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14C标记的3H-咪唑并[4,5-f]喹啉-2-胺在小鼠体内的放射自显影分布

Autoradiographic distribution of 14C-labeled 3H-imidazo[4,5-f]quinoline-2-amines in mice.

作者信息

Bergman K

出版信息

Cancer Res. 1985 Mar;45(3):1351-6.

PMID:3971379
Abstract

The highly mutagenic heterocyclic amines, 2-amino-3-methylimidazo[4,5-f]quinoline (IQ) and 2-amino-3,4-dimethylimidazo[4,5-f]quinoline (MeIQ), are formed during heating of protein-rich foods. In order to gain information about the distribution and fate of IQ and MeIQ in vivo, a whole-body autoradiographic study of i.v.-injected 14C-labeled IQ and MeIQ has been performed in male NMRI, pregnant NMRI, and female C3H mice. IQ and MeIQ showed similar distribution patterns. At short survival times, the autoradiograms were characterized by an accumulation of radioactivity in metabolic and excretory organs (liver, kidney, bile, urine, gastric and intestinal contents, salivary glands, nasal mucosa, and Harder's gland), as well as in lymphomyeloid tissues (bone marrow, thymus, spleen and lymph nodes) and in endocrine and reproductive tissues (adrenal medulla, pancreatic islets, thyroid, hypophysis, testis, epididymis, seminal vesicles, ampulla, and prostate). The liver and kidney cortex were identified as sites of retention of nonextractable radioactivity. IQ and MeIQ showed a strong affinity for melanin. IQ and MeIQ passed the placenta, but no radioactivity was retained in fetal tissues. The results pinpoint the liver as a site of IQ- and MeIQ-mediated toxicity. Future studies of IQ and MeIQ may be guided by and clarify the role of other tissue localizations in the toxicity of IQ and MeIQ.

摘要

高致突变性杂环胺2-氨基-3-甲基咪唑并[4,5-f]喹啉(IQ)和2-氨基-3,4-二甲基咪唑并[4,5-f]喹啉(MeIQ)是在富含蛋白质食物加热过程中形成的。为了获取关于IQ和MeIQ在体内的分布及归宿的信息,已对雄性NMRI小鼠、怀孕的NMRI小鼠和雌性C3H小鼠进行了静脉注射14C标记的IQ和MeIQ的全身放射自显影研究。IQ和MeIQ显示出相似的分布模式。在短存活时间时,放射自显影片的特征是代谢和排泄器官(肝脏、肾脏、胆汁、尿液、胃和肠内容物、唾液腺、鼻黏膜和哈德氏腺)、淋巴髓样组织(骨髓、胸腺、脾脏和淋巴结)以及内分泌和生殖组织(肾上腺髓质、胰岛、甲状腺、垂体、睾丸、附睾、精囊、壶腹和前列腺)中存在放射性积累。肝脏和肾皮质被确定为不可提取放射性的滞留部位。IQ和MeIQ对黑色素具有很强的亲和力。IQ和MeIQ可通过胎盘,但胎儿组织中没有放射性滞留。结果明确指出肝脏是IQ和MeIQ介导毒性的部位。未来对IQ和MeIQ的研究可能会受到其他组织定位在IQ和MeIQ毒性中的作用的指导并对其加以阐明。

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