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被橄榄石斑鱼(Paralichthys olivaceus)摄入的生物掺入 I 的短期代谢。

Short-term metabolism of biologically incorporated I ingested by olive flounder (Paralichthys olivaceus).

机构信息

Department of Radioecology, Institute for Environmental Sciences, 1-7 Ienomae, Obuchi, Rokkasho, Kamikita, Aomori, 039-3212, Japan.

Department of Radioecology, Institute for Environmental Sciences, 1-7 Ienomae, Obuchi, Rokkasho, Kamikita, Aomori, 039-3212, Japan.

出版信息

J Environ Radioact. 2020 Apr;214-215:106161. doi: 10.1016/j.jenvrad.2020.106161. Epub 2020 Jan 31.

Abstract

Iodine-129 with a long half-time of 1.6 × 10 y was discharged into the Pacific Ocean during the final safety tests of the first commercial nuclear fuel reprocessing plant in Japan, at Rokkasho, Aomori Prefecture. Olive flounder (Paralichthys olivaceus) is an important fishery along this coast. It is necessary to determine whether I accumulates in this species to assess the possible public acceptance. We developed a short-term metabolism model of I in the flounder using retention data for 1-6 days after the olive flounder had ingested a freshwater fish species, medaka (Oryzias latipes), that had been labeled with I by keeping them in water containing I for 7 days. A single compartment model constructed from whole-body retention data for I in the olive flounder, excluding the gastrointestinal tract and its contents, revealed a biological half-time of 2.9 days for I. When the gill and other tissues were separated to individual compartments, the biological half-time in the gill was three times longer than that in the other tissue, though the half-time in the gill is not statistically significant. The distribution of I among various tissues in the flounder 6 days after the ingestion of labeled medaka once a day for 6 days differed from that of stable I, suggesting that the biological half-time is longer in certain tissues. Further study is necessary to elucidate the metabolism of radioiodine in the flounder.

摘要

在日本青森县六所村的第一座商业核燃料后处理厂的最终安全测试中,半衰期为 1.6×10 y 的碘-129 被排入太平洋。橄榄石斑鱼(Paralichthys olivaceus)是该海域的重要渔业资源。有必要确定碘是否在该物种中积累,以评估其可能对公众的接受程度。我们使用在摄入了经 I 标记的淡水鱼类(米虾,Oryzias latipes)后的 1-6 天的保留数据,开发了一种橄榄石斑鱼中 I 的短期代谢模型。从橄榄石斑鱼的整体保留数据构建的单室模型表明,I 的生物半衰期为 2.9 天。当将鳃和其他组织分离到单独的隔室中时,尽管鳃中的半衰期在统计学上并不显著,但 I 在鳃中的生物半衰期是其他组织的三倍。橄榄石斑鱼在连续 6 天每天摄入标记的米虾 6 天后,I 在各组织中的分布与稳定 I 的分布不同,这表明某些组织中的生物半衰期更长。需要进一步的研究来阐明石斑鱼中放射性碘的代谢。

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