Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Galanin‐induced decreases in nucleus accumbens/striatum excitatory postsynaptic potentials and morphine conditioned place preference require both galanin receptor 1 and galanin receptor 2

View through CrossRef
AbstractThe neuropeptide galanin has been shown to alter the rewarding properties of morphine. To identify potential cellular mechanisms that might be involved in the ability of galanin to modulate opiate reward, we measured excitatory postsynaptic potentials (EPSPs), using both field and whole‐cell recordings from striatal brain slices extracted from wild‐type mice and mice lacking specific galanin receptor (GalR) subtypes. We found that galanin decreased the amplitude of EPSPs in both the dorsal striatum and nucleus accumbens. We then performed recordings in slices from knockout mice lacking either the GalR1 or GalR2 gene, and found that the ability of galanin to decrease EPSP amplitude was absent from both mouse lines, suggesting that both receptor subtypes are required for this effect. In order to determine whether behavioral responses to opiates were dependent on the same receptor subtypes, we tested GalR1 and GalR2 knockout mice for morphine conditioned place preference (CPP). Morphine CPP was significantly attenuated in both GalR1 and GalR2 knockout mice. These data suggest that mesolimbic excitatory signaling is significantly modulated by galanin in a GalR1‐dependent and GalR2‐dependent manner, and that morphine CPP is dependent on the same receptor subtypes.
Title: Galanin‐induced decreases in nucleus accumbens/striatum excitatory postsynaptic potentials and morphine conditioned place preference require both galanin receptor 1 and galanin receptor 2
Description:
AbstractThe neuropeptide galanin has been shown to alter the rewarding properties of morphine.
To identify potential cellular mechanisms that might be involved in the ability of galanin to modulate opiate reward, we measured excitatory postsynaptic potentials (EPSPs), using both field and whole‐cell recordings from striatal brain slices extracted from wild‐type mice and mice lacking specific galanin receptor (GalR) subtypes.
We found that galanin decreased the amplitude of EPSPs in both the dorsal striatum and nucleus accumbens.
We then performed recordings in slices from knockout mice lacking either the GalR1 or GalR2 gene, and found that the ability of galanin to decrease EPSP amplitude was absent from both mouse lines, suggesting that both receptor subtypes are required for this effect.
In order to determine whether behavioral responses to opiates were dependent on the same receptor subtypes, we tested GalR1 and GalR2 knockout mice for morphine conditioned place preference (CPP).
Morphine CPP was significantly attenuated in both GalR1 and GalR2 knockout mice.
These data suggest that mesolimbic excitatory signaling is significantly modulated by galanin in a GalR1‐dependent and GalR2‐dependent manner, and that morphine CPP is dependent on the same receptor subtypes.

Related Results

L‐Ala‐substituted rat galanin analogs distinguish between hypothalamic and jejunal galanin receptor subtypes
L‐Ala‐substituted rat galanin analogs distinguish between hypothalamic and jejunal galanin receptor subtypes
In order to explore which amino acids or which blocks of amino acids in the 29 amino acid neuropeptide galanin are important for recognition of the endogenous ligand by galanin rec...
Galanin Inhibits Histaminergic Neurons via Galanin Receptor 1
Galanin Inhibits Histaminergic Neurons via Galanin Receptor 1
Galanin-expressing neurons in the ventrolateral preoptic area (VLPO galanin ) are active during sleep and play an important role in regulati...
Xenon modulates synaptic transmission to rat hippocampal CA3 neurons at both pre‐ and postsynaptic sites
Xenon modulates synaptic transmission to rat hippocampal CA3 neurons at both pre‐ and postsynaptic sites
Key pointsXenon (Xe) non‐competitively inhibited whole‐cell excitatory glutamatergic current (IGlu) and whole‐cell currents gated by ionotropic glutamate receptors (IAMPA,IKA,INMDA...
Regulation of anterior pituitary galanin and vasoactive intestinal peptide by oestrogen and prolactin status
Regulation of anterior pituitary galanin and vasoactive intestinal peptide by oestrogen and prolactin status
Abstract The neuropeptides vasoactive intestinal peptide (VIP) and galanin are synthesized in the anterior pituitary, galanin in the lactotroph and VIP probably in another ...
Clinical pharmacology of morphine in infants and children
Clinical pharmacology of morphine in infants and children
Morphine is used to treat pain, for treatment of opioid dependence, and neonatal abstinence syndrome. Morphine is modestly absorbed from the gastrointestinal tract whereas after re...
Multifaceted role of galanin in brain excitability
Multifaceted role of galanin in brain excitability
Galanin is a neuropeptide, which is critically involved in homeostatic processes like controlling arousal, sleep, and regulation of stress. This extensive range of functions aligns...
Guardian of Excitability: Multifaceted Role of Galanin in Whole Brain Excitability
Guardian of Excitability: Multifaceted Role of Galanin in Whole Brain Excitability
Abstract Galanin is a neuropeptide, which is critically involved in homeostatic processes like controlling arousal, sleep, and regulation of stre...
Guardian of Excitability: Multifaceted Role of Galanin in Whole Brain Excitability
Guardian of Excitability: Multifaceted Role of Galanin in Whole Brain Excitability
Abstract Galanin is a neuropeptide, which is critically involved in homeostatic processes like controlling arousal, sleep, and regulation of stress. This extensive ...

Back to Top