Mayer Florian, Tiruvadi Krishnan Sriram, Schühle Daniel T, Eliseeva Svetlana V, Petoud Stéphane, Tóth Éva, Djanashvili Kristina
Department of Biotechnology, Delft University of Technology, Delft, Netherlands.
Centre de Biophysique Moléculaire, UPR 4301 Centre National de la Recherche Scientifique, Université d'Orléans, Orléans, France.
Front Chem. 2018 Jan 30;6:1. doi: 10.3389/fchem.2018.00001. eCollection 2018.
Self-aggregating calix[4]arenes carrying four DOTA ligands on the for stable complexation of paramagnetic Gd-ions have already been proposed as MRI probes. In this work, we investigate the luminescence properties of Tb-DOTA-calix[4]arene-4OPr containing four propyl-groups and compare them with those of the analog substituted with a phthalimide chromophore (Tb-DOTA-calix[4]arene-3OPr-OPhth). We show that, given its four aromatic rings, the calix[4]arene core acts as an effective sensitizer of Tb-centered luminescence. Substituents on the can modulate the aggregation behavior, which in turn determines the luminescence properties of the compounds. In solid state, the quantum yield of the phthalimide derivative is almost three times as high as that of the propyl-functionalized analog demonstrating a beneficial role of the chromophore on Tb-luminescence. In solution, however, the effect of the phthalimide group vanishes, which we attribute to the large distance between the chromophore and the lanthanide, situated on the opposite rims of the calix[4]arene. Both quantum yields and luminescence lifetimes show clear concentration dependence in solution, related to the strong impact of aggregation on the luminescence behavior. We also evidence the variability in the values of the critical micelle concentration depending on the experimental technique. Such luminescent calix[4]arene platforms accommodating stable lanthanide complexes can be considered valuable building blocks for the design of dual MR/optical imaging probes.
已有人提出,在杯[4]芳烃上携带四个DOTA配体以实现顺磁性钆离子稳定络合的自聚集杯[4]芳烃可作为磁共振成像(MRI)探针。在本研究中,我们研究了含有四个丙基的Tb-DOTA-杯[4]芳烃-4OPr的发光特性,并将其与用邻苯二甲酰亚胺发色团取代的类似物(Tb-DOTA-杯[4]芳烃-3OPr-OPhth)的发光特性进行比较。我们发现,鉴于其具有四个芳环,杯[4]芳烃核心可作为以Tb为中心的发光的有效敏化剂。杯芳烃上的取代基可调节聚集行为,进而决定化合物的发光特性。在固态下,邻苯二甲酰亚胺衍生物的量子产率几乎是丙基官能化类似物的三倍,这表明发色团对Tb发光具有有益作用。然而,在溶液中,邻苯二甲酰亚胺基团的作用消失了,我们将其归因于发色团与位于杯[4]芳烃相对边缘的镧系元素之间的距离较大。量子产率和发光寿命在溶液中均表现出明显的浓度依赖性,这与聚集对发光行为的强烈影响有关。我们还证明了临界胶束浓度值会因实验技术而异。这种能够容纳稳定镧系元素络合物的发光杯[4]芳烃平台可被视为设计双MR/光学成像探针的有价值构建模块。