Literature DB >> 18662719

Developmental lead exposure impairs extinction of conditioned fear in young adult rats.

Jennifer L McGlothan1, Marzena Karcz-Kubicha, Tomás R Guilarte.   

Abstract

Pavlovian fear conditioning is a model of emotional learning in which a neutral stimulus such as a tone is paired with an aversive stimulus such as a foot shock. Presentation of a tone with a foot shock in a context (test box) elicits a freezing response representative of stereotypic fear behavior. After conditioning has occurred, presentation of the context (test box) or tone in the absence of the unconditioned stimulus (shock) causes extinction of the fear response. Rats chronically exposed to environmentally relevant levels of lead (Pb(2+)) and controls were tested in a fear-conditioning (FC) paradigm at 50 days of age (PN50). Littermates to FC rats received an immediate shock (IS) when placed in the test box with no tone. Blood Pb(2+) levels in control and Pb(2+)-exposed animals were (mean+/-S.E.M.): 0.76+/-0.11 (n=15) and 25.8+/-1.28microg/dL (n=14). Freezing behavior was recorded during acquisition (day of training) or during 4 consecutive extinction days. Control and Pb(2+)-exposed FC rats exhibited the same level of freezing time on the acquisition day. No freezing behavior occurred in IS rats regardless of treatment. Presentation of context 24h later produced a freezing response on both control and Pb(2+)-exposed FC rats but not in IS rats. When tested in the extinction phase, Pb(2+)-exposed FC rats exhibited deficits in extinction compared to control FC rats. That is, when presented with context on 4 consecutive days after acquisition of the fear response, Pb(2+)-exposed FC rats exhibited a greater freezing response than control FC rats. These findings indicate that chronic Pb(2+) exposure produces a deficit in extinction learning and the animals remain more fearful than controls.

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Year:  2008        PMID: 18662719      PMCID: PMC2628441          DOI: 10.1016/j.neuro.2008.06.010

Source DB:  PubMed          Journal:  Neurotoxicology        ISSN: 0161-813X            Impact factor:   4.294


  29 in total

1.  Prefrontal cortex long-term potentiation, but not long-term depression, is associated with the maintenance of extinction of learned fear in mice.

Authors:  Cyril Herry; Rene Garcia
Journal:  J Neurosci       Date:  2002-01-15       Impact factor: 6.167

2.  Consolidation of extinction learning involves transfer from NMDA-independent to NMDA-dependent memory.

Authors:  E Santini; R U Muller; G J Quirk
Journal:  J Neurosci       Date:  2001-11-15       Impact factor: 6.167

3.  Memory for extinction of conditioned fear is long-lasting and persists following spontaneous recovery.

Authors:  Gregory J Quirk
Journal:  Learn Mem       Date:  2002 Nov-Dec       Impact factor: 2.460

4.  Developmental Pb2+ exposure alters NMDAR subtypes and reduces CREB phosphorylation in the rat brain.

Authors:  Christopher D Toscano; Hossein Hashemzadeh-Gargari; Jennifer L McGlothan; Tomás R Guilarte
Journal:  Brain Res Dev Brain Res       Date:  2002-12-15

5.  Effect of developmental lead exposure on the expression of specific NMDA receptor subunit mRNAs in the hippocampus of neonatal rats by digoxigenin-labeled in situ hybridization histochemistry.

Authors:  Xiao-yan Zhang; Ai-Ping Liu; Di-Yun Ruan; Jin Liu
Journal:  Neurotoxicol Teratol       Date:  2002 Mar-Apr       Impact factor: 3.763

6.  Hippocampal expression of N-methyl-D-aspartate receptor (NMDAR1) subunit splice variant mRNA is altered by developmental exposure to Pb(2+).

Authors:  T R Guilarte; J L McGlothan; M K Nihei
Journal:  Brain Res Mol Brain Res       Date:  2000-03-29

7.  Facilitation of conditioned fear extinction by systemic administration or intra-amygdala infusions of D-cycloserine as assessed with fear-potentiated startle in rats.

Authors:  David L Walker; Kerry J Ressler; Kwok-Tung Lu; Michael Davis
Journal:  J Neurosci       Date:  2002-03-15       Impact factor: 6.167

Review 8.  Mechanisms of fear extinction.

Authors:  K M Myers; M Davis
Journal:  Mol Psychiatry       Date:  2006-12-12       Impact factor: 15.992

9.  Lead and conditioned fear to contextual and discrete cues.

Authors:  Juan A Salinas; Nicole C Huff
Journal:  Neurotoxicol Teratol       Date:  2002 Jul-Aug       Impact factor: 3.763

10.  Lead exposure alters cyclic-AMP response element binding protein phosphorylation and binding activity in the developing rat brain.

Authors:  Christopher D Toscano; Jennifer L McGlothan; Tomás R Guilarte
Journal:  Brain Res Dev Brain Res       Date:  2003-11-12
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  7 in total

1.  In vitro Pb exposure disturbs the balance between Aβ production and elimination: the role of AβPP and neprilysin.

Authors:  Hui Huang; Syed Waseem Bihaqi; Liuxin Cui; Nasser H Zawia
Journal:  Neurotoxicology       Date:  2011-02-18       Impact factor: 4.294

2.  From the Cover: 7,8-Dihydroxyflavone Rescues Lead-Induced Impairment of Vesicular Release: A Novel Therapeutic Approach for Lead Intoxicated Children.

Authors:  Xiao-Lei Zhang; Jennifer L McGlothan; Omid Miry; Kirstie H Stansfield; Meredith K Loth; Patric K Stanton; Tomás R Guilarte
Journal:  Toxicol Sci       Date:  2018-01-01       Impact factor: 4.849

3.  Enhanced stimulus sequence-dependent repeated learning in male offspring after prenatal stress alone or in conjunction with lead exposure.

Authors:  D A Cory-Slechta; M B Virgolini; S Liu; D Weston
Journal:  Neurotoxicology       Date:  2012-07-13       Impact factor: 4.294

4.  Early-life lead exposure and neurodevelopmental disorders.

Authors:  D Albores-Garcia; J L McGlothan; T R Guilarte
Journal:  Curr Opin Toxicol       Date:  2021-04-02

5.  Presynaptic mechanisms of lead neurotoxicity: effects on vesicular release, vesicle clustering and mitochondria number.

Authors:  Xiao-Lei Zhang; Sara R Guariglia; Jennifer L McGlothan; Kirstie H Stansfield; Patric K Stanton; Tomás R Guilarte
Journal:  PLoS One       Date:  2015-05-26       Impact factor: 3.240

6.  Early-life lead exposure recapitulates the selective loss of parvalbumin-positive GABAergic interneurons and subcortical dopamine system hyperactivity present in schizophrenia.

Authors:  K H Stansfield; K N Ruby; B D Soares; J L McGlothan; X Liu; T R Guilarte
Journal:  Transl Psychiatry       Date:  2015-03-10       Impact factor: 6.222

7.  Stimulation of TRPC5 cationic channels by low micromolar concentrations of lead ions (Pb2+).

Authors:  Piruthivi Sukumar; David J Beech
Journal:  Biochem Biophys Res Commun       Date:  2010-01-25       Impact factor: 3.575

  7 in total

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