Zobrazeno 1 - 10
of 78
pro vyhledávání: '"Alexander Zaichenko"'
Autor:
Nazar Manko, Marina Starykovych, Nataliya Mitina, Kateryna Volianiuk, Lizhen Wang, Meng Jin, Kechun Liu, Rostyslav Panchuk, Olga Klyuchivska, Alexander Zaichenko, Yuriy Kit, Rostyslav Stoika
Publikováno v:
ACS Omega, Vol 7, Iss 46, Pp 41956-41967 (2022)
Externí odkaz:
https://doaj.org/article/683f697a10d14d2dad7ab470ebc1088e
Autor:
Rostyslav Panchuk, Nadiya Skorokhyd, Vira Chumak, Lilya Lehka, Halyna Kosiakova, Tetyana Horid’ko, Iehor Hudz, Nadiya Hula, Anna Riabtseva, Nataliya Mitina, Alexander Zaichenko, Petra Heffeter, Walter Berger, Rostyslav Stoika
Publikováno v:
Pharmaceutics, Vol 15, Iss 3, p 835 (2023)
This study reports a dose-dependent pro-apoptotic action of synthetic cannabimimetic N-stearoylethanolamine (NSE) on diverse cancer cell lines, including multidrug-resistant models. No antioxidant or cytoprotective effects of NSE were found when it w
Externí odkaz:
https://doaj.org/article/c31b2418cb2841558a46d82502a9b346
Autor:
Lesya Kobylinska, Igor Patereha, Natalia Finiuk, Natalia Mitina, Anna Riabtseva, Igor Kotsyumbas, Rostyslav Stoika, Alexander Zaichenko, Sandor G. Vari
Publikováno v:
Cancer Nanotechnology, Vol 9, Iss 1, Pp 1-13 (2018)
Abstract Background Development of biocompatible multifunctional polymeric drug carriers is crucial in modern pharmaceutics aimed to create “smart” drugs. The high potential of the PEGylated comb-like polymeric nanocarrier (PNC) in delivering bot
Externí odkaz:
https://doaj.org/article/89d16d5ca88641f4b84d77f948ddc2f0
Autor:
Nataliya Finiuk, Olga Klyuchivska, Nataliya Mitina, Halyna Kuznietsova, Kateryna Volianiuk, Alexander Zaichenko, Volodymyr Rybalchenko, Rostyslav Stoika
Publikováno v:
Scientia Pharmaceutica, Vol 90, Iss 1, p 7 (2022)
The maleimide derivative 1-(4-chlorobenzyl)-3-chloro-4-(3-trifluoromethylphenylamino)-1H-pyrrole-2,5-dione (MI-1) was synthesized as inhibitor of several protein kinases, however, its application is hindered by its poor water solubility. In this stud
Externí odkaz:
https://doaj.org/article/10d90a2fd0d643fcbca586b7cba6bd8a
Autor:
Yevhen Filyak, Nataliya Finiuk, Nataliya Mitina, Oksana Bilyk, Vladimir Titorenko, Olesya Hrydzhuk, Alexander Zaichenko, Rostyslav Stoika
Publikováno v:
BioTechniques, Vol 54, Iss 1, Pp 35-43 (2013)
The genetic transformation of target cells is a key tool in modern biological research, as well as in many gene therapy and biotechnology applications. Here we describe a new method for delivery of DNA into several industrially important species of y
Externí odkaz:
https://doaj.org/article/2df2f3ab2e4b41a08b94953f106e6996
Publikováno v:
Studia Biologica. 16:19-28
Background. Many types of tumors are sensitive to changes in prooxidant-antioxidant balance. Thus, further studies on reactive oxygen species inducing antitumor drugs that generate oxidative stress-dependent cytotoxic effects are promising. Our previ
Publikováno v:
Studia Biologica. 16:3-18
Background. Various cationic polymers have been proposed for use as carriers of genetic materials in biotechnology and biomedicine. The poly(2-dimethylamino)ethyl-methacrylate (poly(DMAEMA)) demonstrated high transfection efficiency and low cytotoxic
Autor:
Oksana Balaban, Oleh Izhyk, Alexander Zaichenko, Natalia Mitina, Ivan Grygorchak, Khrystyna Harhay
Publikováno v:
Lithuanian Journal of Physics. 63
In this work, crystalline and amorphous nano-MoS2 materials for effective Li+-intercalation current generation have been synthesized. The effect of disordering on the structural and electrochemical properties of nano-MoS2 has been systematically inve
Publikováno v:
Studia Biologica. 16:19-32
Background. Drug delivery systems (DDS) have demonstrated a significant ability to overcome many of the challenges associated with the delivery of hydrophobic chemotherapeutic compounds to tumor tissues. However, hepatotoxicity and suppression of the
Publikováno v:
Біологічні студії, Vol 15, Iss 3, Pp 29-40 (2021)
Introduction. Genetic engineering in plants is of great importance for agriculture, biotechnology and medicine, and nanomaterials are widely used for genetic engineering. The aim of present study was to evaluate the potential of poly(2-dimethylamino)