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The 10th anniversary of the publication of genes and environment: memoir of establishing the Japanese environmental mutagen society and a proposal for a new collaborative study on mutagenic hormesis

机译:基因与环境发表10周年:日本环境诱变学会建立的回忆录以及有关诱变作用的新的合作研究的建议

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摘要

The Japanese Environmental Mutagen Society (JEMS) was established in 1972 by 147 members, 11 of whom are still on the active list as of May 1, 2016. As one of them, I introduce some historic topics here. These include 1) establishment of JEMS, 2) the issue of 2-(2-furyl)-3-(3-nitro-2-furyl)acrylamide (AF-2), 3) the Mammalian Mutagenicity Study Group (MMS) and its achievements, and 4) the Collaborative Study Group of the Micronucleus Test (CSGMT) and its achievements. In addition to these historic matters, some of which are still ongoing, a new collaborative study is proposed on adaptive response or hormesis by mutagens. There is a close relationship between mutagens and carcinogens, the dose-response relationship of which has been thought to follow the linear no-threshold model (LNT). LNT was fabricated on the basis of Drosophila sperm experiments using high dose radiation delivered in a short period. The fallacious 60 years-old LNT is applied to cancer induction by radiation without solid data and then to cancer induction by carcinogens also without solid data. Therefore, even the smallest amount of carcinogens is postulated to be carcinogenic without thresholds now. Radiation hormesis is observed in a large variety of living organisms; radiation is beneficial at low doses, but hazardous at high doses. There is a threshold at the boundary between benefit and hazard. Hormesis denies LNT. Not a few papers report existence of chemical hormesis. If mutagens and carcinogens show hormesis, the linear dose-response relationship in mutagenesis and carcinogenesis is denied and thresholds can be introduced.
机译:日本环境诱变学会(JEMS)由147个成员成立于1972年,截至2016年5月1日,其中11个仍在活跃名单中。作为其中之一,我在这里介绍一些历史性话题。其中包括1)建立JEMS,2)发布2-(2-呋喃基)-3-(3-硝基-2-呋喃基)丙烯酰胺(AF-2),3)哺乳动物致突变性研究小组(MMS)和其成就;以及4)微核试验合作研究小组(CSGMT)及其成就。除了这些历史性问题(其中一些仍在进行中)之外,还提出了一项关于诱变剂的适应性反应或兴奋性的新合作研究。诱变剂和致癌物之间存在密切关系,人们认为其剂量反应关系遵循线性无阈值模型(LNT)。 LNT是在果蝇精子实验的基础上使用短时间内传递的高剂量辐射制造的。错误的60年历史的LNT应用于没有固体数据的放射线诱发癌症,然后又用于没有固体数据的致癌物诱发癌症。因此,现在假设即使是最小量的致癌物也没有致癌性。在各种各样的生物中都观察到了辐射致敏现象;低剂量辐射有益,但高剂量则有害。惠益与危害之间的界限是一个阈值。兴奋剂否认LNT。不少论文报道了化学兴奋剂的存在。如果诱变剂和致癌物显示出兴奋作用,则诱变和致癌作用中的线性剂量反应关系被否认,可以引入阈值。

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