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'Broadbeam' irradiation of mammalian cells using a vertical microbeam facility

机译:使用垂直微束设备对哺乳动物细胞进行“宽束”照射

摘要

A "broadbeam" facility is demonstrated for the vertical microbeam at Surrey's Ion Beam Centre, validating the new technique used by Barazzuol et al. (Radiat Res 177:651-662, 2012). Here, droplets with a diameter of about 4 mm of 15,000 mammalian cells in suspension were pipetted onto defined locations on a 42-mm-diameter cell dish with each droplet individually irradiated in "broadbeam" mode with 2 MeV protons and 4 MeV alpha particles and assayed for clonogenicity. This method enables multiple experimental data points to be rapidly collected from the same cell dish. Initially, the Surrey vertical beamline was designed for the targeted irradiation of single cells with single counted ions. Here, the benefits of both targeted single-cell and broadbeam irradiations being available at the same facility are discussed: in particular, high-throughput cell irradiation experiments can be conducted on the same system as time-intensive focused-beam experiments with the added benefits of fluorescent microscopy, cell recognition and time-lapse capabilities. The limitations of the system based on a 2 MV tandem accelerator are also discussed, including the uncertainties associated with particle Poisson counting statistics, spread of linear energy transfer in the nucleus and a timed dose delivery. These uncertainties are calculated with Monte Carlo methods. An analysis of how this uncertainty affects relative biological effect measurements is made and discussed. © 2013 Springer-Verlag Berlin Heidelberg.
机译:在萨里的离子束中心展示了一种用于垂直微束的“宽束”设备,验证了Barazzuol等人使用的新技术。 (Radiat Res 177:651-662,2012)。在这里,将直径约4毫米的15,000个哺乳动物细胞悬浮液的小滴移液到直径为42毫米的细胞皿上的指定位置,每个小滴分别以“宽束”模式用2 MeV质子和4 MeVα粒子辐照,并分析克隆形成性。这种方法可以从同一细胞培养皿中快速收集多个实验数据点。最初,萨里​​(Surrey)垂直束线设计用于以单计数离子对单细胞进行定向照射。在此,讨论了在同一设施中可获得的靶向单细胞和宽束辐照的好处:特别是,高通量细胞辐照实验可以与时间密集型聚焦束实验在同一系统上进行,具有附加的好处荧光显微镜,细胞识别和延时功能。还讨论了基于2 MV串联加速器的系统的局限性,包括与粒子泊松计数统计相关的不确定性,原子核中线性能量传递的扩展以及定时剂量输送。这些不确定性是用蒙特卡洛方法计算的。进行并讨论了这种不确定性如何影响相对生物学效应的测量。 ©2013 Springer-Verlag Berlin Heidelberg。

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