Publications

Found 39 results
Author [ Title(Desc)] Type Year
Filters: First Letter Of Last Name is L  [Clear All Filters]
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
C
Fojta, M.; Havran, L.; Hocek, M.; Kodr, D.; Lesnikowski, Z. J.; Ortiz, M.; O'Sullivan, C. Kathleen; Pohl, R.; Saftić, D. Pavlović; Simonova, A.; et al. Carborane- or Metallacarborane-Linked Nucleotides for Redox Labeling. Orthogonal Multipotential Coding of all Four DNA Bases for Electrochemical Analysis and Sequencing. Journal of the American Chemical Society 2021, 143 (18), 7124-7134.
Balintová, J.; Simonova, A.; Bialek-Pietras, M.; Olejniczak, A.; Lesnikowski, Z. J.; Hocek, M. Carborane-linked 2 '-deoxyuridine 5 '-O-triphosphate as building block for polymerase synthesis of carborane-modified DNA. Bioorganic & Medicinal Chemistry Letters 2017, 27 (21), 4786-4788 DOI: 10.1016/j.bmcl.2017.09.064.
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.
Groborz, O.; Holubová, M.; Hromádková, J.; Hrubý, M.; Lobaz, V.; Loukotová, L.; Pechrová, Z.; Rabyk, M.; Štěpánek, P.; Trhlíková, O. Chemically modified glycogens: How they influence formation of amyloid fibrils?. Soft Matter 2021, 17 (6), 1614-1627.
Groborz, O.; Holubová, M.; Hromádková, J.; Hrubý, M.; Lobaz, V.; Loukotová, L.; Pechrová, Z.; Rabyk, M.; Štěpánek, P.; Trhlíková, O. Chemically modified glycogens: How they influence formation of amyloid fibrils?. Soft Matter 2021, 17 (6), 1614-1627.
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.
xs sm md lg