1 2123 173 EPIGENETIC IMPACTS OF STRESS PRIMING OF THE NEUROINFLAMMATORY RESPONSE TO SARIN SURROGATE IN MICE: A MODEL OF GULF WAR ILLNESS. BACKGROUND: GULF WAR ILLNESS (GWI) IS AN ARCHETYPAL, MEDICALLY UNEXPLAINED, CHRONIC CONDITION CHARACTERISED BY PERSISTENT SICKNESS BEHAVIOUR AND NEUROIMMUNE AND NEUROINFLAMMATORY COMPONENTS. AN ESTIMATED 25-32% OF THE OVER 900,000 VETERANS OF THE 1991 GULF WAR FULFIL THE REQUIREMENTS OF A GWI DIAGNOSIS. IT HAS BEEN HYPOTHESISED THAT THE HIGH PHYSICAL AND PSYCHOLOGICAL STRESS OF COMBAT MAY HAVE INCREASED VULNERABILITY TO IRREVERSIBLE ACETYLCHOLINESTERASE (ACHE) INHIBITORS LEADING TO A PRIMING OF THE NEUROIMMUNE SYSTEM. A NUMBER OF STUDIES HAVE LINKED HIGH LEVELS OF PSYCHOPHYSIOLOGICAL STRESS AND TOXICANT EXPOSURES TO EPIGENETIC MODIFICATIONS THAT REGULATE GENE EXPRESSION. RECENT RESEARCH IN A MOUSE MODEL OF GWI HAS SHOWN THAT PRE-EXPOSURE WITH THE STRESS HORMONE CORTICOSTERONE (CORT) CAUSES AN INCREASE IN EXPRESSION OF SPECIFIC CHEMOKINES AND CYTOKINES IN RESPONSE TO DIISOPROPYL FLUOROPHOSPHATE (DFP), A SARIN SURROGATE AND IRREVERSIBLE ACHE INHIBITOR. METHODS: C57BL/6J MICE WERE EXPOSED TO CORT FOR 4 DAYS, AND EXPOSED TO DFP ON DAY 5, BEFORE SACRIFICE 6 H LATER. THE TRANSCRIPTOME WAS EXAMINED USING RNA-SEQ, AND THE EPIGENOME WAS EXAMINED USING REDUCED REPRESENTATION BISULFITE SEQUENCING AND H3K27AC CHIP-SEQ. RESULTS: WE SHOW TRANSCRIPTIONAL, HISTONE MODIFICATION (H3K27AC) AND DNA METHYLATION CHANGES IN GENES RELATED TO THE IMMUNE AND NEURONAL SYSTEM, POTENTIALLY RELEVANT TO NEUROINFLAMMATORY AND COGNITIVE SYMPTOMS OF GWI. FURTHER EVIDENCE SUGGESTS ALTERED PROPORTIONS OF MYELINATING OLIGODENDROCYTES IN THE FRONTAL CORTEX, PERHAPS CONNECTED TO WHITE MATTER DEFICITS SEEN IN GWI SUFFERERS. CONCLUSIONS: OUR FINDINGS MAY REFLECT THE EARLY CHANGES WHICH OCCURRED IN GWI VETERANS, AND WE OBSERVE ALTERATIONS IN SEVERAL PATHWAYS ALTERED IN GWI SUFFERERS. THESE CLOSE LINKS TO CHANGES SEEN IN VETERANS WITH GWI INDICATES THAT THIS MODEL REFLECTS THE ENVIRONMENTAL EXPOSURES RELATED TO GWI AND MAY PROVIDE A MODEL FOR BIOMARKER DEVELOPMENT AND TESTING FUTURE TREATMENTS. 2018 2 1460 31 DISORDERS OF CONSCIOUSNESS AND PHARMACEUTICALS THAT ACT ON OXYGEN BASED AMINO ACID AND MONOAMINE NEUROTRANSMITTER PATHWAYS OF THE BRAIN. OXYGEN BASED NEUROTRANSMITTERS IN THE SYNAPSES OF THE BRAIN ARE PROPOSED TO PLAY AN IMPORTANT ROLE IN THE GENERATION OF CONSCIOUSNESS. THEY INCLUDE THE AMINO ACIDS GLUTAMATE AND GABA WHICH USE KREBS CYCLE PRECURSORS FOR THEIR SYNTHESIS, AND THE MONOAMINES DOPAMINE, NORADRENALIN, ADRENALIN AND SEROTONIN, WHICH ARE DERIVED FROM TYROSINE AND TRYPTOPHAN. DURING ISCHEMIA AFTER AN ACUTE BRAIN INJURY, A GABA SURGE OFTEN INITIATES BRAIN SUPPRESSION. IT HAS BEEN PROPOSED THAT WITH CHRONIC ISCHEMIA, A SECONDARY, POSSIBLY EPIGENETIC RESPONSE OCCURS WHEN NEUROTRANSMITTERS DEPLETE, A GLUCOSE AND OXYGEN SAVING MECHANISM TERMED NEURODORMANCY THAT MAY INVOKE ALTERNATIVE LONG TERM LOW ENERGY METABOLIC PATHWAYS IN THE BRAIN, ENCOUNTERED IN DISORDERS OF CONSCIOUSNESS. SOME MEDICATIONS CAN REVERSE DISORDERS OF CONSCIOUSNESS IN SOME PATIENTS. VIRTUALLY ALL OF THEM ACT ON NEUROTRANSMITTER SYSTEMS THAT USE OXYGEN AS A BUILDING BLOCK OR AS AN ENERGY SOURCE WITHIN THE BRAIN. PHARMACEUTICALS THAT ACT IN THE OXYGEN BASED AMINO ACID SYSTEMS OF THE BRAIN INCLUDE THE GABAERGIC MEDICATIONS ZOLPIDEM AND BACLOFEN, WHILE THOSE THAT ACT IN THE MONOAMINE AXES INCLUDE THE DOPAMINERGIC MEDICATIONS L DOPA, AMANTADINE, BROMOCRIPTINE, APOMORPHINE AND METHYLPHENIDATE, AND THE NORADRENERGIC AND SEROTONERGIC MEDICATIONS DESIPRAMINE, AMITRIPTYLINE, PROTRIPTYLINE AND FLUOXETINE. ANOTHER GROUP ARE THE CHOLINESTERASE INHIBITORS, RESPONSIBLE FOR INCREASING ACETYLCHOLINE, WHICH IS SYNTHESIZED FROM THE KREBS CYCLE INITIATOR, ACETYL COA. IT APPEARS THAT PHARMACEUTICALS THAT ARE ACTIVE IN THE OXYGEN BASED NEUROTRANSMITTER PATHWAYS OF THE BRAIN ARE SUCCESSFUL TO AROUSE TO CONSCIOUSNESS PATIENTS THAT SUFFER FROM ITS DISORDERS. RESEARCH NEEDS TO BE SUPPORTED AS FOUNDATION TO UNDERSTAND THE BIOCHEMICAL MECHANISMS THAT ARE INVOLVED IN CONSCIOUSNESS DISORDERS AND TO EXPLORE FURTHER THE PHARMACOLOGICAL TREATMENT POSSIBILITIES FOR THESE DEVASTATING NEUROLOGICAL CONDITIONS. 2014 3 90 55 A PILOT REVERSE VIRTUAL SCREENING STUDY SUGGESTS TOXIC EXPOSURES CAUSED LONG-TERM EPIGENETIC CHANGES IN GULF WAR ILLNESS. GULF WAR ILLNESS (GWI) IS A CHRONIC ILLNESS THAT AFFECTS UPWARD OF 32% OF DEPLOYED VETERANS TO THE 1991 GULF WAR (GW). THE SYMPTOMS ARE MEDICALLY UNEXPLAINED, RANGING ACROSS COGNITIVE DEFICITS, FATIGUE, GASTROINTESTINAL PROBLEMS, AND MUSCULOSKELETAL PAIN. RESEARCH INDICATES THAT CHEMICAL WARFARE AGENTS PLAY A KEY ROLE IN THE ONSET AND PROGRESSION OF GWI. THE KHAMISIYAH AMMUNITION STORAGE THAT HOUSED CHEMICAL WARFARE AGENTS SUCH AS SARIN, AN ACETYLCHOLINESTERASE (ACHE) INHIBITOR, WAS DEMOLISHED DURING THE GW, RELEASING TOXICANTS INTO THE ATMOSPHERE AFFECTING DEPLOYED TROOPS. EXPOSURE TO OTHER CHEMICAL AGENTS SUCH AS PYRIDOSTIGMINE BROMIDE, N,N-DIETHYL-M-TOLUAMIDE, PERMETHRIN AND CHLORPYRIFOS, WERE ALSO PREVALENT DURING THE WAR. THESE ADDITIONAL CHEMICAL AGENTS HAVE ALSO BEEN SHOWN TO INHIBIT ACHE. ACHE INHIBITION INDUCES AN ACETYLCHOLINE BUILD-UP, DISRUPTING SIGNALS BETWEEN NERVES AND MUSCLES, WHICH IN HIGH DOSES LEADS TO ASPHYXIATION. LITTLE IS KNOWN ABOUT LOW DOSE EXPOSURE. AS BIOACTIVE COMPOUNDS TEND TO INTERACT WITH MULTIPLE PROTEINS WITH VARIOUS PHYSIOLOGICAL EFFECT, WE AIMED TO IDENTIFY OTHER POTENTIAL SHARED TARGETS TO UNDERSTAND THE EXTENT IN WHICH THESE CHEMICALS COULD LEAD TO GWI. WE FOLLOWED A REVERSE SCREENING APPROACH WHERE EACH CHEMICAL IS COMPUTATIONALLY DOCKED TO A LIBRARY OF PROTEIN TARGETS. THE PROGRAMS PHARMMAPPER AND TARGETNET WERE USED FOR THIS PURPOSE, AND FURTHER ANALYSES WERE CONDUCTED TO MARK SIGNIFICANT CHANGES IN PARTICIPANTS WITH GWI. PREVIOUSLY PUBLISHED WORK ON DNA METHYLATION STATUS IN GWI WAS REANALYZED FOCUSING SPECIFICALLY ON THE PREDICTED SHARED TARGETS INDICATING SIGNIFICANT CHANGES IN DNA METHYLATION OF THE ASSOCIATED GENES. OUR FINDINGS THUS SUGGEST THAT EXPOSURE TO GWI-RELATED AGENTS MAY CONVERGE ON SIMILAR TARGETS WITH ROLES IN INFLAMMATION, NEUROTRANSMITTER AND LIPID METABOLISM, AND DETOXIFICATION WHICH MAY HAVE IMPACTS ON NEURODEGENERATIVE-LIKE DISEASE AND OXIDATIVE STRESS IN VETERANS WITH GWI. 2022 4 191 27 ACETYL-L-CARNITINE: FROM A BIOLOGICAL CURIOSITY TO A DRUG FOR THE PERIPHERAL NERVOUS SYSTEM AND BEYOND. ACETYL-L-CARNITINE (ALC) IS A MOLECULE DERIVED FROM ACETYLATION OF CARNITINE IN THE MITOCHONDRIA. CARNITINE ACETYLATION ENABLES THE FUNCTION OF COA AND FACILITATES ELIMINATION OF OXIDATIVE PRODUCTS. BEYOND THIS METABOLIC ACTIVITY, ALC PROVIDES ACETYL GROUPS FOR ACETYLCHOLINE SYNTHESIS, EXERTS A CHOLINERGIC EFFECT AND OPTIMIZES THE BALANCE OF ENERGY PROCESSES. ACETYLCARNITINE SUPPLEMENTATION INDUCES NEUROPROTECTIVE, NEUROTROPHIC AND ANALGESIC EFFECTS IN THE PERIPHERAL NERVOUS SYSTEM. IN THE RECENT STUDIES, ALC, BY ACTING AS A DONOR OF ACETYL GROUPS TO NF-KB P65/RELA, ENHANCED THE TRANSCRIPTION OF THE GRM2 GENE ENCODING THE MGLU2 RECEPTORS, INDUCING LONG-TERM UPREGULATION OF THE MGLUR2, EVIDENCING THEREFORE THAT ITS LONG-TERM ANALGESIC EFFECTS ARE DEPENDENT ON EPIGENETIC MODIFICATIONS. SEVERAL STUDIES, INCLUDING DOUBLE-BLIND, PLACEBO-CONTROLLED, PARALLEL GROUP STUDIES AND FEW OPEN STUDIES SHOWED THE EFFECT OF ALC IN DISEASES CHARACTERIZED BY NEUROPATHIES AND NEUROPATHIC PAIN: THE STUDIES INCLUDED DIABETIC NEUROPATHY, HIV AND ANTIRETROVIRAL THERAPY-INDUCED NEUROPATHIES, NEUROPATHIES DUE TO COMPRESSION AND CHEMOTHERAPEUTIC AGENTS. DOUBLE-BLINDED STUDIES INVOLVED 1773 PATIENTS. STATISTICAL EVALUATIONS EVIDENCED REDUCTION OF PAIN, IMPROVEMENTS OF NERVE FUNCTION AND TROPHISM. IN CONCLUSION, ALC REPRESENTS A CONSISTENT THERAPEUTIC OPTION FOR PERIPHERAL NEUROPATHIES, AND ITS COMPLEX EFFECTS, NEUROTROPHIC AND ANALGESIC, BASED ON EPIGENETIC MECHANISM, OPEN NEW PATHWAYS IN THE STUDY OF PERIPHERAL NERVE DISEASE MANAGEMENT. 2013 5 2866 35 FUNCTIONAL ADULT ACETYLCHOLINE RECEPTOR DEVELOPS INDEPENDENTLY OF MOTOR INNERVATION IN SOL 8 MOUSE MUSCLE CELL LINE. WE HAVE DEFINED CULTURE CONDITIONS, USING A FEEDER LAYER OF CELLS FROM THE EMBRYONIC MESENCHYMAL CELL LINE, 10T1/2 AND A SERUM-FREE MEDIUM, WHICH ALLOW CELLS FROM THE MOUSE MYOGENIC CELL LINE SOL 8 TO FORM CONTRACTING MYOTUBES FOR TWO WEEKS. UNDER THESE CULTURE CONDITIONS, SOL 8 MYOTUBES UNDERGO A MATURATION PROCESS CHARACTERIZED BY A SEQUENTIAL EXPRESSION OF TWO PHENOTYPES. AN EARLY PHENOTYPE IS TYPIFIED BY THE EXPRESSION OF THE NICOTINIC ACETYLCHOLINE RECEPTOR (ACHR) GAMMA-SUBUNIT TRANSCRIPTS AND THE PRESENCE OF LOW CONDUCTANCE ACH-ACTIVATED CHANNELS, TYPICAL OF EMBRYONIC ACHR. A LATE PHENOTYPE IS CHARACTERIZED BY THE EXPRESSION OF ACHR EPSILON-SUBUNIT TRANSCRIPTS, THE DECREASED ACCUMULATION OF GAMMA-SUBUNIT TRANSCRIPTS AND THE APPEARANCE OF HIGH CONDUCTANCE ACH-ACTIVATED CHANNELS, TYPICAL OF ADULT ACHR. THESE RESULTS INDICATE THAT THE EXPRESSION OF FUNCTIONAL ADULT TYPE ACHR DOES NOT REQUIRE THE PRESENCE OF THE MOTOR NERVE AND THEREFORE REPRESENTS AN INTRINSIC FEATURE OF THE SOL 8 MUSCLE CELLS. CHRONIC EXPOSURE OF THE CELLS TO THE VOLTAGE-SENSITIVE NA+ CHANNEL BLOCKING AGENT TETRODOTOXIN DOES NOT AFFECT THE APPEARANCE OF THE ACHR EPSILON-SUBUNIT TRANSCRIPTS BUT PREVENTS THE REDUCTION OF THE STEADY-STATE LEVEL OF THE ACHR GAMMA-SUBUNIT TRANSCRIPTS AND YIELDS A REDUCED PROPORTION OF THE ADULT TYPE CHANNELS. THUS, ACTIVITY SEEMS TO FACILITATE THE SWITCH FROM THE EMBRYONIC TO THE ADULT PHENOTYPE OF THE ACHR PROTEIN. THE SOL 8 CELL SYSTEM MIGHT BE USEFUL TO ANALYSE FURTHER THE GENETIC AND EPIGENETIC REGULATION OF MUSCLE FIBRE MATURATION IN MAMMALS. 1991 6 189 30 ACETYL-L-CARNITINE IN CHRONIC PAIN: A NARRATIVE REVIEW. ACETYL-L-CARNITINE (ALC) IS AN ENDOGENOUS MOLECULE THAT NOT ONLY PLAYS A ROLE IN ENERGY METABOLISM, BUT ALSO HAS ANTIOXIDANT PROPERTIES, PROTECTS FROM OXIDATIVE STRESS, MODULATES BRAIN NEUROTRANSMITTERS SUCH AS ACETYLCHOLINE, SEROTONIN AND DOPAMINE, AND ACTS ON NEUROTROPHIC FACTORS SUCH AS NERVE GROWTH FACTOR (NGF) AND METABOTROPIC GLUTAMATE (MGLU) RECEPTORS BY MEANS OF EPIGENETIC MECHANISMS. IMPORTANTLY, IT INDUCES MGLU2 EXPRESSION AT NERVE TERMINALS, THUS GIVING RISE TO ANALGESIA AND PREVENTING SPINAL SENSITISATION. IT HAS ALSO BEEN FOUND TO HAVE EVEN LONG-TERM NEUROTROPHIC AND ANALGESIC ACTIVITY IN EXPERIMENTAL MODELS OF CHRONIC INFLAMMATORY AND NEUROPATHIC PAIN. THE AIM OF THIS NARRATIVE REVIEW IS TO SUMMARISE THE CURRENT EVIDENCE REGARDING THE USE OF ALC IN PATIENTS WITH CHRONIC PAIN, AND COGNITIVE AND MOOD DISORDERS, AND INVESTIGATE THE RATIONALE UNDERLYING ITS USE IN PATIENTS WITH FIBROMYALGIA SYNDROME, WHICH IS CHARACTERISED BY NOCIPLASTIC CHANGES THAT INCREASE THE SENSITIVITY OF THE NERVOUS SYSTEM TO PAIN. 2021 7 4938 38 PATERNAL NICOTINE ENHANCES FEAR MEMORY, REDUCES NICOTINE ADMINISTRATION, AND ALTERS HIPPOCAMPAL GENETIC AND NEURAL FUNCTION IN OFFSPRING. NICOTINE USE REMAINS HIGHLY PREVALENT WITH TOBACCO AND E-CIGARETTE PRODUCTS CONSUMED WORLDWIDE. HOWEVER, INCREASING EVIDENCE OF TRANSGENERATIONAL EPIGENETIC INHERITANCE SUGGESTS THAT NICOTINE USE MAY ALTER BEHAVIOR AND NEUROBIOLOGY IN SUBSEQUENT GENERATIONS. WE TESTED THE EFFECTS OF CHRONIC PATERNAL NICOTINE EXPOSURE IN C57BL6/J MICE ON FEAR CONDITIONING IN F1 AND F2 OFFSPRING, AS WELL AS CONDITIONED FEAR EXTINCTION AND SPONTANEOUS RECOVERY, NICOTINE SELF-ADMINISTRATION, HIPPOCAMPAL CHOLINERGIC FUNCTIONING, RNA EXPRESSION, AND DNA METHYLATION IN F1 OFFSPRING. PATERNAL NICOTINE EXPOSURE WAS ASSOCIATED WITH ENHANCED CONTEXTUAL AND CUED FEAR CONDITIONING AND SPONTANEOUS RECOVERY OF EXTINGUISHED FEAR MEMORIES. FURTHER, NICOTINE REINFORCEMENT WAS REDUCED IN NICOTINE-SIRED MICE, AS ASSESSED IN A SELF-ADMINISTRATION PARADIGM. THESE BEHAVIORAL PHENOTYPES WERE COUPLED WITH ALTERED RESPONSE TO NICOTINE, UPREGULATED HIPPOCAMPAL NICOTINIC ACETYLCHOLINE RECEPTOR BINDING, REDUCED EVOKED HIPPOCAMPAL CHOLINERGIC CURRENTS, AND ALTERED METHYLATION AND EXPRESSION OF HIPPOCAMPAL GENES RELATED TO NEURAL DEVELOPMENT AND PLASTICITY. GENE EXPRESSION ANALYSIS SUGGESTS MULTIGENERATIONAL EFFECTS ON BROADER GENE NETWORKS POTENTIALLY INVOLVED IN NEUROPLASTICITY AND MENTAL DISORDERS. THE CHANGES IN FEAR CONDITIONING SIMILARLY SUGGEST PHENOTYPES ANALOGOUS TO ANXIETY DISORDERS SIMILAR TO POST-TRAUMATIC STRESS. 2021 8 6108 40 THE ENRICHED ENVIRONMENT AMELIORATES CHRONIC UNPREDICTABLE MILD STRESS-INDUCED DEPRESSIVE-LIKE BEHAVIORS AND COGNITIVE IMPAIRMENT BY ACTIVATING THE SIRT1/MIR-134 SIGNALING PATHWAY IN HIPPOCAMPUS. BACKGROUND: CHRONIC UNPREDICTABLE MILD STRESS (CUMS) IS AN IMPORTANT RISK FACTOR FOR DEPRESSION AND COGNITIVE DEFICITS IN HUMANS. ENRICHED ENVIRONMENT (EE) SHOWED A BENEFICIAL EFFECT ON DEPRESSION AND COGNITION BY ENHANCING BRAIN DERIVED NEUROTROPHIC FACTOR (BDNF) EXPRESSION AND SYNAPTIC PLASTICITY. HOWEVER, IT IS STILL NOT CLEARLY UNDERSTOOD WHETHER AN EPIGENETIC MECHANISM IS INVOLVED IN THE BDNF MODULATION AND SYNAPTIC PLASTICITY THAT OCCURS AFTER EE TREATMENT FOR THE DEPRESSIVE-LIKE BEHAVIORS AND COGNITIVE DEFICITS ELICITED BY CUMS. IN THIS STUDY, WE INVESTIGATED THE POSSIBLE MECHANISM OF THE NEUROPROTECTIVE EFFECT OF EE. METHODS: ALL RATS WERE EXPOSED TO THE 5-WEEK CUMS PROCEDURE EXCEPT THE CONTROL GROUP. AFTER CUMS PROCEDURE, SOME RATS WERE STEREOTAXICALLY INJECTED WITH SIRT1 PHARMACOLOGIC INHIBITOR EX527 OR SIRT1 KNOCKING DOWN LENTIVIRUS (SH-SIRT1) IN THE HIPPOCAMPUS FOLLOWED BY EE TREATMENT FOR 3 WEEKS. OTHER RATS WERE DIRECTLY SUBJECTED TO EE TREATMENT WITHOUT STEREOTAXIC INJECTION. BEHAVIORAL TESTS WERE USED TO APPRAISE DEPRESSION AND COGNITION AFTER EE TREATMENT. THEN EPIGENETIC MOLECULES, SYNAPTIC PROTEINS, DENDRITIC SPINE DENSITY AND BRANCHES, AND SYNAPTIC MORPHOLOGY OF THE DORSAL HIPPOCAMPUS WERE DETERMINED. RESULTS: WE FOUND THAT CUMS INDUCED DEPRESSIVE-LIKE BEHAVIORS INCLUDING DECREASED SUCROSE PREFERENCE RATIO, PROLONGED IMMOBILITY AND REDUCED LOCOMOTOR AND EXPLORATORY ACTIVITY; COGNITIVE DEFICITS INCLUDING SPATIAL LEARNING AND MEMORY IMPAIRMENT; REDUCED DENDRITIC SPINE DENSITY AND NUMBER OF BRANCHES; THINNED POSTSYNAPTIC DENSITY; DOWNREGULATED SIRT1/MICRORNA-134 PATHWAY, DECREASED BDNF AND SYNAPTIC PROTEINS INCLUDING SYNAPTOPHYSIN (SYN) AND POSTSYNAPTIC DENSITY PROTEIN 95 (PSD95) EXPRESSION IN THE HIPPOCAMPUS. HOWEVER, THE CUMS-INDUCED DEPRESSIVE-LIKE BEHAVIORS, COGNITIVE DEFICITS, DENDRITIC SPINE DENSITY AND BRANCH NUMBER REDUCTION, POSTSYNAPTIC DENSITY THINNING, SIRT1/MICRORNA-134 PATHWAY DOWNREGULATION, BDNF AND SYNAPTIC PROTEINS REDUCTION, INCLUDING SYNAPTOPHYSIN (SYN) AND POSTSYNAPTIC DENSITY PROTEIN 95 (PSD95), WERE REVERSED BY EE TREATMENT. HOWEVER, DEPRESSIVE-LIKE BEHAVIORS AND COGNITIVE DEFICITS WERE OBSERVED AGAIN IN RATS SUBJECTED TO STEREOTAXIC INJECTION WITH EX527 OR SH-SIRT1. FURTHERMORE, THIS STUDY ALSO FOUND THAT SIRT1/MICRORNA-134 REGULATES THE DOWNSTREAM MOLECULES BDNF, AND THE SYNAPTIC PROTEINS SYN AND PSD95 IN PRIMARY CULTURED HIPPOCAMPAL NEURONS. CONCLUSIONS: THIS STUDY PROVIDES EVIDENCE FOR THE NEUROPROTECTIVE ROLE OF EE ON DEPRESSION AND COGNITIVE DEFICITS BY ACTIVATING THE SIRT1/MICRORNA-134 PATHWAY, WHICH ACCOUNTS FOR THE REGULATION OF SYNAPTIC PROTEINS, INCLUDING BDNF, PSD95 AND SYN, DENDRITIC REMODELING AND ULTRASTRUCTURE CHANGES OF SYNAPSES IN THE HIPPOCAMPUS. 2019 9 265 39 ADVERSE EFFECTS OF RECREATIONAL AND MEDICAL CANNABIS. PURPOSE OF REVIEW: THIS COMPREHENSIVE REVIEW DISCUSSES THE ADVERSE EFFECTS KNOWN TODAY ABOUT MARIJUANA, FOR EITHER MEDICAL OR RECREATIONAL USE. IT REVIEWS THE ROLE OF CANNABIS IN THE TREATMENT OF CHRONIC PAIN, COGNITIVE AND NEUROLOGICAL ADVERSE EFFECTS, SPECIAL CASES AND ADDICTION. RECENT FINDINGS: CANNABINOIDS WORK THROUGH THE ENDOCANNABINOIDS SYSTEM AND INHIBIT THE RELEASE OF GABA AND GLUTAMATE IN THE BRAIN, IMPACT NEUROMODULATION, AS WELL AS DOPAMINE, ACETYLCHOLINE AND NOREPINEPHRINE RELEASE. THEY AFFECT REWARD, LEARNING AND PAIN. THE USE OF CANNABIS IS INCREASING NATIONALLY AND WORLD-WIDE FOR BOTH RECREATIONAL AND MEDICINAL PURPOSES, HOWEVER, THERE IS RELATIVELY ONLY LOW QUALITY EVIDENCE TO THE EFFICACY AND ADVERSE EFFECTS OF THIS. CANNABIS AND ITS DERIVATIVES MAY BE USED FOR TREATMENT OF CHRONIC PAIN. THEY ARE VIA CB1 RECEPTORS THAT ARE THOUGHT TO MODULATE NOCICEPTIVE SIGNALS IN THE BRAIN. CB2 RECEPTORS IN THE DRG LIKELY AFFECT PAIN INTEGRATION IN THE AFFERENT PATHWAYS, AND PERIPHERALLY CB2 ALSO AFFECTS NORADRENERGIC PATHWAYS INFLUENCING PAIN. A LARGE PROPORTION OF USERS MAY SEE MORE THAN 50% OF CHRONIC PAIN ALLEVIATION COMPARED WITH PLACEBO. CANNABIS AFFECTS COGNITION, MOST NOTABLY EXECUTIVE FUNCTION, MEMORY AND ATTENTION, AND MAY DETERIORATE THE BOUNDARY BETWEEN EMOTIONAL AND EXECUTIVE PROCESSING. CANNABIS IMPAIRS MEMORY IN THE SHORT RUN, WHICH BECOME MORE SIGNIFICANT WITH CHRONIC USE, AND MAY ALSO BE ACCOMPANIED BY POORER EFFORT, SLOWER PROCESSING AND IMPACTED ATTENTION. IT IS GENERALLY BELIEVED THAT LONG-TERM USE AND EARLIER AGE ARE RISK FACTOR FOR NEUROCOGNITIVE DEFICITS; NEUROIMAGING STUDIES HAVE SHOWN REDUCED HIPPOCAMPAL VOLUME AND DENSITY. EXECUTIVE FUNCTIONS AND MEMORY ARE WORSE IN ADOLESCENT USERS VERSUS ADULTS. CANNABIS ADDICTION IS DIFFERENT AND LIKELY LESS COMMON THAN OTHER ADDICTIVE SUBSTANCES, BUT UP TO 10% OF USERS MEET CRITERIA FOR LIFETIME CANNABIS DEPENDENCE. ADDICTION PATTERNS MAY BE LINKED TO GENETIC AND EPIGENETIC DIFFERENCES. IT IS STILL UNCLEAR WHETHER ABSTINENCE REVERSES PATTERNS OF ADDICTION, AND MORE RESEARCH IS REQUIRED INTO THIS TOPIC. SUMMARY: CANNABIS USE HAS BECOME MORE ABUNDANT FOR BOTH MEDICAL AND RECREATIONAL USE. IT CARRIES LIKELY BENEFITS IN THE FORM OF ANALGESIA, ANTI-EMESIS AND IMPROVED APPETITE IN CHRONIC PATIENTS. THE EVIDENCE REVIEWING ADVERSE EFFECTS OF THIS USE ARE STILL LIMITED, HOWEVER, EXITING DATA POINTS TO A CLEAR LINK WITH NEUROCOGNITIVE DETERIORATION, BACKED BY LOSS OF BRAIN VOLUME AND DENSITY. ADDICTION IS LIKELY COMPLEX AND VARIABLE, AND NO GOOD DATA EXISTS TO SUPPORT TREATMENT AT THIS POINT. IT IS BECOMING CLEAR THAT USE IN EARLIER AGES CARRIES A HIGHER RISK FOR LONG-TERM DEFICITS. AS WITH ANY OTHER DRUG, THESE RISKS SHOULD BE CONSIDERED ALONGSIDE BENEFITS PRIOR TO A DECISION ON CANNABIS USE. 2021 10 4207 29 METABOTROPIC GLUTAMATE RECEPTORS AND THE CONTROL OF CHRONIC PAIN. OVER THE PAST TWO DECADES METABOTROPIC GLUTAMATE (MGLU) RECEPTOR LIGANDS HAVE BEEN INVESTIGATED FOR THEIR POTENTIAL THERAPEUTIC EFFECTS IN DIFFERENT DISORDERS OF THE CENTRAL NERVOUS SYSTEM (CNS), INCLUDING ANXIETY, DEPRESSION, SCHIZOPHRENIA, AND NEURODEGENERATIVE DISEASES. IN ADDITION, IT HAS BEEN WIDELY DEMONSTRATED THAT MGLU RECEPTORS ARE ABLE TO MODULATE PAIN TRANSMISSION BOTH IN INFLAMMATORY AND NEUROPATHIC PAIN MODELS. A LARGE NUMBER OF PRECLINICAL STUDIES COMBINING THE USE OF SELECTIVE LIGANDS WITH THE KNOCKOUT STRATEGY HAVE REVEALED MORE DETAILS ABOUT THE ROLE OF THE DIFFERENT MGLU RECEPTOR SUBTYPES IN THE MODULATION OF PAIN INFORMATION. THIS REVIEW WILL ADDRESS THE ROLE OF MGLU RECEPTORS IN PAIN SENSITIVITY FOCUSING ON DIFFERENT STRATEGIES TO ACHIEVE PAIN CONTROL BY TARGETING SPECIFIC MGLU RECEPTOR SUBTYPES. SPECIFICALLY, PHARMACOLOGICAL INTERVENTIONS AIMED AT INHIBITING GROUP I MGLU RECEPTOR-MEDIATED SIGNALING AND/OR POTENTIATING GROUPS II AND III MGLU RECEPTOR SIGNALING TOGETHER WITH AN EPIGENETIC APPROACH LEADING TO AN INCREASED EXPRESSION OF MGLU2 RECEPTORS WILL BE DISCUSSED. 2012 11 6536 26 TRANSCRIPTIONAL REGULATION OF TYPE-2 METABOTROPIC GLUTAMATE RECEPTORS: AN EPIGENETIC PATH TO NOVEL TREATMENTS FOR CHRONIC PAIN. ACTIVATION OF METABOTROPIC GLUTAMATE 2 (MGLU2) RECEPTORS INHIBITS PAIN TRANSMISSION AT THE SYNAPSES BETWEEN PRIMARY AFFERENT FIBERS AND NEURONS IN THE DORSAL HORN OF THE SPINAL CORD. IN ADDITION, MGLU2 RECEPTORS ARE FOUND IN PERIPHERAL NOCICEPTORS, AND IN PAIN-REGULATORY CENTERS OF THE BRAIN STEM AND FOREBRAIN. MGLU2 RECEPTOR AGONISTS PRODUCE ANALGESIA IN MODELS OF INFLAMMATORY AND NEUROPATHIC PAIN, BUT THEIR USE IS LIMITED BY THE DEVELOPMENT OF TOLERANCE. A NEW THERAPEUTIC STRATEGY COULD BE BASED ON THE TRANSCRIPTIONAL REGULATION OF MGLU2 RECEPTORS VIA THE ACETYLATION-PROMOTED ACTIVATION OF THE P65/RELA TRANSCRIPTION FACTOR. "EPIGENETIC" DRUGS THAT INCREASE MGLU2 RECEPTOR EXPRESSION, INCLUDING L-ACETYLCARNITINE AND INHIBITORS OF HISTONE DEACETYLASES, HAVE A DIFFERENT ANALGESIC PROFILE WITH NO TOLERANCE TO THE THERAPEUTIC EFFECT AFTER REPEATED DOSING. 2010 12 2827 34 FLUOXETINE INCREASES HIPPOCAMPAL NEUROGENESIS AND INDUCES EPIGENETIC FACTORS BUT DOES NOT IMPROVE FUNCTIONAL RECOVERY AFTER TRAUMATIC BRAIN INJURY. THE SELECTIVE SEROTONIN REUPTAKE INHIBITOR FLUOXETINE INDUCES HIPPOCAMPAL NEUROGENESIS, STIMULATES MATURATION AND SYNAPTIC PLASTICITY OF ADULT HIPPOCAMPAL NEURONS, AND REDUCES MOTOR/SENSORY AND MEMORY IMPAIRMENTS IN SEVERAL CNS DISORDERS. IN THE SETTING OF TRAUMATIC BRAIN INJURY (TBI), ITS EFFECTS ON NEUROPLASTICITY AND FUNCTION HAVE YET TO BE THOROUGHLY INVESTIGATED. HERE WE EXAMINED THE EFFICACY OF FLUOXETINE AFTER A MODERATE TO SEVERE TBI, PRODUCED BY A CONTROLLED CORTICAL IMPACT. THREE DAYS AFTER TBI OR SHAM SURGERY, MICE WERE TREATED WITH FLUOXETINE (10 MG/KG/D) OR VEHICLE FOR 4 WEEKS. TO EVALUATE THE EFFECTS OF FLUOXETINE ON NEUROPLASTICITY, HIPPOCAMPAL NEUROGENESIS AND EPIGENETIC MODIFICATION WERE STUDIED. STEREOLOGIC ANALYSIS OF THE DENTATE GYRUS REVEALED A SIGNIFICANT INCREASE IN DOUBLECORTIN-POSITIVE CELLS IN BRAIN-INJURED ANIMALS TREATED WITH FLUOXETINE RELATIVE TO CONTROLS, A FINDING CONSISTENT WITH ENHANCED HIPPOCAMPAL NEUROGENESIS. EPIGENETIC MODIFICATIONS, INCLUDING AN INCREASE IN HISTONE 3 ACETYLATION AND INDUCTION OF METHYL-CPG-BINDING PROTEIN, A TRANSCRIPTION FACTOR INVOLVED IN DNA METHYLATION, WERE LIKEWISE SEEN BY IMMUNOHISTOCHEMISTRY AND QUANTITATIVE WESTERN IMMUNOBLOTS, RESPECTIVELY, IN BRAIN-INJURED ANIMALS TREATED WITH FLUOXETINE. TO DETERMINE IF FLUOXETINE IMPROVES NEUROLOGICAL OUTCOMES AFTER TBI, GAIT FUNCTION AND SPATIAL LEARNING AND MEMORY WERE ASSESSED BY THE CATWALK-ASSISTED GAIT TEST AND BARNES MAZE TEST, RESPECTIVELY. NO DIFFERENCES IN THESE PARAMETERS WERE SEEN BETWEEN FLUOXETINE- AND VEHICLE-TREATED ANIMALS. THUS WHILE FLUOXETINE ENHANCED NEUROPLASTICITY IN THE HIPPOCAMPUS AFTER TBI, ITS CHRONIC ADMINISTRATION DID NOT RESTORE LOCOMOTOR FUNCTION OR AMELIORATE MEMORY DEFICITS. 2011 13 1803 21 EFFECT OF PROLONGED EMOTIONAL AND PAIN STRESS ON THE CONTENT OF METHYLCYTOSINE-BINDING PROTEIN MECP2 IN NUCLEI OF HIPPOCAMPAL NEURONS IN RATS WITH DIFFERENT EXCITABILITY OF THE NERVOUS SYSTEM. IN RATS WITH LOW EXCITABILITY THRESHOLD OF THE NERVOUS SYSTEM DEMONSTRATING SIGNIFICANT AND PERSISTENT BEHAVIORAL DISORDERS UNDER STRESS CONDITIONS, THE CONTENT OF METHYLCYTOSINE-BINDING PROTEIN MECP2 IN NEURONAL NUCLEI OF HIPPOCAMPAL FIELD CA3 DECREASED OVER 2 WEEKS AFTER LONG-TERM EMOTIONAL AND PAIN STRESS. IT WAS HYPOTHESIZED THAT PROTEIN MECP2 TRIGGERS EPIGENETIC CHANGES IN DNA THAT UNDERLIE "STRESS MEMORY". 2006 14 5451 40 REPROGRAMMING CELLS FROM GULF WAR VETERANS INTO NEURONS TO STUDY GULF WAR ILLNESS. GULF WAR ILLNESS (GWI), WHICH AFFLICTS AT LEAST 25% OF VETERANS WHO SERVED IN THE 1990-1991 WAR IN THE PERSIAN GULF, IS THOUGHT TO BE CAUSED BY DEPLOYMENT EXPOSURES TO VARIOUS NEUROTOXICANTS, INCLUDING PESTICIDES, ANTI-NERVE GAS PILLS, AND LOW-LEVEL NERVE AGENTS INCLUDING SARIN/CYCLOSARIN. GWI IS A MULTISYMPTOM DISORDER CHARACTERIZED BY FATIGUE, JOINT PAIN, COGNITIVE PROBLEMS, AND GASTROINTESTINAL COMPLAINTS. THE MOST PROMINENT SYMPTOMS OF GWI (MEMORY PROBLEMS, POOR ATTENTION/CONCENTRATION, CHRONIC HEADACHES, MOOD ALTERATIONS, AND IMPAIRED SLEEP) SUGGEST THAT THE DISEASE PRIMARILY AFFECTS THE CNS. DEVELOPMENT OF URGENTLY NEEDED TREATMENTS DEPENDS ON EXPERIMENTAL MODELS APPROPRIATE FOR TESTING MECHANISTIC HYPOTHESES AND FOR SCREENING THERAPEUTIC COMPOUNDS. RODENT MODELS HAVE BEEN USEFUL THUS FAR, BUT ARE LIMITED BY THEIR INABILITY TO ASSESS THE CONTRIBUTION OF GENETIC OR EPIGENETIC BACKGROUND TO THE DISEASE, AND BECAUSE DISEASE-VULNERABLE PROTEINS AND PATHWAYS MAY BE DIFFERENT IN HUMANS RELATIVE TO RODENTS. AS OF YET, NO POSTMORTEM TISSUE FROM THE VETERANS HAS BECOME AVAILABLE FOR RESEARCH. WE ARE MOVING FORWARD WITH A PARADIGM SHIFT IN THE STUDY OF GWI, WHICH UTILIZES CONTEMPORARY STEM CELL TECHNOLOGY TO CONVERT SOMATIC CELLS FROM GULF WAR VETERANS INTO PLURIPOTENT CELL LINES THAT CAN BE DIFFERENTIATED INTO VARIOUS CELL TYPES, INCLUDING NEURONS, GLIA, MUSCLE, OR OTHER RELEVANT CELL TYPES. SUCH CELL LINES ARE IMMORTAL AND WILL BE A RESOURCE FOR GWI RESEARCHERS TO PURSUE MECHANISTIC HYPOTHESES AND THERAPEUTICS. 2017 15 1988 50 EPIGENETIC ANALYSIS IN A MURINE GENETIC MODEL OF GULF WAR ILLNESS. OF THE NEARLY 1 MILLION MILITARY PERSONNEL WHO PARTICIPATED IN THE 1990-1991 GULF WAR, BETWEEN 25% AND 35% BECAME ILL WITH WHAT NOW IS REFERRED TO AS GULF WAR ILLNESS (GWI) BY THE DEPARTMENT OF DEFENSE. SYMPTOMS VARIED FROM GASTROINTESTINAL DISTRESS TO LETHARGY, MEMORY LOSS, INABILITY TO CONCENTRATE, DEPRESSION, RESPIRATORY, AND REPRODUCTIVE PROBLEMS. THE SYMPTOMS HAVE PERSISTED FOR 30 YEARS IN THOSE AFFLICTED BUT THE BASIS OF THE ILLNESS REMAINS LARGELY UNKNOWN. NERVE AGENTS AND OTHER CHEMICAL EXPOSURES IN THE WAR ZONE HAVE BEEN IMPLICATED BUT THE LONG-TERM EFFECTS OF THESE ACUTE EXPOSURES HAVE LEFT FEW IF ANY IDENTIFIABLE SIGNATURES. THE MAJOR AIM OF THIS STUDY IS TO ELUCIDATE THE POSSIBLE GENOMIC BASIS FOR THE PERSISTENCE OF SYMPTOMS, ESPECIALLY OF THE NEUROLOGICAL AND BEHAVIORAL EFFECTS. TO ADDRESS THIS, WE PERFORMED A WHOLE GENOME EPIGENETIC ANALYSIS OF THE PROPOSED CAUSE OF GWI, VIZ., EXPOSURE TO ORGANOPHOSPHATE NEUROTOXICANTS COMBINED WITH HIGH CIRCULATING GLUCOCORTICOIDS IN TWO INBRED MOUSE STRAINS, C57BL/6J AND DBA/2J. THE ANIMALS RECEIVED CORTICOSTERONE IN THEIR DRINKING WATER FOR 7 DAYS FOLLOWED BY INJECTION OF DIISOPROPYLFLUOROPHOSPHATE, A NERVE AGENT SURROGATE. SIX WEEKS AFTER DFP INJECTION, THE ANIMALS WERE EUTHANIZED AND MEDIAL PREFRONTAL CORTEX HARVESTED FOR GENOME-WIDE DNA METHYLATION ANALYSIS USING HIGH-THROUGHPUT SEQUENCING. WE OBSERVED 67 DIFFERENTIALLY METHYLATED GENES, NOTABLY AMONG THEM, TTLL7, AKR1C14, SLC44A4, AND RUSC2, ALL RELATED TO DIFFERENT SYMPTOMS OF GWI. OUR RESULTS SUPPORT PROOF OF PRINCIPLE OF GENETIC DIFFERENCES IN THE CHRONIC EFFECTS OF GWI-RELATED EXPOSURES AND MAY REVEAL WHY THE DISEASE HAS PERSISTED IN MANY OF THE NOW AGING GULF WAR VETERANS. 2023 16 3331 40 HISTONE DEACETYLASE INHIBITOR SUBERANILOHYDROXAMIC ACID TREATMENT REVERSES HYPOSENSITIVITY TO GAMMA-AMINOBUTYRIC ACID IN THE VENTRAL TEGMENTAL AREA DURING ETHANOL WITHDRAWAL. BACKGROUND: THE VENTRAL TEGMENTAL AREA (VTA) IS IMPORTANT FOR ALCOHOL-RELATED REWARD AND REINFORCEMENT. MOUSE VTA NEURONS ARE HYPOSENSITIVE TO GAMMA-AMINOBUTYRIC ACID (GABA) DURING ETHANOL (ETOH) WITHDRAWAL, AND GABA RESPONSIVENESS IS NORMALIZED BY IN VITRO TREATMENT WITH HISTONE DEACETYLASE INHIBITORS (HDACI). THE PRESENT STUDY EXAMINED THE EFFECT OF A SYSTEMICALLY ADMINISTERED HDACI, SUBERANILOHYDROXAMIC ACID (SAHA) ON GABA SENSITIVITY, AND RELATED MOLECULAR CHANGES IN VTA NEURONS DURING WITHDRAWAL AFTER CHRONIC ETOH INTAKE IN RATS. METHODS: SPRAGUE DAWLEY MALE ADULT RATS WERE FED WITH LIEBER-DECARLI DIET (9% ETOH OR CONTROL DIET) FOR 16 DAYS. EXPERIMENTAL GROUPS INCLUDED CONTROL DIET-FED AND ETOH DIET-FED (0- OR 24-HOUR WITHDRAWAL) RATS TREATED WITH EITHER SAHA OR VEHICLE INJECTION. SINGLE-UNIT RECORDINGS WERE USED TO MEASURE THE RESPONSE OF VTA NEURONS TO GABA. IMMUNOHISTOCHEMISTRY WAS PERFORMED TO EXAMINE LEVELS OF HDAC2, ACETYLATED HISTONE H3 LYSINE 9 (ACH3K9), AND GABA(A) RECEPTOR ALPHA1 AND ALPHA5 SUBUNITS IN THE VTA; QUANTITATIVE POLYMERASE CHAIN REACTION WAS PERFORMED TO EXAMINE THE MRNA LEVELS OF HDAC2 AND GABA(A) RECEPTOR SUBUNITS. RESULTS: VTA NEURONS FROM THE WITHDRAWAL GROUP EXHIBITED GABA HYPOSENSITIVITY. IN VIVO SAHA TREATMENT 2 HOURS BEFORE SACRIFICE NORMALIZED THE SENSITIVITY OF VTA NEURONS TO GABA. ETOH WITHDRAWAL WAS ASSOCIATED WITH INCREASED HDAC2 AND DECREASED ACH3K9 PROTEIN LEVELS; SAHA TREATMENT NORMALIZED ACH3K9 LEVELS. INTERESTINGLY, NO SIGNIFICANT CHANGE WAS OBSERVED IN THE MRNA LEVELS OF HDAC2. THE MRNA LEVELS, BUT NOT PROTEIN LEVELS, OF GABA(A) RECEPTOR ALPHA1 AND ALPHA5 SUBUNITS WERE INCREASED DURING WITHDRAWAL. CONCLUSIONS: WITHDRAWAL FROM CHRONIC ETOH EXPOSURE RESULTS IN A DECREASE IN GABA-MEDIATED INHIBITION, AND THIS GABA HYPOSENSITIVITY IS NORMALIZED BY IN VIVO SAHA TREATMENT. DISRUPTION OF SIGNALING IN THE VTA PRODUCED BY ALTERATION OF GABA NEUROTRANSMISSION COULD BE 1 NEUROADAPTIVE PHYSIOLOGICAL PROCESS LEADING TO CRAVING AND RELAPSE. THESE RESULTS SUGGEST THAT HDACI PHARMACOTHERAPY WITH AGENTS LIKE SAHA MIGHT BE AN EFFECTIVE TREATMENT FOR ALCOHOLISM. 2018 17 219 38 ACUTE IMMOBILIZATION STRESS FOLLOWING CONTEXTUAL FEAR CONDITIONING REDUCES FEAR MEMORY: TIMING IS ESSENTIAL. BACKGROUND: HISTONE ACETYLATION IS REGULATED IN RESPONSE TO STRESS AND PLAYS AN IMPORTANT ROLE IN LEARNING AND MEMORY. CHRONIC STRESS IS KNOWN TO DETERIORATE COGNITION, WHEREAS ACUTE STRESS FACILITATES MEMORY FORMATION. HOWEVER, WHETHER ACUTE STRESS FACILITATES MEMORY FORMATION WHEN IT IS APPLIED AFTER FEAR STIMULATION IS NOT YET KNOWN. THEREFORE, THIS STUDY AIMED TO INVESTIGATE THE EFFECT OF ACUTE STRESS APPLIED AFTER FEAR TRAINING ON MEMORY FORMATION, MRNA EXPRESSION OF BRAIN-DERIVED NEUROTROPHIC FACTOR (BDNF), EPIGENETIC REGULATION OF BDNF EXPRESSION, AND CORTICOSTERONE LEVEL IN MICE IN VIVO. METHODS: MICE WERE SUBJECTED TO ACUTE IMMOBILIZATION STRESS FOR 30 MIN AT 60 OR 90 MIN AFTER CONTEXTUAL FEAR CONDITIONING TRAINING, AND ACETYLATION OF HISTONE 3 AT LYSINE 14 (H3K14) AND LEVEL OF CORTICOSTERONE WERE MEASURED USING WESTERN BLOT ANALYSIS AND ENZYME-LINKED IMMUNOSORBENT ASSAY (ELISA), RESPECTIVELY. A FREEZING BEHAVIOR TEST WAS PERFORMED 24 H AFTER TRAINING, AND MRNA EXPRESSION OF BDNF WAS MEASURED USING REAL-TIME POLYMERASE CHAIN REACTIONS. DIFFERENT GROUPS OF MICE WERE USED FOR EACH TEST. RESULTS: FREEZING BEHAVIOR SIGNIFICANTLY DECREASED WITH THE DOWN-REGULATION OF BDNF MRNA EXPRESSION CAUSED BY ACUTE IMMOBILIZATION STRESS AT 60 MIN AFTER FEAR CONDITIONING TRAINING OWING TO THE REDUCTION OF H3K14 ACETYLATION. HOWEVER, BDNF MRNA EXPRESSION AND H3K14 ACETYLATION WERE NOT REDUCED IN ANIMALS SUBJECTED TO IMMOBILIZATION STRESS AT 90 MIN AFTER THE TRAINING. FURTHER, THE CORTICOSTERONE LEVEL WAS SIGNIFICANTLY HIGH IN MICE SUBJECTED TO IMMOBILIZATION STRESS AT 60 MIN AFTER THE TRAINING. CONCLUSION: ACUTE IMMOBILIZATION STRESS FOR 30 MIN AT 60 MIN AFTER FEAR CONDITIONING TRAINING IMPAIRED MEMORY FORMATION AND REDUCED BDNF MRNA EXPRESSION AND H3K14 ACETYLATION IN THE HIPPOCAMPUS OF MICE OWING TO THE HIGH LEVEL OF CORTICOSTERONE. 2016 18 3980 48 LONG-TERM EPIGENETIC ALTERATIONS IN A RAT MODEL OF GULF WAR ILLNESS. GULF WAR ILLNESS (GWI) IS A CHRONIC, MULTISYMPTOM ILLNESS THAT AFFECTS 25% OF THE 700,000 US VETERANS DEPLOYED TO THE PERSIAN GULF DURING THE 1990-1991 GULF WAR. CENTRAL NERVOUS SYSTEM IMPAIRMENTS ARE AMONG THE MOST COMMON SYMPTOMS REPORTED, INCLUDING MEMORY DYSFUNCTION AND DEPRESSION. AFTER 25 YEARS, THE DIAGNOSIS REMAINS ELUSIVE, USEFUL TREATMENTS ARE LACKING, AND THE CAUSE IS POORLY UNDERSTOOD, ALTHOUGH EXPOSURES TO PYRIDOSTIGMINE BROMIDE (PB) AND PESTICIDES ARE CONSISTENTLY IDENTIFIED TO BE AMONG THE STRONGEST RISK FACTORS. EPIGENETIC CHANGES INCLUDING ALTERED MICRORNA (MIRNA) EXPRESSION AND DNA METHYLATION PLAY AN IMPORTANT ROLE IN LEARNING, MEMORY, AND EMOTION REGULATION AND HAVE BEEN IMPLICATED IN VARIOUS NEUROLOGICAL DISORDERS. IN THIS STUDY, WE USED AN ESTABLISHED RAT MODEL OF GWI TO DETERMINE WHETHER 1) CHRONIC ALTERATIONS IN MIRNA EXPRESSION AND GLOBAL DNA METHYLATION AND DNA HYDROXYMETHYLATION ARE MECHANISMS INVOLVED IN THE PATHOBIOLOGY OF GWI, AND 2) PLASMA EXOSOME SMALL RNAS MAY SERVE AS POTENTIAL NONINVASIVE BIOMARKERS OF THIS DEBILITATING DISEASE. ONE YEAR AFTER A 28-DAY EXPOSURE REGIMEN OF PB, DEET (N,N-DIETHYL-3-METHYLBENZAMIDE), PERMETHRIN, AND MILD STRESS, EXPRESSION OF 84 MATURE MIRNAS AND GLOBAL 5-METHYLCYTOSINE (5MC) AND 5-HYDROXYMETHYLCYTOSINE (5HMC) CONTENT WERE ANALYZED IN THE BRAINS OF GWI RATS AND VEHICLE CONTROLS BY PCR ARRAY AND ENZYME-LINKED IMMUNOSORBENT ASSAY, RESPECTIVELY. PLASMA EXOSOME RNA NEXT-GENERATION SEQUENCING ANALYSIS WAS PERFORMED IN POOLED SAMPLES TO DISCOVER POTENTIAL NONINVASIVE BIOMARKERS. WE FOUND THAT COMBINED EXPOSURE TO LOW DOSES OF GW-RELATED CHEMICALS AND MILD STRESS CAUSED EPIGENETIC MODIFICATIONS IN THE BRAIN THAT PERSISTED ONE YEAR AFTER EXPOSURE, INCLUDING INCREASED EXPRESSION OF MIR-124-3P AND MIR-29B-3P IN THE HIPPOCAMPUS AND REGIONAL ALTERATIONS IN GLOBAL 5MC AND 5HMC CONTENT. GW-RELEVANT EXPOSURES ALSO INDUCED THE DIFFERENTIAL EXPRESSION OF TWO PIWI-INTERACTING RNAS (PIRNAS) IN CIRCULATION (PIR-007899 AND PIR-019162). RESULTS FROM THIS STUDY IMPLICATE A ROLE FOR EPIGENETIC ALTERATIONS IN GWI. EVALUATION OF THE DIAGNOSTIC POTENTIAL OF PLASMA EXOSOME RNAS IN VETERANS WITH GWI IS WARRANTED. 2016 19 4848 35 OPIOID-INDUCED STRUCTURAL AND FUNCTIONAL PLASTICITY OF MEDIUM-SPINY NEURONS IN THE NUCLEUS ACCUMBENS. OPIOID USE DISORDER (OUD) IS A CHRONIC RELAPSING CLINICAL CONDITION WITH TREMENDOUS MORBIDITY AND MORTALITY THAT FREQUENTLY PERSISTS, DESPITE TREATMENT, DUE TO AN INDIVIDUAL'S UNDERLYING PSYCHOLOGICAL, NEUROBIOLOGICAL, AND GENETIC VULNERABILITIES. EVIDENCE SUGGESTS THAT THESE VULNERABILITIES MAY HAVE NEUROCHEMICAL, CELLULAR, AND MOLECULAR BASES. KEY NEUROPLASTIC EVENTS WITHIN THE MESOCORTICOLIMBIC SYSTEM THAT EMERGE THROUGH CHRONIC EXPOSURE TO OPIOIDS MAY HAVE A DETERMINATIVE INFLUENCE ON BEHAVIORAL SYMPTOMS ASSOCIATED WITH OUD. IN PARTICULAR, STRUCTURAL AND FUNCTIONAL ALTERATIONS IN THE DENDRITIC SPINES OF MEDIUM SPINY NEURONS (MSNS) WITHIN THE NUCLEUS ACCUMBENS (NAC) AND ITS DOPAMINERGIC PROJECTIONS FROM THE VENTRAL TEGMENTAL AREA (VTA) ARE BELIEVED TO FACILITATE THESE BEHAVIORAL SEQUELAE. ADDITIONALLY, GLUTAMATERGIC NEURONS FROM THE PREFRONTAL CORTEX, THE BASOLATERAL AMYGDALA, THE HIPPOCAMPUS, AND THE THALAMUS PROJECT TO THESE SAME MSNS, PROVIDING AN ENRICHED TARGET FOR SYNAPTIC PLASTICITY. HERE, WE REVIEW LITERATURE RELATED TO NEUROADAPTATIONS IN NAC MSNS FROM DOPAMINERGIC AND GLUTAMATERGIC PATHWAYS IN OUD. WE ALSO DESCRIBE NEW FINDINGS RELATED TO TRANSCRIPTIONAL, EPIGENETIC, AND MOLECULAR MECHANISMS IN MSN PLASTICITY IN THE DIFFERENT STAGES OF OUD. 2021 20 5094 34 PLASMA EXTRACELLULAR VESICLE SUBTYPES MAY BE USEFUL AS POTENTIAL BIOMARKERS OF IMMUNE ACTIVATION IN PEOPLE WITH HIV. BACKGROUND: EXTRACELLULAR VESICLES (EVS) ARE INTERCELLULAR MESSENGERS WITH EPIGENETIC POTENTIAL SINCE THEY CAN SHUTTLE MICRORNA (MIRNA). EVS AND MIRNA PLAY A ROLE IN HUMAN IMMUNODEFICIENCY VIRUS (HIV) INFECTION IMMUNOPATHOGENESIS. CHRONIC IMMUNE ACTIVATION AND SYSTEMIC INFLAMMATION DURING HIV INFECTION DESPITE EFFECTIVE ANTIRETROVIRAL THERAPY (ART) ARE ASSOCIATED WITH NON-ACQUIRED IMMUNODEFICIENCY SYNDROME (AIDS) COMORBIDITIES IN PEOPLE LIVING WITH HIV (PLWH). ANALYSIS OF PLASMA EVS AND THEIR MIRNA CONTENT MAY BE USEFUL AS IMMUNE ACTIVATION OR INFLAMMATORY BIOMARKERS IN PLWH RECEIVING ART. IN THIS STUDY, WE HYPOTHESIZED THAT THE NUMBER, SIZE, AND MIRNA OF LARGE AND SMALL EVS COULD REFLECT IMMUNE ACTIVATION ASSOCIATED WITH AN ELEVATED CD8 T-CELL COUNT OR A LOW CD4/CD8 RATIO IN PLWH. METHODS: PLASMA EVS SUBTYPE PURIFIED FROM PLWH AND UNINFECTED CONTROLS WERE SIZED USING DYNAMIC LIGHT SCATTERING AND QUANTIFIED USING FLOW CYTOMETRY AND ACETYLCHOLINE ESTERASE (ACHE) ACTIVITY. EXPRESSION OF MATURE MIRNAS MIR-92, MIR-155, MIR-223 WAS MEASURED BY QUANTITATIVE REVERSE-TRANSCRIPTASE POLYMERASE CHAIN REACTION IN EVS AND LEUCOCYTES. RESULTS: HIV INFECTION INDUCES INCREASED PRODUCTION OF SMALL EVS IN PLASMA. EV SUBTYPES WERE DIFFERENTIALLY ENRICHED IN MIR-92, MIR-155, AND MIR-223. POSITIVE CORRELATIONS BETWEEN CD8 T-CELL COUNT AND LARGE EVS ABUNDANCE AND SMALL EVS ACHE ACTIVITY WERE OBSERVED. CD4/CD8 RATIO WAS NEGATIVELY CORRELATED WITH SMALL EV ACHE ACTIVITY, AND MIRNA-155 LEVEL PER SMALL EV WAS NEGATIVELY CORRELATED WITH CD8 T-CELL COUNT. CONCLUSIONS: THESE FINDINGS SUGGEST THAT QUANTIFYING LARGE OR SMALL EVS AND PROFILING MIRNA CONTENT PER EV MIGHT PROVIDE NEW FUNCTIONAL BIOMARKERS OF IMMUNE ACTIVATION AND INFLAMMATION. 2021