Caveolin-1 and CDC42 mediated endocytosis of silica-coated iron oxide nanoparticles in HeLa cells

被引:43
作者
Bohmer, Nils [1 ]
Jordan, Andreas [1 ,2 ]
机构
[1] Charite, D-13353 Berlin, Germany
[2] MagForce Nanotechnol AG, D-12489 Berlin, Germany
关键词
Caveolin-1; CDC42; endocytosis inhibition; iron oxide nanoparticles; nanoparticle uptake; SURFACE-CHARGE; MAGNETITE NANOPARTICLES; DRUG-DELIVERY; INTERNALIZATION; HYPERTHERMIA; DETERMINES; CANCER;
D O I
10.3762/bjnano.6.16
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Nanomedicine is a rapidly growing field in nanotechnology, which has great potential in the development of new therapies for numerous diseases. For example iron oxide nanoparticles are in clinical use already in the thermotherapy of brain cancer. Although it has been shown, that tumor cells take up these particles in vitro, little is known about the internalization routes. Understanding of the underlying uptake mechanisms would be very useful for faster and precise development of nanoparticles for clinical applications. This study aims at the identification of key proteins, which are crucial for the active uptake of iron oxide nanoparticles by HeLa cells (human cervical cancer) as a model cell line. Cells were transfected with specific siRNAs against Caveolin-1, Dynamin 2, Flotillin-1, Clathrin, PIP5K alpha and CDC42. Knockdown of Caveolin-1 reduces endocytosis of superparamagnetic iron oxide nanoparticles (SPIONs) and silica-coated iron oxide nanoparticles (SCIONs) between 23 and 41%, depending on the surface characteristics of the nanoparticles and the experimental design. Knockdown of CDC42 showed a 46% decrease of the internalization of PEGylated SPIONs within 24 h incubation time. Knockdown of Dynamin 2, Flotillin-1, Clathrin and PIP5Ka caused no or only minor effects. Hence endocytosis in HeLa cells of iron oxide nanoparticles, used in this study, is mainly mediated by Caveolin-1 and CDC42. It is shown here for the first time, which proteins of the endocytotic pathway mediate the endocytosis of silica-coated iron oxide nanoparticles in HeLa cells in vitro. In future studies more experiments should be carried out with different cell lines and other well-defined nanoparticle species to elucidate possible general principles.
引用
收藏
页码:167 / 176
页数:10
相关论文
共 45 条
[1]   Preparation and characterization of a magnetic and optical dual-modality molecular probe [J].
Bumb, A. ;
Regino, C. A. S. ;
Perkins, M. R. ;
Bernardo, M. ;
Ogawa, M. ;
Fugger, L. ;
Choyke, P. L. ;
Dobson, P. J. ;
Brechbiel, M. W. .
NANOTECHNOLOGY, 2010, 21 (17)
[2]  
Bumb A, 2011, BIOMED OPT EXPRESS, V2, P2761, DOI 10.1364/BOE.2.002761
[3]   Endocytosis at the nanoscale [J].
Canton, Irene ;
Battaglia, Giuseppe .
CHEMICAL SOCIETY REVIEWS, 2012, 41 (07) :2718-2739
[4]   Co-regulation of Caveolar and Cdc42-dependent Fluid Phase Endocytosis by Phosphocaveolin-1 [J].
Cheng, Zhi-Jie ;
Singh, Raman Deep ;
Holicky, Eileen L. ;
Wheatley, Christine L. ;
Marks, David L. ;
Pagano, Richard E. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2010, 285 (20) :15119-15125
[5]   Regulated portals of entry into the cell [J].
Conner, SD ;
Schmid, SL .
NATURE, 2003, 422 (6927) :37-44
[6]   Recent advances in iron oxide nanocrystal technology for medical imaging [J].
Corot, Claire ;
Robert, Philippe ;
Idee, Jean-Marc ;
Port, Marc .
ADVANCED DRUG DELIVERY REVIEWS, 2006, 58 (14) :1471-1504
[7]   CLATHRIN-INDEPENDENT PINOCYTOSIS IS INDUCED IN CELLS OVEREXPRESSING A TEMPERATURE-SENSITIVE MUTANT OF DYNAMIN [J].
DAMKE, H ;
BABA, T ;
VANDERBLIEK, AM ;
SCHMID, SL .
JOURNAL OF CELL BIOLOGY, 1995, 131 (01) :69-80
[8]   What is nanomedicine? [J].
Freitas, Robert A., Jr. .
NANOMEDICINE-NANOTECHNOLOGY BIOLOGY AND MEDICINE, 2005, 1 (01) :2-9
[9]   Flotillin-1 defines a clathrin-independent endocytic pathway in mammalian cells [J].
Glebov, OO ;
Bright, NA ;
Nichols, BJ .
NATURE CELL BIOLOGY, 2006, 8 (01) :46-U16
[10]   Nanoparticles as contrast agents for in-vivo bioimaging: current status and future perspectives [J].
Hahn, Megan A. ;
Singh, Amit K. ;
Sharma, Parvesh ;
Brown, Scott C. ;
Moudgil, Brij M. .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2011, 399 (01) :3-27