Literature DB >> 24105845

RBE4 cells are highly resistant to paraquat-induced cytotoxicity: studies on uptake and efflux mechanisms.

V Vilas-Boas1, R Silva, P Guedes-de-Pinho, F Carvalho, M L Bastos, F Remião.   

Abstract

Paraquat (PQ) is a widely used, highly toxic and non-selective contact herbicide, which has been associated with central neurotoxic effects, namely the development of Parkinson's disease, but whose effects to the blood-brain barrier (BBB) itself have rarely been studied. This work studied the mechanisms of PQ uptake and efflux in a rat's BBB cell model, the RBE4 cells. PQ is believed to enter cells using the basic or neutral amino acid or polyamine transport systems or through the choline-uptake system. In contrast, PQ efflux from cells is reported to be mediated by P-glycoprotein. Therefore, we evaluated PQ-induced cytotoxicity and the effect of some substrates/blockers of these transporters (such as arginine, L-valine, putrescine, hemicholinium-3 and GF120918) on such cytotoxicity. RBE4 cells were shown to be extremely resistant to PQ after 24 h of exposure; even at concentrations as high as 50 mM approximately 45% of the cells remained viable. Prolonging exposure until 48 h elicited significant cytotoxicity only for PQ concentrations above 5 mM. Although hemicholinium-3, a choline-uptake system inhibitor, significantly protected cells against PQ-induced toxicity, none of the effects were observed for arginine, L-valine or putrescine. Meanwhile, inhibiting the efflux pump P-glycoprotein using GF120918 significantly enhanced PQ-induced cytotoxicity. In conclusion, PQ used the choline-uptake system, instead of the transporters for the basic or neutral amino acids or for the polyamines, to enter RBE4 cells. P-glycoprotein extrudes PQ back to the extracellular medium. However, this efflux mechanism only partially explains the observed RBE4 resistance to PQ.
Copyright © 2013 John Wiley & Sons, Ltd.

Entities:  

Keywords:  P-glycoprotein; RBE4 cells; blood-brain barrier; choline-uptake system; paraquat

Mesh:

Substances:

Year:  2013        PMID: 24105845     DOI: 10.1002/jat.2926

Source DB:  PubMed          Journal:  J Appl Toxicol        ISSN: 0260-437X            Impact factor:   3.446


  3 in total

1.  Clathrin-Dependent Uptake of Paraquat into SH-SY5Y Cells and Its Internalization into Different Subcellular Compartments.

Authors:  Fengrui Li; Xiaofei Tian; Xiaoni Zhan; Baojie Wang; Mei Ding; Hao Pang
Journal:  Neurotox Res       Date:  2017-03-16       Impact factor: 3.911

2.  Development of novel rifampicin-derived P-glycoprotein activators/inducers. synthesis, in silico analysis and application in the RBE4 cell model, using paraquat as substrate.

Authors:  Vânia Vilas-Boas; Renata Silva; Andreia Palmeira; Emília Sousa; Luísa Maria Ferreira; Paula Sério Branco; Félix Carvalho; Maria de Lourdes Bastos; Fernando Remião
Journal:  PLoS One       Date:  2013-08-26       Impact factor: 3.240

3.  An Interspecies Molecular and Functional Study of Organic Cation Transporters at the Blood-Brain Barrier: From Rodents to Humans.

Authors:  Catarina Chaves; Federica Campanelli; Hélène Chapy; David Gomez-Zepeda; Fabienne Glacial; Maria Smirnova; Meryam Taghi; Johan Pallud; Nicolas Perrière; Xavier Declèves; Marie-Claude Menet; Salvatore Cisternino
Journal:  Pharmaceutics       Date:  2020-03-28       Impact factor: 6.321

  3 in total

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