Department of Medicine and Bioregulatory Sciences, University of Tokushima Graduate School of Medicine, Tokushima, Japan.
PLoS One. 2011;6(11):e27222. doi: 10.1371/journal.pone.0027222. Epub 2011 Nov 2.
Cancer cells eventually acquire drug resistance largely via the aberrant expression of ATP-binding cassette (ABC) transporters, ATP-dependent efflux pumps. Because cancer cells produce ATP mostly through glycolysis, in the present study we explored the effects of inhibiting glycolysis on the ABC transporter function and drug sensitivity of malignant cells. Inhibition of glycolysis by 3-bromopyruvate (3BrPA) suppressed ATP production in malignant cells, and restored the retention of daunorubicin or mitoxantrone in ABC transporter-expressing, RPMI8226 (ABCG2), KG-1 (ABCB1) and HepG2 cells (ABCB1 and ABCG2). Interestingly, although side population (SP) cells isolated from RPMI8226 cells exhibited higher levels of glycolysis with an increased expression of genes involved in the glycolytic pathway, 3BrPA abolished Hoechst 33342 exclusion in SP cells. 3BrPA also disrupted clonogenic capacity in malignant cell lines including RPMI8226, KG-1, and HepG2. Furthermore, 3BrPA restored cytotoxic effects of daunorubicin and doxorubicin on KG-1 and RPMI8226 cells, and markedly suppressed subcutaneous tumor growth in combination with doxorubicin in RPMI8226-implanted mice. These results collectively suggest that the inhibition of glycolysis is able to overcome drug resistance in ABC transporter-expressing malignant cells through the inactivation of ABC transporters and impairment of SP cells with enhanced glycolysis as well as clonogenic cells.
癌细胞最终获得耐药性主要是通过异常表达 ATP 结合盒(ABC)转运体,ATP 依赖性外排泵。由于癌细胞主要通过糖酵解产生 ATP,因此在本研究中我们探讨了抑制糖酵解对 ABC 转运体功能和恶性细胞药物敏感性的影响。3-溴丙酮酸(3BrPA)抑制糖酵解可抑制恶性细胞中 ATP 的产生,并恢复 ABC 转运体表达的 RPMI8226(ABCG2)、KG-1(ABCB1)和 HepG2 细胞(ABCB1 和 ABCG2)中柔红霉素或米托蒽醌的保留。有趣的是,尽管从 RPMI8226 细胞分离的侧群(SP)细胞表现出更高水平的糖酵解,并且涉及糖酵解途径的基因表达增加,但 3BrPA 消除了 SP 细胞中 Hoechst 33342 的排除。3BrPA 还破坏了包括 RPMI8226、KG-1 和 HepG2 在内的恶性细胞系的集落形成能力。此外,3BrPA 恢复了柔红霉素和多柔比星对 KG-1 和 RPMI8226 细胞的细胞毒性作用,并与多柔比星联合显著抑制 RPMI8226 植入小鼠的皮下肿瘤生长。这些结果共同表明,通过抑制 ABC 转运体的失活以及通过增强糖酵解和集落形成细胞破坏 SP 细胞,抑制糖酵解能够克服 ABC 转运体表达的恶性细胞中的耐药性。