Literature DB >> 27939611

High concentration of trichlorfon (1mM) disrupts axonal cytoskeleton and decreases the expression of plasticity-related proteins in SH-SY5Y cells.

Laís Silva Fernandes1, Guilherme Luz Emerick2, Rafaela Scalco Ferreira1, Neife Aparecida G Dos Santos1, Antonio Cardozo Dos Santos3.   

Abstract

Some organophosphorus compounds (OPs) induce a neurodegenerative disorder known as organophosphate-induced delayed neuropathy (OPIDN), which is related to irreversible inhibition of neuropathy target esterase (NTE) and impairment of neurite outgrowth. The present study addresses the effects of trichlorfon, mipafox (neuropathic model) and paraoxon (non-neuropathic model) on neurite outgrowth and neuroplasticity-related proteins in retinoic-acid-stimulated SH-SY5Y cells, a cellular model widely used to study the neurotoxicity of OPs. Mipafox (20μM) decreased cellular differentiation and the expression of neurofilament 200 (NF-200), growth associated- (GAP-43) and synaptic proteins (synapsin I and synaptophysin); whereas paraoxon (300μM) induced no effect on cellular differentiation, but significant decrease of NF-200, GAP-43, synapsin I and synaptophysin as compared to controls. However, the effects of paraoxon on these proteins were significantly lower than the effects of mipafox. In conclusion, axonal cytoskeletal proteins, as well as axonal plasticity-related proteins are more effectively affected by neuropathic (mipafox) than by non-neuropathic (paraoxon) OPs, suggesting that they might play a role in the mechanism of OPIDN. At high concentration (1mM), trichlorfon induced effects similar to those of the neuropathic OP, mipafox (20μM), but also caused high inhibition of AChE. Therefore, these effects are unlikely to occur in humans at non-lethal doses of trichlorfon.
Copyright © 2016 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Axonal growth; Neurofilament; Organophosphate-induced delayed neuropathy (OPIDN); Synaptogenesis; Trichlorfon

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Year:  2016        PMID: 27939611     DOI: 10.1016/j.tiv.2016.12.003

Source DB:  PubMed          Journal:  Toxicol In Vitro        ISSN: 0887-2333            Impact factor:   3.500


  2 in total

1.  Oleocanthal ameliorates amyloid-β oligomers' toxicity on astrocytes and neuronal cells: In vitro studies.

Authors:  Yazan S Batarseh; Loqman A Mohamed; Sweilem B Al Rihani; Youssef M Mousa; Abu Bakar Siddique; Khalid A El Sayed; Amal Kaddoumi
Journal:  Neuroscience       Date:  2017-04-07       Impact factor: 3.590

2.  First study on response of astrocytes in alevines of red-bellied pacu (Piaractus brachypomus) to subchronic exposure to chlorpyrifos and trichlorfon.

Authors:  Gisella Karina Holguín-Céspedes; Ángel Enrique Céspedes-Rubio; Iang S Rondón-Barragán
Journal:  Vet World       Date:  2022-07-14
  2 in total

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