Published May 1988 | Version v1
Journal article

Circadian rhythms in the incidence of apoptotic cells and number of clonogenic cells in intestinal crypts after radiation using normal and reversed light conditions

  • 1. Tokyo Univ. (Japan). Faculty of Science
  • 2. Christie Hospital and Holt Radium Inst., Manchester (UK). Paterson Labs.

Description

Variations in the number of radiation-induced morphologically dead or dying cells (apoptotic cells) in the crypts in the small intestine of the mouse have been studied throughout a 24-h period under a normal light regimen. A clear circadian rhythm was displayed in the apoptotic incidence 3 or 6 h after irradiation for each gamma-ray dose studied (range 0.14-9.0 Gy). The most prominent circadian rhythm was obtained after 0.5 Gy. Peak time of day for inducing apoptosis was 06.00-09.00 h, and the trough occurred at 18.00-21.00 h. Some mice were also transferred to a reversed light cycle, and irradiated on different days after transfer. Apoptosis induced by 0.5 Gy or 9.0 Gy, or number of surviving crypts (microcolonies) after 11.0 Gy or 13.0 Gy was examined. The transition point for reversal of circadian rhythm in apoptosis (after 0.5 Gy) occurred 7 days after transfer and the rhythm was reversed by 14 days. The rhythm for crypt survival (i.e. for clonogenic cell radiosensitivity) was disturbed on 1 day and transition point for reversal occurred 3 days after transfer. The rhythm became reversed by 7 days. (author)

Additional details

Publishing Information

Journal Title
Int. J. Radiat. Biol. Relat. Stud. Phys., Chem. Med.
Journal Volume
53
Journal Issue
5
Series
Int. J. Radiat. Biol. Relat. Stud. Phys., Chem. Med.
Journal Page Range
717-727
ISSN
0020-7616
CODEN
IJRBA