An unbiased conditioned place preference (CPP) paradigm was used to evaluate the reward effects of endogenous mu-opioid receptor ligands endomorphin-1 (EM-1) and endomorphin-2 (EM-2) from the mesolimbic posterior nucleus accumbens (Acb) shell and the ventral tegmental area (VTA) in CD rats. EM-1 (1.6-8.1 nmol) microinjected into posterior Acb shell produced CPP, whereas EM-2 (8.7-17.5 nmol) given into the same Acb shell produced conditioned place aversion (CPA). EM-1 (1.6-16.3 nmol) microinjected into the VTA produced CPP, whereas EM-2 (8.7 and 17.5 nmol) given into the same VTA site did not produce any effect, but at a high dose (35 nmol) produced CPP. EM-1 (3.3 nmol) or EM-2 (17.5 nmol) microinjected into the nigrostriatal substantia nigra was not significantly different from vehicle-injected groups. D-Phe-Cys-Tyr-D-Trp-Orn-Thr-Pen-Thr-NH(2) (CTOP) at 94.13 pmol or 3-methoxynaltrexone at 0.64 pmol microinjected into the posterior Acb shell blocked EM-1-induced CPP and EM-2-induced CPA. At a higher dose, CTOP (941.3 pmol) and 3-methoxynaltrexone (6.4 pmol) produced CPA and CPP, respectively. Coadministration with antiserum against dynorphin A(1-17) (Dyn) (10 microg) microinjected into the posterior Acb shell blocked EM-2-induced CPA. However, it did not affect EM-1-induced CPP. It is concluded that EM-1 and EM-2 produce site-dependent CPP and CPA, respectively, by stimulation of different subtypes of mu-opioid-receptors; stimulation of one subtype of mu-opioid-receptor at the posterior Acb shell and VTA by EM-1 induces CPP, whereas stimulation of another subtype of mu-opioid receptor at the posterior Acb shell, but not the VTA, by EM-2 induces the release of Dyn to produce CPA.
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J Trauma Acute Care Surg
January 2025
From the Department of Surgery (K.D.N., D. Tatum, A.P., J.C.D., A.S.A., E.I., B.M., E.C., S.T.), Tulane University School of Medicine, New Orleans, Louisiana; Department of Surgery (K.D.N.), Harbor-UCLA Medical Center, Torrance, California; Department of Surgery (M.B.P., A.W.M., A.B.P.), Vanderbilt University Medical Center, Nashville, Tennessee; Department of Surgery (J.N., C.A.), University of California-Irvine, Orange, California; Department of Surgery (P.O.U., A. Stiles, C.S.), Wake Med, Raleigh, North Carolina; Department of Surgery (J.D. Stodghill, T.M.), Virginia Tech Carilion School of Medicine, Roanoke, Virginia; Department of Surgery (R.M.B., S.A.Z., B. Shammassian, A.A.S.), Louisiana State University Health, New Orleans, Louisiana;Department of Surgery (T.E., I.A., P.M., J. Metheny), Cooper Medical School of Rowan University, Camden, New Jersey; Department of Surgery (M.S.F., M.D.P.), Lehigh Valley Health Network, Allentown, Pennsylvania; Department of Surgery (O.T.M., P.S.), Valleywise Health Medical Center, Phoenix, Arizona; Department of Surgery (D.T.-W.W., J.S.), Arrowhead Regional Medical Center, Colton, California; Department of Surgery (J.D. Sciarretta, P.K.), Emory University School of Medicine, Atlanta, Georgia; Department of Surgery (R.H., D.G.), Loma Linda University Medical Center, Loma Linda, California; Department of Surgery (J. Murry, K. Meadows), UT Health Tyler, Tyler, Texas; Department of Surgery (L.E.J., J.M.W.), Ascension St. Vincent Hospital, Indianapolis, Indiana; Department of Surgery (A.C.B.), University of Kentucky Healthcare, Lexington, Kentucky;17 DeBusk College of Osteopathic Medicine (B. Smith), Lincoln Memorial University, Harrogate, Tennessee; Department of Surgery (S.L.M., N.P.), Conemaugh Memorial Medical Center, Johnstown, Pennsylvania; Department of Surgery (D. Tabello, E.T.), Inova Health System, Falls Church, Virginia; Department of Surgery (S.M.C., F.A.), King Saud Medical City, Riyadh, Saudi Arabia;Department of Surgery (B.S.M., M.A.W.), University of Minnesota, Minneapolis, Minnesota;22 Department of Surgery (T.H.J., G.D.), Our Lady of the Lake Regional Medical Center, Baton Rouge, Louisiana;23 Department of 'Surgery (J.A.M., D.R.), Thomas Jefferson University Hospital, Philadelphia, Pennsylvania;24 Department of Surgery (J.M.H., K.L.), Ascension Via Christi Hospitals Wichita, Wichita, Kansas;25 Department of Surgery (K. Matsushima, S.P.), Los Angeles General Medical Center, Los Angeles, California; Department of Surgery (A. Santos, K.S.), Texas Tech University Health Science Center; Department of Surgery (C.B.), Covenant Medical Center, Lubbock, Texas; Department of Surgery (R.S., S.V.), Bronson Methodist Hospital, Kalamazoo, Michigan; Department of Surgery (R.J.J., R.C.H.), College of Medicine Chattanooga, University of Tennessee, Chattanooga, Tennessee; Department of Surgery (S.L.), Warren Alpert Medical School at Brown University, Providence, Rhode Island; Department of Surgery (N.B., W.A.), Tufts Medical Center, Boston, Massachusetts; Department of Surgery (M.J.L., H.M.), Research Medical Center, Kansas City, Missouri; Department of Surgery (R.P.D., C.A.F.), University of Texas Southwestern Medical Center, Dallas, Texas; Department of Surgery (C.A.F.), Brody School of Medicine at East Carolina, Greenville, North Carolina; Department of Surgery (W.T.H.T., Y.T.), University of Nebraska Medical Center, Omaha, Nevada; Department of Surgery (V.M., F.M.), U General University Hospital of Patras, Pio, Greece; and Department of Surgery (J.D.B., D.R.M.), Broward Health Medical Center, Fort Lauderdale, Florida.
Front Behav Neurosci
March 2024
Interdisciplinary Program in Neuroscience, Department of Psychology, Utah State University, Logan, UT, United States.
The neuronal cell adhesion molecule (NrCAM) is widely expressed and has important physiological functions in the nervous system across the lifespan, from axonal growth and guidance to spine and synaptic pruning, to organization of proteins at the nodes of Ranvier. NrCAM lies at the core of a functional protein network where multiple targets (including NrCAM itself) have been associated with schizophrenia. Here we investigated the effects of chronic unpredictable stress on latent inhibition, a measure of selective attention and learning which shows alterations in schizophrenia, in NrCAM knockout (KO) mice and their wild-type littermate controls (WT).
View Article and Find Full Text PDFBrain Struct Funct
March 2024
Department of Psychology and Neuroscience, Boston College, Chestnut Hill, MA, 02467, USA.
The influence of novelty on feeding behavior is significant and can override both homeostatic and hedonic drives due to the uncertainty of potential danger. Previous work found that novel food hypophagia is enhanced in a novel environment and that males habituate faster than females. The current study's aim was to identify the neural substrates of separate effects of food and context novelty.
View Article and Find Full Text PDFThe influence of novelty on feeding behavior is significant and can override both homeostatic and hedonic drives due to the uncertainty of potential danger. Previous work found that novel food hypophagia is enhanced in a novel environment and that males habituate faster than females. The current study's aim was to identify the neural substrates of separate effects of food and context novelty.
View Article and Find Full Text PDFInt J Mol Sci
November 2022
Department of Biomedical Sciences, Section of Cytomorphology, University of Cagliari, Cittadella Universitaria di Monserrato, 09042 Monserrato, Italy.
The present work was undertaken to investigate the effects of acute forced swimming (FS) on the levels of brain-derived neurotrophic factor (BDNF) and tyrosine kinase receptor B (trkB) proteins in: the ventral tegmental area (VTA); the nucleus accumbens (Acb) shell and core compartments; and the anterior cingulate (ACg), prelimbic (PL) and infralimbic (IL) territories of the prefrontal cortex of genetic models of vulnerability (RLA, Roman low-avoidance rats) and resistance (RHA, Roman high-avoidance rats) to stress-induced depression. We report for the first time that FS induced very rapid and distinct changes in the levels of BDNF and trkB proteins in different areas of the mesocorticolimbic system of RHA and RLA rats. Thus, (1) in the VTA and Acb core, FS elicited a significant increase of both BDNF- and trkB-LI in RHA but not RLA rats, whereas in the Acb shell no significant changes in BDNF- and trkB-LI across the line and treatment were observed; (2) in RLA rats, the basal levels of BDNF-LI in the IL/PL cortex and of trkB-LI in the ACg cortex were markedly lower than those of RHA rats; moreover, BDNF- and trkB-LI in the IL/PL and ACg cortex were increased by FS in RLA rats but decreased in their RHA counterparts.
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