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NPY-induced feeding: pharmacological characterization using selective opioid antagonists and antisense probes in rats
Y Israel1, Y Kandov, E Khaimova
1Department of Psychology, Queens College, City University of New York, 65-30 Kissena Blvd., Flushing, NY 11367, USA.
Abstract:
The ability of neuropeptide Y to potently stimulate food intake is dependent in part upon the functioning of mu and kappa opioid receptors. The combined use of selective opioid antagonists directed against mu, delta or kappa receptors and antisense probes directed against specific exons of the MOR-1, DOR-1, KOR-1 and KOR-3/ORL-1 opioid receptor genes has been successful in characterizing the precise receptor subpopulations mediating feeding elicited by opioid peptides and agonists as well as homeostatic challenges. The present study examined the dose-dependent (5-80 nmol) cerebroventricular actions of general and selective mu, delta, and kappa1 opioid receptor antagonists together with antisense probes directed against each of the four exons of the MOR-1 opioid receptor gene and each of the three exons of the DOR-1, KOR-1, and KOR-3/ORL-1 opioid receptor genes upon feeding elicited by cerebroventricular NPY (0.47 nmol, 2 ug). NPY-induced feeding was dose-dependently decreased and sometimes eliminated following pretreatment with general, mu, delta, and kappa1 opioid receptor antagonists. Moreover, NPY-induced feeding was significantly and markedly reduced by antisense probes directed against exons 1, 2, and 3 of the MOR-1 gene, exons 1 and 2 of the DOR-1 gene, exons 1, 2, and 3 of the KOR-1 gene, and exon 3 of the KOR-3/ORL-1 gene. Thus, whereas the opioid peptides, beta-endorphin and dynorphin A(1-17) elicit feeding responses that are respectively more dependent upon mu and kappa opioid receptors and their genes, the opioid mediation of NPY-induced feeding appears to involve all three major opioid receptor subtypes in a manner similar to that observed for feeding responses following glucoprivation or lipoprivation.
Insights
Neuropeptide Y (NPY) stimulates feeding through mu, delta, and kappa opioid receptors. This study used antagonists and antisense probes to show NPY-induced feeding involves all three opioid receptor subtypes.
Area of Science:
- Neuroscience
- Endocrinology
- Pharmacology
Background:
- Neuropeptide Y (NPY) is a potent stimulator of food intake.
- Opioid receptors, including mu, delta, and kappa subtypes, play a role in regulating feeding behavior.
- Previous research utilized opioid antagonists and antisense probes to identify receptor subpopulations involved in feeding.
Purpose of the Study:
- To investigate the dose-dependent effects of opioid receptor antagonists and antisense probes on NPY-induced feeding.
- To characterize the specific opioid receptor subtypes and genes mediating feeding responses to NPY.
Main Methods:
- Administered cerebroventricular NPY to induce feeding in a dose-dependent manner.
- Utilized general and selective mu, delta, and kappa1 opioid receptor antagonists.
- Employed antisense probes targeting specific exons of MOR-1, DOR-1, KOR-1, and KOR-3/ORL-1 opioid receptor genes.
Main Results:
- NPY-induced feeding was dose-dependently reduced or eliminated by opioid receptor antagonists.
- Antisense probes targeting MOR-1, DOR-1, KOR-1, and KOR-3/ORL-1 genes significantly reduced NPY-elicited feeding.
- The findings suggest a complex opioid involvement in NPY-driven feeding.
Conclusions:
- Opioid mediation of NPY-induced feeding involves mu, delta, and kappa opioid receptor subtypes.
- This opioid involvement is similar to feeding responses triggered by glucoprivation or lipoprivation.
- The study elucidates the intricate roles of different opioid receptor genes in NPY-stimulated feeding behavior.
Related Concept Videos
Opioid Receptors: Overview
Regulation of Food Intake

