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Biomedical subjects

J E Jalowiec

Publications and source records attributed to J E Jalowiec.

At least 19 recordsLinked to original sources

Suppression of juvenile social behavior requires antagonism of central opioid systems.

Pairs of male and female rats were injected with either tertiary naltrexone (NTX) which readily crosses the blood-brain barrier, or quaternary naltrexone (QNTX) which does not, to determine the importance of central opioid systems in the elaboration of juvenile social behavior. In the first experiment, only intraperitoneal injections of NTX (1.0 mg/kg) suppressed the frequency of wrestling pins. Peripheral injections of QNTX (10.0 mg/kg) were without effect. In a second experiment, QNTX (2.0, 4.0, or 8.0 micrograms/4.0 microliters) was injected directly into the lateral ventricles. Intracerebroventricular injection of the moderate dose reliably reduced frequency of pinning while the higher dose was severely incapacitating and the low dose was without effect. The results of these two experiments confirm an important role for brain opioid systems in the control of juvenile social interaction.

Animals↗

Opioid modulation of ingestive behavior.

Supportive evidence for an important role of endogenous opioid systems in modulation of ingestive behaviors is presented. Low doses of morphine (1.0-5.0 mg/kg) increase and low doses of naloxone (0.5-2.5 mg/kg) decrease food and water intake during both acute and chronic testing in mildly-deprived rats. Chronic infusions of naloxone with implanted osmotic mini-pumps elicited sustained dose-related suppression of food, water, and saccharin solution intakes but did not reduce ingestion of 10.0% glucose solution or food following 12 hr deprivation. Finally, naloxone treatment did not antagonize nocturnal ingestion of food any more than it reduced day time feeding when the latter was enhanced by prior food deprivation. These results indicate that an opiate agonist and an opiate antagonist modify ingestive behaviors oppositely, affirming that endogenous opioid systems may be involved in control of feeding and drinking. However, their role may be restricted to only indirect participation in homeostatic regulation via neural systems modulating emotional tone or goal-directed behaviors in general.

Animals↗