Dose rate effect on micronuclei induction in human blood lymphocytes exposed to single pulse and multiple pulses of electrons

被引:29
作者
Acharya, Santhosh [2 ]
Bhat, N. N. [3 ]
Joseph, Praveen [1 ]
Sanjeev, Ganesh [1 ]
Sreedevi, B. [3 ]
Narayana, Y. [1 ]
机构
[1] Mangalore Univ, Dept Studies Phys, Microtron Ctr, Mangalagangothri 574199, Karnataka, India
[2] Alvas Inst Engn & Technol, Dept Engn Phys, Moodbidri 574225, India
[3] Bhabha Atom Res Ctr, Radiol Phys & Advisory Div, Bombay 400085, Maharashtra, India
关键词
MAMMALIAN-CELLS; IN-VITRO; X-RAYS; RADIATION; SURVIVAL; DAMAGE; IRRADIATION; REPAIR; RADIOSENSITIVITY; RADIOLYSIS;
D O I
10.1007/s00411-011-0353-1
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The effects of single pulses and multiple pulses of 7 MV electrons on micronuclei (MN) induction in cytokinesis-blocked human peripheral blood lymphocytes (PBLs) were investigated over a wide range of dose rates per pulse (instantaneous dose rate). PBLs were exposed to graded doses of 2, 3, 4, 6, and 8 Gy of single electron pulses of varying pulse widths at different dose rates per pulse, ranging from 1 x 10(6) Gy s(-1) to 3.2 x 10(8) Gy s(-1). Different dose rates per pulse were achieved by changing the dose per electron pulse by adjusting the beam current and pulse width. MN yields per unit absorbed dose after irradiation with single electron pulses were compared with those of multiple pulses of electrons. A significant decrease in the MN yield with increasing dose rates per pulse was observed, when dose was delivered by a single electron pulse. However, no reduction in the MN yield was observed when dose was delivered by multiple pulses of electrons. The decrease in the yield at high dose rates per pulse suggests possible radical recombination, which leads to decreased biological damage. Cellular response to the presence of very large numbers of chromosomal breaks may also alter the damage.
引用
收藏
页码:253 / 263
页数:11
相关论文
共 51 条
[1]  
Alpen E.E., 1998, Radiation Biophysics, Vsecond
[2]  
ALPER T, 1979, CELLULAR BIOL, P97
[3]   CHANGED DOSE-RESPONSE IN SACCHAROMYCES AT DOSE-RATES ABOVE 107 RAD PER SEC [J].
AVERBECK, D ;
EBERT, M .
INTERNATIONAL JOURNAL OF RADIATION BIOLOGY, 1973, 23 (02) :151-156
[4]  
BAUCHINGER M, 1979, INT J RADIAT BIOL, V35, P229, DOI 10.1080/09553007914550261
[5]   SURVIVAL OF MAMMALIAN CELLS EXPOSED TO X RAYS AT ULTRA-HIGH DOSE-RATES [J].
BERRY, RJ ;
HALL, EJ ;
FORSTER, DW ;
STORR, TH ;
GOODMAN, MJ .
BRITISH JOURNAL OF RADIOLOGY, 1969, 42 (494) :102-&
[6]   The radiobiological effect of intra-fraction dose-rate modulation in intensity modulated radiation therapy (IMRT) [J].
Bewes, J. M. ;
Suchowerska, N. ;
Jackson, M. ;
Zhang, M. ;
McKenzie, D. R. .
PHYSICS IN MEDICINE AND BIOLOGY, 2008, 53 (13) :3567-3578
[7]  
Bhat NN, 2003, RADIAT PROT DOSIM, V106, P45, DOI 10.1093/oxfordjournals.rpd.a006333
[8]  
BHAT NN, 2008, INDIAN J RAD RES, V5, P103
[9]   PHYSICAL AND BIOLOGIC ASPECTS ON THE OPTIMUM CHOICE OF RADIATION MODALITY [J].
BRAHME, A .
ACTA RADIOLOGICA ONCOLOGY, 1982, 21 (06) :469-479
[10]   The linear-quadratic model and most other common radiobiological models result in similar predictions of time-dose relationships [J].
Brenner, DJ ;
Hlatky, LR ;
Hahnfeldt, PJ ;
Huang, Y ;
Sachs, RK .
RADIATION RESEARCH, 1998, 150 (01) :83-91