Literature DB >> 19765817

Magnetic resonance imaging of multifunctional pluronic stabilized iron-oxide nanoparticles in tumor-bearing mice.

Tapan K Jain1, Susan P Foy, Bernadette Erokwu, Sanja Dimitrijevic, Christopher A Flask, Vinod Labhasetwar.   

Abstract

We are investigating the magnetic resonance imaging characteristics of magnetic nanoparticles (MNPs) that consist of an iron-oxide magnetic core coated with oleic acid (OA), then stabilized with a pluronic or tetronic block copolymer. Since pluronics and tetronics vary structurally, and also in the ratio of hydrophobic (poly[propylene oxide]) and hydrophilic (poly[ethylene oxide]) segments in the polymer chain and in molecular weight, it was hypothesized that their anchoring to the OA coating around the magnetic core could significantly influence the physical properties of MNPs, their interactions with biological environment following intravenous administration, and ability to localize to tumors. The amount of block copolymer associated with MNPs was seen to depend upon their molecular structures and influence the characteristics of MNPs. Pluronic F127-modified MNPs demonstrated sustained and enhanced contrast in the whole tumor, whereas that of Feridex IV was transient and confined to the tumor periphery. In conclusion, our pluronic F127-coated MNPs, which can also be loaded with anticancer agents for drug delivery, can be developed as an effective cancer theranostic agent, i.e. an agent with combined drug delivery and imaging properties.

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Year:  2009        PMID: 19765817      PMCID: PMC2763936          DOI: 10.1016/j.biomaterials.2009.08.042

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  23 in total

Review 1.  Magnetic nanoparticles for MR imaging: agents, techniques and cardiovascular applications.

Authors:  David E Sosnovik; Matthias Nahrendorf; Ralph Weissleder
Journal:  Basic Res Cardiol       Date:  2008-03       Impact factor: 17.165

Review 2.  Multifunctional magnetic nanoparticles for targeted imaging and therapy.

Authors:  Jason R McCarthy; Ralph Weissleder
Journal:  Adv Drug Deliv Rev       Date:  2008-04-10       Impact factor: 15.470

Review 3.  MRI for identification of progression in brain tumors: from morphology to function.

Authors:  Marc-André Weber; Frederik Lars Giesel; Bram Stieltjes
Journal:  Expert Rev Neurother       Date:  2008-10       Impact factor: 4.618

4.  Characterization of PLGA nanospheres stabilized with amphiphilic polymers: hydrophobically modified hydroxyethyl starch vs pluronics.

Authors:  Ahmed Besheer; Jürgen Vogel; Dagobert Glanz; Jörg Kressler; Thomas Groth; Karsten Mäder
Journal:  Mol Pharm       Date:  2009 Mar-Apr       Impact factor: 4.939

5.  3-D tumor model for in vitro evaluation of anticancer drugs.

Authors:  Jayme L Horning; Sanjeeb K Sahoo; Sivakumar Vijayaraghavalu; Sanja Dimitrijevic; Jaspreet K Vasir; Tapan K Jain; Amulya K Panda; Vinod Labhasetwar
Journal:  Mol Pharm       Date:  2008-08-05       Impact factor: 4.939

6.  Nanotemplate-engineered nanoparticles containing gadolinium for magnetic resonance imaging of tumors.

Authors:  Donghua Zhu; Xiuling Lu; Peter A Hardy; Markos Leggas; Michael Jay
Journal:  Invest Radiol       Date:  2008-02       Impact factor: 6.016

Review 7.  Toxicity of MRI and CT contrast agents.

Authors:  Kendra M Hasebroock; Natalie J Serkova
Journal:  Expert Opin Drug Metab Toxicol       Date:  2009-04       Impact factor: 4.481

Review 8.  New technologies for human cancer imaging.

Authors:  John V Frangioni
Journal:  J Clin Oncol       Date:  2008-08-20       Impact factor: 44.544

9.  Magnetic nanoparticles with dual functional properties: drug delivery and magnetic resonance imaging.

Authors:  Tapan K Jain; John Richey; Michelle Strand; Diandra L Leslie-Pelecky; Chris A Flask; Vinod Labhasetwar
Journal:  Biomaterials       Date:  2008-07-22       Impact factor: 12.479

Review 10.  Targeted magnetic iron oxide nanoparticles for tumor imaging and therapy.

Authors:  Xiang-Hong Peng; Ximei Qian; Hui Mao; Andrew Y Wang; Zhuo Georgia Chen; Shuming Nie; Dong M Shin
Journal:  Int J Nanomedicine       Date:  2008
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  32 in total

1.  Nanotechnology for energy-based cancer therapies.

Authors:  Kyle Gilstrap; Xiaoxiao Hu; Xiongbin Lu; Xiaoming He
Journal:  Am J Cancer Res       Date:  2011-03-11       Impact factor: 6.166

2.  Optical imaging and magnetic field targeting of magnetic nanoparticles in tumors.

Authors:  Susan P Foy; Rachel L Manthe; Steven T Foy; Sanja Dimitrijevic; Nishanth Krishnamurthy; Vinod Labhasetwar
Journal:  ACS Nano       Date:  2010-09-28       Impact factor: 15.881

Review 3.  Tumor ablation and nanotechnology.

Authors:  Rachel L Manthe; Susan P Foy; Nishanth Krishnamurthy; Blanka Sharma; Vinod Labhasetwar
Journal:  Mol Pharm       Date:  2010-10-07       Impact factor: 4.939

Review 4.  Enabling individualized therapy through nanotechnology.

Authors:  Jason H Sakamoto; Anne L van de Ven; Biana Godin; Elvin Blanco; Rita E Serda; Alessandro Grattoni; Arturas Ziemys; Ali Bouamrani; Tony Hu; Shivakumar I Ranganathan; Enrica De Rosa; Jonathan O Martinez; Christine A Smid; Rachel M Buchanan; Sei-Young Lee; Srimeenakshi Srinivasan; Matthew Landry; Anne Meyn; Ennio Tasciotti; Xuewu Liu; Paolo Decuzzi; Mauro Ferrari
Journal:  Pharmacol Res       Date:  2010-01-05       Impact factor: 7.658

5.  Hydrophilization of Magnetic Nanoparticles with Modified Alternating Copolymers. Part 1: The Influence of the Grafting.

Authors:  Lyudmila M Bronstein; Eleonora V Shtykova; Andrey Malyutin; Jason C Dyke; Emily Gunn; Xinfeng Gao; Barry Stein; Peter V Konarev; Bogdan Dragnea; Dmitri I Svergun
Journal:  J Phys Chem C Nanomater Interfaces       Date:  2010-12-23       Impact factor: 4.126

6.  Drug resistance in cancer therapy.

Authors:  Vinod Labhasetwar
Journal:  Drug Deliv Transl Res       Date:  2011-12       Impact factor: 4.617

Review 7.  Imaging the paediatric lung: what does nanotechnology have to offer?

Authors:  K L Ordidge; B A Duffy; J A Wells; T L Kalber; S M Janes; M F Lythgoe
Journal:  Paediatr Respir Rev       Date:  2011-08-04       Impact factor: 2.726

8.  Interaction studies between indomethacin nanocrystals and PEO/PPO copolymer stabilizers.

Authors:  Peng Liu; Tapani Viitala; Alma Kartal-Hodzic; Huamin Liang; Timo Laaksonen; Jouni Hirvonen; Leena Peltonen
Journal:  Pharm Res       Date:  2014-08-22       Impact factor: 4.200

9.  Reducing non-specific binding and uptake of nanoparticles and improving cell targeting with an antifouling PEO-b-PgammaMPS copolymer coating.

Authors:  Hongwei Chen; Liya Wang; Julie Yeh; Xinying Wu; Zehong Cao; Yongqiang A Wang; Minming Zhang; Lily Yang; Hui Mao
Journal:  Biomaterials       Date:  2010-04-15       Impact factor: 12.479

Review 10.  Molecular imaging with theranostic nanoparticles.

Authors:  Jesse V Jokerst; Sanjiv S Gambhir
Journal:  Acc Chem Res       Date:  2011-09-15       Impact factor: 22.384

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