Publications

Found 163 results
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C
Mateus, M. Alexandre; Lapinskaite, R.; Malatinec, Š.; Rýček, L. Cross-Coupling as a Key Step in the Synthesis and Structure Revision of the Natural Products Selagibenzophenones A and B. Catalysts [online] 2021, 11 (6), nestránkováno.
Murphy, B.; Šnajdr, I.; Machara, A.; Endoma-Arias, M. Ann A.; Stamatatos, T. C.; D. Cox, P.; Hudlicky, T. Conversion of Thebaine to Oripavine and Other Useful Intermediates for the Semisynthesis of Opiate-Derived Agents: Synthesis of Hydromorphone. Advanced Synthesis & Catalysis 2014, 356 (11-12), 2679-2687 DOI: 10.1002/adsc.201400445.
Murphy, B.; Šnajdr, I.; Machara, A.; Endoma-Arias, M. Ann A.; Stamatatos, T. C.; D. Cox, P.; Hudlicky, T. Conversion of Thebaine to Oripavine and Other Useful Intermediates for the Semisynthesis of Opiate-Derived Agents: Synthesis of Hydromorphone. Advanced Synthesis & Catalysis 2014, 356 (11-12), 2679-2687 DOI: 10.1002/adsc.201400445.
Asanuma, Y.; Císařová, I.; Kotora, M.; Manca, G.; Moss, R.; Ulč, J. Computational, Mechanistic, and Experimental Insights into Regioselective Catalytic C–C Bond Activation in Linear 1-Aza-[3]triphenylene. ACS Omega [online] 2022, 7 (10), 8665-8674.
Asanuma, Y.; Císařová, I.; Kotora, M.; Manca, G.; Moss, R.; Ulč, J. Computational, Mechanistic, and Experimental Insights into Regioselective Catalytic C–C Bond Activation in Linear 1-Aza-[3]triphenylene. ACS Omega [online] 2022, 7 (10), 8665-8674.
Pumera, M.; Matalova, R.; Jelinek, I.; Jindrich, J.; Juza, J. Comparison of Association Constants of Cyclodextrins and Their tert-Butyl Derivatives With Halogenbenzoic Acids and Acridine Derivatives. Molecules 2001, 6 (3), 221-229 DOI: 10.3390/60300221.
Olszewska, A.; Dadová, J.; Mačková, M.; Hocek, M. Cleavage of DNA containing 5-fluorocytosine or 5-fluorouracil by type II restriction endonucleases. Bioorganic & Medicinal Chemistry 2015, 23 (21), 6885-6890 DOI: 10.1016/j.bmc.2015.09.051.
Nosek, V.; Míšek, J. Chemoenzymatic Deracemization of Chiral Sulfoxides. Angewandte Chemie-International Edition 2018, 57 (31), 9849-9852 DOI: 10.1002/anie.201805858.
Machara, A.; D. Cox, P.; Hudlicky, T. ChemInform Abstract: Synthesis of Nalbuphine from Oripavine via N-Demethylation of N-Cyclobutylmethyl Oripavine. ChemInform 2012, 43 (19), no-no DOI: 10.1002/chin.201219209.
Báječný, M.; Beneš, J.; Czernek, J.; Dunlop, D.; Francová, P.; Groborz, O.; Heizer, T.; Hobza, P.; Hrubý, M.; Kolouchová, K.; et al. Chelating Polymers for Hereditary Hemochromatosis Treatment. Macromolecular Bioscience 2020, 20 (12), nestránkováno DOI: 10.1002/mabi.202000254.
Fejos, I.; Varga, E.; Benkovics, G.; Malanga, M.; Sohajda, T.; Szeman, J.; Beni, S. Characterization of a single-isomer carboxymethyl-beta-cyclodextrin in chiral capillary electrophoresis. Electrophoresis 2017, 38 (15), 1869-1877 DOI: 10.1002/elps.201700004.
Beytlerová, N.; Mateus, M. Alexandre; Kotora, M.; Rýček, L. Catalytic Cyclotrimerization Pathway for Synthesis of Selaginpulvilins C and D: Scope and Limitations. Organic Letters 2021, 23 (12), 4511-4515.
Pickard, C. J.; Salamat, A.; Bojdys, M. J.; Needs, R. J.; McMillan, P. F. Carbon nitride frameworks and dense crystalline polymorphs. Physical Review B 2016, 94 (9) DOI: 10.1103/PhysRevB.94.094104.
B
Sun, C.; Bojdys, M. J.; Clarke, S. M.; Harper, L. D.; Jefferson, A.; Castro, M. A.; Medina, S. Bulk and Adsorbed Monolayer Phase Behavior of Binary Mixtures of Undecanoic Acid and Undecylamine: Catanionic Monolayers. Langmuir 2011, 27 (7), 3626-3637 DOI: 10.1021/la1048198.
Güixens-Gallardo, P.; Zawada, Z.; Matyašovský, J.; Dziuba, D.; Pohl, R.; Kraus, T.; Hocek, M. Brightly Fluorescent 2 '-Deoxyribonucleoside Triphosphates Bearing Methylated Bodipy Fluorophore for in Cellulo Incorporation to DNA, Imaging, and Flow Cytometry. Bioconjugate Chemistry 2018, 29 (11), 3906-3912 DOI: 10.1021/acs.bioconjchem.8b00721.
Brynda, J.; Fanfrlík, J.; Hadzima, M.; Hánová, I.; Horn, M.; Houštecká, R.; Lepšík, M.; Majer, P.; Mareš, M.; Mertlíková-Kaiserová, H.; et al. Biomimetic Macrocyclic Inhibitors of Human Cathepsin D: Structure-Activity Relationship and Binding Mode Analysis. Journal of Medicinal Chemistry 2020, 63 (4), 1576-1596 DOI: 10.1021/acs.jmedchem.9b01351.
Brynda, J.; Fanfrlík, J.; Hadzima, M.; Hánová, I.; Horn, M.; Houštecká, R.; Lepšík, M.; Majer, P.; Mareš, M.; Mertlíková-Kaiserová, H.; et al. Biomimetic Macrocyclic Inhibitors of Human Cathepsin D: Structure-Activity Relationship and Binding Mode Analysis. Journal of Medicinal Chemistry 2020, 63 (4), 1576-1596 DOI: 10.1021/acs.jmedchem.9b01351.
Brynda, J.; Fanfrlík, J.; Hadzima, M.; Hánová, I.; Horn, M.; Houštecká, R.; Lepšík, M.; Majer, P.; Mareš, M.; Mertlíková-Kaiserová, H.; et al. Biomimetic Macrocyclic Inhibitors of Human Cathepsin D: Structure-Activity Relationship and Binding Mode Analysis. Journal of Medicinal Chemistry 2020, 63 (4), 1576-1596 DOI: 10.1021/acs.jmedchem.9b01351.
Konvalinka, J.; Kožíšek, M.; Kráľ, M.; Machara, A.; Majer, P.; Reiberger, R. Bioisosteres of Luteolin: New Class of Potential Inhibitors of Influenza Virus RNA-Polymerase, 2022.
Konvalinka, J.; Kožíšek, M.; Kráľ, M.; Machara, A.; Majer, P.; Reiberger, R. Bioisosteres of Luteolin: New Class of Potential Inhibitors of Influenza Virus RNA-Polymerase, 2022.
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