State Key Laboratory of Radiation Medicine and Protection, School for Radiological and Interdisciplinary Sciences (RAD-X) and Collaborative Innovation Center of Radiation Medicine of Jiangsu Higher Education Institutions, Soochow University, Suzhou 215123, China.
Inorg Chem. 2022 Mar 7;61(9):3886-3892. doi: 10.1021/acs.inorgchem.1c03438. Epub 2022 Feb 24.
Despite the critical role actinide decorporation agents play in the emergency treatment of people in nuclear accidents and other scenarios that may cause internal contamination of actinides, new ligands have seldom been reported in recent decades because the current inventory has been limited to only a handful of functional groups. Therefore, new functional groups are always being urgently sought for the introduction of advanced actinide decorporation agents. Herein, a tropolone derivative, 2-hydroxy-6-(propan-2-yl)cyclohepta-2,4,6-trien-1-one (Hinokitiol or Hino), is proposed to be a promising candidate for this purpose by virtue of its well-demonstrated high membrane permeability and high affinity for metal ions. The coordination stoichiometry of Hino with uranyl is demonstrated to be 3:1 both in an aqueous solution (pH 7.4) and in the solid state. The results of a liquid-liquid extraction experiment further show that Hino exhibits strong chelating ability and selectivity toward uranyl over biological essential metal ions (i.e., Mn, Zn, Co, and Ni) with an extraction efficiency of >90.0%. The in vivo uranyl removal efficacies of Hino in kidneys and bone of mice are demonstrated to be 67.0% and 32.3%, respectively. On the basis of the observations described above, it is highly possible that further modification of Hino will lead to a large family of multidentate agents with enhanced uranyl decorporation ability.
尽管 Actinide 去污染剂在核事故和其他可能导致 Actinide 内污染的情况下的紧急治疗中起着至关重要的作用,但近几十年来很少有新的配体被报道,因为现有的库存仅限于少数几种官能团。因此,新的官能团总是在紧急寻找,以引入先进的 Actinide 去污染剂。在此,通过其良好证明的高膜透过性和对金属离子的高亲和力,提议将三羟甲基嘧啶酮衍生物 2-羟基-6-(异丙基)环己-2,4,6-三烯-1-酮(Hinokitiol 或 Hino)用作有前途的候选物。在水溶液(pH 7.4)和固态中,证明 Hino 与铀酰的配位化学计量比为 3:1。液-液萃取实验的结果进一步表明,Hino 对铀酰具有很强的螯合能力和选择性,相对于生物必需金属离子(即 Mn、Zn、Co 和 Ni)的萃取效率>90.0%。证明 Hino 在小鼠肾脏和骨骼中的体内铀去除效率分别为 67.0%和 32.3%。基于上述观察结果,极有可能进一步修饰 Hino 将导致具有增强的铀去污染能力的多齿配体大家族。