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 siRN...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Ultrasmall superparamagnetic iron oxide nanoparticles (USPIONs) are currently under development for ...
Nanotechnology is expected to play a vital role in the rapidly developing field of nanomedicine, cre...
Nanomedicine is a rapidly growing field in nanotechnology, which has great potential in the developm...
The efficient entry of nanotechnology-based pharmaceuticals into target cells is highly desired to r...
Precise knowledge regarding cellular uptake of nanoparticles is of great importance for future biome...
Precise knowledge regarding cellular uptake of nanoparticles is of great importance for future biome...
Iron(III)-doped silica nanoshells are shown to possess an in vitro cell-receptor mediated targeting ...
Regulation of cell behavior and function is crucial to understand biological phenomena and overcome ...
Magnetic nanoparticles have emerged as important players in current research in modern medicine sinc...
Natalia L Chaves,1 Irina Estrela-Lopis,2 Julia Böttner,2 Cláudio AP Lopes,1 Bruna C Guid...
Nanoparticles (NP) are attractive options for the therapeutic delivery of active pharmaceutical drug...
Here we discuss some pitfalls and challenges briefly when investigating which endocytic mechanisms a...
International audienceEngineered inorganic nanoparticles are essential components in the development...
[[abstract]]We investigated iron oxide nanoparticles with two different surface modifications, dextr...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Ultrasmall superparamagnetic iron oxide nanoparticles (USPIONs) are currently under development for ...
Nanotechnology is expected to play a vital role in the rapidly developing field of nanomedicine, cre...
Nanomedicine is a rapidly growing field in nanotechnology, which has great potential in the developm...
The efficient entry of nanotechnology-based pharmaceuticals into target cells is highly desired to r...
Precise knowledge regarding cellular uptake of nanoparticles is of great importance for future biome...
Precise knowledge regarding cellular uptake of nanoparticles is of great importance for future biome...
Iron(III)-doped silica nanoshells are shown to possess an in vitro cell-receptor mediated targeting ...
Regulation of cell behavior and function is crucial to understand biological phenomena and overcome ...
Magnetic nanoparticles have emerged as important players in current research in modern medicine sinc...
Natalia L Chaves,1 Irina Estrela-Lopis,2 Julia Böttner,2 Cláudio AP Lopes,1 Bruna C Guid...
Nanoparticles (NP) are attractive options for the therapeutic delivery of active pharmaceutical drug...
Here we discuss some pitfalls and challenges briefly when investigating which endocytic mechanisms a...
International audienceEngineered inorganic nanoparticles are essential components in the development...
[[abstract]]We investigated iron oxide nanoparticles with two different surface modifications, dextr...
Nanosized drug carriers enter cells via active mechanisms of endocytosis but the pathways involved a...
Ultrasmall superparamagnetic iron oxide nanoparticles (USPIONs) are currently under development for ...
Nanotechnology is expected to play a vital role in the rapidly developing field of nanomedicine, cre...