نتایج جستجو برای: coprecipitation magnetic properties hyperthermia

تعداد نتایج: 1177551  

Journal: :Bulletin du cancer 2017
Ayesha Sohail Zaki Ahmad O Anwar Bég Sarmad Arshad Lubna Sherin

Hyperthermia treatment, generated by magnetic nanoparticles (MNPs) is promising since it is tumour-focused, minimally invasive and uniform. The most unique feature of magnetic nanoparticles is its reaction and modulation by a magnetic force basically responsible for enabling its potential as heating mediators for cancer therapy. In magnetic nanoparticle hyperthermia, a tumour is preferentially ...

2016
Oihane K Arriortua Eneko Garaio Borja Herrero de la Parte Maite Insausti Luis Lezama Fernando Plazaola Jose Angel García Jesús M Aizpurua Maialen Sagartzazu Mireia Irazola Nestor Etxebarria Ignacio García-Alonso Alberto Saiz-López José Javier Echevarria-Uraga

This work reports important advances in the study of magnetic nanoparticles (MNPs) related to their application in different research fields such as magnetic hyperthermia. Nanotherapy based on targeted nanoparticles could become an attractive alternative to conventional oncologic treatments as it allows a local heating in tumoral surroundings without damage to healthy tissue. RGD-peptide-conjug...

2015
Murugesan Sneha Nachiappan Meenakshi Sundaram

Recently, multifunctional magnetic nanostructures have been found to have potential applications in biomedical and tissue engineering. Iron oxide nanoparticles are biocompatible and have distinctive magnetic properties that allow their use in vivo for drug delivery and hyperthermia, and as T2 contrast agents for magnetic resonance imaging. Hydroxyapatite is used frequently due to its well-known...

2012
Qun Zhao Luning Wang Rui Cheng Leidong Mao Robert D. Arnold Elizabeth W. Howerth Zhuo G. Chen Simon Platt

In this study, magnetic iron oxide nanoparticle induced hyperthermia is applied for treatment of head and neck cancer using a mouse xenograft model of human head and neck cancer (Tu212 cell line). A hyperthermia system for heating iron oxide nanoparticles was developed by using alternating magnetic fields. Both theoretical simulation and experimental studies were performed to verify the thermot...

Journal: :Nanoscale 2021

We show how tumour heating in magnetic hyperthermia can become more homogeneous through exploitation of magnetisation dynamics interacting particles.

2013
Tomoyuki Araya Kazuo Kasahara Shingo Nishikawa Hideharu Kimura Takashi Sone Hideo Nagae Yoshio Ikehata Isamu Nagano Masaki Fujimura

BACKGROUND The effects of inductive hyperthermia on lung cancer have yet to be fully investigated. Magnetic nanoparticles used in inductive hyperthermia are made-to-order and expensive. This study was performed to investigate the use of ferucarbotran in inductive hyperthermia and to clarify whether inductive hyperthermia using ferucarbotran promotes antitumor effects in vivo using a lung cancer...

2017
U Altanerova M Babincova P Babinec K Benejova J Jakubechova V Altanerova M Zduriencikova V Repiska C Altaner

Magnetic hyperthermia, or the heating of tissues using magnetic materials, is a promising approach for treating cancer. We found that human mesenchymal stem cells (MSCs) isolated from various tissues and MSCs expressing the yeast cytosine deaminase∷uracil phosphoribosyl transferase suicide fusion gene (yCD∷UPRT) can be labeled with Venofer, an iron oxide carbohydrate nanoparticle. Venofer label...

Journal: :Nanomedicine : nanotechnology, biology, and medicine 2010
Carlos Martinez-Boubeta Lluis Balcells Rosa Cristòfol Coral Sanfeliu Elisenda Rodríguez Ralph Weissleder Silvia Lope-Piedrafita Konstantinos Simeonidis Makis Angelakeris Felip Sandiumenge Alberto Calleja Lluis Casas Claude Monty Benjamin Martínez

UNLABELLED A one-step process for the production of nanoparticles presenting advanced magnetic properties can be achieved using vapor condensation. In this article, we report on the fabrication of Fe particles covered by a uniform MgO epitaxial shell. MgO has a lower surface energy than Fe, which results in a core-shell crystal formation. The particles satisfy a few of technical requirements fo...

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