Pharmacological activity of DTPA linked to protein-based drug carrier systems |
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Authors: | Michaelis Martin Langer Klaus Arnold Sonja Doerr Hans-Wilhelm Kreuter Jörg Cinatl Jindrich |
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Affiliation: | Institut für Medizinische Virologie, Zentrum der Hygiene, Klinikum der J.W. Goethe-Universit?t, Paul Ehrlich Str. 40, 60596 Frankfurt am Main, Germany. |
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Abstract: | The chelating agent diethylenetriaminepentaacetic acid (DTPA) inhibits human cytomegalovirus replication. Since chelating agents are known to exhibit anti-cancer effects, DTPA-induced cytotoxicity was evaluated in breast cancer cells (MCF-7) and neuroblastoma cells (UKF-NB-3). DTPA inhibited cancer cell growth in threefold lower concentrations compared to human foreskin fibroblasts (HFF). Antiviral and anti-cancer activity of chelating agents is caused by intracellular complexation of metal ions. DTPA, an extracellular chelator, was covalently coupled to human serum albumin (HSA) molecules, HSA nanoparticles (HSA-NP), gelatin type B (GelB) molecules, and GelB nanoparticles (GelB-NP) to increase cellular uptake. Coupling of DTPA to drug carrier systems increased its cytotoxic and antiviral activity by 5- to 8-fold. Confocal laser scanning microscope examination revealed uptake of DTPA-HSA-NP in UKF-NB-3 cells and HFF. Therefore, coupling of DTPA to protein-based drug carrier systems increases its antiviral and anti-cancer activity probably by mediating cellular uptake. |
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Keywords: | Albumin Breast cancer Cytomegalovirus Diethlylenetriaminepentaacetic acid Gelatin Nanoparticles Neuroblastoma |
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