about
A brain tumor molecular imaging strategy using a new triple-modality MRI-photoacoustic-Raman nanoparticleThe fate and toxicity of Raman-active silica-gold nanoparticles in mice.A correlative optical microscopy and scanning electron microscopy approach to locating nanoparticles in brain tumors.Theranostic mesoporous silica nanoparticles biodegrade after pro-survival drug delivery and ultrasound/magnetic resonance imaging of stem cells.Photoacoustic imaging of mesenchymal stem cells in living mice via silica-coated gold nanorodsRedox-triggered self-assembly of gadolinium-based MRI probes for sensing reducing environmentMolecular Magnetic Resonance Imaging of Tumor Response to Therapy.Shape matters: intravital microscopy reveals surprising geometrical dependence for nanoparticles in tumor models of extravasation.Iron administration before stem cell harvest enables MR imaging tracking after transplantation.A tunable silk-alginate hydrogel scaffold for stem cell culture and transplantation.Oxidative stress mediates the effects of Raman-active gold nanoparticles in human cells.Targeting transferrin receptors at the blood-brain barrier improves the uptake of immunoliposomes and subsequent cargo transport into the brain parenchymaMulticompartment Artificial Organelles Conducting Enzymatic Cascade Reactions inside Cells.Endothelial Protein C-Targeting Liposomes Show Enhanced Uptake and Improved Therapeutic Efficacy in Human Retinal Endothelial Cells.Antibody affinity and valency impact brain uptake of transferrin receptor-targeted gold nanoparticles.
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P50
description
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Paul Kempen
@ast
Paul Kempen
@en
Paul Kempen
@es
Paul Kempen
@nl
type
label
Paul Kempen
@ast
Paul Kempen
@en
Paul Kempen
@es
Paul Kempen
@nl
prefLabel
Paul Kempen
@ast
Paul Kempen
@en
Paul Kempen
@es
Paul Kempen
@nl
P106
P1153
35088400000
P31
P496
0000-0003-2179-2257