A proliferation-dependent bystander effect in primary porcine and human urothelial explants in response to targeted irradiation

被引:84
作者
Belyakov, OV
Folkard, M
Mothersill, C
Prise, KM
Michael, BD
机构
[1] Mt Vernon Hosp, Gray Canc Inst, Northwood HA6 2JR, Middx, England
[2] Dublin Inst Technol, Radiat & Environm Sci Ctr, Dublin 8, Ireland
关键词
bystander effect; microbeam; urothelium; explant; proliferation;
D O I
10.1038/sj.bjc.6600804
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The aim of this study was to test whether radiation-induced bystander effects are involved in the response of multicellular systems to targeted irradiation. A primary explant technique was used that reconstructed the in vivo microarchitecture of normal urothelium with proliferating and differentiated cells present. Sections of human and porcine ureter were cultured as explants and irradiated on day 7 when the urothelial outgrowth formed a halo around the tissue fragment, The Gray Cancer Institute charge particle microbeam facility allowed the irradiation of individual cells within the explant outgrowth with a predetermined exact number of He-3(2+) ions (which have very similar biological effectiveness to a-particles). A total of 10 individual cell nuclei were irradiated with 10 He-3(2+) ions either on the periphery, where proliferating cells are located, or at the centre of the explant outgrowth, which consisted of terminally differentiated cells, Samples were fixed 3 days after irradiation, stained and scored. The fraction of apoptotic and micronucleated cells was measured and a significant bystander-induced damage was observed. Approximately 2000-6000 cells could be damaged by the irradiation of a few cells initially, suggesting a cascade mechanism of cell damage induction. However, the fraction of micronucleated and apoptotic cells did not exceed 1-2% of the total number of the cells within the explant outgrowth. It is concluded that the bystander-induced damage depends on the proliferation status of the cells and can be observed in an in vitro explant model. (C) 2003 Cancer Research UK.
引用
收藏
页码:767 / 774
页数:8
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