Cellular uptake of magnetic nanoparticle is mediated through energy-dependent endocytosis in A549 cells

被引:156
作者
Kim, Jun-Sung
Yoon, Tae-Jong
Yu, Kyeong-Nam
Noh, Mi Suk
Woo, Minah
Kim, Byung-Geol
Lee, Kee-Ho
Sohn, Byung-Hyuk
Park, Seung-Bum
Lee, Jin-Kyu [1 ]
Cho, Myung-Haing
机构
[1] Seoul Natl Univ, Mat Chem Lab, Seoul 151742, South Korea
[2] Seoul Natl Univ, Coll Vet Med, Toxicol Lab, Seoul 151742, South Korea
[3] Seoul Natl Univ, Divers Oriented Synth & Chem Biol Lab, Seoul 151742, South Korea
[4] Korea Inst Radiol & Med Sci, Oncol Mol Lab, Seoul 139706, South Korea
关键词
A549; cells; cellular uptake; endocytosis; magnetic nanoparticle;
D O I
10.4142/jvs.2006.7.4.321
中图分类号
S85 [动物医学(兽医学)];
学科分类号
0906 ;
摘要
Biocompatible silica-overcoated magnetic nanoparticles containing an organic fluorescence dye, rhodamine B isothiocyanate (RITC), within a silica shell [50 nm size, MNP@SiO2(RITC)s] were synthesized. For future application of the MNP@SiO2(RITC)s into diverse areas of research such as drug or gene delivery, bioimaging, and biosensors, detailed information of the cellular uptake process of the nanoparticles is essential. Thus, this study was performed to elucidate the precise mechanism by which the lung cancer cells uptake the magnetic nanoparticles. Lung cells were chosen for this study because inhalation is the most likely route of exposure and lung cancer cells were also found to uptake magnetic nanoparticles rapidly in preliminary experiments. The lung cells were pretreated with different metabolic inhibitors. Our results revealed that low temperature disturbed the uptake of magnetic nanoparticles into the cells. Metabolic inhibitors also prevented the delivery of the materials into cells. Use of TEM clearly demonstrated that uptake of the nanoparticles was mediated through endosomes. Taken together, our results demonstrate that magnetic nanoparticles can be internalized into the cells through an energy-dependent endosomal-lysosomal mechanism.
引用
收藏
页码:321 / 326
页数:6
相关论文
共 18 条
[1]   Silica particles:: A novel drug-delivery system [J].
Barbé, C ;
Bartlett, J ;
Kong, LG ;
Finnie, K ;
Lin, HQ ;
Larkin, M ;
Calleja, S ;
Bush, A ;
Calleja, G .
ADVANCED MATERIALS, 2004, 16 (21) :1959-1966
[2]   Reduced endocytosis and altered lysosome function in cisplatin-resistant cell lines [J].
Chauhan, SS ;
Liang, XJ ;
Su, AW ;
Pai-Panandiker, A ;
Shen, DW ;
Hanover, JA ;
Gottesman, MM .
BRITISH JOURNAL OF CANCER, 2003, 88 (08) :1327-1334
[3]   Cellular fate of a modular DNA delivery system mediated by silica nanoparticles [J].
Gemeinhart, RA ;
Luo, D ;
Saltzman, WM .
BIOTECHNOLOGY PROGRESS, 2005, 21 (02) :532-537
[4]   Receptor-mediated targeting of magnetic nanoparticles using insulin as a surface ligand to prevent endocytosis [J].
Gupta, AK ;
Berry, C ;
Gupta, M ;
Curtis, A .
IEEE TRANSACTIONS ON NANOBIOSCIENCE, 2003, 2 (04) :255-261
[5]   HYPERTONIC MEDIA INHIBIT RECEPTOR-MEDIATED ENDOCYTOSIS BY BLOCKING CLATHRIN-COATED PIT FORMATION [J].
HEUSER, JE ;
ANDERSON, RGW .
JOURNAL OF CELL BIOLOGY, 1989, 108 (02) :389-400
[6]   Synthesis and crystallization of hybrid spherical colloids composed of polystyrene cores and silica shells [J].
Lu, Y ;
McLellan, J ;
Xia, YN .
LANGMUIR, 2004, 20 (08) :3464-3470
[7]   Single quantum dots in spherical silica particles [J].
Nann, T ;
Mulvaney, P .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2004, 43 (40) :5393-5396
[8]   Endocytosis is not required for the selective lipid uptake mediated by murine SR-BI [J].
Nieland, TJF ;
Ehrlich, M ;
Krieger, M ;
Kirchhausen, T .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR AND CELL BIOLOGY OF LIPIDS, 2005, 1734 (01) :44-51
[9]   The vacuolar (H+)-atpases -: Nature's most versatile proton pumps [J].
Nishi, T ;
Forgac, M .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2002, 3 (02) :94-103
[10]  
Ow H, 2005, NANO LETT, V5, P113, DOI [10.1021/nl0482478, 10.1012/nl0482478]