Gadolinium neutron capture in glioblastoma multiforme cells

被引:15
|
作者
Yasui, Linda S. [1 ]
Andorf, Christine [2 ]
Schneider, Linda [2 ]
Kroc, Thomas
Lennox, Arlene
Saroja, K. R. [2 ]
机构
[1] No Illinois Univ, Dept Biol Sci, De Kalb, IL 60115 USA
[2] Fermilab Natl Accelerator Lab, NIU Inst Neutron Therapy, Batavia, IL USA
关键词
Auger emitters; Glioblastoma cells; Gd neutron capture;
D O I
10.1080/09553000802538092
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Purpose: A proof of principle for cell killing by Gadolinium (Gd) neutron capture in Magnevist (R) preloaded Glioblastoma multiforme (GBM) cells is provided. Materials and methods: U87cells were pre-loaded with 5 mg/ml Magnevist (R) (Gd containing compound) and irradiated using an enhanced neutron beam developed at NIU Institute for Neutron Therapy at Fermilab. These experiments were possible because of an enhanced fast neutron therapy assembly designed to use the fast neutron beam at Fermilab to deliver a neutron beam containing a greater fraction of thermal neutrons and because of the development of improved calculations for dose for the enhanced neutron beam. Clonogenic response was determined. Results: U87 cell survival after gamma irradiation, fast neutron irradiation and irradiation with the enhanced neutron beam in the presence or absence of Magnevist (R) were determined. Conclusions: U87 cells were the least sensitive to gamma radiation, and increasingly sensitive to fast neutron irradiation, irradiation with the enhanced neutron beam and finally a significant enhancement in cell killing was observed for U87 cells preloaded with Magnevist (R). The sensitivity of U87 cells pre-loaded with Magnevist (R) and then irradiated with the enhanced neutron beam can at least in part be attributed to the Auger electrons emitted by the neutron capture event.
引用
收藏
页码:1130 / 1139
页数:10
相关论文
共 50 条
  • [21] Biodistribution of p-boronophenylalanine in patients with glioblastoma multiforme for use in boron neutron capture therapy
    Elowitz, EH
    Bergland, RM
    Coderre, JA
    Joel, DD
    Chadha, M
    Chanana, AD
    NEUROSURGERY, 1998, 42 (03) : 463 - 468
  • [22] Neutron capture therapy for glioblastoma
    Yamamoto, Tetsuya
    Nakai, Kei
    Matsumura, Akira
    NEUROLOGICAL SURGERY, 2008, 36 (04): : 293 - 302
  • [23] Boron and gadolinium neutron capture therapy
    Salt, C
    Lennox, AJ
    Takagaki, M
    Maguire, JA
    Hosmane, NS
    RUSSIAN CHEMICAL BULLETIN, 2004, 53 (09) : 1871 - 1888
  • [24] On the effect of gadolinium in neutron capture therapy
    Alfassi, ZB
    Shani, G
    Laster, BH
    JOURNAL OF RADIOANALYTICAL AND NUCLEAR CHEMISTRY, 1999, 240 (02) : 687 - 687
  • [25] Radiobiology of gadolinium neutron capture therapy
    Stalpers, L
    Stecher-Rasmussen, F
    Kok, T
    Boes, J
    van Vliet-Vroegindeweij, C
    Slotman, B
    Haveman, J
    RESEARCH AND DEVELOPMENT IN NEUTRON CAPTURE THERAPY, 2002, : 825 - 830
  • [26] On the effect of gadolinium in neutron capture therapy
    Z. B. Alfassi
    G. Shani
    B. H. Laster
    Journal of Radioanalytical and Nuclear Chemistry, 1999, 240 : 687 - 687
  • [27] Growth delay of human glioblastoma multiforme spheroids after thermal neutron irradiation with gadolinium (GDNCT) or boron (BNCT)
    Ciftci, R
    Hofstra, JJ
    Stecher-Rasmussen, F
    Franken, K
    Kuperus, R
    Huiskamp, R
    Haveman, J
    Stalpers, L
    NEURO-ONCOLOGY, 2005, 7 (03) : 398 - 398
  • [28] GADOLINIUM NEUTRON-CAPTURE THERAPY
    MILLER, GA
    HERTEL, NE
    WEHRING, BW
    HORTON, JL
    NUCLEAR TECHNOLOGY, 1993, 103 (03) : 320 - 331
  • [29] Boron and gadolinium neutron capture therapy
    C. Salt
    A. J. Lennox
    M. Takagaki
    J. A. Maguire
    N. S. Hosmane
    Russian Chemical Bulletin, 2004, 53 : 1871 - 1888
  • [30] Glioblastoma Multiforme Stem Cells
    Dimov, Irena
    Tasic-Dimov, Desanka
    Conic, Irena
    Stefanovic, Vladisav
    THESCIENTIFICWORLDJOURNAL, 2011, 11 : 930 - 958