Lee Jason S, Rodríguez-Luccioni Héctor L, Méndez Janet, Sood Anil K, Lpez-Berestein Gabriel, Rinaldi Carlos, Torres-Lugo Madeline
Department of Chemical Engineering, University of Massachusetts, Amherst, MA 01003, USA.
J Nanosci Nanotechnol. 2011 May;11(5):4153-7. doi: 10.1166/jnn.2011.3821.
The cytotoxic enhancement of cisplatin by magnetic fluid hyperthermia (MFH) was investigated in human colon adenocarcinoma cells (Caco-2). A nanoparticle platform based on iron oxide functionalized with carboxymethyl dextran was employed to produce heat at the nanoscale. To assess the synergistic effect of hyperthermia and the anticancer drug cis-Diamminedichloroplatinum, commonly known as cisplatin (CIS), cell viability was measured 24, 48, and 72 hours after three different combined hyperthermia and CIS exposure sequences. These included CIS incubation prior to hyperthermia or magnetic fluid hyperthermia, CIS exposure only during hyperthermia or MFH, and additional CIS incubation following hyperthermia or MFH. Additional incubation of CIS after hyperthermia treatment appears to be more effective than prior CIS incubation for both hyperthermia treatments. Viability data also indicated that MFH combined with CIS is significantly more effective than hot water hyperthermia at the same temperature. A CIS concentration an order of magnitude lower than the calculated IC50 was found to be very effective in reducing cell viability. Such dramatic differences suggest that MFH may enhance the passive transport of CIS.
在人结肠腺癌细胞(Caco-2)中研究了磁流体热疗(MFH)对顺铂细胞毒性的增强作用。采用基于羧甲基葡聚糖功能化氧化铁的纳米颗粒平台在纳米尺度产生热量。为了评估热疗与抗癌药物顺二氯二氨铂(通常称为顺铂,CIS)的协同作用,在三种不同的热疗和CIS联合暴露序列后24、48和72小时测量细胞活力。这些序列包括热疗或磁流体热疗前的CIS孵育、仅在热疗或MFH期间的CIS暴露以及热疗或MFH后的额外CIS孵育。对于两种热疗方法,热疗后额外孵育CIS似乎比热疗前孵育CIS更有效。活力数据还表明,在相同温度下,MFH与CIS联合使用比热水热疗显著更有效。发现比计算出的IC50低一个数量级的CIS浓度在降低细胞活力方面非常有效。如此显著的差异表明MFH可能增强CIS的被动转运。