Published May 1981 | Version v1
Journal article

Redox processes in radiation biology and cancer

  • 1. Whiteshell Nuclear Research Establishment, Pinawa, Manitoba

Description

Free-radical intermediates, particularly the activated oxygen species OH, O-2, and 1O2, are implicated in many types of radiation damage to biological systems. In addition, these same species may be formed, either directly or indirectly through biochemical redox reactions, in both essential and aberrant metabolic processes. Cell survival and adaptation to an environment containing ionizing radiation and other physical and chemical carcinogens ultimately depend upon the cell's ability to maintain optimal function in response to free-radical damage at the chemical level. Many of these feedback control mechanisms are redox controlled. Radiation chemical techniques using selective radical scavengers, such as product analysis and pulse radiolysis, enable us to generate, observe, and characterize individually the nature and reactivity of potentially damaging free radicals. From an analysis of the chemical kinetics of free-radical involvement in biological damage, redox mechanisms are proposed to describe the early processes of radiation damage, redox mechanisms are proposed to describe the early processes of radiation damage, its protection and sensitization, and the role of free radicals in radiation and chemical carcinogenesis

Additional details

Publishing Information

Journal Title
Radiat. Res.
Journal Volume
86
Journal Issue
2
Series
Radiat. Res.
Journal Page Range
196-211
ISSN
0033-7587

Conference

Title
28 annual Radiation Research Society meeting.
Dates
1 - 5 Jun 1980.
Place
New Orleans, LA, USA.