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Oncogenic transformation through the cell cycle and the LET dependent inverse dose rate effect.

作者信息

Geard C R, Miller R C, Brenner D J, Hall E J

机构信息

Center for Radiological Research, Columbia University, New York 10032, USA.

出版信息

Radiat Prot Dosimetry. 1994;52(1-4):367-71.

Abstract

Synchronised populations of mouse C3H/10T-1/2 cells were obtained by a stringent mitotic dislodgment procedure. Mitotic cells rapidly attach and progress sequentially through the cell cycle. Irradiation (3 Gy of X rays) was carried out at intervals from 0 to 18 h after initiating cell cycle progression of the mitotic cells. Oncogenic transformation was enhanced 10-fold over cells irradiated soon after replating (G1 and S phases) for cells in a near 2 h period corresponding to cells in G2 phase but not in mitosis. The cell surviving fraction had a 2-1/2-fold variation with resistant peaks corresponding to the late G1 and late S phases. These findings provide experimental support for the hypothesis initiated by Rossi and Kellerer and developed by Brenner and Hall to explain the LET dependent inverse dose rate effect for oncogenic transformation.

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