Transcriptional signatures of heroin intake and relapse throughout the brain reward circuitry in male mice
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E. Nestler | Y. Hurd | L. Huckins | D. Walker | A. Ramakrishnan | Ashley M. Cunningham | A. Godino | Caleb J. Browne | E. Parise | A. Torres-Berrío | Li Shen | P. Hamilton | Angélica Minier-Toribio | M. Estill | Rita Futamura | Freddyson J. Martínez-Rivera | Emily M. Hicks | E. Hicks | Arthur Godino | Angélica Torres-Berrío | R. Futamura | E. J. Nestler | Aarthi Ramakrishnan | Yasmin L Hurd | C. Browne | Peter J. Hamilton | Laura M Huckins | Laura M. Huckins | E. Nestler | Molly S. Estill | Peter J Hamilton
[1] Joseph R. Scarpa,et al. Convergent abnormalities in striatal gene networks in human cocaine use disorder and mouse cocaine administration models , 2023, Science advances.
[2] M. Lobo,et al. Adaptations in Nucleus Accumbens Neuron Subtypes Mediate Negative Affective Behaviors in Fentanyl Abstinence , 2022, Biological Psychiatry.
[3] R. Logan,et al. A Glitch in the Matrix: The Role of Extracellular Matrix Remodeling in Opioid Use Disorder , 2022, Frontiers in Integrative Neuroscience.
[4] M. Wimmer,et al. Transcriptomics in the nucleus accumbens shell reveal sex- and reinforcer-specific signatures associated with morphine and sucrose craving , 2022, Neuropsychopharmacology.
[5] Amy R. Johnson,et al. Cocaine self-administration induces sex-dependent protein expression in the nucleus accumbens , 2021, Communications Biology.
[6] P. Baldi,et al. Cocaine induces paradigm-specific changes to the transcriptome within the ventral tegmental area , 2021, Neuropsychopharmacology.
[7] Andreas R. Pfenning,et al. Transcriptional Alterations in Dorsolateral Prefrontal Cortex and Nucleus Accumbens Implicate Neuroinflammation and Synaptic Remodeling in Opioid Use Disorder , 2021, Biological Psychiatry.
[8] E. Nestler,et al. Key transcription factors mediating cocaine-induced plasticity in the nucleus accumbens , 2021, Molecular Psychiatry.
[9] Kathleen M. Jagodnik,et al. Gene Set Knowledge Discovery with Enrichr , 2021, Current protocols.
[10] Bin Zhang,et al. Sex-Specific Transcriptional Changes in Response to Adolescent Social Stress in the Brain’s Reward Circuitry , 2021, Biological Psychiatry.
[11] P. Hamilton,et al. Opioid Withdrawal Produces Sex-Specific Effects on Fentanyl-Versus-Food Choice and Mesolimbic Transcription , 2021, bioRxiv.
[12] N. Volkow,et al. Neurocircuitry of Addiction , 2010, Neuropsychopharmacology.
[13] P. Kalivas,et al. Heroin Seeking and Extinction From Seeking Activate Matrix Metalloproteinases at Synapses on Distinct Subpopulations of Accumbens Cells , 2020, Biological Psychiatry.
[14] Anushya Muruganujan,et al. The Gene Ontology resource: enriching a GOld mine , 2020, Nucleic Acids Res..
[15] H. Hedegaard,et al. Drug Overdose Deaths in the United States, 1999-2019. , 2020, NCHS data brief.
[16] D. Epstein,et al. Improving translation of animal models of addiction and relapse by reverse translation , 2020, Nature reviews. Neuroscience.
[17] Cameron D. Palmer,et al. Genome-wide association study identifies 48 common genetic variants associated with handedness , 2020, Nature Human Behaviour.
[18] P. Kalivas,et al. The Opioid-Addicted Tetrapartite Synapse , 2020, Biological Psychiatry.
[19] E. Nestler,et al. Epigenetic Mechanisms of Opioid Addiction , 2020, Biological Psychiatry.
[20] Sarah M. Hartz,et al. Leveraging genome-wide data to investigate differences between opioid use vs. opioid dependence in 41,176 individuals from the Psychiatric Genomics Consortium , 2019, bioRxiv.
[21] I. Deary,et al. Genome-Wide Association Study Meta-Analysis of the Alcohol Use Disorders Identification Test (AUDIT) in Two Population-Based Cohorts. , 2019, American Journal of Psychiatry.
[22] Hunna J. Watson,et al. Genome wide meta-analysis identifies genomic relationships, novel loci, and pleiotropic mechanisms across eight psychiatric disorders , 2019, bioRxiv.
[23] Jonathan P. Beauchamp,et al. Genome-wide association analyses of risk tolerance and risky behaviors in over 1 million individuals identify hundreds of loci and shared genetic influences , 2019, Nature Genetics.
[24] E. Nestler,et al. A novel role for E2F3b in regulating cocaine action in the prefrontal cortex , 2018, Neuropsychopharmacology.
[25] Zachary S. Lorsch,et al. Cocaine Self-administration Alters Transcriptome-wide Responses in the Brain’s Reward Circuitry , 2018, Biological Psychiatry.
[26] Dajiang J. Liu,et al. Association studies of up to 1.2 million individuals yield new insights into the genetic etiology of tobacco and alcohol use , 2018, Nature Genetics.
[27] R. Marioni,et al. Genome-wide meta-analysis of depression identifies 102 independent variants and highlights the importance of the prefrontal brain regions , 2018, Nature Neuroscience.
[28] Alicia R. Martin,et al. Discovery of the first genome-wide significant risk loci for attention deficit/hyperactivity disorder , 2018, Nature Genetics.
[29] Panos Roussos,et al. Brain Cell Type Specific Gene Expression and Co-expression Network Architectures , 2018, Scientific Reports.
[30] Alexander E Dityatev,et al. Shaping Synapses by the Neural Extracellular Matrix , 2018, Front. Neuroanat..
[31] E. Nestler,et al. Transcription Factor E2F3a in Nucleus Accumbens Affects Cocaine Action via Transcription and Alternative Splicing , 2017, Biological Psychiatry.
[32] Mary Goldman,et al. Exploring the phenotypic consequences of tissue specific gene expression variation inferred from GWAS summary statistics , 2016, Nature Communications.
[33] Jacqueline K. White,et al. Identification of 153 new loci associated with heel bone mineral density and functional involvement of GPC6 in osteoporosis , 2017, Nature Genetics.
[34] Raymond Walters,et al. Significant Locus and Metabolic Genetic Correlations Revealed in Genome-Wide Association Study of Anorexia Nervosa. , 2017, The American journal of psychiatry.
[35] Jonathan P. Beauchamp,et al. Genetic variants associated with subjective well-being, depressive symptoms and neuroticism identified through genome-wide analyses , 2016, Nature Genetics.
[36] Peter W. Kalivas,et al. The tetrapartite synapse: Extracellular matrix remodeling contributes to corticoaccumbens plasticity underlying drug addiction , 2015, Brain Research.
[37] Yakir A Reshef,et al. Partitioning heritability by functional annotation using genome-wide association summary statistics , 2015, Nature Genetics.
[38] Kaanan P. Shah,et al. A gene-based association method for mapping traits using reference transcriptome data , 2015, Nature Genetics.
[39] P. Elliott,et al. UK Biobank: An Open Access Resource for Identifying the Causes of a Wide Range of Complex Diseases of Middle and Old Age , 2015, PLoS medicine.
[40] W. Huber,et al. Moderated estimation of fold change and dispersion for RNA-seq data with DESeq2 , 2014, Genome Biology.
[41] C. Spencer,et al. Biological Insights From 108 Schizophrenia-Associated Genetic Loci , 2014, Nature.
[42] J. Bossert,et al. Role of ventral subiculum in context‐induced reinstatement of heroin seeking in rats , 2014, Addiction biology.
[43] E. Nestler,et al. Chronic cocaine-regulated epigenomic changes in mouse nucleus accumbens , 2014, Genome Biology.
[44] Charity W. Law,et al. voom: precision weights unlock linear model analysis tools for RNA-seq read counts , 2014, Genome Biology.
[45] Ellen T. Gelfand,et al. The Genotype-Tissue Expression (GTEx) project , 2013, Nature Genetics.
[46] Kenny Q. Ye,et al. An integrated map of genetic variation from 1,092 human genomes , 2012, Nature.
[47] G. Bart. Maintenance Medication for Opiate Addiction: The Foundation of Recovery , 2012, Journal of addictive diseases.
[48] Y. Shaham,et al. Neurobiology of the incubation of drug craving , 2011, Trends in Neurosciences.
[49] Peter Sonderegger,et al. The dual role of the extracellular matrix in synaptic plasticity and homeostasis , 2010, Nature Reviews Neuroscience.
[50] Sharon R Grossman,et al. Integrating common and rare genetic variation in diverse human populations , 2010, Nature.
[51] R. Taschereau,et al. Rank–rank hypergeometric overlap: identification of statistically significant overlap between gene-expression signatures , 2010, Nucleic acids research.
[52] B P Smyth,et al. Lapse and relapse following inpatient treatment of opiate dependence. , 2010, Irish medical journal.
[53] S. Hyman,et al. Neural mechanisms of addiction: the role of reward-related learning and memory. , 2006, Annual review of neuroscience.
[54] David E. Williams,et al. Mammalian flavin-containing monooxygenases: structure/function, genetic polymorphisms and role in drug metabolism. , 2005, Pharmacology & therapeutics.
[55] William Davies,et al. Xlr3b is a new imprinted candidate for X-linked parent-of-origin effects on cognitive function in mice , 2005, Nature Genetics.
[56] C. O'brien. Research advances in the understanding and treatment of addiction. , 2003, The American journal on addictions.
[57] R. A. Fuchs,et al. Drug Addiction, Relapse, and the Amygdala , 2003, Annals of the New York Academy of Sciences.
[58] A. Smit,et al. Active heroin administration induces specific genomic responses in the nucleus accumbens shell , 2002, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[59] Bruce T. Hope,et al. Neuroadaptation: Incubation of cocaine craving after withdrawal , 2001, Nature.
[60] Y. Shaham,et al. Time-dependent changes in extinction behavior and stress-induced reinstatement of drug seeking following withdrawal from heroin in rats , 2001, Psychopharmacology.
[61] E. Schönherr,et al. Extracellular Matrix and Cytokines: A Functional Unit , 2000, Developmental immunology.