Characterization of superparamagnetic iron oxide nanoparticles by asymmetrical flow-field-flow-fractionation

被引:45
作者
Lohrke, Jessica [2 ]
Briel, Andreas [2 ]
Maeder, Karsten [1 ]
机构
[1] Univ Halle Wittenberg, Inst Pharm, Halle, Germany
[2] Bayer Schering Pharma AG, Contrast Media Res, Berlin, Germany
关键词
asymmetrical flow-field-flow-fractionarion; dynamic light scattering; hydrodynamic radius; multi-angle laser light scattering; particle-size distribution; polydispersity indices; radius of gyration; shape factor; superparamagnetic iron oxide particles;
D O I
10.2217/17435889.3.4.437
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Aims: The further development of diagnostic and therapeutic nanomedicines in research and their translation into clinical practice require appropriate characterization methods to ensure a reproducible quality and performance. However, many methods are insufficient for a detailed analysis of the particle size. The primary aim of the present work is to evaluate the application of asymmetrical flow-field-flow-fractionation (AF4) coupled with multiangle laser and dynamic light scattering (DLS) for the characterization of superparamagnetic iron oxide (SPIO) particles. Methods: Eight carboxydextran-coated SPIO samples with different mean particle sizes, as determined by DLS, are investigated by means of an adequate AF4 separation method. Results: In this work, we show that, with increasing sample particle size, as measured by IDLS, the hydrodynamic and gyration radii obtained by the AF4 method increase respectively. We demonstrate that the applied AF4 method is able to separate nanoparticles of different sizes effectively, with superior reproducibility (relative standard deviation: < 3%) and high accuracy (relative standard deviation: < 10%). Furthermore, important characterization parameters that will affect the in vivo performance; namely, the shape factors and polydispersity indices, of all eight samples are presented. Conclusion: The work describes the application of AF4/DLS/multiangle laser light scattering as a highly useful method for characterization of SPIO particles, enabling valuable information to be accessed in addition to that obtained by transmission-electron microscopy and DLS in batch mode.
引用
收藏
页码:437 / 452
页数:16
相关论文
共 53 条
[31]  
MACDA H, 2000, J CONTROL RELEASE, V65, P271
[32]   The enhanced permeability and retention (EPR) effect in tumor vasculature: The key role of tumor-selective macromolecular drug targeting [J].
Maeda, H .
ADVANCES IN ENZYME REGULATION, VOL 41, 2001, 41 :189-207
[33]   Characterization of chitosan and its derivatives using asymmetrical flow field-flow-fractionation:: A comparison with traditional methods [J].
Mao, Shirui ;
Augsten, Christian ;
Maeder, Karsten ;
Kissel, Thomas .
JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2007, 45 (05) :736-741
[34]  
MULLER RH, 1996, TEILCHENGROSSENMESSU
[35]   PROPERTIES OF THE TRANSITION FROM NORMAL TO STERIC FIELD-FLOW FRACTIONATION [J].
MYERS, MN ;
GIDDINGS, JC .
ANALYTICAL CHEMISTRY, 1982, 54 (13) :2284-2289
[36]  
NUNO CS, 1997, BIOPOLYMERS, V41, P511
[37]   Applications of magnetic nanoparticles in biomedicine [J].
Pankhurst, QA ;
Connolly, J ;
Jones, SK ;
Dobson, J .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2003, 36 (13) :R167-R181
[38]  
PUSEY PN, 1985, DYNAMIC LIGHT SCATTE, P50401
[39]   Comparison of size-selective techniques for the fractionation of magnetic fluids [J].
Rheinländer, T ;
Roessner, D ;
Weitschies, W ;
Semmler, W .
JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2000, 214 (03) :269-275
[40]   ONLINE COUPLING OF FLOW FIELD-FLOW FRACTIONATION AND MULTI-ANGLE LASER-LIGHT SCATTERING [J].
ROESSNER, D ;
KULICKE, WM .
JOURNAL OF CHROMATOGRAPHY A, 1994, 687 (02) :249-258