García-Valdivia Antonio A, Cepeda Javier, Fernández Belén, Medina-O'donnell Marta, Oyarzabal Itziar, Parra Jerónimo, Jannus Fatin, Choquesillo-Lazarte Duane, García José A, Lupiáñez José Antonio, Gómez-Ruiz Santiago, Reyes-Zurita Fernando, Rodríguez-Diéguez Antonio
Department of Inorganic Chemistry, University of Granada, 18071 Granada, Spain.
Department of Applied Chemistry, Faculty of Chemistry, University of The Basque Country UPV/EHU, Paseo Manuel Lardizabal 3, 20018 Donostia-San Sebastián, Spain.
J Inorg Biochem. 2020 Jun;207:111051. doi: 10.1016/j.jinorgbio.2020.111051. Epub 2020 Mar 17.
Five new coordination polymers (CPs) constructed of aminopyridine-2-carboxylate (ampy) ligand have been synthesized and fully characterized. Three of them correspond to metal-organic chains built from the coordination of ampy to sodium and lanthanides with formulae [MNa(ampy)] (M = terbium (2), erbium (1) and ytterbium (3)) resembling a previously reported dysprosium material which shows anticancer activity. On another level, the reaction of Hampy with cobalt and copper ions ({CoK(ampy)(HO)} (4) and [Cu(ampy)] (5)) lead to CPs with variable dimensionalities, which gives the opportunity of analyzing the structural properties of this new family. Lanthanide materials display solid state intense photoluminescent emissions in both the visible and near-infrared region and exhibit slow relaxation of magnetization with frequency dependence of the out-of-phase susceptibility. More interestingly, in our search for multifunctional materials, we have carried out antitumor measurements of these compounds. These multidisciplinary studies of metal complexes open up the possibility for further exploring the applications in the fields of metal-based drugs.
已合成并全面表征了五种由氨基吡啶 - 2 - 羧酸盐(ampy)配体构建的新型配位聚合物(CPs)。其中三种对应于由ampy与钠和镧系元素配位形成的金属有机链,其化学式为[MNa(ampy)](M = 铽(2)、铒(1)和镱(3)),类似于先前报道的具有抗癌活性的镝材料。另一方面,Hampy与钴和铜离子的反应({CoK(ampy)(H₂O)}(4)和[Cu(ampy)](5))产生了具有不同维度的CPs,这为分析这个新家族的结构特性提供了机会。镧系材料在可见光和近红外区域均显示出固态强荧光发射,并表现出磁化强度的缓慢弛豫,其与异相磁化率的频率相关。更有趣的是,在我们对多功能材料的探索中,我们对这些化合物进行了抗肿瘤测量。这些对金属配合物的多学科研究为进一步探索其在金属基药物领域的应用开辟了可能性。