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J Vet Sci. 2006 Dec;7(4):321-326 |
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Cellular uptake of magnetic nanoparticle is mediated through energydependent endocytosis in A549 cells
Jun-Sung Kim1, Tae-Jong Yoon2, Kyeong-Nam Yu1, Mi Suk Noh1, Minah Woo1, Byung-Geol Kim2, Kee-Ho Lee3, Byung-Hyuk Sohn4, Seung-Bum Park5, Jin-Kyu Lee2,*, Myung-Haing Cho1,* |
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1Laboratory of Toxicology, College of Veterinary Medicine, 2Materials Chemistry Lab, 4Polymeric and Soft Nanomaterials, 5Diversity Oriented Synthesis and Chemical Biology Lab, Seoul National University, Seoul 151-742, Korea. jinklee@snu.ac.kr, mchotox@snu.ac.kr 3Laboratory of Molecular Oncology, Korea Institute of Radiological and Medical Sciences, Seoul 139-706, Korea. |
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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.
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