Vinca Institute of Nuclear Sciences, Belgrade, Serbia.
Int J Radiat Biol. 2010 Sep;86(9):742-51. doi: 10.3109/09553002.2010.481322.
To analyse changes of cell inactivation and proliferation under therapeutic irradiation conditions along the proton spread out Bragg peak (SOBP) with particular emphasis on its distal declining edge.
HTB140 cells were irradiated at four positions: plateau, middle, distal end and distal declining edge of the 62 MeV proton SOBP. Doses ranged from 2-16 Gy. They were normalised in the middle of SOBP and delivered following the axial physical dose profile. Survival, proliferation and cell cycle were assessed seven days after irradiation.
Moving from proximal to distal irradiation position surviving fractions at 2 Gy (SF2) decreased from 0.88-0.59. Increased radiosensitivity of the cells was noticed for the doses below 4 Gy, resulting in two gradients of cell inactivation, stronger for lower and weaker for higher doses. Relative biological effectiveness (RBE) increased from 1.68-2.84 at the distal end of SOBP. A further rise of RBE reaching 7.14 was at its distal declining edge. Following the axial physical dose profile of SOBP the strongest inactivation was attained at its distal end and was comparable to that at its declining edge.
Survival data confirmed very high radioresistance of HTB140 cells. An effect similar to low-dose hyper radiosensitivity (HRS) was observed for order of magnitude larger doses. Better response of cells to protons than to gamma-rays was illustrated by rather high RBE. Strong killing ability at the SOBP distal declining edge was the consequence of increasing proton linear energy transfer.
分析在治疗性辐照条件下,细胞失活和增殖随质子扩展布拉格峰(SOBP)的变化,特别强调其远端下降边缘。
HTB140 细胞在 SOBP 的四个位置(平台、中间、远端和远端下降边缘)进行辐照。剂量范围从 2-16 Gy。它们在 SOBP 的中间归一化,并根据轴向物理剂量分布进行输送。照射后七天评估存活、增殖和细胞周期。
从近端到远端照射位置,2 Gy 时的存活分数(SF2)从 0.88 降至 0.59。在低于 4 Gy 的剂量下,细胞的放射敏感性增加,导致两种细胞失活梯度,低剂量的梯度更强,高剂量的梯度较弱。相对生物效应(RBE)在 SOBP 的远端从 1.68 增加到 2.84。在 SOBP 的远端下降边缘,RBE 进一步上升至 7.14。根据 SOBP 的轴向物理剂量分布,在其远端达到最强的失活,与在其下降边缘相当。
存活数据证实 HTB140 细胞具有非常高的放射抗性。对于数量级更大的剂量,观察到类似于低剂量超放射敏感性(HRS)的效应。RBE 较高表明细胞对质子的反应优于对伽马射线的反应。在 SOBP 远端下降边缘具有强大的杀伤能力是质子线性能量传递增加的结果。