TU-C-BRB-08: Preliminary Study of DNA Damage and Repair of Tumor Cells under Microbeam Radiation Therapy Using an Integrated Carbon Nanotube-Based Field Emission and Micropallet Array System

2012 ◽  
Vol 39 (6Part23) ◽  
pp. 3900-3900
Author(s):  
S Chang ◽  
J Fiordalisi ◽  
S Wang ◽  
W Xu ◽  
J Zhang ◽  
...  
2009 ◽  
Vol 36 (6Part25) ◽  
pp. 2775-2775
Author(s):  
J Zhang ◽  
D Bordelon ◽  
J Snider ◽  
E Schreiber ◽  
A Cox ◽  
...  

2014 ◽  
Vol 41 (6Part1) ◽  
pp. 061710 ◽  
Author(s):  
Mike Hadsell ◽  
Guohua Cao ◽  
Jian Zhang ◽  
Laurel Burk ◽  
Torsten Schreiber ◽  
...  

2011 ◽  
Vol 18 (4) ◽  
pp. 630-636 ◽  
Author(s):  
Carl N. Sprung ◽  
Marian Cholewa ◽  
Noriko Usami ◽  
Katsumi Kobayashi ◽  
Jeffrey C. Crosbie

A novel synchrotron-based approach, known as microbeam radiation therapy (MRT), currently shows considerable promise in increased tumour control and reduced normal tissue damage compared with conventional radiotherapy. Different microbeam widths and separations were investigated using a controlled cell culture system and monoenergetic (5.35 keV) synchrotron X-rays in order to gain further insight into the underlying cellular response to MRT. DNA damage and repair was measured using fluorescent antibodies against phosphorylated histone H2AX, which also allowed us to verify the exact location of the microbeam path. Beam dimensions that reproduced promising MRT strategies were used to identify useful methods to study the underpinnings of MRT. These studies include the investigation of different spatial configurations on bystander effects. γH2AX foci number were robustly induced in directly hit cells and considerable DNA double-strand break repair occurred by 12 h post-10 Gy irradiation; however, many cells had some γH2AX foci at the 12 h time point. γH2AX foci at later time points did not directly correspond with the targeted regions suggesting cell movement or bystander effects as a potential mechanism for MRT effectiveness. Partial irradiation of single nuclei was also investigated and in most cases γH2AX foci were not observed outside the field of irradiation within 1 h after irradiation indicating very little chromatin movement in this time frame. These studies contribute to the understanding of the fundamental radiation biology relating to the MRT response, a potential new therapy for cancer patients.


2011 ◽  
Vol 38 (6Part35) ◽  
pp. 3862-3862
Author(s):  
M Hadsell ◽  
J Zhang ◽  
G Cao ◽  
E Schreiber ◽  
J Lu ◽  
...  

2013 ◽  
Vol 103 (18) ◽  
pp. 183505 ◽  
Author(s):  
M. Hadsell ◽  
J. Zhang ◽  
P. Laganis ◽  
F. Sprenger ◽  
J. Shan ◽  
...  

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