PEG-Mediated Synthesis of Highly Dispersive Multifunctional Superparamagnetic Nanoparticles: Their Physicochemical Properties and Function In Vivo
- 16 March 2010
- journal article
- research article
- Published by American Chemical Society (ACS) in ACS Nano
- Vol. 4 (4) , 2402-2410
- https://doi.org/10.1021/nn100190v
Abstract
Multifunctional superparamagnetic nanoparticles have been developed for a wide range of applications in nanomedicine, such as serving as tumor-targeted drug carriers and molecular imaging agents. To function in vivo, the development of these novel materials must overcome several challenging requirements including biocompatibility, stability in physiological solutions, nontoxicity, and the ability to traverse biological barriers. Here we report a PEG-mediated synthesis process to produce well-dispersed, ultrafine, and highly stable iron oxide nanoparticles for in vivo applications. Utilizing a biocompatible PEG coating bearing amine functional groups, the produced nanoparticles serve as an effective platform with the ability to incorporate a variety of targeting, therapeutic, or imaging ligands. In this study, we demonstrated tumor-specific accumulation of these nanoparticles through both magnetic resonance and optical imaging after conjugation with chlorotoxin, a peptide with high affinity toward tumors of the neuroectodermal origin, and Cy5.5, a near-infrared fluorescent dye. Furthermore, we performed preliminary biodistribution and toxicity assessments of these nanoparticles in wild-type mice through histological analysis of clearance organs and hematology assay, and the results demonstrated the relative biocompatibility of these nanoparticles.Keywords
This publication has 39 references indexed in Scilit:
- Specific Targeting of Brain Tumors with an Optical/Magnetic Resonance Imaging Nanoprobe across the Blood-Brain BarrierCancer Research, 2009
- A ligand-mediated nanovector for targeted gene delivery and transfection in cancer cellsBiomaterials, 2008
- Magnetic nanoparticles in MR imaging and drug deliveryAdvanced Drug Delivery Reviews, 2008
- A Multimodal Targeting Nanoparticle for Selectively Labeling T CellsSmall, 2008
- In Vivo MRI Detection of Gliomas by Chlorotoxin‐Conjugated Superparamagnetic NanoprobesSmall, 2008
- In vivo imaging of siRNA delivery and silencing in tumorsNature Medicine, 2007
- Folic acid‐PEG conjugated superparamagnetic nanoparticles for targeted cellular uptake and detection by MRIJournal of Biomedical Materials Research Part A, 2006
- Optical and MRI Multifunctional Nanoprobe for Targeting GliomasNano Letters, 2005
- Noninvasive Detection of Clinically Occult Lymph-Node Metastases in Prostate CancerNew England Journal of Medicine, 2003
- Tat peptide-derivatized magnetic nanoparticles allow in vivo tracking and recovery of progenitor cellsNature Biotechnology, 2000