Impacts of morphine and HIV-Tat exposures and dimethylfumarate treatment on brain BDNF and mitochondrial and behavioral dysfunction.
Impacts of morphine and HIV-Tat exposures and dimethylfumarate treatment on brain BDNF and mitochondrial and behavioral dysfunction.
批准号:
10619675
负责人:
Marc J Kaufman
金额:
$69.72万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2023
资助国家:
美国
项目状态:
未结题
起止时间:
2023-04-01 至 2028-01-31
关键词:
AddressAffectAnimal BehaviorAnimal ModelAnimalsAntioxidantsAnxietyApplied ResearchAttenuatedAutopsyBasic ScienceBehaviorBehavioralBiogenesisBrainBrain-Derived Neurotrophic FactorCellsCognitionCognitiveCorpus striatum structureDataDevelopmentDoxycyclineEpidemicExposure toExtinctionFumaratesFunctional disorderFutureGenetic Complementation TestGenetic TranscriptionHIVHIV InfectionsHIV antiretroviralHIV therapyHandHealthHumanImpaired healthImpairmentIn VitroIndividualInterventionKnowledgeLearningMacacaMagnetic Resonance SpectroscopyMemoryMental HealthMitochondriaMitochondrial ProteinsMolecular AbnormalityMoodsMorphineMorphine DependenceMusNF-E2-related factor 2NGFR ProteinNeuronsOpioidOralOutcomePathway interactionsPatientsPersonsPharmaceutical PreparationsPhenotypePhosphocreatinePhosphorusPlayProteinsReportingResearch Project GrantsRiskSIVSamplingSelf AdministrationSeveritiesSignal TransductionStructureSubstance abuse problemTestingTrans-ActivatorsTranscription CoactivatorTransgenesTransgenic OrganismsUnited States National Institutes of HealthViralViral ProteinsVirus ReplicationVulnerable PopulationsWestern BlottingWithdrawalWithdrawal Symptomantiretroviral therapybehavior testbehavioral impairmentbrain dysfunctionbrain metabolismbrain-derived neurotrophic factor precursorcomorbidityflexibilityfrontal lobeimprovedin vivoinnovationinorganic phosphateinsightnanoparticlenanoparticle deliveryneurocognitive disordernovelnovel therapeuticsnrf1 proteinnuclear respiratory factorobject recognitionopioid useopioid use disorderoverdose deathphysical conditioningpreferenceprogramsprotein expressionpsychostimulantsynaptogenesistat Proteintheories
中文摘要
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英文摘要
Summary/Abstract
More than 75,000 drug overdose deaths this past year were associated with opioids. To address this epidemic,
NIH has prioritized the development of more effective opioid use disorder (OUD) treatments, as current
interventions are helpful but inadequate. OUD is common among people living with Human Immunodeficiency
Virus (HIV) and comorbid OUD/HIV increases risk for mental and physical health impairments of greater
severities. Thus, comorbid OUD/HIV patients constitute a vulnerable group and basic research must study
factors relevant to this group. We and others have data indicating that when combined, opioids and HIV
proteins induce convergent deleterious effects that likely engender problematic opioid use behaviors and
impair general health. This basic science R01 program aims to fill knowledge gaps in the individual and
combined effects of the prototypical opioid, morphine, and HIV transactivator of transcription (Tat) protein, on
mitochondrial function, brain derived neurotrophic factor (BDNF) expression, and on animal behavior, including
those analogous to human behaviors that moderate health outcomes in patients with OUD and comorbid
OUD/HIV. Improving our understanding of Tat protein’s effects is critical to better understanding effects of HIV
because despite nearly complete viral suppression during antiretroviral therapy for HIV (ART), Tat is detectible
with repeat testing in 40% of ART-treated patients at least once over the course of a year. This is important
because Tat expression in animals induces phenotypes analogous to those observed in people living with HIV,
including impairments in anxiety, inhibitory control, and brain structural and functional deficits. Tat’s relevance
to comorbid OUD/HIV is illustrated in our pilot behavioral data indicating that Tat amplifies morphine taking,
seeking, and post-extinction reinstatement. We also test effects of dimethylfumarate (DMF), which we have
shown moderates morphine withdrawal symptoms. Studies in SIV-infected macaques report that DMF protects
mitochondria and other studies show that DMF stimulates BDNF signaling. We focus on mitochondria because
they supply most of the energy needed for neuronal and higher order brain function and they are impaired by
morphine, Tat, and in human brain in vivo in people with OUD or HIV. Our working hypothesis is that morphine,
Tat, and their combination will increase morphine self-administration, impair learning, memory, and cognitive
flexibility, impair in vivo brain mitochondrial function assessed with phosphorus (31P) magnetic resonance
spectroscopy, and will lower levels of mitochondrial biogenesis factors including Nuclear Respiratory Factor 1
and 2 expression, as determined postmortem. DMF, by protecting mitochondria and by increasing BDNF
levels, will limit morphine’s and Tat’s deleterious effects. This basic science program aims to fill important
knowledge gaps on the individual and combined effects of opioids, Tat, and DMF, and could yield data that
support applied studies of novel treatments for OUD and HIV studied by us and by others, including DMF.
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