, INDICATING THAT SUCH APPROACHES MAY BE APPLICABLE TO MS PATIENTS. 2014 13 2224 24 EPIGENETIC MODIFICATIONS IN THE PATHOGENESIS OF SYSTEMIC SCLEROSIS. SYSTEMIC SCLEROSIS IS A RARE CHRONIC AUTOIMMUNE DISEASE, WHICH MAINLY MANIFESTS AS IMMUNE DISORDERS, VASCULAR DAMAGE, AND PROGRESSIVE FIBROSIS. THE ETIOLOGY OF SSC IS COMPLEX AND INVOLVES MULTIPLE FACTORS. BOTH GENETIC AND ENVIRONMENTAL FACTORS ARE INVOLVED IN ITS PATHOGENESIS. AS ONE OF THE MOLECULAR MECHANISMS OF ENVIRONMENTAL FACTORS, EPIGENETIC REGULATION PLAYS AN IMPORTANT ROLE IN THE OCCURRENCE AND DEVELOPMENT OF SYSTEMIC SCLEROSIS, WHICH INVOLVES DNA METHYLATION, HISTONE MODIFICATION AND NON-CODING RNA REGULATION. THIS REVIEW SUMMARIZES RESEARCH ADVANCES IN EPIGENETICS, INCLUDING EXOSOMES, LNCRNA, AND MENTIONS POSSIBLE BIOMARKERS AND THERAPEUTIC TARGETS AMONG THEM. 2022 14 3960 39 LONG NON-CODING RNAS: A DOUBLE-EDGED SWORD IN AGING KIDNEY AND RENAL DISEASE. AGING AS ONE OF INTRINSIC BIOLOGICAL PROCESSES IS A RISK FACTOR FOR MANY CHRONIC DISEASES. KIDNEY DISEASE IS A GLOBAL PROBLEM AND HEALTH CARE BURDEN WORLDWIDE. THE DIAGNOSIS OF KIDNEY DISEASE IS CURRENTLY BASED ON SERUM CREATININE AND UREA LEVELS. NOVEL BIOMARKERS MAY IMPROVE DIAGNOSTIC ACCURACY, THEREBY ALLOWING EARLY PREVENTION AND TREATMENT. OVER THE PAST FEW YEARS, ADVANCES IN GENOME ANALYSES HAVE IDENTIFIED AN EMERGING CLASS OF NONCODING RNAS THAT PLAY CRITICAL ROLES IN THE REGULATION OF GENE EXPRESSION AND EPIGENETIC REPROGRAMMING. LONG NONCODING RNAS (LNCRNAS) ARE PERVASIVELY TRANSCRIBED IN THE GENOME AND COULD BIND DNA, RNA AND PROTEIN. EMERGING EVIDENCE HAS DEMONSTRATED THAT LNCRNAS PLAYED AN IMPORTANT ROLE IN ALL STAGES OF KIDNEY DISEASE. TO DATE, ONLY SOME LNCRNAS WERE WELL IDENTIFIED AND CHARACTERIZED, BUT THE COMPLEXITY OF MULTILEVEL REGULATION OF TRANSCRIPTIONAL PROGRAMS INVOLVED IN THESE PROCESSES REMAINS UNDEFINED. IN THIS REVIEW, WE SUMMARIZED THE LNCRNA EXPRESSION PROFILING OF LARGE-SCALE IDENTIFIED LNCRNAS ON KIDNEY DISEASES INCLUDING ACUTE KIDNEY INJURY, CHRONIC KIDNEY DISEASE, DIABETIC NEPHROPATHY AND KIDNEY TRANSPLANTATION. WE FURTHER DISCUSSED A NUMBER OF ANNOTATED LNCRNAS LINKING WITH COMPLEX ETIOLOGY OF KIDNEY DISEASES. FINALLY, SEVERAL LNCRNAS WERE HIGHLIGHTED AS DIAGNOSTIC BIOMARKERS AND THERAPEUTIC TARGETS. TARGETING LNCRNAS MAY REPRESENT A PRECISE THERAPEUTIC STRATEGY FOR PROGRESSIVE RENAL FIBROSIS. 2021 15 4321 30 MICRORNAS IN MAJOR DEPRESSIVE DISORDER. MAJOR DEPRESSIVE DISORDER (MDD) IS A SEVERE AND CHRONIC PSYCHIATRIC DISORDER WITH A HIGH PREVALENCE IN THE POPULATION. ALTHOUGH OUR UNDERSTANDING OF ITS PATHOPHYSIOLOGICAL MECHANISMS HAS SIGNIFICANTLY INCREASED OVER THE YEARS, AVAILABLE TREATMENTS STILL PRESENT SEVERAL LIMITATIONS AND ARE NOT EFFECTIVE TO ALL MDD PATIENTS. EPIGENETIC MECHANISMS HAVE RECENTLY BEEN SUGGESTED TO PLAY KEY ROLES IN MDD PATHOGENESIS AND TREATMENT, INCLUDING THE EFFECTS OF SMALL NONCODING RNAS KNOWN AS MICRORNAS (MIRNAS). MIRNAS CAN MODULATE GENE EXPRESSION POSTTRANSCRIPTIONALLY BY INTERFERING WITH THE STABILITY AND TRANSLATION OF MESSENGER RNA MOLECULES AND ARE ALSO KNOWN TO CROSS-TALK WITH OTHER EPIGENETIC MECHANISMS. IN THIS REVIEW, WE WILL SUMMARIZE AND DISCUSS RECENT FINDINGS OF ALTERATIONS IN MIRNAS IN TISSUES OF PATIENTS WITH MDD AND EVIDENCE OF TREATMENT-INDUCED EFFECTS IN THESE MOLECULES. 2019 16 3834 39 INVOLVEMENTS OF LONG NONCODING RNAS IN OBESITY-ASSOCIATED INFLAMMATORY DISEASES. OBESITY IS ASSOCIATED WITH CHRONIC LOW-GRADE INFLAMMATION THAT AFFECTS THE PHENOTYPE OF MULTIPLE TISSUES AND THEREFORE IS IMPLICATED IN THE DEVELOPMENT AND PROGRESSION OF SEVERAL AGE-RELATED CHRONIC INFLAMMATORY DISORDERS. IMPORTANTLY, A NEW FAMILY OF NONCODING RNAS, TERMED LONG NONCODING RNAS (LNCRNAS), HAVE BEEN IDENTIFIED AS KEY REGULATORS OF INFLAMMATORY SIGNALLING PATHWAYS THAT CAN MEDIATE BOTH PRETRANSCRIPTIONAL AND POSTTRANSCRIPTIONAL GENE REGULATION. FURTHERMORE, SEVERAL LNCRNAS HAVE BEEN IDENTIFIED, WHICH ARE DIFFERENTIALLY EXPRESSED IN MULTIPLE TISSUE TYPES IN INDIVIDUALS WHO ARE OBESE OR IN PRECLINICAL MODELS OF OBESITY. IN THIS REVIEW, WE EXAMINE THE EVIDENCE FOR THE ROLE OF SEVERAL OF THE MOST WELL-STUDIED LNCRNAS IN THE REGULATION OF INFLAMMATORY PATHWAYS ASSOCIATED WITH OBESITY. WE HIGHLIGHT THE EVIDENCE FOR THEIR DIFFERENTIAL EXPRESSION IN THE OBESE STATE AND IN AGE-RELATED CONDITIONS INCLUDING INSULIN RESISTANCE, TYPE 2 DIABETES (T2D), SARCOPENIA, OSTEOARTHRITIS AND RHEUMATOID ARTHRITIS, WHERE OBESITY PLAYS A SIGNIFICANT ROLE. DETERMINING THE EXPRESSION AND FUNCTIONAL ROLE OF LNCRNAS IN MEDIATING OBESITY-ASSOCIATED CHRONIC INFLAMMATION WILL ADVANCE OUR UNDERSTANDING OF THE EPIGENETIC REGULATORY PATHWAYS THAT UNDERLIE AGE-RELATED INFLAMMATORY DISEASES AND MAY ALSO ULTIMATELY IDENTIFY NEW TARGETS FOR THERAPEUTIC INTERVENTION. 2021 17 2413 26 EPIGENETIC SIGNALING AND RNA REGULATION IN CARDIOVASCULAR DISEASES. RNA EPIGENETICS IS PERHAPS THE MOST RECENT FIELD OF INTEREST FOR TRANSLATIONAL EPIGENETICISTS. RNA MODIFICATIONS CREATE SUCH AN EXTENSIVE NETWORK OF EPIGENETICALLY DRIVEN COMBINATIONS WHOSE ROLE IN PHYSIOLOGY AND PATHOPHYSIOLOGY IS STILL FAR FROM BEING ELUCIDATED. NOT SURPRISINGLY, SOME OF THE PLAYERS DETERMINING CHANGES IN RNA STRUCTURE ARE IN COMMON WITH THOSE INVOLVED IN DNA AND CHROMATIN STRUCTURE REGULATION, WHILE OTHER MOLECULES SEEM VERY SPECIFIC TO RNA. IT IS ENVISAGED, THEN, THAT NEW SMALL MOLECULES, ACTING SELECTIVELY ON RNA EPIGENETIC CHANGES, WILL BE REPORTED SOON, OPENING NEW THERAPEUTIC INTERVENTIONS BASED ON THE CORRECTION OF THE RNA EPIGENETIC LANDSCAPE. IN THIS REVIEW, WE SHALL SUMMARIZE SOME ASPECTS OF RNA EPIGENETICS LIMITED TO THOSE IN WHICH THE POTENTIAL CLINICAL TRANSLATABILITY TO CARDIOVASCULAR DISEASE IS EMERGING. 2020 18 1199 34 CORTICOTROPIN RELEASING FACTOR-BINDING PROTEIN (CRF-BP) AS A POTENTIAL NEW THERAPEUTIC TARGET IN ALZHEIMER'S DISEASE AND STRESS DISORDERS. ALZHEIMER'S DISEASE IS THE MOST COMMON CAUSE OF DEMENTIA AND ONE OF THE MOST COMPLEX HUMAN NEURODEGENERATIVE DISEASES. NUMEROUS STUDIES HAVE DEMONSTRATED A CRITICAL ROLE OF THE ENVIRONMENT IN THE PATHOGENESIS AND PATHOPHYSIOLOGY OF THE DISEASE, WHERE DAILY LIFE STRESS PLAYS AN IMPORTANT ROLE. A LOT OF EPIGENETIC STUDIES HAVE LED TO THE CONCLUSION THAT CHRONIC STRESS AND STRESS-RELATED DISORDERS PLAY AN IMPORTANT PART IN THE ONSET OF NEURODEGENERATIVE DISORDERS, AND AN ENORMOUS AMOUNT OF RESEARCH YIELDED VALUABLE DISCOVERIES BUT HAS SO FAR NOT LED TO THE DEVELOPMENT OF EFFECTIVE TREATMENT STRATEGIES FOR ALZHEIMER'S DISEASE. CORTICOTROPIN-RELEASING FACTOR (CRF) IS ONE OF THE MAJOR HORMONES AND AT THE SAME TIME A NEUROPEPTIDE ACTING IN STRESS RESPONSE. DEREGULATION OF PROTEIN LEVELS OF CRF IS INVOLVED IN THE PATHOGENESIS OF ALZHEIMER'S DISEASE, BUT LITTLE IS KNOWN ABOUT THE PRECISE ROLES OF CRF AND ITS BINDING PROTEIN, CRF-BP, IN NEURODEGENERATIVE DISEASES. IN THIS REVIEW, WE SUMMARIZE THE KEY EVIDENCE FOR AND AGAINST THE INVOLVEMENT OF STRESS-ASSOCIATED MODULATION OF THE CRF SYSTEM IN THE PATHOGENESIS OF ALZHEIMER'S DISEASE AND DISCUSS HOW RECENT FINDINGS COULD LEAD TO NEW POTENTIAL TREATMENT POSSIBILITIES IN ALZHEIMER'S DISEASE BY USING CRF-BP AS A THERAPEUTIC TARGET. 2019 19 2227 35 EPIGENETIC MODIFICATIONS OF CHRONIC HYPOXIA-MEDIATED NEURODEGENERATION IN ALZHEIMER'S DISEASE. ALZHEIMER'S DISEASE (AD) IS THE MOST COMMON NEURODEGENERATIVE DISORDER AFFECTING THE ELDERLY PEOPLE. AD IS CHARACTERIZED BY PROGRESSIVE AND GRADUAL DECLINE IN COGNITIVE FUNCTION AND MEMORY LOSS. WHILE FAMILIAL EARLY-ONSET AD IS USUALLY ASSOCIATED WITH GENE MUTATIONS, THE ETIOLOGY OF SPORADIC LATE-ONSET FORM OF AD IS LARGELY UNKNOWN. IT HAS BEEN REPORTED THAT ENVIRONMENTAL FACTORS AND EPIGENETIC ALTERATIONS SIGNIFICANTLY CONTRIBUTE TO THE PROCESS OF AD. OUR PREVIOUS STUDIES HAVE DOCUMENTED THAT CHRONIC HYPOXIA IS ONE OF THE ENVIRONMENTAL FACTORS THAT MAY TRIGGER THE AD DEVELOPMENT AND AGGRAVATE THE DISEASE PROGRESSION. IN THIS REVIEW, WE WILL SUMMARIZE THE PATHOLOGICAL EFFECTS OF CHRONIC HYPOXIA ON THE ONSET AND DEVELOPMENT OF AD AND PUT FORWARD THE POSSIBLE MOLECULE MECHANISMS UNDERLYING THE CHRONIC HYPOXIA MEDIATED AD PATHOGENESIS. FINALLY, WE PROPOSE THAT EPIGENETIC REGULATIONS MAY REPRESENT NEW OPPORTUNITY FOR THE THERAPEUTIC INTERVENTION OF THIS DISEASE. 2014 20 4289 31 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