Zobrazeno 1 - 7
of 7
pro vyhledávání: '"S. L. Gribanovskii"'
Autor:
M. V. Efremova, Alexander G. Majouga, Alexander V. Kabanov, Natalia L. Klyachko, Al. O. Zhigachev, Yu. I. Golovin, S. L. Gribanovskii
Publikováno v:
Russian Metallurgy (Metally). 2019:374-384
An innovative nanomechanical strategy for in vivo biomedical applications is reviewed. The strategy is based on the use of complexes of special functionalized magnetic nanoparticles controlled by an external low-frequency nonheating magnetic field as
Autor:
M. V. Efremova, M. M. Veselov, Alexander V. Kabanov, A. V. Shuklinov, K. Yu. Vlasova, I. M. Le-Deygen, A. O. Zhigachev, Yu. I. Golovin, Natalia L. Klyachko, D. Yu. Golovin, Azizbek D. Usvaliev, Alexander G. Majouga, S. L. Gribanovskii
Publikováno v:
Nanotechnologies in Russia. 13:215-239
In this work, a novel approach to magnetic nanotheranostics based on the activation of magnetic nanoparticles (MNPs) with a nonheating low-frequency magnetic field has been described. Electromagnetic biomedical technologies implemented in low-frequen
Autor:
S. L. Gribanovskii, Natalia L. Klyachko, D. Yu. Golovin, Yu. I. Golovin, Alexander G. Majouga
Publikováno v:
Technical Physics Letters. 42:267-270
A magnetohydrodynamic model of controlled drug macromolecule release from transport magnetic nanoparticles covered by a polymer shell under the influence of a low-frequency (
Autor:
I. Vasyukova, A. A. Gusev, L. M. Fatkhutdinova, Alexey Tkachev, S. L. Gribanovskii, T. O. Khaliullin, A. Yu. Ubogov
Publikováno v:
Nanotechnologies in Russia. 10:458-467
An assessment of the reproductive toxicity of multiwalled carbon nanotubes (MWCNTs) for male laboratory mice according to a set of morphophysiological, biochemical, and histological criteria is reported. Oral administration of MWCNTs at doses of 0.3,
Autor:
Yu. I. Golovin, Alexander V. Kabanov, Natalia L. Klyachko, S. L. Gribanovskii, D. Yu. Golovin
Publikováno v:
Physics of the Solid State. 56:1342-1351
The forces, deformations, and stresses generated in macromolecules attached to single-domain magnetic nanoparticles under the influence of a low-frequency (nonheating) magnetic field have been analyzed analytically and numerically. It has been shown
Publikováno v:
Technical Physics. 59:932-935
Analytical and numerical methods are used to analyze the main regularities of deformation of biologically active molecules caused by the nonthermal effect of low-frequency magnetic field on single-domain magnetic nanoparticles to the surfaces of whic
Autor:
A. A. Samodurov, D. Yu. Golovin, Natalia L. Klyachko, S. L. Gribanovskii, Alexander G. Majouga, Yu. I. Golovin, Marina Sokolsky-Papkov, Alexander V. Kabanov
Publikováno v:
Technical Physics Letters. 41:455-457
It is proposed to use single-domain rodlike magnetic nanoparticles (MNPs) as mediators for nanomechanical control of properties of biological membranes and cells on the molecular or cellular level by exposing them to a homogeneous nonheating low-freq