Toxicological Principles of Metal Carcinogenesis with Special Emphasis on Cadmium
- 1 January 1992
- journal article
- review article
- Published by Taylor & Francis in Critical Reviews in Toxicology
- Vol. 22 (3-4) , 175-201
- https://doi.org/10.3109/10408449209145323
Abstract
Metals are an important and emerging class of carcinogens. At least three metals, specifically nickel, chromium, and arsenic, are confirmed human carcinogens, and several more are suspected to have carcinogenic potential in man. Considering that the list of known human carcinogens of any type is very small, it becomes clear that metals make up a substantial portion of the list. Furthermore, many metals are very potent carcinogens in laboratory animals. Despite this, relatively little attention has been given to the topic of metal carcinogenesis. The reasons for this relative lack of attention are not clear but perhaps are fostered by a perception that, because metals are the simplest of molecules, their mechanism of action must also be simple. This could not be farther from the truth and, although no clear mechanisms have emerged in the area of metal carcinogenesis, it has become apparent that they are anything but simple. Metal carcinogens possess several unique characteristics including a remarkable target site specificity. Detection of the mechanism, or mechanisms, of metal carcinogenesis has, however, proven elusive, in part because of a wide diversity of metallic carcinogenic agents and the intricate nature of metal interactions in biologic systems. The following review explores this broad topic, with special emphasis on toxicological principles including dose-response relationships and potential mechanisms, using cadmium as an example.Keywords
This publication has 85 references indexed in Scilit:
- Cadmium/zinc-metallothionein induces DNA strand breaks in vitroArchives of Toxicology, 1991
- Carcinogenicity of cadmium in animals: What is the significance for man?Toxicological & Environmental Chemistry, 1990
- Carcinogenicity and toxicity of four cadmium compounds inhaled by ratsToxicological & Environmental Chemistry, 1990
- Analysis of metal-induced mutations altering the expression or structure of a retrovial gene in a mammalian cell lineMutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 1988
- Mixed Sertoli-Leydig Cell Tumor and Rete Testis Adenocarcinoma in Rats Treated with CdCl2Veterinary Pathology, 1988
- Glutathione and metallothioneins as cellular defense against cadmium toxicity in cultured Chinese hamster cellsChemico-Biological Interactions, 1988
- Apparent synergy in lung carcinogenesis: interactions between N-nitrosoheptamethyleneimine, particulate cadmium and crocidolite asbestos fibres in ratsCarcinogenesis: Integrative Cancer Research, 1986
- Effect of dietary zinc deficiency on the accumulation of cadmium and metallothionein in selected tissues of the ratJournal of Toxicology and Environmental Health, 1986
- Occupational Cancer: A Hazard for EpidemiologistsInternational Journal of Epidemiology, 1985
- EARLY ACTIONS OF CADMIUM IN THE RAT AND DOMESTIC FOWL TESTISReproduction, 1970