Published 1979 | Version v1
Book

Induction of early differentiation as a means of cell sterilization

  • 1. Kernforschungsanlage Juelich G.m.b.H. (Germany, F.R.). Inst. fuer Medizin

Description

Investigations in plants suggest that cytoplasmic growth during mitotic delay induces an early attainment of terminal differentiation and cessation of mitotic activity. In mammals a direct demonstration of these processes is difficult. Plants and mammals show, however, a common phenomenon: Polyploidy does not usually reduce radiosensitivity as drastically as predicted by genetical considerations and certain experimental results. In root meristems of barley it is shown that cytoplasmic growth during mitotic delay increases the amount of cytoplasma per nuclear genome to approximately the same levels in tetraploid as in diploid cells. This results in the same loss, for both ploidy levels, of meristematic cells due to early differentiation. Apparently, under usual conditions, polyploidy is unable to significantly reduce radiosensitivity because the induction of differentiation processes is more important to radiation damage than the direct effect of genetic damage. Since the same basic principles also occur in mammals, it is suggested that early differentiation, and thereby cell sterilization, are induced in mammalian cells by the same mechanism as in plants. (Auth.)

Additional details

Publishing Information

Publisher
Elsevier Scientific.
Imprint Place
Amsterdam, Netherlands
ISBN
0-444-41821-0
Imprint Title
Radiation biology and chemistry
Journal Volume
6
Series
Studies in physical and theoretical chemistry.
Journal Page Range
p. 217-225.

Conference

Title
Winter meeting of the Association of Radiation Research.
Dates
3 - 5 Jan 1979.
Place
Connah's Quay, Wales, UK.

Optional Information

Notes
Imprint:Includes author and subject index.