Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Frederico D A S Pereira"'
Autor:
Karina R Silva, Rodrigo A Rezende, Frederico D A S Pereira, Peter Gruber, Mellannie P Stuart, Aleksandr Ovsianikov, Ken Brakke, Vladimir Kasyanov, Jorge V L da Silva, José M Granjeiro, Leandra S Baptista, Vladimir Mironov
Publikováno v:
PLoS ONE, Vol 11, Iss 11, p e0166073 (2016)
Adipose stem cells (ASCs) spheroids show enhanced regenerative effects compared to single cells. Also, spheroids have been recently introduced as building blocks in directed self-assembly strategy. Recent efforts aim to improve long-term cell retenti
Externí odkaz:
https://doaj.org/article/ace306c64fad4045aa8cd0504c6dc1c2
Autor:
Elizaveta V. Koudan, Alla I. Zorina, Aleksandr A. Levin, Frederico D. A. S. Pereira, Stanislav V. Petrov, Saida Sh. Karshieva, Vladimir A. Kasyanov, Natalya E. Manturova, Andrey Yu. Ustyugov, Nikolay N. Potekaev, Vladislav A. Parfenov, Pavel A. Karalkin, Yusef D. Khesuani, Elena A. Bulanova, Pavel B. Kopnin, Artur A. Isaev, Vladimir A. Mironov, Vadim L. Zorin
Publikováno v:
Cell and Tissue Research. 390:453-464
Autor:
Aleksandr A. Levin, Pavel A. Karalkin, Elizaveta V. Koudan, Fedor S. Senatov, Vladislav A. Parfenov, Vladislav A. Lvov, Stanislav V. Petrov, Frederico D. A. S. Pereira, Alexey V. Kovalev, Egor O. Osidak, Sergey P. Domogatsky, Natalya E. Manturova, Vladimir A. Kasyanov, Natalia S. Sergeeva, Vadim L. Zorin, Yusef D. Khesuani, Vladimir A. Mironov
Publikováno v:
International Journal of Bioprinting. 9
In situ bioprinting is one of the most clinically relevant techniques in the emerging bioprinting technology because it could be performed directly on the human body in the operating room and it does not require bioreactors for post-printing tissue m
Autor:
Pavel A. Domnin, Vladislav A. Parfenov, Alexey S. Kononikhin, Stanislav V. Petrov, Nataliya V. Shevlyagina, Anastasia Yu. Arkhipova, Elizaveta V. Koudan, Elizaveta K. Nezhurina, Alexander G. Brzhozovskiy, Anna E. Bugrova, Anastasia M. Moysenovich, Alexandr A. Levin, Pavel A. Karalkin, Frederico D. A. S. Pereira, Vladimir G. Zhukhovitsky, Elena S. Lobakova, Vladimir A. Mironov, Evgeny N. Nikolaev, Yusef D. Khesuani, Svetlana A. Ermolaeva
Publikováno v:
International Journal of Molecular Sciences; Volume 23; Issue 3; Pages: 1837
International Journal of Molecular Sciences, Vol 23, Iss 1837, p 1837 (2022)
International Journal of Molecular Sciences, Vol 23, Iss 1837, p 1837 (2022)
Changes in bacterial physiology caused by the combined action of the magnetic force and microgravity were studied in Escherichia coli grown using a specially developed device aboard the International Space Station. The morphology and metabolism of E.
Autor:
Pavel A, Domnin, Vladislav A, Parfenov, Alexey S, Kononikhin, Stanislav V, Petrov, Nataliya V, Shevlyagina, Anastasia Yu, Arkhipova, Elizaveta V, Koudan, Elizaveta K, Nezhurina, Alexander G, Brzhozovskiy, Anna E, Bugrova, Anastasia M, Moysenovich, Alexandr A, Levin, Pavel A, Karalkin, Frederico D A S, Pereira, Vladimir G, Zhukhovitsky, Elena S, Lobakova, Vladimir A, Mironov, Evgeny N, Nikolaev, Yusef D, Khesuani, Svetlana A, Ermolaeva
Publikováno v:
International journal of molecular sciences. 23(3)
Changes in bacterial physiology caused by the combined action of the magnetic force and microgravity were studied in
Autor:
Vladimir A. Mironov, Fedor S. Senatov, Elizaveta V. Koudan, Frederico D. A. S. Pereira, Vladimir A. Kasyanov, Jose Mauro Granjeiro, Leandra Santos Baptista
Publikováno v:
Polymers. 14:5068
The concept of “lockyballs” or interlockable mini-scaffolds fabricated by two-photon polymerization from biodegradable polymers for the encagement of tissue spheroids and their delivery into the desired location in the human body has been recentl
Autor:
Rodrigo A. Rezende, Frederico D. A. S. Pereira, Pedro Y. Noritomi, Jorge V. L. Da Silva, Vladimir Mironov, Leandra S. Baptista, Karina R. Da Silva, Radovan Borojevic, Vladimir Kasyanov, Aleksandr Ovsianikov, Jurgen Stampfl, Maria Farsari
Publikováno v:
Proceedings of the 1st International Conference on Progress in Additive Manufacturing.
Tissue engineering is a biomedical technology of artificial development of living three-dimensional human tissues and organs. Tissue engineering is based on two distinct premises. First more conventional approach uses solid biodegradable porous scaff