Niranjan Ajay, Gobbel Glenn, Novotny Josef, Bhatnagar Jagdish, Fellows Wendy, Lunsford L Dade
Department of Neurological Surgery, University of Pittsburgh Medical Center, Pittsburgh, USA.
Department of Radiation Oncology, University of Pittsburgh Cancer Institute, Pittsburgh, USA.
J Radiosurg SBRT. 2012;1(4):257-264.
Leksell Gamma Knife (LGK) installations replace their Co-60 sources every 5-10 years corresponding to one two Co-60 half-lives. Between source replacements the dose rate gradually declines. The purpose of this study was to assess whether the decreasing dose rates associated with radioactive decay of Co-60 may affect the radiobiological response of a given dose delivered to 9L rat gliosarcoma cells.
9L rat gliosarcoma cells were irradiated using LGK U, LGK 4C, and LGK Perfexion providing three different dose rates of 0.770 Gy/ min (sources reloaded 12.0 years ago), 1.853 Gy/min (sources reloaded 5.0 years ago) and 2.937 Gy/min (sources reloaded 1.6 years ago), respectively. After irradiation of cell samples to 4.0 Gy, 8.0 Gy and 16.0 Gy using each of the LGK units, the irradiated cells were plated into petri dishes. Two weeks later cell colonies with greater than 50 cells were counted. The survival of cells was plotted as a function of dose over the range of delivered doses and fitted to a linear quadratic function of the form S = e-- , where α and β are terms fit using the Levenberg-Marquardt algorithm.
This study demonstrated no difference in tumor cell kill in the range of dose rates when using actual LGK unit with new sources or with sources decayed even for two half lives. This study focused on tumor cells. In future studies we will reassess the dose rate effect on cultured neurons to simulate response of normal healthy brain tissue to different dose rates.
Leksell伽玛刀(LGK)装置每5 - 10年更换一次钴 - 60源,这相当于钴 - 60的一到两个半衰期。在源更换期间,剂量率会逐渐下降。本研究的目的是评估与钴 - 60放射性衰变相关的剂量率下降是否会影响给予9L大鼠胶质肉瘤细胞的给定剂量的放射生物学反应。
使用LGK U、LGK 4C和LGK Perfexion对9L大鼠胶质肉瘤细胞进行照射,分别提供三种不同的剂量率,即0.770 Gy/分钟(源在12.0年前重新装填)、1.853 Gy/分钟(源在5.0年前重新装填)和2.937 Gy/分钟(源在1.6年前重新装填)。使用每个LGK装置将细胞样本照射至4.0 Gy、8.0 Gy和16.0 Gy后,将照射后的细胞接种到培养皿中。两周后,对细胞数大于50个的细胞集落进行计数。将细胞存活率绘制为所给予剂量范围内剂量的函数,并拟合为S = e--形式的线性二次函数,其中α和β是使用Levenberg - Marquardt算法拟合的参数。
本研究表明,使用带有新源或甚至已衰变两个半衰期的源的实际LGK装置时,在剂量率范围内肿瘤细胞杀伤没有差异。本研究聚焦于肿瘤细胞。在未来的研究中,我们将重新评估剂量率对培养神经元的影响,以模拟正常健康脑组织对不同剂量率的反应。