SURFACE MODIFITED MAGNETIC NANOPARTICLES FOR BIOMEDICAL APPLICATION

Unique physicochemical properties of nanomaterials arouse a great interest of specialists of various fields. Materials based on nanostructures purchase new mechanical, optical, and electrical properties. Great practical importance is the magnetic properties of materials, structural elements which li...

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Main Authors: G. Yu. Vasyukov, I. V. Mitrofanova, V. V. Ivanova, V. D. Prokopiyeva
Format: Article
Language:English
Published: Siberian State Medical University (Tomsk) 2014-12-01
Series:Bûlleten' Sibirskoj Mediciny
Subjects:
Online Access:https://bulletin.tomsk.ru/jour/article/view/113
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spelling doaj-2d67810495dc457696191e8a8944b73f2021-07-29T08:38:00ZengSiberian State Medical University (Tomsk)Bûlleten' Sibirskoj Mediciny1682-03631819-36842014-12-01136334010.20538/1682-0363-2014-6-33-40111SURFACE MODIFITED MAGNETIC NANOPARTICLES FOR BIOMEDICAL APPLICATIONG. Yu. Vasyukov0I. V. Mitrofanova1V. V. Ivanova2V. D. Prokopiyeva3Siberian State Medical University, Tomsk; Research Institute of Complex Problems of Cardio-Vascular Diseases, Siberian Branch of Russian Academy of Medical Science, KemerovoSiberian State Medical University, TomskSiberian State Medical University, TomskResearch Institute of Mental Health, Siberian Branch of Russian Academy Medical Science, TomskUnique physicochemical properties of nanomaterials arouse a great interest of specialists of various fields. Materials based on nanostructures purchase new mechanical, optical, and electrical properties. Great practical importance is the magnetic properties of materials, structural elements which lie at the nanoscale. Nanomaterials with magnetic properties have been used in drug delivery, magnetic hyperthermia, magnetic separation, and magnetic resonance imaging. Magnetic properties of nanoparticles depend on many factors, such as particle size and shape, chemical properties and lattice type. Magnetic characteristics can be changed by the interaction of particles with the surrounding matrix and neighboring particles.Unfortunately, many studies show that a great disadvantage of the unmodified nanoparticles is their non-specific interaction with the cells, which leads to their accumulation outside the target organs, also to­xicity of nanomaterials and their low colloidal stability. Surface modification of nanoparticles can solve this problem. Development of nanostructures based on magnetic nanoparticles and functionalized by biocompatible agents is one of the main targets of nanobiotechnology.https://bulletin.tomsk.ru/jour/article/view/113ultradispersed materialsmagnetic nanoparticlescell biologynanotoxicologysurface modification
collection DOAJ
language English
format Article
sources DOAJ
author G. Yu. Vasyukov
I. V. Mitrofanova
V. V. Ivanova
V. D. Prokopiyeva
spellingShingle G. Yu. Vasyukov
I. V. Mitrofanova
V. V. Ivanova
V. D. Prokopiyeva
SURFACE MODIFITED MAGNETIC NANOPARTICLES FOR BIOMEDICAL APPLICATION
Bûlleten' Sibirskoj Mediciny
ultradispersed materials
magnetic nanoparticles
cell biology
nanotoxicology
surface modification
author_facet G. Yu. Vasyukov
I. V. Mitrofanova
V. V. Ivanova
V. D. Prokopiyeva
author_sort G. Yu. Vasyukov
title SURFACE MODIFITED MAGNETIC NANOPARTICLES FOR BIOMEDICAL APPLICATION
title_short SURFACE MODIFITED MAGNETIC NANOPARTICLES FOR BIOMEDICAL APPLICATION
title_full SURFACE MODIFITED MAGNETIC NANOPARTICLES FOR BIOMEDICAL APPLICATION
title_fullStr SURFACE MODIFITED MAGNETIC NANOPARTICLES FOR BIOMEDICAL APPLICATION
title_full_unstemmed SURFACE MODIFITED MAGNETIC NANOPARTICLES FOR BIOMEDICAL APPLICATION
title_sort surface modifited magnetic nanoparticles for biomedical application
publisher Siberian State Medical University (Tomsk)
series Bûlleten' Sibirskoj Mediciny
issn 1682-0363
1819-3684
publishDate 2014-12-01
description Unique physicochemical properties of nanomaterials arouse a great interest of specialists of various fields. Materials based on nanostructures purchase new mechanical, optical, and electrical properties. Great practical importance is the magnetic properties of materials, structural elements which lie at the nanoscale. Nanomaterials with magnetic properties have been used in drug delivery, magnetic hyperthermia, magnetic separation, and magnetic resonance imaging. Magnetic properties of nanoparticles depend on many factors, such as particle size and shape, chemical properties and lattice type. Magnetic characteristics can be changed by the interaction of particles with the surrounding matrix and neighboring particles.Unfortunately, many studies show that a great disadvantage of the unmodified nanoparticles is their non-specific interaction with the cells, which leads to their accumulation outside the target organs, also to­xicity of nanomaterials and their low colloidal stability. Surface modification of nanoparticles can solve this problem. Development of nanostructures based on magnetic nanoparticles and functionalized by biocompatible agents is one of the main targets of nanobiotechnology.
topic ultradispersed materials
magnetic nanoparticles
cell biology
nanotoxicology
surface modification
url https://bulletin.tomsk.ru/jour/article/view/113
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AT vvivanova surfacemodifitedmagneticnanoparticlesforbiomedicalapplication
AT vdprokopiyeva surfacemodifitedmagneticnanoparticlesforbiomedicalapplication
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