نتایج جستجو برای: polyglycerol coated spions

تعداد نتایج: 47927  

2013
S. Sharifi S. Daghighi M. M. Motazacker B. Badlou B. Sanjabi A. Akbarkhanzadeh A. T. Rowshani S. Laurent M. P. Peppelenbosch F. Rezaee

Adipocytes hypertrophy is the main cause of obesity and its affliction such as type 2 diabetes (T2D). Since superparamagnetic iron oxide nanoparticles (SPIONs) are used for a wide range of biomedical/medical applications, we aimed to study the effect of SPIONs on 22 and 29 risk genes (Based on gene wide association studies) for obesity and T2D in human adipocytes. The mRNA expression of lipid a...

Journal: :Advanced functional materials 2012
Si Kyung Yang Steven C Zimmerman

The synthesis and photophysical properties of water-soluble, fluorescent polyglycerol-dendronized perylenediimides 1-4 are reported. The polyglycerol dendrons, which are known to be highly biocompatible, are found to confer high water-solubility on the perylenediimide in aqueous media while retaining its excellent fluorescent properties. Furthermore, intramolecular cross-linking of the polyglyc...

2013
Zhigang Wang Alfred Cuschieri

Magnetically labelled cells are used for in vivo cell tracking by MRI, used for the clinical translation of cell-base therapies. Studies involving magnetic labelled cells may include separation of labelled cells, targeted delivery and controlled release of drugs, contrast enhanced MRI and magnetic hyperthermia for the in situ ablation of tumours. Dextran-coated super-paramagnetic iron oxide (SP...

Journal: :RSC advances 2014
Alexandra Hill Christine K Payne

Superparamagnetic iron oxide nanoparticles (SPIONs) used as MRI contrast agents or for theranostic applications encounter a complex mixture of extracellular proteins that adsorb on the SPION surface forming a protein corona. Our goal was to understand how cellular binding and T2 relaxation times are affected by this protein corona. Our studies focused on carboxymethyl dextran-modified SPIONs, c...

2016
Dominik Gonnissen Ying Qu Klaus Langer Cengiz Öztürk Yuliang Zhao Chunying Chen Guiscard Seebohm Martina Düfer Harald Fuchs Hans-Joachim Galla Kristina Riehemann

Within the last years, progress has been made in the knowledge of the properties of medically used nanoparticles and their toxic effects, but still, little is known about their influence on cellular processes of immune cells. The aim of our comparative study was to present the influence of two different nanoparticle types on subcellular processes of primary monocytes and the leukemic monocyte c...

Journal: :Nanoscale 2013
Lu Zhang Wen-Fei Dong Hong-Bo Sun

Superparamagnetic iron oxide nanoparticles (SPIONs) have shown great promise in biomedical applications. In this review, we summarize the recent advances in the design and fabrication of core-shell and hetero-structured SPIONs and further outline some exciting developments and progresses of these multifunctional SPIONs for diagnosis, multimodality imaging, therapy, and biophotonics.

2016
Tina Lam Pramod K. Avti Philippe Pouliot Foued Maafi Jean-Claude Tardif Éric Rhéaume Frédéric Lesage Ashok Kakkar

Stable superparamagnetic iron oxide nanoparticles (SPIONs), which can be easily dispersed in an aqueous medium and exhibit high magnetic relaxivities, are ideal candidates for biomedical applications including contrast agents for magnetic resonance imaging. We describe a versatile methodology to render water dispersibility to SPIONs using tetraethylene glycol (TEG)-based phosphonate ligands, wh...

2015
Harald Unterweger Daniel Subatzus Rainer Tietze Christina Janko Marina Poettler Alfons Stiegelschmitt Matthias Schuster Caroline Maake Aldo R Boccaccini Christoph Alexiou

Combining the concept of magnetic drug targeting and photodynamic therapy is a promising approach for the treatment of cancer. A high selectivity as well as significant fewer side effects can be achieved by this method, since the therapeutic treatment only takes place in the area where accumulation of the particles by an external electromagnet and radiation by a laser system overlap. In this ar...

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