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Acquired resistance to oxaliplatin is not directly associated with increased resistance to DNA damage in SK-N-ASrOXALI4000, a newly established oxaliplatin-resistant sub-line of the neuroblastoma cell line SK-N-AS.

Authors :
Saintas, Emily
Abrahams, Liam
Ahmad, Gulshan T.
Ajakaiye, Anu-Oluwa M.
AlHumaidi, Abdulaziz S. H. A. M.
Ashmore-Harris, Candice
Clark, Iain
Dura, Usha K.
Fixmer, Carine N.
Ike-Morris, Chinedu
Mato Prado, Mireia
Mccullough, Danielle
Mishra, Shishir
Schöler, Katia M. U.
Timur, Husne
Williamson, Maxwell D. C.
Alatsatianos, Markella
Bahsoun, Basma
Blackburn, Edith
Hogwood, Catherine E.
Source :
PLoS ONE; 2/13/2017, Vol. 12 Issue 2, p1-17, 17p
Publication Year :
2017

Abstract

The formation of acquired drug resistance is a major reason for the failure of anti-cancer therapies after initial response. Here, we introduce a novel model of acquired oxaliplatin resistance, a sub-line of the non-MYCN-amplified neuroblastoma cell line SK-N-AS that was adapted to growth in the presence of 4000 ng/mL oxaliplatin (SK-N-AS<superscript>r</superscript>OXALI<superscript>4000</superscript>). SK-N-AS<superscript>r</superscript>OXALI<superscript>4000</superscript> cells displayed enhanced chromosomal aberrations compared to SK-N-AS, as indicated by 24-chromosome fluorescence in situ hybridisation. Moreover, SK-N-AS<superscript>r</superscript>OXALI<superscript>4000</superscript> cells were resistant not only to oxaliplatin but also to the two other commonly used anti-cancer platinum agents cisplatin and carboplatin. SK-N-AS<superscript>r</superscript>OXALI<superscript>4000</superscript> cells exhibited a stable resistance phenotype that was not affected by culturing the cells for 10 weeks in the absence of oxaliplatin. Interestingly, SK-N-AS<superscript>r</superscript>OXALI<superscript>4000</superscript> cells showed no cross resistance to gemcitabine and increased sensitivity to doxorubicin and UVC radiation, alternative treatments that like platinum drugs target DNA integrity. Notably, UVC-induced DNA damage is thought to be predominantly repaired by nucleotide excision repair and nucleotide excision repair has been described as the main oxaliplatin-induced DNA damage repair system. SK-N-AS<superscript>r</superscript>OXALI<superscript>4000</superscript> cells were also more sensitive to lysis by influenza A virus, a candidate for oncolytic therapy, than SK-N-AS cells. In conclusion, we introduce a novel oxaliplatin resistance model. The oxaliplatin resistance mechanisms in SK-N-AS<superscript>r</superscript>OXALI<superscript>4000</superscript> cells appear to be complex and not to directly depend on enhanced DNA repair capacity. Models of oxaliplatin resistance are of particular relevance since research on platinum drugs has so far predominantly focused on cisplatin and carboplatin. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
19326203
Volume :
12
Issue :
2
Database :
Complementary Index
Journal :
PLoS ONE
Publication Type :
Academic Journal
Accession number :
121261285
Full Text :
https://doi.org/10.1371/journal.pone.0172140