Zobrazeno 1 - 10
of 76
pro vyhledávání: '"Litvinec A"'
Autor:
Plencner M, East B, Tonar Z, Otáhal M, Prosecká E, Rampichová M, Krejčí T, Litvinec A, Buzgo M, Míčková A, Nečas A, Hoch J, Amler E
Publikováno v:
International Journal of Nanomedicine, Vol 2014, Iss Issue 1, Pp 3263-3277 (2014)
Martin Plencner,1,2,* Barbora East,3,* Zbynek Tonar,4 Martin Otáhal,5 Eva Prosecká,1,2 Michala Rampichová,2,6 Tomáš Krejčí,3 Andrej Litvinec,2,7 Matej Buzgo,2,6 Andrea Míčková,1,2,6 Alois Nečas,8 Jirí Hoch,3 Evžen Amler1,2,9 1Institute o
Externí odkaz:
https://doaj.org/article/4310362b4d404807a7542b31f70e6592
Autor:
Ivana Nemcakova, Andrej Litvinec, Vaclav Mandys, Stepan Potocky, Martin Plencner, Martina Doubkova, Ondrej Nanka, Veronika Olejnickova, Barbora Sankova, Martin Bartos, Egor Ukraintsev, Oleg Babčenko, Lucie Bacakova, Alexander Kromka, Bohuslav Rezek, David Sedmera
Publikováno v:
Scientific Reports, Vol 12, Iss 1, Pp 1-17 (2022)
Abstract The present study investigates the effect of an oxidized nanocrystalline diamond (O-NCD) coating functionalized with bone morphogenetic protein 7 (BMP-7) on human osteoblast maturation and extracellular matrix mineralization in vitro and on
Externí odkaz:
https://doaj.org/article/60e7ffa813d74685ab0349533b782bbd
Autor:
V. M. Bakulin, A. S'. Tumanov, E. A. Martinson, S. G. Litvinec, M. K. Bakulin, V. B. Kalininski
Publikováno v:
Антибиотики и Химиотерапия, Vol 59, Iss 7-8, Pp 3-7 (2020)
Addition of perfluorodecalin with gas-transporting function to the liquid medium during submerged cultivation of actinomycetes of the genus Streptomyces resulted in higher intensity and level of the biomass synthesis and increased production of strep
Externí odkaz:
https://doaj.org/article/6857993f4a2f4945b78e2cd4ced9d4fc
Autor:
Nemcakova, Ivana1 (AUTHOR), Litvinec, Andrej1 (AUTHOR), Mandys, Vaclav2 (AUTHOR), Potocky, Stepan3 (AUTHOR), Plencner, Martin1 (AUTHOR), Doubkova, Martina1 (AUTHOR) martina.doubkova@fgu.cas.cz, Nanka, Ondrej4 (AUTHOR), Olejnickova, Veronika1,4 (AUTHOR), Sankova, Barbora1,4 (AUTHOR), Bartos, Martin5 (AUTHOR), Ukraintsev, Egor6 (AUTHOR), Babčenko, Oleg6 (AUTHOR), Bacakova, Lucie1 (AUTHOR), Kromka, Alexander3 (AUTHOR), Rezek, Bohuslav6 (AUTHOR), Sedmera, David1,4 (AUTHOR) david.sedmera@fgu.cas.cz
Publikováno v:
Scientific Reports. 3/28/2022, Vol. 12 Issue 1, p1-17. 17p.
Autor:
Eva Filová, Zbyněk Tonar, Věra Lukášová, Matěj Buzgo, Andrej Litvinec, Michala Rampichová, Jiří Beznoska, Martin Plencner, Andrea Staffa, Jana Daňková, Miroslav Soural, Jiří Chvojka, Anna Malečková, Milena Králíčková, Evžen Amler
Publikováno v:
Nanomaterials, Vol 10, Iss 8, p 1504 (2020)
Hydrogels are suitable for osteochondral defect regeneration as they mimic the viscoelastic environment of cartilage. However, their biomechanical properties are not sufficient to withstand high mechanical forces. Therefore, we have prepared electros
Externí odkaz:
https://doaj.org/article/a3db80172d29465caf71e5b0d0d51463
Autor:
Petr Braťka, Taťána Fenclová, Jana Hlinková, Lenka Uherková, Eva Šebová, Veronika Hefka Blahnová, Věra Hedvičáková, Radmila Žižková, Andrej Litvinec, Tomáš Trč, Jozef Rosina, Eva Filová
Publikováno v:
Nanomaterials; Volume 12; Issue 21; Pages: 3824
Chronic wounds represent a significant socio-economic problem, and the improvement of their healing is therefore an essential issue. This paper describes the preparation and biological properties of a novel functionalized nanofiber wound dressing con
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Autor:
Braťka, Petr, Fenclová, Taťána, Hlinková, Jana, Uherková, Lenka, Šebová, Eva, Hefka Blahnová, Veronika, Hedvičáková, Věra, Žižková, Radmila, Litvinec, Andrej, Trč, Tomáš, Rosina, Jozef, Filová, Eva
Publikováno v:
Nanomaterials (2079-4991); Nov2022, Vol. 12 Issue 21, p3824, 25p
Autor:
Věra Lukášová, Eva Filová, Jiří Beznoska, Jiří Chvojka, Martin Plencner, Zbyněk Tonar, Andrea Staffa, Anna Malečková, Andrej Litvinec, Evžen Amler, Matěj Buzgo, Miroslav Soural, Jana Daňková, Milena Králíčková, Michala Rampichová
Publikováno v:
Nanomaterials
Volume 10
Issue 8
Nanomaterials, Vol 10, Iss 1504, p 1504 (2020)
Volume 10
Issue 8
Nanomaterials, Vol 10, Iss 1504, p 1504 (2020)
Hydrogels are suitable for osteochondral defect regeneration as they mimic the viscoelastic environment of cartilage. However, their biomechanical properties are not sufficient to withstand high mechanical forces. Therefore, we have prepared electros