Opioid dependence is accompanied by neuroplastic changes in reward circuitry leading to a negative affective state contributing to addictive behaviors and risk of relapse. The current study presents a neuroimmune mechanism through which chronic opioids disrupt the ventral tegmental area (VTA) dopaminergic circuitry that contributes to impaired reward behavior. Opioid dependence was induced in rodents by treatment with escalating doses of morphine. Microglial activation was observed in the VTA following spontaneous withdrawal from chronic morphine treatment. Opioid-induced microglial activation resulted in an increase in brain-derived neurotrophic factor (BDNF) expression and a reduction in the expression and function of the K(+)Cl(-) co-tra...
Opioid drugs, such as morphine, bind to opioid receptors in the brain and provide an analgesic, rewa...
Opioid drugs, such as morphine, bind to opioid receptors in the brain and provide an analgesic, rewa...
Opioid withdrawal induces long-lasting effects on neuronal function and synaptic transmission in opi...
Opioid dependence is accompanied by neuroplastic changes in reward circuitry leading to a negative a...
Opioid dependence is accompanied by neuroplastic changes in reward circuitry leading to a negative a...
μ-opioid receptors (MORs) in the ventral tegmental area (VTA) are pivotally involved in addictive be...
International audienceThe ventral pallidum (VP) is a target of dense nucleus accumbens projections. ...
International audienceThe opioid system consists of three receptors, mu, delta, and kappa, which are...
International audienceThe opioid system consists of three receptors, mu, delta, and kappa, which are...
Chronic morphine administration induces functional and morphological alterations in the mesolimbic d...
International audienceThe ventral pallidum (VP) is a target of dense nucleus accumbens projections. ...
International audienceThe opioid system consists of three receptors, mu, delta, and kappa, which are...
International audienceThe ventral pallidum (VP) is a target of dense nucleus accumbens projections. ...
Chronic pain attenuates midbrain dopamine (DA) transmission, as evidenced by a decrease in opioid-ev...
Chronic pain attenuates midbrain dopamine (DA) transmission, as evidenced by a decrease in opioid-ev...
Opioid drugs, such as morphine, bind to opioid receptors in the brain and provide an analgesic, rewa...
Opioid drugs, such as morphine, bind to opioid receptors in the brain and provide an analgesic, rewa...
Opioid withdrawal induces long-lasting effects on neuronal function and synaptic transmission in opi...
Opioid dependence is accompanied by neuroplastic changes in reward circuitry leading to a negative a...
Opioid dependence is accompanied by neuroplastic changes in reward circuitry leading to a negative a...
μ-opioid receptors (MORs) in the ventral tegmental area (VTA) are pivotally involved in addictive be...
International audienceThe ventral pallidum (VP) is a target of dense nucleus accumbens projections. ...
International audienceThe opioid system consists of three receptors, mu, delta, and kappa, which are...
International audienceThe opioid system consists of three receptors, mu, delta, and kappa, which are...
Chronic morphine administration induces functional and morphological alterations in the mesolimbic d...
International audienceThe ventral pallidum (VP) is a target of dense nucleus accumbens projections. ...
International audienceThe opioid system consists of three receptors, mu, delta, and kappa, which are...
International audienceThe ventral pallidum (VP) is a target of dense nucleus accumbens projections. ...
Chronic pain attenuates midbrain dopamine (DA) transmission, as evidenced by a decrease in opioid-ev...
Chronic pain attenuates midbrain dopamine (DA) transmission, as evidenced by a decrease in opioid-ev...
Opioid drugs, such as morphine, bind to opioid receptors in the brain and provide an analgesic, rewa...
Opioid drugs, such as morphine, bind to opioid receptors in the brain and provide an analgesic, rewa...
Opioid withdrawal induces long-lasting effects on neuronal function and synaptic transmission in opi...