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动物饲料中三聚氰胺和氰尿酸风险评估的最新进展。

Recent advances in the risk assessment of melamine and cyanuric acid in animal feed.

机构信息

Unit on Contaminants, European Food Safety Authority, Largo N. Palli 5/A, 43121 Parma, Italy.

出版信息

Toxicol Appl Pharmacol. 2013 Aug 1;270(3):218-29. doi: 10.1016/j.taap.2012.01.012. Epub 2012 Jan 25.

Abstract

Melamine can be present at low levels in food and feed mostly from its legal use as a food contact material in laminates and plastics, as a trace contaminant in nitrogen supplements used in animal feeds, and as a metabolite of the pesticide cyromazine. The mechanism of toxicity of melamine involves dose-dependent formation of crystals with either endogenous uric acid or a structural analogue of melamine, cyanuric acid, in renal tubules resulting in potential acute kidney failure. Co-exposure to melamine and cyanuric acid in livestock, fish, pets and laboratory animals shows higher toxicity compared with melamine or cyanuric acid alone. Evidence for crystal formation between melamine and other structural analogs i.e. ammelide and ammeline is limited. Illegal pet food adulterations with melamine and cyanuric acid and adulteration of milk with melamine resulted in melamine-cyanuric acid crystals, kidney damage and deaths of cats and dogs and melamine-uric acid stones, hospitalisation and deaths of children in China respectively. Following these incidents, the tolerable daily intake for melamine was re-evaluated by the U.S. Food and Drug Administration, the World Health Organisation, and the Scientific Panel on Contaminants in the Food Chain of the European Food Safety Authority (EFSA). This review provides an overview of toxicology, the adulteration incidents and risk assessments for melamine and its structural analogues. Particular focus is given to the recent EFSA risk assessment addressing impacts on animal and human health of background levels of melamine and structural analogues in animal feed. Recent research and future directions are discussed.

摘要

三聚氰胺可以在食物和饲料中以低水平存在,主要来自其作为层压板和塑料中的食品接触材料的合法用途,作为动物饲料中氮补充剂的痕量污染物,以及杀虫剂环丙嗪的代谢物。三聚氰胺的毒性机制涉及与内源性尿酸或三聚氰胺的结构类似物三聚氰酸在肾小管中形成剂量依赖性晶体,从而导致潜在的急性肾衰竭。在牲畜、鱼类、宠物和实验动物中同时暴露于三聚氰胺和三聚氰酸显示出比三聚氰胺或三聚氰酸单独暴露更高的毒性。关于三聚氰胺与其他结构类似物(即三聚酰胺和三聚氰胺)之间形成晶体的证据有限。非法宠物食品中三聚氰胺和三聚氰酸的掺假以及牛奶中三聚氰胺的掺假导致三聚氰胺-三聚氰酸晶体、猫和狗的肾脏损伤和死亡以及中国儿童的三聚氰胺-尿酸结石、住院和死亡。在这些事件发生后,美国食品和药物管理局、世界卫生组织和欧洲食品安全局食物链污染物科学专家组重新评估了三聚氰胺的可耐受每日摄入量。本综述概述了三聚氰胺及其结构类似物的毒理学、掺假事件和风险评估。特别关注最近的 EFSA 风险评估,该评估涉及动物饲料中三聚氰胺和结构类似物背景水平对动物和人类健康的影响。讨论了最近的研究和未来的方向。

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