0000000000988902

AUTHOR

Brendan M. Walker

0000-0002-7217-3950

showing 2 related works from this author

Inflammatory Pain Promotes Increased Opioid Self-Administration: Role of Dysregulated Ventral Tegmental Area μ Opioid Receptors

2015

Pain management in opioid abusers engenders ethical and practical difficulties for clinicians, often resulting in pain mismanagement. Although chronic opioid administration may alter pain states, the presence of pain itself may alter the propensity to self-administer opioids, and previous history of drug abuse comorbid with chronic pain promotes higher rates of opioid misuse. Here, we tested the hypothesis that inflammatory pain leads to increased heroin self-administration resulting from altered mu opioid receptor (MOR) regulation of mesolimbic dopamine (DA) transmission. To this end, the complete Freund's adjuvant (CFA) model of inflammation was used to assess the neurochemical and functi…

MalePain ThresholdSucroseReceptors Opioid muAction PotentialsPainMesolimbic pathwayPharmacologyHeroinRats Sprague-DawleyQuinoxalinesThreshold of painmental disordersmedicineAnimalsInflammationNeuronsGeneral NeuroscienceVentral Tegmental AreaChronic painGlycine AgentsArticlesStrychnineEnkephalin Ala(2)-MePhe(4)-Gly(5)-medicine.diseaseRatsVentral tegmental areaAnalgesics OpioidHeroinDisease Models Animalmedicine.anatomical_structureOpioidInhibitory Postsynaptic PotentialsHyperalgesiaHyperalgesiaConditioning Operantμ-opioid receptormedicine.symptomPsychologyExcitatory Amino Acid Antagonistsmedicine.drug
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Pain-Induced Negative Affect Is Mediated via Recruitment of The Nucleus Accumbens Kappa Opioid System.

2019

Negative affective states affect quality of life for patients suffering from pain. These maladaptive emotional states can lead to involuntary opioid overdose and many neuropsychiatric comorbidities. Uncovering the mechanisms responsible for pain-induced negative affect is critical in addressing these comorbid outcomes. The nucleus accumbens (NAc) shell, which integrates the aversive and rewarding valence of stimuli, exhibits plastic adaptations in the presence of pain. In discrete regions of the NAc, activation of the kappa opioid receptor (KOR) decreases the reinforcing properties of rewards and induces aversive behaviors. Using complementary techniques, we report that in vivo recruitment …

0301 basic medicinePainDynorphinNucleus accumbensAffect (psychology)κ-opioid receptorDynorphinsNucleus AccumbensArticle03 medical and health sciencesMice0302 clinical medicineNeuroplasticitymedicineAnimalsValence (psychology)InflammationNeuronsNeuronal Plasticitybusiness.industryMood DisordersGeneral NeuroscienceReceptors Opioid kappaOpioid overdoseNeural Inhibitionmedicine.diseaseRatsAffect030104 developmental biologyOpioidbusinessNeuroscience030217 neurology & neurosurgerymedicine.drugNeuron
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