Thiosemicarbazonate complexes with affinity for amyloid-β fibers: synthesis, characterization and biological studies

Author:

Pino-Cuevas Arantxa12,Raposinho Paula D3,Fernandes Célia3,Paulo António3,Abram Ulrich4,Carballo Rosa12,Vázquez‐López Ezequiel M12ORCID

Affiliation:

1. Department of Inorganic Chemistry/University of Vigo/Chemistry Faculty, E-36310 Vigo, Galicia, Spain

2. Metallosupramolecular Chemistry Group/Galicia South Health Research Institute (IIS Galicia Sur)/SERGAS-UVIGO/Galicia, Spain

3. Centro de Ciências e Tecnologias Nucleares, Instituto Superior Técnico/Universidade de Lisboa/Estrada Nacional 10 (km 139,7), 2695-066 Bobadela LRS, Portugal

4. Institut of Chemistry & Biochemistry/Freie Universität Berlin/Fabeckckstr. 34/36, 14195-Berlin, Germany

Abstract

Aim: Obtain radioimages of amyloid-β fibers using 99mTc-complexes. Methodology: Tridentate thiosemicarbazone and thiocarbonohydrazone ligands containing fragments (stilbene, azobenzene, benzothiazole or benzoxazole) with affinity for amyloid-ß fibers and its Re(I) complexes have been prepared. The molecular structures of several ligands and complexes were determined by x-ray diffraction. Binding affinity studies toward Aß1-42 fibers were performed for the ligands and Re(I) complexes. The ability of formation of some 99mTc(I) complexes, their biodistribution and in vivo stability have been established. Results & conclusion: Complexes of stilbene and benzothiazole thiosemicarbazonates show similar affinity for amyloid-β fibers to the free ligand. These 99mTc complexes present a reasonable in vivo stability and a low capability to cross the blood–brain barrier although not sufficient to brain amyloid imaging.

Publisher

Future Science Ltd

Subject

Drug Discovery,Pharmacology,Molecular Medicine

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