Literature DB >> 20170357

The carcinogenicity of dietary acrylamide intake: a comparative discussion of epidemiological and experimental animal research.

Janneke G F Hogervorst1, Bert-Jan Baars, Leo J Schouten, Erik J M Konings, R Alexandra Goldbohm, Piet A van den Brandt.   

Abstract

Since 2002, it is known that the probable human carcinogen acrylamide is present in commonly consumed carbohydrate-rich foods, such as French fries and potato chips. In this review, the authors discuss the body of evidence on acrylamide carcinogenicity from both epidemiological and rodent studies, including variability, strengths and weaknesses, how both types of evidence relate, and possible reasons for discrepancies. In both rats and humans, increased incidences of various cancer types were observed. In rats, increased incidences of mammary gland, thyroid tumors and scrotal mesothelioma were observed in both studies that were performed. In humans, increased risks of ovarian and endometrial cancers, renal cell cancer, estrogen (and progesterone) receptor-positive breast cancer, and oral cavity cancer (the latter in non-smoking women) were observed. Some cancer types were found in both rats and humans, e.g., endometrial cancer (observed in one of the two rat studies), but there are also some inconsistencies. Interestingly, in humans, some indications for inverse associations were observed for lung and bladder cancers in women, and prostate and oro- and hypopharynx cancers in men. These latter observations indicate that genotoxicity may not be the only mechanism by which acrylamide causes cancer. The estimated risks based on the epidemiological studies for the sites for which a positive association was observed were considerably higher than those based on extrapolations from the rat studies. The observed pattern of increased risks in the rat and epidemiological studies and the decreased risks in the epidemiological studies suggests that acrylamide might influence hormonal systems, for which rodents may not be good models.

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Year:  2010        PMID: 20170357     DOI: 10.3109/10408440903524254

Source DB:  PubMed          Journal:  Crit Rev Toxicol        ISSN: 1040-8444            Impact factor:   5.635


  36 in total

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Journal:  Carcinogenesis       Date:  2015-06       Impact factor: 4.944

2.  Simultaneous inhibition of acrylamide and hydroxymethylfurfural formation by sodium glutamate microcapsules in an asparagine-glucose model system.

Authors:  Zimeng Wang; Chao Wen; Xingbo Shi; Dai Lu; Jiehong Deng; Fangming Deng
Journal:  J Food Sci Technol       Date:  2017-01-06       Impact factor: 2.701

3.  Dietary acrylamide intake of adults in the European Prospective Investigation into Cancer and Nutrition differs greatly according to geographical region.

Authors:  Heinz Freisling; Aurelie Moskal; Pietro Ferrari; Geneviève Nicolas; Viktoria Knaze; Françoise Clavel-Chapelon; Marie-Christine Boutron-Ruault; Laura Nailler; Birgit Teucher; Verena A Grote; Heiner Boeing; Matthias Clemens; Anne Tjønneland; Anja Olsen; Kim Overvad; J Ramón Quirós; Eric J Duell; María-José Sánchez; Pilar Amiano; Maria-Dolores Chirlaque; Aurelio Barricarte; Kay-Tee Khaw; Nicholas J Wareham; Francesca L Crowe; Valentina Gallo; Eleni Oikonomou; Androniki Naska; Antonia Trichopoulou; Domenico Palli; Claudia Agnoli; Rosario Tumino; Silvia Polidoro; Amalia Mattiello; H Bas Bueno-de-Mesquita; Marga C Ocké; Petra H M Peeters; Elisabet Wirfält; Ulrika Ericson; Ingvar A Bergdahl; Ingegerd Johansson; Anette Hjartåker; Dagrun Engeset; Guri Skeie; Elio Riboli; Nadia Slimani
Journal:  Eur J Nutr       Date:  2012-12-13       Impact factor: 5.614

4.  Acrylamide hemoglobin adduct levels and ovarian cancer risk: a nested case-control study.

Authors:  Jing Xie; Kathryn L Terry; Elizabeth M Poole; Kathryn M Wilson; Bernard A Rosner; Walter C Willett; Hubert W Vesper; Shelley S Tworoger
Journal:  Cancer Epidemiol Biomarkers Prev       Date:  2013-02-15       Impact factor: 4.254

5.  Dietary and lifestyle determinants of acrylamide and glycidamide hemoglobin adducts in non-smoking postmenopausal women from the EPIC cohort.

Authors:  Mireia Obón-Santacana; Leila Lujan-Barroso; Heinz Freisling; Claire Cadeau; Guy Fagherazzi; Marie-Christine Boutron-Ruault; Rudolf Kaaks; Renée T Fortner; Heiner Boeing; J Ramón Quirós; Esther Molina-Montes; Saioa Chamosa; José María Huerta Castaño; Eva Ardanaz; Kay-Tee Khaw; Nick Wareham; Tim Key; Antonia Trichopoulou; Pagona Lagiou; Androniki Naska; Domenico Palli; Sara Grioni; Rosario Tumino; Paolo Vineis; Maria Santucci De Magistris; H B Bueno-de-Mesquita; Petra H Peeters; Maria Wennberg; Ingvar A Bergdahl; Hubert Vesper; Elio Riboli; Eric J Duell
Journal:  Eur J Nutr       Date:  2016-02-05       Impact factor: 5.614

Review 6.  Nutritional countermeasures targeting reactive oxygen species in cancer: from mechanisms to biomarkers and clinical evidence.

Authors:  Anatoly Samoylenko; Jubayer Al Hossain; Daniela Mennerich; Sakari Kellokumpu; Jukka Kalervo Hiltunen; Thomas Kietzmann
Journal:  Antioxid Redox Signal       Date:  2013-04-15       Impact factor: 8.401

7.  Dietary acrylamide intake and risk of breast cancer in the UK women's cohort.

Authors:  V J Burley; D C Greenwood; S J Hepworth; L K Fraser; T M de Kok; S G van Breda; S A Kyrtopoulos; M Botsivali; J Kleinjans; P A McKinney; J E Cade
Journal:  Br J Cancer       Date:  2010-10-19       Impact factor: 7.640

8.  Dietary patterns and risk of urinary tract tumors: a multilevel analysis of individuals in rural and urban contexts.

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Review 9.  Dietary acrylamide and human cancer: a systematic review of literature.

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Journal:  Nutr Cancer       Date:  2014-05-29       Impact factor: 2.900

10.  Associations between dietary acrylamide intake and plasma sex hormone levels.

Authors:  Janneke G Hogervorst; Renee T Fortner; Lorelei A Mucci; Shelley S Tworoger; A Heather Eliassen; Susan E Hankinson; Kathryn M Wilson
Journal:  Cancer Epidemiol Biomarkers Prev       Date:  2013-08-27       Impact factor: 4.254

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