Induction of stress responses by polluting agents which dis-regulate cellular homeostasis
Creators
- 1. Radiation and Environmental Science Centre, Dublin Institute of Technology, Fitzwilliam House, 30, Upr Pembroke Street, Dublin 2 (Ireland)
Description
There is growing concern both in the scientific community and among the general public about the effects of exposure to low levels of radiation and environmental chemicals. The increased incidence of cancer, reproduction disorders and allergies have been associated with ambient environmental exposure to these pollutants. The pollution burden is generally made up of a mixture of agents, occurring at concentrations of the individual compounds which are not considered harmful and which are below the action level. Individual pollutants can act through a variety of primary toxicity mechanisms. However the resulting secondary and tertiary toxicity mechanisms which affect cellular homeostasis might be more common. These resulting stress responses, including oxidative stress, have been associated with effects that include increased level of death during cell division, increased levels of mutation and increased tolerance of mutations in cell populations, increased levels of cytogenetic abnormalities and many other symptoms. These effects are linked to a persistent increase in (oxidative) stress and are particularly evident in the haematopoietic system (possibly due to the high rate self of renewal in that system). Therefore prolonged exposure to mixtures of chemicals and radiation might result in additive and synergistic stress responses which can induce long-term delayed effects, often in progeny or in cells not directly exposed to the agent/s. The existence of a common (oxidative) stress mechanism means that the effects of individual pollutants may not be considered in isolation. Rather the total pollution burden may need to be measured using a response rather than a dose based scoring or ranking system. Improved understanding of toxicity mechanisms and effects underpins improved risk assessment and identification of biomarkers. The immune system plays a pivotal role in maintaining health status, and disruption of immune functions can lead to increased susceptibility to infections, allergies and autoimmune diseases, cancer and other diseases. Prolonged exposure to various chemical classes has been associated with development of immune modulation. In most cases the mechanisms are poorly understood. In this review paper, recent evidence for effects on cells of low level, sub chronic exposure to combinations of environmental pollutants will be presented using various of in vivo and in vitro biological models and a variety of endpoints relating to cell homeostasis, chemical or radiation - induced stress and cell/organ function. (author)
Availability note (English)
Available from author(s) or Horia Hulubei National Institute of Physics and Nuclear Engineering, IFIN-HH, RO-76900 Bucharest-Magurele (RO)Additional details
Publishing Information
- Publisher
- Horia Hulubei National Institute of Physics and Nuclear Engineering
- Imprint Place
- Bucharest (Romania)
- Imprint Title
- International Workshop on Biological effects of ionizing radiation, electromagnetic fields and chemical toxic agents. Workshop Program and Abstracts
- Imprint Pagination
- 68 p.
- Journal Page Range
- p. 19
Conference
- Title
- Biological effects of ionizing radiation, electromagnetic fields and chemical toxic agents
- Dates
- 2-5 Oct 2001
- Place
- Sinaia (Romania)
INIS
- Country of Publication
- Romania
- Country of Input or Organization
- Romania
- INIS RN
- 33024465
- Subject category
- S63: RADIATION, THERMAL, AND OTHER ENVIRONMENTAL POLLUTANT EFFECTS ON LIVING ORGANISMS AND BIOLOGICAL MATERIALS;
- Resource subtype / Literary indicator
- Conference, Non-conventional Literature
- Descriptors DEI
- ANIMAL CELLS; BIOLOGICAL STRESS; CHEMICAL EFFLUENTS; HOMEOSTASIS; LOW DOSE IRRADIATION; OXIDATION; PHYSIOLOGY; POLLUTANTS
- Descriptors DEC
- CHEMICAL REACTIONS; CHEMICAL WASTES; IRRADIATION; NONRADIOACTIVE WASTES; WASTES