Association between polymorphisms in CTR1, CTR2, ATP7A, and ATP7B and platinum resistance in epithelial ovarian cancer

The copper transporters CTR1, CTR2, ATP7A, and ATP7B regulate intracellular concentration of platinum by mediating its uptake and efflux in cells. We sought to explore the effect of genetic polymorphisms in CTR1, CTR2, ATP7A, and ATP7B on platinum resistance in patients suffering from epithelial ova...

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Veröffentlicht in:International journal of clinical pharmacology and therapeutics 2017-10, Vol.55 (10), p.774-780
Hauptverfasser: Li, Tailin, Peng, Jingbo, Zeng, Feiyue, Zhang, Keqiang, Liu, Jinyang, Li, Xi, Ouyang, Qianying, Wang, Guo, Wang, Liansheng, Liu, Zhaoqian, Liu, Yingzi
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Sprache:eng
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Zusammenfassung:The copper transporters CTR1, CTR2, ATP7A, and ATP7B regulate intracellular concentration of platinum by mediating its uptake and efflux in cells. We sought to explore the effect of genetic polymorphisms in CTR1, CTR2, ATP7A, and ATP7B on platinum resistance in patients suffering from epithelial ovarian cancer (EOC). A total of 152 Chinese EOC patients were enrolled in this study, all of whom underwent adjuvant chemotherapy using platinum and taxane after maximal debulking surgery. In total, 11 single-nucleotide polymorphisms (SNPs) in CTR1, CTR2, ATP7A, and ATP7B were genotyped in these patients. The CTR1 rs10981694 polymorphism was observed to be associated with carboplatin resistance, while patients with the rs10981694 G allele showed a significantly higher rate of carboplatin resistance (OR = 4.00, 95% CI 1.309 - 12.23, p 
ISSN:0946-1965
DOI:10.5414/cp202907