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溴酸钾的毒性与致癌性——一种新型肾致癌物

Toxicity and carcinogenicity of potassium bromate--a new renal carcinogen.

作者信息

Kurokawa Y, Maekawa A, Takahashi M, Hayashi Y

机构信息

Division of Toxicology, National Institute of Hygienic Sciences, Tokyo, Japan.

出版信息

Environ Health Perspect. 1990 Jul;87:309-35. doi: 10.1289/ehp.9087309.

Abstract

Potassium bromate (KBrO3) is an oxidizing agent that has been used as a food additive, mainly in the bread-making process. Although adverse effects are not evident in animals fed bread-based diets made from flour treated with KBrO3, the agent is carcinogenic in rats and nephrotoxic in both man and experimental animals when given orally. It has been demonstrated that KBrO3 induces renal cell tumors, mesotheliomas of the peritoneum, and follicular cell tumors of the thyroid. In addition, experiments aimed at elucidating the mode of carcinogenic action have revealed that KBrO3 is a complete carcinogen, possessing both initiating and promoting activities for rat renal tumorigenesis. However, the potential seems to be weak in mice and hamsters. In contrast to its weak mutagenic activity in microbial assays, KBrO3 showed relatively strong potential inducing chromosome aberrations both in vitro and in vivo. Glutathione and cysteine degrade KBrO3 in vitro; in turn, the KBrO3 has inhibitory effects on inducing lipid peroxidation in the rat kidney. Active oxygen radicals generated from KBrO3 were implicated in its toxic and carcinogenic effects, especially because KBrO3 produced 8-hydroxydeoxyguanosine in the rat kidney. A wide range of data from applications of various analytical methods are now available for risk assessment purposes.

摘要

溴酸钾(KBrO₃)是一种氧化剂,曾被用作食品添加剂,主要用于面包制作过程。虽然给动物喂食用KBrO₃处理过的面粉制成的面包类食物时,不良反应并不明显,但口服该物质对大鼠具有致癌性,对人和实验动物都有肾毒性。已经证实,KBrO₃会诱发肾细胞肿瘤、腹膜间皮瘤和甲状腺滤泡细胞瘤。此外,旨在阐明致癌作用模式的实验表明,KBrO₃是一种完全致癌物,对大鼠肾肿瘤发生具有启动和促进活性。然而,在小鼠和仓鼠中这种可能性似乎较小。与它在微生物检测中的弱诱变活性相反,KBrO₃在体外和体内都显示出相对较强的诱导染色体畸变的可能性。谷胱甘肽和半胱氨酸在体外可降解KBrO₃;反过来,KBrO₃对大鼠肾脏中诱导脂质过氧化有抑制作用。KBrO₃产生的活性氧自由基与其毒性和致癌作用有关,特别是因为KBrO₃在大鼠肾脏中产生了8-羟基脱氧鸟苷。现在有各种分析方法应用的大量数据可用于风险评估目的。

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