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一种体外研究适形调强放射治疗的放射生物学效应的研究。

An in vitro study of the radiobiological effects of flattening filter free radiotherapy treatments.

机构信息

Radiotherapy Physics, Northern Ireland Cancer Centre, Belfast Health and Social Care Trust, BT9 7AB, UK.

出版信息

Phys Med Biol. 2013 Mar 7;58(5):N83-94. doi: 10.1088/0031-9155/58/5/N83. Epub 2013 Feb 11.

DOI:10.1088/0031-9155/58/5/N83
PMID:23399781
Abstract

Flattening filter free (FFF) linear accelerators allow for an increase in instantaneous dose-rate of the x-ray pulses by a factor of 2-6 over the conventional flattened output. As a result, radiobiological investigations are being carried out to determine the effect of these higher dose-rates on cell response. The studies reported thus far have presented conflicting results, highlighting the need for further investigation. To determine the radiobiological impact of the increased dose-rates from FFF exposures a Varian Truebeam medical linear accelerator was used to irradiate two human cancer cell lines in vitro, DU-145 prostate and H460 non-small cell lung, with both flattened and FFF 6 MV beams. The fluence profile of the FFF beam was modified using a custom-designed Nylon compensator to produce a similar dose profile to the flattened beam (6X) at the cell surface but at a higher instantaneous dose-rate. For both cell lines there appeared to be no significant change in cell survival. Curve fitting coefficients for DU145 cells irradiated with constant average dose-rates were 6X: α = 0.09 ± 0.03, β = 0.03 ± 0.01 and 6FFF: α = 0.14 ± 0.13, β = 0.03 ± 0.02 with a significance of p = 0.75. For H460 cells irradiated with the same instantaneous dose-rate but different average dose-rate the fit coefficients were 6FFF (low dose-rate): α = 0.21 ± 0.11, 0.07 ± 0.02 and 6FFF (high dose-rate): α = 0.21 ± 0.16, 0.07 ± 0.03, with p = 0.79. The results indicate that collective damage behaviour does not occur at the instantaneous dose-rates investigated here and that the use of either modality should result in the same clinical outcome, however this will require further validation in vivo.

摘要

在常规输出平坦化的基础上,使用无滤过层(FFF)线性加速器可以将 X 射线脉冲的瞬时剂量率提高 2-6 倍。因此,正在进行放射生物学研究,以确定这些更高剂量率对细胞反应的影响。迄今为止,已报道的研究结果相互矛盾,这突出表明需要进一步调查。为了确定来自 FFF 照射的增加剂量率的放射生物学影响,使用瓦里安 Truebeam 医用线性加速器在体外照射两种人癌细胞系,DU-145 前列腺和 H460 非小细胞肺,分别使用平坦化和 FFF 6 MV 射线。使用定制设计的尼龙补偿器修改 FFF 射线的通量分布,以在细胞表面产生类似于平坦化射线(6X)的剂量分布,但瞬时剂量率更高。对于这两种细胞系,细胞存活率似乎没有明显变化。以恒定平均剂量率照射的 DU145 细胞的曲线拟合系数为 6X:α=0.09±0.03,β=0.03±0.01 和 6FFF:α=0.14±0.13,β=0.03±0.02,p=0.75。对于以相同瞬时剂量率但不同平均剂量率照射的 H460 细胞,拟合系数为 6FFF(低剂量率):α=0.21±0.11,0.07±0.02 和 6FFF(高剂量率):α=0.21±0.16,0.07±0.03,p=0.79。结果表明,在本研究中调查的瞬时剂量率下不会发生集体损伤行为,并且使用这两种方式都应产生相同的临床结果,但这需要进一步在体内验证。

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