多重耐药
ATP结合盒运输机
流出
P-糖蛋白
发起人
下调和上调
运输机
基因
阿霉素
Abcg2型
抗药性
癌细胞
生物
癌症研究
化学
基因表达
癌症
生物化学
遗传学
化疗
作者
Chao Luo,Yanfang Li,Lijuan Guo,Fangwei Zhang,Hui Liu,Jiali Zhang,Jing Zheng,Jingyan Zhang,Shouwu Guo
标识
DOI:10.1002/adhm.201700328
摘要
Abstract Multidrug resistance (MDR) is the major factor in the failure of many forms of chemotherapy, mostly due to the increased efflux of anticancer drugs that mediated by ATP‐binding cassette (ABC) transporters. Therefore, inhibiting ABC transporters is one of effective methods of overcoming MDR. However, high enrichment of ABC transporters in cells and their broad substrate spectra made to circumvent MDR are almost insurmountable by a single specific ABC transporter inhibitor. Here, this study demonstrates that graphene quantum dots (GQDs) could downregulate the expressions of P‐glycoprotein, multidrug resistance protein MRP1, and breast cancer resistance protein genes via interacting with C‐rich regions of their promoters. This is the first example that a single reagent could suppress multiple MDR genes, suggesting that it will be possible to target multiple ABC transporters simultaneously with a single reagent. The inhibitory ability of the GQDs to these drug‐resistant genes is validated further by reversing the doxorubicin resistance of MCF‐7/ADR cells. Notably, GQDs have superb chemical and physical properties, unique structure, low toxicity, and high biocompatibility; hence, their capability of inhibiting multiple drug‐resistant genes holds great potential in cancer therapy.
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