scholarly article | Q13442814 |
P356 | DOI | 10.1289/EHP.0800251 |
P8608 | Fatcat ID | release_ba336def7nfgpe3cgfz32flalm |
P932 | PMC publication ID | 2679603 |
P698 | PubMed publication ID | 19440498 |
P5875 | ResearchGate publication ID | 24425641 |
P50 | author | Theodore A. Slotkin | Q88773550 |
Frederic J Seidler | Q88773672 | ||
P2860 | cites work | Comparative developmental neurotoxicity of organophosphate insecticides: effects on brain development are separable from systemic toxicity | Q24547922 |
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Evidence of toxicity, oxidative stress, and neuronal insult in autism | Q28272947 | ||
Nerve growth factor-stimulated calcium uptake into PC12 cells: uniqueness of the channel and evidence for phosphorylation | Q28316175 | ||
Exposure of neonatal rats to parathion elicits sex-selective impairment of acetylcholine systems in brain regions during adolescence and adulthood | Q28386015 | ||
Developmental neurotoxicity of parathion: progressive effects on serotonergic systems in adolescence and adulthood | Q28387172 | ||
Developmental neurotoxicants target neurodifferentiation into the serotonin phenotype: Chlorpyrifos, diazinon, dieldrin and divalent nickel | Q28387502 | ||
Screening for developmental neurotoxicity using PC12 cells: comparisons of organophosphates with a carbamate, an organochlorine, and divalent nickel | Q28395180 | ||
Exposure to organophosphates reduces the expression of neurotrophic factors in neonatal rat brain regions: similarities and differences in the effects of chlorpyrifos and diazinon on the fibroblast growth factor superfamily | Q28395997 | ||
Organophosphorus pesticides: do they all have the same mechanism of toxicity? | Q29615471 | ||
Persistent behavioral alterations in rats neonatally exposed to low doses of the organophosphate pesticide, parathion | Q30484602 | ||
Persistent cognitive alterations in rats after early postnatal exposure to low doses of the organophosphate pesticide, diazinon | Q30491985 | ||
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Roles of molecular chaperones in the nervous system | Q34067828 | ||
Nicotine is a developmental neurotoxicant and neuroprotectant: stage-selective inhibition of DNA synthesis coincident with shielding from effects of chlorpyrifos | Q34292224 | ||
Cholinergic systems in brain development and disruption by neurotoxicants: nicotine, environmental tobacco smoke, organophosphates | Q34331472 | ||
Organophosphorus insecticides chlorpyrifos and diazinon and oxidative stress in neuronal cells in a genetic model of glutathione deficiency. | Q34579240 | ||
Causes of oxidative stress in the pre- and perinatal period | Q34591238 | ||
Chlorpyrifos affects phenotypic outcomes in a model of mammalian neurodevelopment: critical stages targeting differentiation in PC12 cells | Q34603071 | ||
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Chlorpyrifos, parathion, and their oxons bind to and desensitize a nicotinic acetylcholine receptor: relevance to their toxicities. | Q52559630 | ||
The "stress" of being born | Q70037446 | ||
Agonist-stimulated calcium transients in PC12 cells are affected differentially by cadmium and nickel | Q71860980 | ||
Astrocytes prevent neuronal death induced by reactive oxygen and nitrogen species | Q73111301 | ||
Regulation of the differentiation of PC12 pheochromocytoma cells | Q35032923 | ||
Organophosphate insecticides target the serotonergic system in developing rat brain regions: disparate effects of diazinon and parathion at doses spanning the threshold for cholinesterase inhibition | Q35113105 | ||
Nonenzymatic functions of acetylcholinesterase splice variants in the developmental neurotoxicity of organophosphates: chlorpyrifos, chlorpyrifos oxon, and diazinon | Q35636257 | ||
Organophosphate toxicology: safety aspects of nonacetylcholinesterase secondary targets | Q35862603 | ||
Comparative developmental neurotoxicity of organophosphates in vivo: transcriptional responses of pathways for brain cell development, cell signaling, cytotoxicity and neurotransmitter systems | Q35933418 | ||
Ameliorating the developmental neurotoxicity of chlorpyrifos: a mechanisms-based approach in PC12 cells | Q35971890 | ||
Insecticide urinary metabolites in nonoccupationally exposed populations | Q36270180 | ||
Developmental diazinon neurotoxicity in rats: later effects on emotional response | Q36477388 | ||
Neonatal exposure to low doses of diazinon: long-term effects on neural cell development and acetylcholine systems | Q36490835 | ||
Developmental neurotoxicity of low dose diazinon exposure of neonatal rats: effects on serotonin systems in adolescence and adulthood | Q36569670 | ||
Targeting of neurotrophic factors, their receptors, and signaling pathways in the developmental neurotoxicity of organophosphates in vivo and in vitro | Q36725915 | ||
Interactions between methamphetamine and environmental stress: role of oxidative stress, glutamate and mitochondrial dysfunction | Q36817237 | ||
Transcriptional profiles reveal similarities and differences in the effects of developmental neurotoxicants on differentiation into neurotransmitter phenotypes in PC12 cells | Q37113546 | ||
The role of glutamate neurotoxicity in hypoxic-ischemic neuronal death | Q37585239 | ||
Brain regional heterogeneity and toxicological mechanisms of organophosphates and carbamates | Q37658753 | ||
Developmental neurotoxicity of chlorpyrifos in vivo and in vitro: effects on nuclear transcription factors involved in cell replication and differentiation | Q38314836 | ||
Gene expression profiles of the rat brain both immediately and 3 months following acute sarin exposure | Q38317370 | ||
Metals and free radicals in neurodegeneration | Q40599315 | ||
Neuronal differentiation in PC12 cells is inhibited by chlorpyrifos and its metabolites: is acetylcholinesterase inhibition the site of action? | Q40920286 | ||
Modeling the developmental neurotoxicity of chlorpyrifos in vitro: macromolecule synthesis in PC12 cells | Q41016073 | ||
Unrelated developmental neurotoxicants elicit similar transcriptional profiles for effects on neurotrophic factors and their receptors in an in vitro model | Q42128564 | ||
Prenatal exposure to the pesticide dieldrin or the GABA(A) receptor antagonist bicuculline differentially alters expression of GABA(A) receptor subunit mRNAs in fetal rat brainstem | Q42542197 | ||
In vitro and in vivo induction of heat shock (stress) protein (Hsp) gene expression by selected pesticides | Q42554258 | ||
Developmental neurotoxicity of chlorpyrifos: targeting glial cells | Q42729938 | ||
Dieldrin-induced oxidative stress and neurochemical changes contribute to apoptopic cell death in dopaminergic cells | Q43812555 | ||
Organophosphorus neuropathy target esterase inhibitors selectively block outgrowth of neurite-like and cell processes in cultured cells | Q44085638 | ||
Behavioral and neurochemical effects induced by pyrethroid-based mosquito repellent exposure in rat offsprings during prenatal and early postnatal period | Q44169165 | ||
Dieldrin induces apoptosis by promoting caspase-3-dependent proteolytic cleavage of protein kinase Cdelta in dopaminergic cells: relevance to oxidative stress and dopaminergic degeneration | Q44494831 | ||
Block of neuronal nicotinic acetylcholine receptors by organophosphate insecticides | Q45041250 | ||
Release and metabolism of dopamine in a clonal line of pheochromocytoma (PC12) cells exposed to fenthion | Q45138907 | ||
Oxidative mechanisms contributing to the developmental neurotoxicity of nicotine and chlorpyrifos | Q46553074 | ||
Critical periods for the role of oxidative stress in the developmental neurotoxicity of chlorpyrifos and terbutaline, alone or in combination | Q46553092 | ||
Corticosterone and dexamethasone potentiate cytotoxicity associated with oxygen-glucose deprivation in organotypic cerebellar slice cultures | Q46719241 | ||
Concentrations of selective metabolites of organophosphorus pesticides in the United States population | Q46820302 | ||
Copper, manganese, zinc, nickel, cadmium and lead in human foetal tissues | Q48193141 | ||
NMDA antagonists exert distinct effects in experimental organophosphate or carbamate poisoning in mice | Q48342946 | ||
Prenatal exposure to neurotoxicants dieldrin or lindane alters tert-butylbicyclophosphorothionate binding to GABA(A) receptors in fetal rat brainstem | Q48463101 | ||
Direct actions of anticholinesterases on the neuronal nicotinic acetylcholine receptor channels | Q48592373 | ||
Dieldrin toxicosis: fetotoxicosis, tissue concentrations, and microscopic and ultrastructural changes in guinea pigs. | Q48789839 | ||
The organophosphate sarin, at low concentrations, inhibits the evoked release of GABA in rat hippocampal slices. | Q51415851 | ||
Is oxidative stress involved in the developmental neurotoxicity of chlorpyrifos? | Q52167210 | ||
In vitro and in vivo effects of chlorpyrifos on glutathione peroxidase and catalase in developing rat brain. | Q52168615 | ||
The toxicity of organophosphate compounds towards cultured PC12 cells. | Q52544690 | ||
In vitro and in vivo generation of reactive oxygen species, DNA damage and lactate dehydrogenase leakage by selected pesticides. | Q52546874 | ||
P433 | issue | 4 | |
P921 | main subject | nickel | Q744 |
chlorpyrifos | Q414915 | ||
neurotoxicity | Q3338704 | ||
toxic encephalopathy | Q7830379 | ||
P304 | page(s) | 587-596 | |
P577 | publication date | 2008-12-05 | |
P1433 | published in | Environmental Health Perspectives | Q1345904 |
P1476 | title | Oxidative and excitatory mechanisms of developmental neurotoxicity: transcriptional profiles for chlorpyrifos, diazinon, dieldrin, and divalent nickel in PC12 cells | |
P478 | volume | 117 |
Q35739063 | Amelioration strategies fail to prevent tobacco smoke effects on neurodifferentiation: Nicotinic receptor blockade, antioxidants, methyl donors |
Q38515161 | An Overview on Human Umbilical Cord Blood Stem Cell-Based Alternative In Vitro Models for Developmental Neurotoxicity Assessment |
Q46462780 | An investigation of the developmental neurotoxic potential of curcumol in PC12 cells |
Q28384691 | Astrocytes protect against diazinon- and diazoxon-induced inhibition of neurite outgrowth by regulating neuronal glutathione |
Q34233567 | Body mass index, agricultural pesticide use, and cancer incidence in the Agricultural Health Study cohort |
Q28387863 | Cellular localization of dieldrin and structure-activity relationship of dieldrin analogues in dopaminergic cells |
Q28393707 | Developmental exposure to organophosphates triggers transcriptional changes in genes associated with Parkinson's disease in vitro and in vivo |
Q28397594 | Developmental neurotoxicity of organophosphates targets cell cycle and apoptosis, revealed by transcriptional profiles in vivo and in vitro |
Q29248351 | Developmental neurotoxicity of succeeding generations of insecticides |
Q28395620 | Diazinon and diazoxon impair the ability of astrocytes to foster neurite outgrowth in primary hippocampal neurons |
Q41949474 | Disparate developmental neurotoxicants converge on the cyclic AMP signaling cascade, revealed by transcriptional profiles in vitro and in vivo |
Q34103892 | Diverse neurotoxicants converge on gene expression for neuropeptides and their receptors in an in vitro model of neurodifferentiation: Effects of chlorpyrifos, diazinon, dieldrin and divalent nickel in PC12 cells |
Q41828857 | Does mechanism matter? Unrelated neurotoxicants converge on cell cycle and apoptosis during neurodifferentiation |
Q34158956 | Dose-related gene expression changes in forebrain following acute, low-level chlorpyrifos exposure in neonatal rats |
Q38676509 | Early-Life Toxic Insults and Onset of Sporadic Neurodegenerative Diseases-an Overview of Experimental Studies |
Q43618232 | Effect of exposure to diazinon on adult rat's brain |
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Q33874432 | Interactions of a pesticide/heavy metal mixture in marine bivalves: a transcriptomic assessment. |
Q39694995 | Melatonin protects against Nickel-induced neurotoxicity in vitro by reducing oxidative stress and maintaining mitochondrial function |
Q34703944 | Monocrotophos induced apoptosis in PC12 cells: role of xenobiotic metabolizing cytochrome P450s |
Q44429349 | Multifactorial Origin of Neurodevelopmental Disorders: Approaches to Understanding Complex Etiologies. |
Q37662163 | Neuroprotection by radical avoidance: search for suitable agents. |
Q39499163 | Nickel exposure induces oxidative damage to mitochondrial DNA in Neuro2a cells: the neuroprotective roles of melatonin |
Q41935771 | Nickel toxicity in embryos and larvae of the South American toad: effects on cell differentiation, morphogenesis, and oxygen consumption |
Q55501499 | Occurrence of multiclass pesticide residues in tomato samples collected from different markets of Iran. |
Q54977318 | Organophosphate pesticide chlorpyrifos impairs STAT1 signaling to induce dopaminergic neurotoxicity: Implications for mitochondria mediated oxidative stress signaling events. |
Q23909837 | Organophosphate pesticide exposure and attention in young Mexican-American children: the CHAMACOS study |
Q39633639 | Oxidative stress from diverse developmental neurotoxicants: antioxidants protect against lipid peroxidation without preventing cell loss |
Q33723705 | Oxidative stress resulting from exposure of a human salivary gland cells to paraoxon: an in vitro model for organophosphate oral exposure |
Q28395985 | Prenatal exposure to organophosphate pesticides and neurobehavioral development of neonates: a birth cohort study in Shenyang, China |
Q28396949 | Prenatal exposure to the organophosphate insecticide chlorpyrifos enhances brain oxidative stress and prostaglandin E2 synthesis in a mouse model of idiopathic autism |
Q34553869 | Swimming impairment and acetylcholinesterase inhibition in zebrafish exposed to copper or chlorpyrifos separately, or as mixtures |
Q33916346 | The organophosphate Chlorpyrifos interferes with the responses to 17β-estradiol in the digestive gland of the marine mussel Mytilus galloprovincialis |
Q48417193 | The role of oxidative stress in diazinon-induced tissues toxicity in Wistar and Norway rats. |
Q33898102 | Toxicogenomic profiling in maternal and fetal rodent brains following gestational exposure to chlorpyrifos. |
Q39684720 | Transcriptional profiles for glutamate transporters reveal differences between organophosphates but similarities with unrelated neurotoxicants |
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