Nanoparticles are often targeted to receptors expressed on specific cells, but few receptors are (i) highly expressed on one cell type and (ii) involved in endocytosis. One unexplored alternative is manipulating an endocytic gene expressed on multiple cell types; an ideal gene would inhibit delivery to cell type A more than cell type B, promoting delivery to cell type B. This would require a commonly expressed endocytic gene to alter nanoparticle delivery in a cell type-dependent manner in vivo; whether this can occur is unknown. Based on its microenvironmental regulation, we hypothesized Caveolin 1 (Cav1) would exert cell type-specific effects on nanoparticle delivery. Fluorescence was not sensitive enough to investigate this question, and...
Nuri Oh,1,2 Ji-Ho Park1–31Department of Bio and Brain Engineering, 2Institute for Optical Scie...
Nanotechnology is expected to play a vital role in the rapidly developing field of nanomedicine, cre...
Understanding the cellular entry pathways of synthetic biomaterials is highly important to improve o...
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...
Endothelial cells and macrophages play active roles in disease and as a result are important targets...
Nanoparticles (NP) are attractive options for the therapeutic delivery of active pharmaceutical drug...
Bone marrow endothelial cells (BMECs) regulate their microenvironment, which includes hematopoietic ...
For achieving efficient cancer treatment, it is important to elucidate the mechanism responsible for...
Over the past decades, major efforts were undertaken to develop devices on a nanoscale level for the...
A polarized layer of endothelial cells that comprises the blood–brain barrier (BBB) precludes access...
A polarized layer of endothelial cells that comprises the blood-brain barrier (BBB) precludes access...
Efficient non-viral gene delivery often involves the conjugation of a cell-specific ligand to the ve...
Here we discuss some pitfalls and challenges briefly when investigating which endocytic mechanisms a...
Nanoparticles are small objects in the scale of nanometres (a billionth of a metre), used for a wide...
Nuri Oh,1,2 Ji-Ho Park1–31Department of Bio and Brain Engineering, 2Institute for Optical Scie...
Nanotechnology is expected to play a vital role in the rapidly developing field of nanomedicine, cre...
Understanding the cellular entry pathways of synthetic biomaterials is highly important to improve o...
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...
Endothelial cells and macrophages play active roles in disease and as a result are important targets...
Nanoparticles (NP) are attractive options for the therapeutic delivery of active pharmaceutical drug...
Bone marrow endothelial cells (BMECs) regulate their microenvironment, which includes hematopoietic ...
For achieving efficient cancer treatment, it is important to elucidate the mechanism responsible for...
Over the past decades, major efforts were undertaken to develop devices on a nanoscale level for the...
A polarized layer of endothelial cells that comprises the blood–brain barrier (BBB) precludes access...
A polarized layer of endothelial cells that comprises the blood-brain barrier (BBB) precludes access...
Efficient non-viral gene delivery often involves the conjugation of a cell-specific ligand to the ve...
Here we discuss some pitfalls and challenges briefly when investigating which endocytic mechanisms a...
Nanoparticles are small objects in the scale of nanometres (a billionth of a metre), used for a wide...
Nuri Oh,1,2 Ji-Ho Park1–31Department of Bio and Brain Engineering, 2Institute for Optical Scie...
Nanotechnology is expected to play a vital role in the rapidly developing field of nanomedicine, cre...
Understanding the cellular entry pathways of synthetic biomaterials is highly important to improve o...