Publication Type Journal Article
Title Biophysical characterization and antineoplastic activity of new bis(thiosemicarbazonato) Cu(II) complexes
Authors E Palma Filipa Mendes Goreti Ribeiro Morais Ines Rodrigues Isabel Cordeiro Santos Maria Paula C. Campello Paula Raposinho Isabel Correia Sofia Gama Dulce Belo Vitor Alves Antero J. Abrunhosa Antonio Paulo
Groups BIOIN
Journal JOURNAL OF INORGANIC BIOCHEMISTRY
Year 2017
Month February
Volume 167
Number
Pages 68-79
Abstract Aiming to explore alternative mechanisms of cellular uptake and cytotoxicity, we have studied a new family of copper(II) complexes (CuLl-CuL4) with bis(thiosemicarbazone) (BTSC) ligands containing pendant protonable cyclic amines (morpholine and piperidine). Herein, we report on the synthesis and characterization of these new complexes, as well as on their biological performance (cytotoxic activity, cellular uptake, protein and DNA binding), in comparison with the parental CullATSM (ATSM = diacetyl-bis(N-4-methylthiosemicarbazonate) complex without pendant cyclic amines. The new compounds have been characterized by a range of analytical techniques including ESI-MS, IR spectroscopy, cyclic voltammetry, reverse-phase HPLC and X-ray spectroscopy. In vitro cytotoxicity studies revealed that the copper complexes are cytotoxic, unlike the corresponding ligands, with a similar potency to that of CuATSM. Unlike CuATSM, the new complexes were able to circumvent cisplatin cross-resistance. The presence of the protonable cyclic amines did not lead to an enhancement of the interaction of the complexes with human serum albumin or calf thymus DNA. However, CuLl-CuL4 showed a remarkably augmented cellular uptake compared with CuATSM, as proved by uptake, internalization and externalization studies that were performed using the radioactive congeners (CuL1-64CuL4)-Cu-64. The enhanced cellular uptake of CuLl-CuL4 indicates that this new family of CulIBTSC complexes deserves to be further evaluated in the design of metallodrugs for cancer theranostics. (C) 2016 Elsevier Inc All rights reserved.
DOI http://dx.doi.org/10.1016/j.jinorgbio.2016.11.026
ISBN
Publisher ELSEVIER SCIENCE INC
Book Title
ISSN 0162-0134
EISSN 1873-3344
Conference Name
Bibtex ID ISI:000392794000008
Observations
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