Eszter Kozma
Affiliations: | 2011-2012 | Hungarian Academy of Sciences, Budapest, Budapest, Hungary |
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Sign in to add mentorKenneth A. Jacobson | research assistant | 2011-2012 | Hungarian Academy of Sciences, Budapest |
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Publications
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Federico S, Margiotta E, Moro S, et al. (2019) Conjugable A adenosine receptor antagonists for the development of functionalized ligands and their use in fluorescent probes. European Journal of Medicinal Chemistry. 111886 |
Knorr G, Kozma E, Schaart J, et al. (2018) BIOORTHOGONALLY APPLICABLE FLUOROGENIC CYANINE-TETRAZINES FOR NO-WASH SUPER-RESOLUTION IMAGING. Bioconjugate Chemistry |
Kozma E, Nikic I, Varga BR, et al. (2016) Hydrophilic trans-Cyclooctenylated Non-Canonical Amino Acids for Fast Intracellular Protein Labeling. Chembiochem : a European Journal of Chemical Biology |
Knorr G, Kozma E, Herner A, et al. (2016) New Red-Emitting Tetrazine-Phenoxazine Fluorogenic Labels for Live-Cell Intracellular Bioorthogonal Labeling Schemes. Chemistry (Weinheim An Der Bergstrasse, Germany) |
Dix AV, Moss SM, Phan K, et al. (2014) Programmable nanoscaffolds that control ligand display to a G-protein-coupled receptor in membranes to allow dissection of multivalent effects. Journal of the American Chemical Society. 136: 12296-303 |
Jayasekara PS, Barrett MO, Ball CB, et al. (2013) 4-Alkyloxyimino-cytosine nucleotides: tethering approaches to molecular probes for the P2Y6 receptor. Medchemcomm. 4: 1156-1165 |
Kozma E, Gizewski ET, Tosh DK, et al. (2013) Characterization by flow cytometry of fluorescent, selective agonist probes of the A(3) adenosine receptor. Biochemical Pharmacology. 85: 1171-81 |
Kozma E, Jayasekara PS, Squarcialupi L, et al. (2013) Fluorescent ligands for adenosine receptors. Bioorganic & Medicinal Chemistry Letters. 23: 26-36 |
Jayasekara PS, Barrett MO, Ball CB, et al. (2013) 4-Alkyloxyimino-cytosine nucleotides: Tethering approaches to molecular probes for the P2Y6 receptor Medchemcomm. 4: 1156-1165 |
Kozma E, Kumar TS, Federico S, et al. (2012) Novel fluorescent antagonist as a molecular probe in A(3) adenosine receptor binding assays using flow cytometry. Biochemical Pharmacology. 83: 1552-61 |