Literature DB >> 21945723

Mechanisms of cadmium induced genomic instability.

Metka Filipič1.   

Abstract

Cadmium is an ubiquitous environmental contaminant that represents hazard to humans and wildlife. It is found in the air, soil and water and, due to its extremely long half-life, accumulates in plants and animals. The main source of cadmium exposure for non-smoking human population is food. Cadmium is primarily toxic to the kidney, but has been also classified as carcinogenic to humans by several regulatory agencies. Current evidence suggests that exposure to cadmium induces genomic instability through complex and multifactorial mechanisms. Cadmium dose not induce direct DNA damage, however it induces increase in reactive oxygen species (ROS) formation, which in turn induce DNA damage and can also interfere with cell signalling. More important seems to be cadmium interaction with DNA repair mechanisms, cell cycle checkpoints and apoptosis as well as with epigenetic mechanisms of gene expression control. Cadmium mediated inhibition of DNA repair mechanisms and apoptosis leads to accumulation of cells with unrepaired DNA damage, which in turn increases the mutation rate and thus genomic instability. This increases the probability of developing not only cancer but also other diseases associated with genomic instability. In the in vitro experiments cadmium induced effects leading to genomic instability have been observed at low concentrations that were comparable to those observed in target organs and tissues of humans that were non-occupationally exposed to cadmium. Therefore, further studies aiming to clarify the relevance of these observations for human health risks due to cadmium exposure are needed.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21945723     DOI: 10.1016/j.mrfmmm.2011.09.002

Source DB:  PubMed          Journal:  Mutat Res        ISSN: 0027-5107            Impact factor:   2.433


  36 in total

1.  Alleviation of cadmium-induced genotoxicity and cytotoxicity by calcium chloride in faba bean (Vicia faba L. var. minor) roots.

Authors:  Issam Nouairi; Karima Jalali; Sabrine Essid; Kais Zribi; Haythem Mhadhbi
Journal:  Physiol Mol Biol Plants       Date:  2019-06-05

2.  Gene-environment interactions between ERCC2, ERCC3, XRCC1 and cadmium exposure in nasal polyposis disease.

Authors:  Rim Khlifi; Pablo Olmedo; Fernando Gil; Boutheina Hammami; Amel Hamza-Chaffai; Ahmed Rebai
Journal:  J Appl Genet       Date:  2016-11-12       Impact factor: 3.240

3.  Organic cadmium complexes as proteasome inhibitors and apoptosis inducers in human breast cancer cells.

Authors:  Zhen Zhang; Caifeng Bi; Daniela Buac; Yuhua Fan; Xia Zhang; Jian Zuo; Pengfei Zhang; Nan Zhang; Lili Dong; Q Ping Dou
Journal:  J Inorg Biochem       Date:  2013-02-21       Impact factor: 4.155

4.  Antimutagenic and antigenotoxic potential of grape juice concentrate in blood and liver of rats exposed to cadmium.

Authors:  Carolina Foot Gomes de Moura; Flávia Andressa Pidone Ribeiro; Gustavo Protasio Pacheco de Jesus; Victor Hugo Pereira da Silva; Celina Tizuko Fujiyama Oshima; Andréa Pittelli Boiago Gollücke; Odair Aguiar; Daniel Araki Ribeiro
Journal:  Environ Sci Pollut Res Int       Date:  2014-07-06       Impact factor: 4.223

5.  Involvement of the Cell Wall Integrity Pathway of Saccharomyces cerevisiae in Protection against Cadmium and Arsenate Stresses.

Authors:  Todsapol Techo; Sirada Charoenpuntaweesin; Choowong Auesukaree
Journal:  Appl Environ Microbiol       Date:  2020-10-15       Impact factor: 4.792

6.  A protective role of methionine-R-sulfoxide reductase against cadmium in Schizosaccharomyces pombe.

Authors:  Chang-Jin Lim; Hannah Jo; Kyunghoon Kim
Journal:  J Microbiol       Date:  2014-05-30       Impact factor: 3.422

7.  The effects of pretreatment with lithium metaborate dihydrate on lipid peroxidation and Ca, Fe, Mg, and K levels in serum of Wistar albino male rats exposed to Cd.

Authors:  Muhammed Taşdemir; Fatih Çağlar Çelikezen; Gökhan Oto; Fahrettin Özbey
Journal:  Environ Sci Pollut Res Int       Date:  2019-12-30       Impact factor: 4.223

Review 8.  Cadmium-containing carbonic anhydrase CDCA1 in marine diatom Thalassiosira weissflogii.

Authors:  Vincenzo Alterio; Emma Langella; Giuseppina De Simone; Simona Maria Monti
Journal:  Mar Drugs       Date:  2015-03-25       Impact factor: 5.118

9.  Cadmium-Induced Pathologies: Where Is the Oxidative Balance Lost (or Not)?

Authors:  Ambily Ravindran Nair; Olivier Degheselle; Karen Smeets; Emmy Van Kerkhove; Ann Cuypers
Journal:  Int J Mol Sci       Date:  2013-03-18       Impact factor: 5.923

Review 10.  Cell organelles as targets of mammalian cadmium toxicity.

Authors:  Wing-Kee Lee; Frank Thévenod
Journal:  Arch Toxicol       Date:  2020-03-23       Impact factor: 5.153

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