A gold nanoparticle system for the enhancement of radiotherapy and simultaneous monitoring of reactive-oxygen-species formation

被引:46
作者
Choi, Jihye [1 ,2 ]
Jung, Kyung Oh [1 ]
Graves, Edward E. [1 ]
Pratx, Guillem [1 ]
机构
[1] Stanford Univ, Dept Radiat Oncol, Sch Med, Stanford, CA 94305 USA
[2] Yonsei Univ, Coll Med, Severance Biomed Sci Inst, Seoul 03722, South Korea
基金
新加坡国家研究基金会;
关键词
radiation therapy; gold nanoparticles; reactive oxygen species; fluorescence imaging; RADIATION-THERAPY; RADIOSENSITIZATION; CANCER; CELLS; DNA;
D O I
10.1088/1361-6528/aae272
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Gold nanoparticles (AuNPs) are known to sensitize cancer cells to radiation therapy (RT) by increasing the deposition of ionizing energy in their immediate vicinity. However, this process of dose enhancement is challenging to monitor because it is heterogeneous at the sub-cellular scale. Furthermore, radiation damage is primarily mediated by reactive oxygen species (ROS) that are produced following water radiolysis. Here, radiation-responsive PEGylated gold nanoparticles (RPAuNPs) were synthesized for the enhanced generation and concurrent detection of ROS in cancer cells and tumors. PEGylated gold particles (20 nm diameter) were functionalized with dihydrorhodamine 123 (DHR-123), a known ROS sensor, to monitor ROS generation in their immediate vicinity. These NPs were able to effectively radiosensitize cells, as measured by increased cell apoptosis following RT. Furthermore, the fluorescence of these RPAuNPs was 7-fold higher after 6 Gy RT due to the local production of ROS near the surface of the NP. Finally, multispectral fluorescence imaging was used to monitor NP-induced ROS in vivo, following conformal RT, in a xenograft model of breast cancer. This theranostic NP system provides a novel approach for monitoring the nanoscale enhancement of RT by high-Z metal NPs.
引用
收藏
页数:8
相关论文
共 24 条
[1]   Radiation oncology in the era of precision medicine [J].
Baumann, Michael ;
Krause, Mechthild ;
Overgaard, Jens ;
Debus, Juergen ;
Bentzen, Soren M. ;
Daartz, Juliane ;
Richter, Christian ;
Zips, Daniel ;
Bortfeld, Thomas .
NATURE REVIEWS CANCER, 2016, 16 (04) :234-249
[2]  
Berger M.J., 2010, 873597 NBSIR, P87, DOI [10.18434/T48G6X, DOI 10.18434/T48G6X]
[3]   Simple and Rapid High-Yield Synthesis and Size Sorting of Multibranched Hollow Gold Nanoparticles with Highly Tunable NIR Plasmon Resonances [J].
Blanch, Adam J. ;
Doeblinger, Markus ;
Rodriguez-Fernandez, Jessica .
SMALL, 2015, 11 (35) :4550-4559
[4]   Physical basis and biological mechanisms of gold nanoparticle radiosensitization [J].
Butterworth, Karl T. ;
McMahon, Stephen J. ;
Currell, Fred J. ;
Prise, Kevin M. .
NANOSCALE, 2012, 4 (16) :4830-4838
[5]   Study of the Optical Properties of Functionalized Gold Nanoparticles in Different Tissues and Their Correlation with the Temperature Increase [J].
Carrillo-Cazares, A. ;
Jimenez-Mancilla, N. P. ;
Luna-Gutierrez, M. A. ;
Isaac-Olive, K. ;
Camacho-Lopez, M. A. .
JOURNAL OF NANOMATERIALS, 2017, 2017
[6]   Nanoscale energy deposition by x-ray absorbing nanostructures [J].
Carter, Joshua D. ;
Cheng, Neal N. ;
Qu, Yongquan ;
Suarez, George D. ;
Guo, Ting .
JOURNAL OF PHYSICAL CHEMISTRY B, 2007, 111 (40) :11622-11625
[7]   Synergistically Enhancing the Therapeutic Effect of Radiation Therapy with Radiation Activatable and Reactive Oxygen Species-Releasing Nanostructures [J].
Cheng, Kai ;
Sano, Michael ;
Jenkins, Cesare H. ;
Zhang, Guanglei ;
Vernekohl, Don ;
Zhao, Wei ;
Wei, Chenxi ;
Zhang, Yan ;
Zhang, Zhe ;
Liu, Yijin ;
Cheng, Zhen ;
Xing, Lei .
ACS NANO, 2018, 12 (05) :4946-4958
[8]   A mechanistic study of gold nanoparticle radiosensitisation using targeted microbeam irradiation [J].
Ghita, Mihaela ;
McMahon, Stephen J. ;
Taggart, Laura E. ;
Butterworth, Karl T. ;
Schettino, Giuseppe ;
Prise, Kevin M. .
SCIENTIFIC REPORTS, 2017, 7
[9]   The use of gold nanoparticles to enhance radiotherapy in mice [J].
Hainfeld, JF ;
Slatkin, DN ;
Smilowitz, HM .
PHYSICS IN MEDICINE AND BIOLOGY, 2004, 49 (18) :N309-N315
[10]   Gold nanoparticles as novel agents for cancer therapy [J].
Jain, S. ;
Hirst, D. G. ;
O'Sullivan, J. M. .
BRITISH JOURNAL OF RADIOLOGY, 2012, 85 (1010) :101-113