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Environmental Pollution: a Tangible Risk for NAFLD Pathogenesis

Overview
Journal Int J Mol Sci
Publisher MDPI
Date 2013 Nov 12
PMID 24213605
Citations 33
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Abstract

The liver is crucial for human life, and the health of this organ often mirrors the health of the individual. The liver can be the target of several diseases, the most prevalent of which, as a consequence of development and changes in human lifestyles, is the nonalcoholic fatty liver disease (NAFLD). NAFLD is a multifactorial disease that embraces many histo-pathologic conditions and is highly linked to metabolic derangements. Technological progress and industrialization have also had the consequence of releasing pollutants in the environment, for instance pesticides or solvents, as well as by-products of discharge, such as the particulate matter. In the last decade, a growing body of evidence has emerged, shedding light on the potential impact of environmental pollutants on liver health and, in particular, on NAFLD occurrence. These contaminants have a great steatogenic potential and need to be considered as tangible NAFLD risk factors. There is an urgent need for a deeper comprehension of their molecular mechanisms of action, as well as for new lines of intervention to reduce their worldwide diffusion. This review wishes to sensitize the community to the effects of several environmental pollutants on liver health.

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References
1.
Allender W, Glastonbury J . Simazine toxicosis in sheep. Vet Hum Toxicol. 1992; 34(5):422-3. View

2.
Patel M, Chillrud S, Correa J, Hazi Y, Feinberg M, Kc D . Traffic-related particulate matter and acute respiratory symptoms among New York City area adolescents. Environ Health Perspect. 2010; 118(9):1338-43. PMC: 2944099. DOI: 10.1289/ehp.0901499. View

3.
Marra F, Gastaldelli A, Svegliati Baroni G, Tell G, Tiribelli C . Molecular basis and mechanisms of progression of non-alcoholic steatohepatitis. Trends Mol Med. 2008; 14(2):72-81. DOI: 10.1016/j.molmed.2007.12.003. View

4.
Kramer U, Herder C, Sugiri D, Strassburger K, Schikowski T, Ranft U . Traffic-related air pollution and incident type 2 diabetes: results from the SALIA cohort study. Environ Health Perspect. 2010; 118(9):1273-9. PMC: 2944089. DOI: 10.1289/ehp.0901689. View

5.
Schaffner F, Thaler H . Nonalcoholic fatty liver disease. Prog Liver Dis. 1986; 8:283-98. View