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Order-order assembly transition-driven polyamines detection based on iron-sulfur complexes.

Yahui ZhangXiangyu ZhaoYue QinXiaopei LiYongxin ChangZhenqiang ShiMengyuan SongWenjing SunJie XiaoZan LiGuangyan Qing
Published in: Communications chemistry (2023)
Innovative modes of response can greatly push forward chemical sensing processes and subsequently improve sensing performance. Classical chemical sensing modes seldom involve the transition of a delicate molecular assembly during the response. Here, we display a sensing mode for polyamine detection based on an order-order transition of iron-sulfur complexes upon their assembly. Strong validation proves that the unique order-order transition of the assemblies is the driving force of the response, in which the polyamine captures the metal ion of the iron-sulfur complex, leading it to decompose into a metal-polyamine product, accompanied by an order-order transition of the assemblies. This mechanism makes the detection process more intuitive and selective, and remarkably improves the detection efficiency, achieving excellent polyamines specificity, second-level response, convenient visual detection, and good recyclability of the sensing system. Furthermore, this paper also provides opportunities for the further application of the iron-sulfur platform in environment-related fields.
Keyphrases
  • loop mediated isothermal amplification
  • real time pcr
  • label free
  • iron deficiency
  • high throughput
  • drug induced