Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Sergey V. Kraevsky"'
Autor:
Maria O. Ershova, Amir Taldaev, Petr V. Konarev, Georgy S. Peters, Anastasia A. Valueva, Irina A. Ivanova, Sergey V. Kraevsky, Andrey F. Kozlov, Vadim S. Ziborov, Yuri D. Ivanov, Alexander I. Archakov, Tatyana O. Pleshakova
Publikováno v:
Biomolecules, Vol 13, Iss 12, p 1776 (2023)
Currently, there is great interest in the development of highly sensitive bioanalytical systems for diagnosing diseases at an early stage, when pathological biomarkers are present in biological fluids at low concentrations and there are no clinical m
Externí odkaz:
https://doaj.org/article/db7e3b81c4924f898331b5ad0410d92b
Autor:
Polina I. Koroleva, Andrei A. Gilep, Sergey V. Kraevsky, Tatiana V. Tsybruk, Victoria V. Shumyantseva
Publikováno v:
Biosensors, Vol 13, Iss 4, p 457 (2023)
In the present work, screen-printed electrodes (SPE) modified with a synthetic surfactant, didodecyldimethylammonium bromide (DDAB) and streptolysin O (SLO) were prepared for cytochrome P450 3A4 (CYP3A4) immobilization, direct non-catalytic and catal
Externí odkaz:
https://doaj.org/article/c8364465c1f2433e91bdc428db511bfb
Autor:
Klinov, Sergey V. Kraevsky, Nikolay A. Barinov, Olga V. Morozova, Vladimir V. Palyulin, Alena V. Kremleva, Dmitry V.
Publikováno v:
International Journal of Molecular Sciences; Volume 24; Issue 12; Pages: 9827
In the present work, complexes of DNA with nano-clay montmorillonite (Mt) were investigated by means of atomic force microscopy (AFM) under various conditions. In contrast to the integral methods of analysis of the sorption of DNA on clay, AFM allowe
Publikováno v:
Mendeleev Communications. 31:718-720
This communication describes a new method for immobilizing indium oxide nanoparticles (∼20 nm) on the surface of reduced graphene oxide. Dispersion of graphene oxide with added In2O3 nanoparticles was treated in supercritical isopropanol, both a re
Autor:
Christophe Tournassat, Andrey G. Kalinichev, Sergey V. Kraevsky, Marylène Vayer, Brice F. Ngouana Wakou, Fabienne Warmont, Sylvain Grangeon
Publikováno v:
Applied Clay Science
Applied Clay Science, Elsevier, 2020, 186, 105442 (8 p.). ⟨10.1016/j.clay.2020.105442⟩
Applied Clay Science, Elsevier, 2020, 186, 105442 (8 p.). ⟨10.1016/j.clay.2020.105442⟩
International audience; Statistical information on the edge surface area and edge crystallographic orientation of clay nanoparticle surfaces is essential for proper accounting of the protonation-deprotonation reactions as a part of mechanistic surfac
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::9c87007c28c6f3f00e4edb0e11425053
https://hal-insu.archives-ouvertes.fr/insu-02476314/document
https://hal-insu.archives-ouvertes.fr/insu-02476314/document
Autor:
Evgeniy V. Dubrovin, Galina N. Fedyukina, Sergei G. Ignatov, Sergey V. Kraevsky, Tatiana E. Ignatyuk, Igor V. Yaminsky
Publikováno v:
The Open Microbiology Journal
Biointerfaces with a highly sensitive surface designed for specific interaction with biomolecules are essential approaches for providing advanced biochemical and biosensor assays. For the first time, we have introduced a simple AFM-based recognition
Autor:
Tatiana E. Ignatyuk, Sergei G. Ignatov, Igor V. Yaminsky, Sergey V. Kraevsky, Sergei S. Abramchuk, Alexandr G. Voloshin, Evgeniy V. Dubrovin
Publikováno v:
Langmuir. 24:13068-13074
Atomic force microscopy (AFM) was used to study the process of infection of bacterial cells by bacteriophages, for which purpose experimental protocols were elaborated. Three types of bacteriophages were characterized with AFM and transmission electr
Autor:
Evgeniy V. Dubrovin, Alexandr G. Voloshin, Sergey V. Kraevsky, Tatiana E. Ignatyuk, Sergei S. Abramchuk, Igor V. Yaminsky, Sergei G. Ignatov
Publikováno v:
Langmuir; Oct2008, Vol. 24 Issue 22, p13068-13074, 7p
Autor:
Sergei G. Ignatov, Igor V. Yaminsky, Galina N. Fedyukina, Tatyana E. Ignatyuk, Sergey V. Kraevsky, Evgeniy V. Dubrovin
Publikováno v:
Biophysical Journal. (3):191a
In this work we have investigated biofunctional surfaces on glow discharged mica and their specific binding of bacterial cells and their fragments from aqueous solutions. Atomic force microscopy (AFM) was used to obtain the topography and to probe th