Selected Publications
- Synthesis, structural elucidation and anticancer activity of diorganotin (IV) complexes derived from isonicotinoyl hydrazones
Ahsen, S.; Tanveer, I.; Uddin, N.; Yasmeen, T.; Abbas, S.; Naz, S.; Haider, A.; Bhattacharya, S.; Kortz, U.; Rashid, F. Inorg. Chim. Acta. 2024, 121965. [Read Online]
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Last piece of the puzzle: lead-assisted assembly of an arsenopalladate nanostar as antitumor metallodrug
Zhao, Y.; Li, C.-L.; Chen, C.-Q.; Du, J.; Kortz, U.; Gong, T.; Yang, P. Inorg. Chem. Front. 2024 [Read Online]
- Gallium(III)- and Thallium(III)-Encapsulated Polyoxopalladates: Synthesis, Structure, Multinuclear NMR and Biological Activity Studies
Ma, T.; Ma. X.; Lin, Z.; Zhang, J.; Yang, P.; Csupász, T.; Tóth, I.; Misirlic-Dencic, S.; Isakovic, M. A.; Lembo, D.; Donalisio, M.; Kortz, U. Inorg. Chem. 2023, 62, 33 [Read Online]
- Polyoxidovanadates [MoVIVV9O28]5- and [H2PtIVVV9O28]5- interact with CHO cell plasma membrane lipids causing aggregation and activation of a G protein-coupled receptor
Kostenkova, K.; Althumairy, D.; Rajan, A.; Kortz, U.; Barisas. B. G.; Roess, D. A.; Crans. D. C. Front. Chem. Biol. 2023. [Read Online]
- Metallodrug Profiling against SARS-CoV-2 Target Proteins Identifies Highly Potent Inhibitors of the S/ACE2 interaction and the Papain-like Protease PLpro
Gil-Moles, M.; Türck, S.; Basu, U.; Pettenuzzo, A.; Bhattacharya, S.; Rajan, A.; Ma, X.; Büssing, R.; Wölker, J.; Burmeister, H.; Hoffmeister, H.; Schneeberg, P.; Prause, A.; Lippmann, P.; Kusi-Nimarko, J.; Hassell-Hart, S.; McGown, A.; Guest, D.; Lin, Y.; Notaro, A.; Vinck, R.; Karges, J.; Cariou, K .; Peng, K.; Qin, X.; Wang, X.; Skiba, J.; Szczupak, L.; Kowalski, K.; Schatzschneider, U.; Hemmert, C.; Gornitzka, H.; Milaeva, E. R.; Nazarov, A. A.; Gasser, G.; Spencer, J.; Ronconi, L.; Kortz, U.; Cinatl, J.; Bojkova, D.; Ott, I. Chem. Eur. J. 2021, 27, 17928–17940. [Read Online]
- Selected polyoxopalladates as promising and selective antitumor drug candidates
Isakovic, A. M.; Čolović, M. B.; Ma, T.; Ma, X.; Jeremic, M.; Gerić, M.; Gajski, G.; Misirlic-Dencic, S.; Kortz, U.; Krstic, D. J. Biol. Inorg. Chem. 2021, 26, 957–971. [Read Online]
- PtIV– or MoVI-substituted decavanadates inhibit the growth of Mycobacterium smegmatis
Kostenkova, K.; Arhouma, Z.; Postal, K.; Rajan, A.; Kortz, U.; Nunes, G. G.; Crick, D. C.; Crans, D. C. J. Inorg. Biochem. 2021, 217, 111356
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- Shape and Size Tuning of BiIII-Centered Polyoxopalladates: High Resolution 209Bi NMR and 205/206Bi Radiolabelling for Potential Pharmaceutical Applications
Manna, P.; Szücs, D.; Csupász, T.; Fekete, A.; Szikra, D.; Lin, Z.; Gáspár, A.; Bhattacharya, S.; Zulaica, A.; Tóth, I.; Kortz, U. Inorg. Chem. 2020, 59, [Read Online] (Featured Article)
- Tetra-(p-tolyl)antimony(III)-containing Heteropolytungstates, [{(p-tolyl)SbIII}4(A-α-XW9O34)2]n- (X = P, As, Ge): Synthesis, Structure and Study of Antibacterial/Antitumor Activity
Ma, T.; Yang, P.; Dammann, I.; Lin, Z.; Mougharbel, A. S.; Li, M.-X.; Adăscăliţei, F.; Mitea, R.; Silvestru, C.; Thorstenson, C.; Ullrich, M. S.; Cseh, K.; Jakupec, M. A.; Keppler, B. K.; Donalisio, M.; Cavalli, R.; Lembo, D.; Kortz, U. Inorg. Chem. 2020, 59, [Read Online]
- In vivo toxicity evaluation of two polyoxotungstates with potential antidiabetic activity using Wistar rats as a model system
Dinčić, M.; Čolović, M. B.; Matutinović, M. S.; Ćetković, M.; Stevović, T. K.; Mougharbel, A. S.; Todorović, J.; Ignjatović, S.; Radosavljević, B.; Milisavljević, M.; Kortz, U.; Krstić, D. Z. RSC Advances 2020, 10, 2846-2855. [Read Online]
- Polyoxometalates in Biomedicine: Update and Overview
Čolović, M.; Lacković, M.; Lalatović, J.; Mougharbel, A. S.; Kortz, U.; Krstić, D. Z. Curr. Med. Chem. 2020, 27, 362-379. [Read Online]
- High-affinity Binding of Metallacaborane Cobalt Bis(dicarbollide) Anions to Cyclodextrins and Application to Membrane Translocation
Assaf, K. I.; Begaj, B.; Frank, A.; Nilam, M.; Mougharbel, A. S.; Kortz, U.; Nekvinda, J.; Grüner, B.; Gabel, D.; Nau, W. M. J. Org. Chem. 2019, 84, [Read Online]
- Tetravalent Metal Ion Guests in Polyoxopalladate Chemistry: Synthesis and Anticancer Activity of [MO8Pd12(PO4)8]12– (M = SnIV, PbIV)
Yang, P.; Ma, T.; Lang, Z.-L.; Misirlic-Dencic, S.; Isaković, A. M.; Bényei, A.; Čolović, M. B.; Markovic, I.; Krstić, D. Z.; Poblet, J. M.; Lin, Z.; Kortz, U. Inorg. Chem. 2019, 58, 11294-11299. [Read Online]
- A 224Ra-labeled Polyoxopalladate as Putative Radiopharmaceutical
Gott, M.; Yang, P.; Kortz, U.; Stephan, H.; Pietzsch, H.-J.; Mamat, C. Chem. Commun. 2019, 55, 7631-7634. [Read Online]
- Anti-zika Virus Activity of Polyoxometalates
Francese, R.; Civra, A.; Rittà, M.; Donalisio, M.; Argenziano, M.; Cavalli , R.; Mougharbel, A. S.; Kortz, U.; Lembo, D. Antivir. Res. 2019, 163, 29–33. [Read Online]
- Dithallium(III)-Containing 30-Tungsto-4-phosphate, [Tl2Na2(H2O)2(P2W15O56)2]16-: Synthesis, Structural Characterization, and Biological Studies
Ayass, W. W.; Fodor, T.; Farkas, E.; Lin, Z.; Qasim, H. M.; Bhattacharya, S.; Mougharbel, A. S.; Abdallah, K.; Ullrich M. S.; Zaib, S.; Iqbal, J.; Harangi, S.; Szalontai, G.; Bányai, I.; Zékány, L.; Tóth, I.; Kortz, U. Inorg. Chem. 2018, 57, 7168−7179. [Read Online]
- Development and In-vitro Anticancer Evaluation of Self-Assembled Supramolecular pH Responsive Hydrogels of Carboxymethyl Chitosan and Polyoxometalate
Azizullah; Al-Rashida, M.; Haider, A.; Kortz, U.; Joshi, S. A.; Iqbal, J. ChemistrySelect 2018, 3, 1472–1479. [Read Online]
- Novel pH Responsive Supramolecular Hydrogels of Chitosan hydrochloride and Polyoxometalate: In-Vitro, In-Vivo and Preliminary Safety Evaluation
Azizullah; ur-Rehman, N.; Haider, A.; Kortz, U.; Afridi, S.; Sohail, M.; Joshi, S. A.; Iqbal, J. Int. J. Pharm. 2017, 533, 125-137. [Read Online]
- Toxicity evaluation of two polyoxotungstates with anti-acetylcholinesterase activity
Čolović, M. B.; Medić, B.; Ćetković, M.; Kravić Stevović, T.; Stojanović, M.; Ayass, W. W.; Mougharbel, A. S.; Radenković, M.; Prostran, M.; Kortz, U.; Krstić, D. Z. Toxicol. Appl. Pharmacol. 2017, 333, 68-75. [Read Online]
- Synthesis, Structure and Antibacterial Activity of a Thallium(III)-Containing Polyoxometalate, [Tl2{B-β-SiW8O30(OH)}2]12-
Ayass, W. W.; Fodor, T.; Lin, Z.; Smith R. M.; Xing, X.; Abdallah, K.; Tóth, I.; Zékány, L.; Pascual-Borràs, M.; Rodríguez-Fortea, A.; Poblet, J. M.; Fan, L.; Cao, J.; Keita, B.; Ullrich M. S.; Kortz, U. Inorg. Chem. 2016, 55, 10118−10121. [Read Online]
- Gallium(III)-Containing, Sandwich-type Heteropolytungstates: Synthesis, Solution Characterization and Hydrolytic Studies Towards Phosphoester and Phosphoanhydride Bond Cleavage
Kandasamy, B.; Vanhaecht, S.; Nkala, F. M.; Beelen, T.; Bassil, B. S.; Parac-Vogt, T. N.; Kortz, U. Inorg. Chem. 2016, 55, 9204−9211. [Read Online]
- Tetra-Antimony(III)-Bridged 18-Tungsto-2-Arsenates(V), [(LSbIII)4(A–α-AsVW9O34)2]10− (L = Ph, OH): Turning Bioactivity On and Off by Ligand Substitution
Yang, P.; Lin, Z.; Bassil, B. S.; Alfaro-Espinoza, G.; Ullrich, M. S.; Li, M.-X.; Silvestru, C.; Kortz, U. Inorg. Chem. 2016, 55, 3718-3720.[Read Online]
- 19-Tungstodiarsenate(III) Functionalized by Organoantimony(III) Groups: Tuning the Structure-Bioactivity Relationship
Yang, P.; Lin, Z.; Alfaro-Espinoza, G.; Ullrich, M. S.; Rat, C.; Silvestru, C.; Kortz, U. Inorg. Chem. 2016, 55, 251-258. [Read Online]
- Organoantimony(III)-Containing Tungstoarsenates(III): From Controlled Assembly to Biological Activity
Yang, P.; Bassil, B. S.; Lin, Z.; Haider, A.; Alfaro-Espinoza, G.; Ullrich, M. S.; Silvestru, C.; Kortz, U. Chem. Eur. J. 2015, 21, 15600-15606. [Read Online]
- Polyoxometalates – potent and selective ecto-nucleotidase inhibitors
Lee, S.-Y.; Fiene, A.; Li, W.; Hank, T.; Brylev, K.; Fedovrov, V.; Lecka, J.; Haider, A.; Pietzsch, H.-J.; Zimmermann, H.; Sévigny, J.; Kortz, U,; Stephan, H.; Müller, C. E. Biochem. Pharmacol. 2015, 93, 171-181. [Read Online]
- Latent and active abPPO4 mushroom tyrosinases cocrystallized with hexatungstotellurate(VI) in a single crystal
Mauracher, S. G.; Molitor, C.; Al-Oweini, R.; Kortz, U.; Rompel, A. Acta Cryst. 2014, D70, 2301-2315. [Read Online]
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