Magnetic labeling, imaging and manipulation of endothelial progenitor cells using iron oxide nanoparticles

被引:27
作者
Gazeau, Florence [1 ]
Wilhelm, Claire [1 ]
机构
[1] Univ Paris Diderot, CNRS, UMR 7057, Lab Matiere & Syst Complexes MSC, F-75205 Paris 13, France
关键词
IN-VIVO TRACKING; ANIONIC SUPERPARAMAGNETIC NANOPARTICLES; STEM-CELLS; CONTRAST AGENTS; SINGLE CELLS; RESONANCE; MRI; TRAFFICKING; DELIVERY; SURFACES;
D O I
10.4155/FMC.09.165
中图分类号
R914 [药物化学];
学科分类号
100705 [微生物与生化药学];
摘要
Endothelial progenitor cells (EPCs), originating from bone marrow, play a significant role in the repair of ischemic tissue and injured blood vessels. They are also involved in tumor angiogenesis. The therapeutic potential of EPCs for regenerative medicine and cancer treatment calls for new methods for monitoring and controlling cell migration. This review focuses on promising magnetic methods based on the internalization of magnetic nanoparticles by EPCs. We first describe the cellular uptake of iron oxide nanoparticles depending on their surface properties. We thus review the use of MRI for the detection of labeled cells and for noninvasive follow-up of EPCs homing in sites of endothelium regeneration. Finally, we show that remotely applied magnetic forces may enable intracellular manipulation and may optimize cell-delivery strategies for localizing cell therapy to target sites.
引用
收藏
页码:397 / 408
页数:12
相关论文
共 69 条
[1]
Receptor-mediated endocytosis of iron-oxide particles provides efficient labeling of dendritic cells for in vivo MR imaging [J].
Ahrens, ET ;
Feili-Hariri, M ;
Xu, H ;
Genove, G ;
Morel, PA .
MAGNETIC RESONANCE IN MEDICINE, 2003, 49 (06) :1006-1013
[2]
Fabrication of complex three-dimensional tissue architectures using a magnetic force-based cell patterning technique [J].
Akiyama, Hirokazu ;
Ito, Akira ;
Kawabe, Yoshinori ;
Kamihira, Masamichi .
BIOMEDICAL MICRODEVICES, 2009, 11 (04) :713-721
[3]
Iron-oxide Labeling and outcome of transplanted mesenchymal stem cells in the infarcted myocardium [J].
Amsalem, Yoram ;
Mardor, Yael ;
Feinberg, Micha S. ;
Landa, Natalie ;
Miller, Liron ;
Daniels, Dianne ;
Ocherashvilli, Aharon ;
Holbova, Radka ;
Yosef, Orna ;
Barbash, Israel M. ;
Leor, Jonathan .
CIRCULATION, 2007, 116 (11) :I38-I45
[4]
Noninvasive MR imaging of magnetically labeled stem cells to directly identify neovasculature in a glioma model [J].
Anderson, SA ;
Glod, J ;
Arbab, AS ;
Noel, M ;
Ashari, P ;
Fine, HA ;
Frank, JA .
BLOOD, 2005, 105 (01) :420-425
[5]
Cellular MRI and its role in stem cell therapy [J].
Arbab, Ali S. ;
Frank, Joseph A. .
REGENERATIVE MEDICINE, 2008, 3 (02) :199-215
[6]
Cellular magnetic resonance imaging: current status and future prospects [J].
Arbab, Ali S. ;
Liu, Wei ;
Frank, Joseph A. .
EXPERT REVIEW OF MEDICAL DEVICES, 2006, 3 (04) :427-439
[7]
Magnetic resonance imaging and confocal microscopy studies of magnetically labeled endothelial progenitor cells trafficking to sites of tumor angiogenesis [J].
Arbab, Ali S. ;
Frenkel, Victor ;
Pandit, Sunil D. ;
Anderson, Stasia A. ;
Yocum, Gene T. ;
Bur, Monica ;
Khuu, Hanh M. ;
Read, Elizabeth J. ;
Frank, Joseph A. .
STEM CELLS, 2006, 24 (03) :671-678
[8]
In vivo trafficking and targeted delivery of magnetically labeled stem cells [J].
Arbab, AS ;
Jordan, EK ;
Wilson, LB ;
Yocum, GT ;
Lewis, BK ;
Frank, JA .
HUMAN GENE THERAPY, 2004, 15 (04) :351-360
[9]
Cell internalization of anionic maghemite nanoparticles: Quantitative effect on magnetic resonance imaging [J].
Billotey, C ;
Wilhelm, C ;
Devaud, M ;
Bacri, JC ;
Bittoun, J ;
Gazeau, F .
MAGNETIC RESONANCE IN MEDICINE, 2003, 49 (04) :646-654
[10]
Magnetodendrimers allow endosomal magnetic labeling and in vivo tracking of stem cells [J].
Bulte, JWM ;
Douglas, T ;
Witwer, B ;
Zhang, SC ;
Strable, E ;
Lewis, BK ;
Zywicke, H ;
Miller, B ;
van Gelderen, P ;
Moskowitz, BM ;
Duncan, ID ;
Frank, JA .
NATURE BIOTECHNOLOGY, 2001, 19 (12) :1141-1147