Literature DB >> 17452286

Comparative developmental neurotoxicity of organophosphates in vivo: transcriptional responses of pathways for brain cell development, cell signaling, cytotoxicity and neurotransmitter systems.

Theodore A Slotkin1, Frederic J Seidler.   

Abstract

Organophosphates affect mammalian brain development through a variety of mechanisms beyond their shared property of cholinesterase inhibition. We used microarrays to characterize similarities and differences in transcriptional responses to chlorpyrifos and diazinon, assessing defined gene groupings for the pathways known to be associated with the mechanisms and/or outcomes of chlorpyrifos-induced developmental neurotoxicity. We exposed neonatal rats to daily doses of chlorpyrifos (1mg/kg) or diazinon (1 or 2mg/kg) on postnatal days 1-4 and evaluated gene expression profiles in brainstem and forebrain on day 5; these doses produce little or no cholinesterase inhibition. We evaluated pathways for general neural cell development, cell signaling, cytotoxicity and neurotransmitter systems, and identified significant differences for >60% of 252 genes. Chlorpyrifos elicited major transcriptional changes in genes involved in neural cell growth, development of glia and myelin, transcriptional factors involved in neural cell differentiation, cAMP-related cell signaling, apoptosis, oxidative stress, excitotoxicity, and development of neurotransmitter synthesis, storage and receptors for acetylcholine, serotonin, norepinephrine and dopamine. Diazinon had similar effects on many of the same processes but also showed major differences from chlorpyrifos. Our results buttress the idea that different organophosphates target multiple pathways involved in neural cell development but also that they deviate in key aspects that may contribute to disparate neurodevelopmental outcomes. Equally important, these pathways are compromised at exposures that are unrelated to biologically significant cholinesterase inhibition and its associated signs of systemic toxicity. The approach used here demonstrates how planned comparisons with microarrays can be used to screen for developmental neurotoxicity.

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Year:  2007        PMID: 17452286      PMCID: PMC1945108          DOI: 10.1016/j.brainresbull.2007.01.005

Source DB:  PubMed          Journal:  Brain Res Bull        ISSN: 0361-9230            Impact factor:   4.077


  112 in total

1.  Cellular mechanisms for developmental toxicity of chlorpyrifos: targeting the adenylyl cyclase signaling cascade.

Authors:  X Song; F J Seidler; J L Saleh; J Zhang; S Padilla; T A Slotkin
Journal:  Toxicol Appl Pharmacol       Date:  1997-07       Impact factor: 4.219

2.  Chlorpyrifos targets developing glia: effects on glial fibrillary acidic protein.

Authors:  Stephanie J Garcia; Frederic J Seidler; Dan Qiao; Theodore A Slotkin
Journal:  Brain Res Dev Brain Res       Date:  2002-02-28

3.  Functional alterations in CNS catecholamine systems in adolescence and adulthood after neonatal chlorpyrifos exposure.

Authors:  T A Slotkin; C A Tate; M M Cousins; F J Seidler
Journal:  Brain Res Dev Brain Res       Date:  2002-02-28

4.  Neuronal differentiation in PC12 cells is inhibited by chlorpyrifos and its metabolites: is acetylcholinesterase inhibition the site of action?

Authors:  K P Das; S Barone
Journal:  Toxicol Appl Pharmacol       Date:  1999-11-01       Impact factor: 4.219

5.  Interaction between organophosphate compounds and cholinergic functions during development.

Authors:  M G Aluigi; C Angelini; C Falugi; R Fossa; P Genever; L Gallus; P G Layer; G Prestipino; Z Rakonczay; M Sgro; H Thielecke; S Trombino
Journal:  Chem Biol Interact       Date:  2005-10-28       Impact factor: 5.192

6.  A role for the nicotinic alpha-bungarotoxin receptor in neurite outgrowth in PC12 cells.

Authors:  J Chan; M Quik
Journal:  Neuroscience       Date:  1993-09       Impact factor: 3.590

7.  Inhibition and recovery of maternal and fetal cholinesterase enzyme activity following a single cutaneous dose of methyl parathion and diazinon, alone and in combination, in pregnant rats.

Authors:  A W Abu-Qare; M B Abou-Donia
Journal:  J Appl Toxicol       Date:  2001 Jul-Aug       Impact factor: 3.446

8.  Does the developmental neurotoxicity of chlorpyrifos involve glial targets? Macromolecule synthesis, adenylyl cyclase signaling, nuclear transcription factors, and formation of reactive oxygen in C6 glioma cells.

Authors:  S J Garcia; F J Seidler; T L Crumpton; T A Slotkin
Journal:  Brain Res       Date:  2001-02-09       Impact factor: 3.252

9.  Alterations in central nervous system serotonergic and dopaminergic synaptic activity in adulthood after prenatal or neonatal chlorpyrifos exposure.

Authors:  Justin E Aldridge; Armando Meyer; Frederic J Seidler; Theodore A Slotkin
Journal:  Environ Health Perspect       Date:  2005-08       Impact factor: 9.031

10.  Screening for developmental neurotoxicity using PC12 cells: comparisons of organophosphates with a carbamate, an organochlorine, and divalent nickel.

Authors:  Theodore A Slotkin; Emiko A MacKillop; Ian T Ryde; Charlotte A Tate; Frederic J Seidler
Journal:  Environ Health Perspect       Date:  2007-01       Impact factor: 9.031

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  77 in total

1.  Developmental exposure to organophosphates triggers transcriptional changes in genes associated with Parkinson's disease in vitro and in vivo.

Authors:  Theodore A Slotkin; Frederic J Seidler
Journal:  Brain Res Bull       Date:  2011-09-28       Impact factor: 4.077

Review 2.  Endocrine disrupters: a review of some sources, effects, and mechanisms of actions on behaviour and neuroendocrine systems.

Authors:  C A Frye; E Bo; G Calamandrei; L Calzà; F Dessì-Fulgheri; M Fernández; L Fusani; O Kah; M Kajta; Y Le Page; H B Patisaul; A Venerosi; A K Wojtowicz; G C Panzica
Journal:  J Neuroendocrinol       Date:  2012-01       Impact factor: 3.627

3.  Cellular localization of dieldrin and structure-activity relationship of dieldrin analogues in dopaminergic cells.

Authors:  Erin M G Allen; Virginia R Florang; Laurie L Davenport; Yunden Jinsmaa; Jonathan A Doorn
Journal:  Chem Res Toxicol       Date:  2013-06-27       Impact factor: 3.739

4.  Attention-deficit/hyperactivity disorder and urinary metabolites of organophosphate pesticides.

Authors:  Maryse F Bouchard; David C Bellinger; Robert O Wright; Marc G Weisskopf
Journal:  Pediatrics       Date:  2010-05-17       Impact factor: 7.124

5.  Toxicogenomic profiling in maternal and fetal rodent brains following gestational exposure to chlorpyrifos.

Authors:  Estefania G Moreira; Xiaozhong Yu; Joshua F Robinson; Willian Griffith; Sung Woo Hong; Richard P Beyer; Theo K Bammler; Elaine M Faustman
Journal:  Toxicol Appl Pharmacol       Date:  2010-03-27       Impact factor: 4.219

6.  Prenatal dexamethasone, as used in preterm labor, worsens the impact of postnatal chlorpyrifos exposure on serotonergic pathways.

Authors:  Theodore A Slotkin; Jennifer Card; Frederic J Seidler
Journal:  Brain Res Bull       Date:  2013-11-23       Impact factor: 4.077

7.  Oxidative stress from diverse developmental neurotoxicants: antioxidants protect against lipid peroxidation without preventing cell loss.

Authors:  Theodore A Slotkin; Frederic J Seidler
Journal:  Neurotoxicol Teratol       Date:  2009-12-11       Impact factor: 3.763

8.  Transcriptional profiles reveal similarities and differences in the effects of developmental neurotoxicants on differentiation into neurotransmitter phenotypes in PC12 cells.

Authors:  Theodore Slotkin; Frederic Seidler
Journal:  Brain Res Bull       Date:  2008-09-22       Impact factor: 4.077

9.  Persistent behavioral alterations in rats neonatally exposed to low doses of the organophosphate pesticide, parathion.

Authors:  Olga A Timofeeva; David Sanders; Kristen Seemann; Liwei Yang; Daniel Hermanson; Sam Regenbogen; Samantha Agoos; Anita Kallepalli; Anit Rastogi; David Braddy; Corinne Wells; Charles Perraut; Frederic J Seidler; Theodore A Slotkin; Edward D Levin
Journal:  Brain Res Bull       Date:  2008-09-24       Impact factor: 4.077

10.  Developmental exposure to an organophosphate flame retardant alters later behavioral responses to dopamine antagonism in zebrafish larvae.

Authors:  Anthony N Oliveri; Erica Ortiz; Edward D Levin
Journal:  Neurotoxicol Teratol       Date:  2018-03-17       Impact factor: 3.763

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