Halpern A, Stöcklin G
Radiat Environ Biophys. 1977 Dec 12;14(4):257-74. doi: 10.1007/BF01325241.
In Part 1 of this article physical and chemical effects of beta-decay in labelled molecules were reviewed and their potential importance for breaking predetermined and specific bonds were pointed out. After incorporation of labelled biomolecules in living systems, such as viruses, phages or cells, the radioactive decay of the label alters the biological behaviour of the system, in the extreme case causing loss of the ability to reproduce, the extent of these consequences depending strongly on the type of radioisotope. Now Part 2 includes a brief discussion of biological effects associated with beta-decay emphasizing the relative importance of local transmutation and internal radiation effects from the decay of 3H, 14C, 32P, 33P, 35S and 125I. Attempt is also made, whenever possible at the present stage of understanding, to correlate biological effects with chemical processes on a molecular level.
在本文的第一部分,回顾了标记分子中β衰变的物理和化学效应,并指出了它们对于断裂预定的特定化学键的潜在重要性。将标记的生物分子引入诸如病毒、噬菌体或细胞等生命系统后,标记物的放射性衰变会改变系统的生物学行为,在极端情况下会导致繁殖能力丧失,这些后果的程度在很大程度上取决于放射性同位素的类型。现在,第二部分简要讨论了与β衰变相关的生物学效应,重点强调了局部嬗变以及3H、14C、32P、33P、35S和125I衰变产生的内辐射效应的相对重要性。在目前的理解阶段,还尽可能尝试将生物学效应与分子水平上的化学过程联系起来。