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Erschienen in: Learning & Behavior 1/2015

01.03.2015

Second-order conditioning of LiCl-induced gaping with flavor and contextual cues

verfasst von: Martin A. Sticht, Zoe K. Leach, James C. Wilson, Linda A. Parker

Erschienen in: Learning & Behavior | Ausgabe 1/2015

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Abstract

Conditioned gaping occurs through a classically conditioned association between a flavor or a context (CS) and an unconditioned stimulus (US) that produces nausea, such as lithium chloride (LiCl; US). Rats display conditioned gaping to a flavor or context previously associated with nausea; thus, our aim was to investigate whether rats acquire second-order conditioning to a flavor experienced in a nausea-paired context. In Experiment 1, rats were assigned to one of three groups, based upon the contingency of the first order pairing (CS1 context and LiCl) and the contingency of the second-order pairing (CS2 saccharin CS1 context) including: Group Paired/Paired (P/P), Group Paired/Unpaired (P/U) and Group Unpaired/Paired (U/P). In the initial context conditioning, rats were injected with LiCl (Paired) or Saline (Unpaired) prior to a 30 min confinement in a distinctive context (CS1). Drug-free second-order conditioning training among Groups P/P and U/P then consisted of a 5 min intraoral infusion of 0.1 % saccharin (CS2) in the context (CS1), while Group P/U received saccharin in the home cage 24 hr prior to the CS1 exposure. Twenty four hr later, the rats were tested for second-order conditioning during a 2 min taste reactivity (TR) test. Saccharin (CS2) elicited gaping in Group P/P, but not Groups P/U or U/P. Experiment 2 revealed that second-order conditioning was produced in rats given 4 or 8 first-order conditioning trials, but not 2 trials. These results demonstrate that an excitatory contextual CS+ has the potential to confer second-order conditioning to a novel flavor in the absence of any direct pairing with LiCl.

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Literatur
Zurück zum Zitat Berridge, K. C., Grill, H. J., & Norgren, R. (1981). Relation of consummatory responses and preabsorptive insulin release to palatability and learned taste aversions. Journal of Comparative and Physiology Psychology, 95(3), 363–382.CrossRef Berridge, K. C., Grill, H. J., & Norgren, R. (1981). Relation of consummatory responses and preabsorptive insulin release to palatability and learned taste aversions. Journal of Comparative and Physiology Psychology, 95(3), 363–382.CrossRef
Zurück zum Zitat Chan, M. Y. T., Cross-Mellor, S. K., Kavaliers, M., & Ossenkopp, K. P. (2013). Impairment of lithium chloride-induced conditioned gaping responses (anticipatory nausea) following immune system stimulation with lipopolysaccharide (LPS) occurs in both LPS tolerant and LPS non-tolerant rats. Brain, Behavior, and Immunity, 27, 123–132.PubMedCrossRef Chan, M. Y. T., Cross-Mellor, S. K., Kavaliers, M., & Ossenkopp, K. P. (2013). Impairment of lithium chloride-induced conditioned gaping responses (anticipatory nausea) following immune system stimulation with lipopolysaccharide (LPS) occurs in both LPS tolerant and LPS non-tolerant rats. Brain, Behavior, and Immunity, 27, 123–132.PubMedCrossRef
Zurück zum Zitat Garcia, J., Hankins, W. G., & Rusiniak, K. W. (1974). Behavioral regulation of the milieu interne in man and rat. Science, 185(4154), 824–831.PubMedCrossRef Garcia, J., Hankins, W. G., & Rusiniak, K. W. (1974). Behavioral regulation of the milieu interne in man and rat. Science, 185(4154), 824–831.PubMedCrossRef
Zurück zum Zitat Grill, H. J., & Norgren, R. (1978). The taste reactivity test. I. mimetic responses to gustatory stimuli in neurologically normal rats. Brain Research, 143(2), 263–279.PubMedCrossRef Grill, H. J., & Norgren, R. (1978). The taste reactivity test. I. mimetic responses to gustatory stimuli in neurologically normal rats. Brain Research, 143(2), 263–279.PubMedCrossRef
Zurück zum Zitat Limebeer, C. L., Hall, G., & Parker, L. A. (2006). Exposure to a lithium-paired context elicits gaping in rats: A model of anticipatory nausea. Physiology and Behavior, 88(4–5), 398–403.PubMedCrossRef Limebeer, C. L., Hall, G., & Parker, L. A. (2006). Exposure to a lithium-paired context elicits gaping in rats: A model of anticipatory nausea. Physiology and Behavior, 88(4–5), 398–403.PubMedCrossRef
Zurück zum Zitat Limebeer, C. L., Krohn, J. P., Cross-Mellor, S., Ossenkopp, K. P., & Parker, L. A. (2008). Exposure to a context previously associated with toxin (LiCl)- or motion-induced sickness elicits conditioned gaping in rats: evidence in support of a model of anticipatory nausea. Behavior Brain Research, 187(1), 33–40.CrossRef Limebeer, C. L., Krohn, J. P., Cross-Mellor, S., Ossenkopp, K. P., & Parker, L. A. (2008). Exposure to a context previously associated with toxin (LiCl)- or motion-induced sickness elicits conditioned gaping in rats: evidence in support of a model of anticipatory nausea. Behavior Brain Research, 187(1), 33–40.CrossRef
Zurück zum Zitat Limebeer, C. L., Abdullah, R., Rock, E. M., Imhof, E., Wang, K., Lichtman, A. H., et al. (2014). Attenuation of anticipatory nausea in a rat model of contextually-elicited conditioned gaping by enhancement of the endocannabinoid system. Psychopharmacology, 231(3), 603–612.PubMedCrossRef Limebeer, C. L., Abdullah, R., Rock, E. M., Imhof, E., Wang, K., Lichtman, A. H., et al. (2014). Attenuation of anticipatory nausea in a rat model of contextually-elicited conditioned gaping by enhancement of the endocannabinoid system. Psychopharmacology, 231(3), 603–612.PubMedCrossRef
Zurück zum Zitat Morrow, G. R., Roscoe, J. A., Kirshner, J. J., Hynes, H. E., & Rosenbluth, R. J. (1998). Anticipatory nausea and vomiting in the era of 5-HT3 antiemetics. Support Care in Cancer, 6(3), 244–247.CrossRef Morrow, G. R., Roscoe, J. A., Kirshner, J. J., Hynes, H. E., & Rosenbluth, R. J. (1998). Anticipatory nausea and vomiting in the era of 5-HT3 antiemetics. Support Care in Cancer, 6(3), 244–247.CrossRef
Zurück zum Zitat Ossenkopp, K. P., Biagi, E., Cloutier, C. J., Chan, M. Y. T., Kavaliers, M., & Cross-Mellor, S. K. (2011). Acute corticosterone increases conditioned spontaneous orofacial behaviors but fails to influence dose related LiCl-induced conditioned “gaping” responses in a rodent model of anticipatory nausea. European Journal of Pharmacology, 660, 358–362.PubMedCrossRef Ossenkopp, K. P., Biagi, E., Cloutier, C. J., Chan, M. Y. T., Kavaliers, M., & Cross-Mellor, S. K. (2011). Acute corticosterone increases conditioned spontaneous orofacial behaviors but fails to influence dose related LiCl-induced conditioned “gaping” responses in a rodent model of anticipatory nausea. European Journal of Pharmacology, 660, 358–362.PubMedCrossRef
Zurück zum Zitat Parker, L. A. (2014). Conditioned taste avoidance versus conditioned gaping: Rat models of nausea-induced behavior. European Journal of Pharmacology, 722, 122–133.PubMedCrossRef Parker, L. A. (2014). Conditioned taste avoidance versus conditioned gaping: Rat models of nausea-induced behavior. European Journal of Pharmacology, 722, 122–133.PubMedCrossRef
Zurück zum Zitat Parker, L. A., & Kemp, S. (2001). Tetrahydrocannabinol (THC) interferes with conditioned retching in Suncus murinus: An animal model of anticipatory nausea and vomiting (ANV). NeuroReport, 12(4), 749–752.PubMedCrossRef Parker, L. A., & Kemp, S. (2001). Tetrahydrocannabinol (THC) interferes with conditioned retching in Suncus murinus: An animal model of anticipatory nausea and vomiting (ANV). NeuroReport, 12(4), 749–752.PubMedCrossRef
Zurück zum Zitat Parker, L. A., Kwiatkowska, M., & Mechoulam, R. (2006). Delta-9-Tetrahydrocannabinol and cannabidiol, but not ondansetron, interfere with conditioned retching reactions elicited by a lithium-paired context in Suncus murinus: An animal model of anticipatory nausea and vomiting. Physiology & Behavior, 87(1), 66–71.CrossRef Parker, L. A., Kwiatkowska, M., & Mechoulam, R. (2006). Delta-9-Tetrahydrocannabinol and cannabidiol, but not ondansetron, interfere with conditioned retching reactions elicited by a lithium-paired context in Suncus murinus: An animal model of anticipatory nausea and vomiting. Physiology & Behavior, 87(1), 66–71.CrossRef
Zurück zum Zitat Pavlov, I. P. (1927). Conditioned Reflexes. NY: Dover Press. Pavlov, I. P. (1927). Conditioned Reflexes. NY: Dover Press.
Zurück zum Zitat Rock, E. M., Limebeer, C. L., Mechoulam, R., Piomelli, D., & Parker, L. A. (2008). The effect of cannabidiol and URB597 on conditioned gaping (a model of nausea) elicited by a lithium-paired context in the rat. Psychopharmacology, 196(3), 389–395.PubMedCrossRef Rock, E. M., Limebeer, C. L., Mechoulam, R., Piomelli, D., & Parker, L. A. (2008). The effect of cannabidiol and URB597 on conditioned gaping (a model of nausea) elicited by a lithium-paired context in the rat. Psychopharmacology, 196(3), 389–395.PubMedCrossRef
Zurück zum Zitat Rock, E. M., Limebeer, C. L., Navaratnam, R., Sticht, M. A., Bonner, N., Engeland, K., et al. (2014). A comparison of treatments for anticipatory nausea using a rat model of contextually elicited conditioned gaping. Psychopharmacology, 231(16), 3207–3215.PubMedCrossRef Rock, E. M., Limebeer, C. L., Navaratnam, R., Sticht, M. A., Bonner, N., Engeland, K., et al. (2014). A comparison of treatments for anticipatory nausea using a rat model of contextually elicited conditioned gaping. Psychopharmacology, 231(16), 3207–3215.PubMedCrossRef
Zurück zum Zitat Rodriguez, M., Lopez, M., Symonds, M., & Hall, G. (2000). Lithium-induced context aversion in rats as a model of anticipatory nausea in humans. Physiology and Behavior, 71(5), 571–579.PubMedCrossRef Rodriguez, M., Lopez, M., Symonds, M., & Hall, G. (2000). Lithium-induced context aversion in rats as a model of anticipatory nausea in humans. Physiology and Behavior, 71(5), 571–579.PubMedCrossRef
Zurück zum Zitat Seligman, M. E. (1971). Phobias and preparedness. Behavior Therapy, 2(3), 307–320. Seligman, M. E. (1971). Phobias and preparedness. Behavior Therapy, 2(3), 307–320.
Zurück zum Zitat Symonds, M., & Hall, G. (2000). Contextual conditioning with an illness US is attenuated by the antiemetic ondansetron. Psychobiology, 28, 360–366. Symonds, M., & Hall, G. (2000). Contextual conditioning with an illness US is attenuated by the antiemetic ondansetron. Psychobiology, 28, 360–366.
Metadaten
Titel
Second-order conditioning of LiCl-induced gaping with flavor and contextual cues
verfasst von
Martin A. Sticht
Zoe K. Leach
James C. Wilson
Linda A. Parker
Publikationsdatum
01.03.2015
Verlag
Springer US
Erschienen in
Learning & Behavior / Ausgabe 1/2015
Print ISSN: 1543-4494
Elektronische ISSN: 1543-4508
DOI
https://doi.org/10.3758/s13420-014-0164-8

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