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Stress
The International Journal on the Biology of Stress
Volume 15, 2012 - Issue 2
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Dopamine D1 receptors are responsible for stress-induced emotional memory deficit in mice

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Pages 237-242 | Received 01 Apr 2011, Accepted 20 Jul 2011, Published online: 29 Aug 2011

References

  • Arnsten AF. 2007. Catecholamine and second messenger influences on prefrontal cortical networks of “representational knowledge”: A rational bridge between genetics and the symptoms of mental illness. Cereb Cortex. 17 Suppl. 1: i6–i15.
  • Arnsten AF, Goldman-Rakic PS. 1998. Noise stress impairs prefrontal cortical cognitive function in monkeys: Evidence for a hyperdopaminergic mechanism. Arch Gen Psychiatry. 55:362–368.
  • Arnsten AF, Murphy B, Merchant K. 2000. The selective dopamine D4 receptor antagonist, PNU-101387G, prevents stress-induced cognitive deficits in monkeys. Neuropsychopharmacology. 23:405–410.
  • Butler RK, Finn DP. 2009. Stress-induced analgesia. Prog Neurobiol. 88:184–202.
  • Cai JX, Arnsten AF.. 1997. Dose-dependent effects of the dopamine D1 receptor agonists A77636 or SKF81297 on spatial working memory in aged monkeys. J Pharmacol Exp Ther. 283:183–189.
  • de Kloet ER. 2000. Stress in the brain. Eur J Pharmacol. 405:187–198.
  • de Kloet ER. 2004. Hormones and the stressed brain. Ann N Y Acad Sci. 1018:1–15.
  • Gao Y, Han H, Xu R, Cao J, Luo J, Xu L. 2008. Effects of prolonged exposure to context following contextual fear conditioning on synaptic properties in rat hippocampal slices. Neurosci Res. 61:385–389.
  • Garcia R. 2001. Stress, hippocampal plasticity, and spatial learning. Synapse. 40:180–183.
  • Goldman-Rakic PS, Castner SA, Svensson TH, Siever LJ, Williams GV. 2004. Targeting the dopamine D1 receptor in schizophrenia: Insights for cognitive dysfunction. Psychopharmacology (Berl). 174:3–16.
  • Inglis FM, Moghaddam B. 1999. Dopaminergic innervation of the amygdala is highly responsive to stress. J Neurochem. 72:1088–1094.
  • Kim JJ, Yoon KS. 1998. Stress: Metaplastic effects in the hippocampus. Trends Neurosci. 21:505–509.
  • Miura H, Qiao H, Kitagami T, Ohta T, Ozaki N. 2005. Effects of fluvoxamine on levels of dopamine, serotonin, and their metabolites in the hippocampus elicited by isolation housing and novelty stress in adult rats. Int J Neurosci. 115:367–378.
  • Mogil JS, Belknap JK. 1997. Sex and genotype determine the selective activation of neurochemically-distinct mechanisms of swim stress-induced analgesia. Pharmacol Biochem Behav. 56:61–66.
  • Morrow BA, Roth RH, Elsworth JD. 2000. TMT, a predator odor, elevates mesoprefrontal dopamine metabolic activity and disrupts short-term working memory in the rat. Brain Res Bull. 52:519–523.
  • Parikh D, Hamid A, Friedman TC, Nguyen K, Tseng A, Marquez P, Lutfy K. 2011. Stress-induced analgesia and endogenous opioid peptides: The importance of stress duration. Eur J Pharmacol. 650:563–567.
  • Pezze MA, Feldon J. 2004. Mesolimbic dopaminergic pathways in fear conditioning. Prog Neurobiol. 74:301–320.
  • Roozendaal B, Hahn EL, Nathan SV, de Quervain DJ, McGaugh JL. 2004. Glucocorticoid effects on memory retrieval require concurrent noradrenergic activity in the hippocampus and basolateral amygdala. J Neurosci. 24:8161–8169.
  • Srikumar BN, Raju TR, Shankaranarayana Rao BS. 2007. Contrasting effects of bromocriptine on learning of a partially baited radial arm maze task in the presence and absence of restraint stress. Psychopharmacology (Berl). 193:363–374.
  • Stohr T, Schulte Wermeling D, Szuran T, Pliska V, Domeney A, Welzl H, Weiner I, Feldon J. 1998. Differential effects of prenatal stress in two inbred strains of rats. Pharmacol Biochem Behav. 59:799–805.
  • Vendruscolo LF, Pamplona FA, Takahashi RN. 2004. Strain and sex differences in the expression of nociceptive behavior and stress-induced analgesia in rats. Brain Res. 1030:277–283.
  • Wang GW, Cai JX. 2008. Reversible disconnection of the hippocampal-prelimbic cortical circuit impairs spatial learning but not passive avoidance learning in rats. Neurobiol Learn Mem. 90:365–373.

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