Targeting and cellular trafficking of magnetic nanoparticles for prostate cancer Imaging

被引:60
作者
Serda, Rita E.
Adolphi, Natalie L.
Bisoffi, Marco
Sillerud, Laurel O.
机构
[1] Univ New Mexico, Sch Med, Dept Biochem & Mol Biol, Albuquerque, NM 87131 USA
[2] New Mexico Resonance, Albuquerque, NM USA
关键词
D O I
10.2310/7290.2007.00025
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Antibody-conjugated iron oxide nanoparticles offer a specific and sensitive tool to enhance magnetic resonance (MR) images of both local and metastatic cancer. Prostate-specific membrane antigen (PSMA) is predominantly expressed on the neovasculature of solid tumors and on the surface of prostate cells, with enhanced expression following androgen deprivation therapy. Biotinylated anti-PSMA antibody was conjugated to streptavidin-labeled iron oxide nanoparticles and used in MR imaging and confocal laser scanning microscopic imaging studies using LNCaP prostate cancer cells. Labeled iron oxide nanoparticles are internalized by receptor-mediated endocytosis, which involves the formation of clathrin-coated vesicles. Endocytosed particles are not targeted to the Golgi apparatus for recycling but instead accumulate within lysosomes. In T-1-weighted MR images, the signal enhancement owing to the magnetic particles was greater for cells with magnetic particles bound to the cell surface than for cells that internalized the particles. However, the location of the particles (surface vs internal) did not significantly alter their effect on T-2-weighted images. Our findings indicate that targeting prostate cancer cells using PSMA offers a specific and sensitive technique for enhancing MR images.
引用
收藏
页码:277 / 288
页数:12
相关论文
共 25 条
[1]   Contrast-enhanced blood-pool MR angiography with optimized iron oxides: Effect of size and dose on vascular contrast enhancement in rabbits [J].
Allkemper, T ;
Bremer, C ;
Matuszewski, L ;
Ebert, W ;
Reimer, P .
RADIOLOGY, 2002, 223 (02) :432-438
[2]  
*AM CANC SOC, 2006, CANC FACTS FIG 2006
[3]   Association of prostate-specific membrane antigen with caveolin-1 and its caveolae-dependent internalization in microvascular endothelial cells: Implications for targeting to tumor vasculature [J].
Anilkumar, Gopalakrishnapillai ;
Barwe, Sonali P. ;
Chnistiansen, Jason J. ;
Rajasekaran, Sigrid A. ;
Kohn, Donald B. ;
Rajasekaran, Ayyappan K. .
MICROVASCULAR RESEARCH, 2006, 72 (1-2) :54-61
[4]  
Bak John B, 2003, Clin Prostate Cancer, V2, P115, DOI 10.3816/CGC.2003.n.019
[5]   Caveolae - An alternative endocytotic pathway for targeted drug delivery [J].
Bathori, G ;
Cervenak, L ;
Karadi, I .
CRITICAL REVIEWS IN THERAPEUTIC DRUG CARRIER SYSTEMS, 2004, 21 (02) :67-95
[6]   Assessment of T1 and T*2 effects in vivo and ex vivo using iron oxide nanoparticles in steady state-dependence on blood volume and water exchange [J].
Bjornerud, A ;
Johansson, LO ;
Briley-Sæbo, K ;
Ahlström, HK .
MAGNETIC RESONANCE IN MEDICINE, 2002, 47 (03) :461-471
[7]   Interaction of functionalized superparamagnetic iron oxide nanoparticles with brain structures [J].
Cengelli, Feride ;
Maysinger, Dusica ;
Tschudi-Monnet, Florianne ;
Montet, Xavier ;
Corot, Claire ;
Petri-Fink, Alke ;
Hofmann, Heinrich ;
Juillerat-Jeanneret, Lucienne .
JOURNAL OF PHARMACOLOGY AND EXPERIMENTAL THERAPEUTICS, 2006, 318 (01) :108-116
[8]   Membrane traffic: Catching the lysosome express [J].
Clague, MJ ;
Hammond, DE .
CURRENT BIOLOGY, 2006, 16 (11) :R416-R418
[9]   Dissociation between androgen responsiveness for malignant growth vs. expression of prostate specific differentiation markers PSA, hK2, and PSMA in human prostate cancer models [J].
Denmeade, SR ;
Sokoll, LJ ;
Dalrymple, S ;
Rosen, DM ;
Gady, AM ;
Bruzek, D ;
Ricklis, RM ;
Isaacs, JT .
PROSTATE, 2003, 54 (04) :249-257
[10]   Measuring the elasticity of clathrin-coated vesicles via atomic force microscopy [J].
Jin, AJ ;
Prasad, K ;
Smith, PD ;
Lafer, EM ;
Nossal, R .
BIOPHYSICAL JOURNAL, 2006, 90 (09) :3333-3344