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丙烯酰胺致癌机制综述。

A review of mechanisms of acrylamide carcinogenicity.

作者信息

Besaratinia Ahmad, Pfeifer Gerd P

机构信息

Division of Biology, Beckman Research Institute of the City of Hope National Medical Center, 1450 East Duarte Road, Duarte, CA 91010, USA.

出版信息

Carcinogenesis. 2007 Mar;28(3):519-28. doi: 10.1093/carcin/bgm006. Epub 2007 Jan 18.

Abstract

The fact that acrylamide, a proven rodent carcinogen, is present in significant quantities (up to several mg/kg of foodstuff) in a wide range of commonly consumed human foods is alarming. Attempts to determine a possible involvement of dietary acrylamide in human cancers have not been conclusive, however. To resolve the carcinogenicity of acrylamide to humans, the as yet unknown mechanism of action of acrylamide needs to be unraveled. The present review is a synopsis of research on the known and hypothetical modes of action of acrylamide of relevance for carcinogenesis. Both genotoxic and non-genotoxic modes of action of acrylamide are discussed with special emphasis on DNA adduct-targeted mutagenesis. Mechanistic data are presented from various experimental systems including in vitro experiments and in vivo rodent and human studies with special focus on mouse models. Human exposure data, including estimates of daily intake of dietary acrylamide in different populations and the corresponding cancer risk assessments are provided. The significant gaps in knowledge, which currently preclude a more definitive evaluation of human cancer risk due to exposure to dietary acrylamide, are highlighted. Future directions for research on acrylamide and cancer are outlined, and potential challenges are underscored.

摘要

已证实丙烯酰胺是一种啮齿动物致癌物,在人类大量食用的各类常见食物中大量存在(含量高达每千克食物数毫克),这一事实令人担忧。然而,关于膳食中的丙烯酰胺是否可能与人类癌症有关的研究尚无定论。为了解决丙烯酰胺对人类的致癌性问题,需要揭示其尚未明确的作用机制。本综述概述了与致癌作用相关的丙烯酰胺已知和假设作用模式的研究。讨论了丙烯酰胺的遗传毒性和非遗传毒性作用模式,特别强调了以DNA加合物为靶点的诱变作用。介绍了来自各种实验系统的机制数据,包括体外实验以及啮齿动物和人类的体内研究,特别关注小鼠模型。提供了人类接触数据,包括不同人群膳食丙烯酰胺每日摄入量的估计值以及相应的癌症风险评估。强调了目前知识上的重大差距,这些差距目前妨碍了对因接触膳食丙烯酰胺而导致的人类癌症风险进行更明确的评估。概述了丙烯酰胺与癌症研究的未来方向,并强调了潜在挑战。

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