Enhancement of irradiation effects on cancer cells by cross-linked dextran-coated iron oxide (CLIO) nanoparticles

作者
Fu‐Kuo Huang,Wen‐Chang Chen,Sheng-Feng Lai,Chi-Jen Liu,Chengliang Wang,Changhai Wang,Hsiang‐Hsin Chen,Tzu-En Hua,Yi-Yun Cheng,Maw‐Kuen Wu,Y. Hwu,Chung‐Shi Yang,G. Margaritondo
出处
期刊:Physics in Medicine and Biology [IOP Publishing]
卷期号:55 (2): 469-482 被引量:49
标识
DOI:10.1088/0031-9155/55/2/009
摘要

We investigated iron oxide nanoparticles with two different surface modifications, dextran coating and cross-linked dextran coating, showing that their different internalization affects their capability to enhance radiation damage to cancer cells. The internalization was monitored with an ultrahigh resolution transmission x-ray microscope (TXM), indicating that the differences in the particle surface charge play an essential role and dominate the particle-cell interaction. We found that dextran-coated iron oxide nanoparticles cannot be internalized by HeLa and EMT-6 cells without being functionalized with amino groups (the cross-linked dextran coating) that modify the surface potential from -18 mV to 13.4 mV. The amount of cross-linked dextran-coated iron oxide nanoparticles uptaken by cancer cells reached its maximum, 1.33 x 10(9) per HeLa cell, when the co-culture concentration was 40 microg Fe mL(-1) or more. Standard tests indicated that these internalized nanoparticles increased the damaging effects of x-ray irradiation, whereas they are by themselves biocompatible. These results could lead to interesting therapy applications; furthermore, iron oxide also produces high contrast for magnetic resonance imaging (MRI) in the diagnosis and therapy stages.

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