about
CCL21 and IFNγ recruit and activate tumor specific T cells in 3D scaffold model of breast cancer.PEG-mediated synthesis of highly dispersive multifunctional superparamagnetic nanoparticles: their physicochemical properties and function in vivoChitosan-based thermoreversible hydrogel as an in vitro tumor microenvironment for testing breast cancer therapies.Glypican-3-targeted 89Zr PET imaging of hepatocellular carcinoma.Proliferation and enrichment of CD133(+) glioblastoma cancer stem cells on 3D chitosan-alginate scaffolds.Redox-responsive magnetic nanoparticle for targeted convection-enhanced delivery of O6-benzylguanine to brain tumorsThermoreversible poly(ethylene glycol)-g-chitosan hydrogel as a therapeutic T lymphocyte depot for localized glioblastoma immunotherapy.Glypican-3-targeting F(ab')2 for 89Zr PET of hepatocellular carcinoma.Glypican-3 targeting of liver cancer cells using multifunctional nanoparticlesCancer cell invasion: treatment and monitoring opportunities in nanomedicine.Surface engineering of iron oxide nanoparticles for targeted cancer therapy.Magnetite Nanoparticles for Medical MR Imaging.Porous chitosan-hyaluronic acid scaffolds as a mimic of glioblastoma microenvironment ECM.3D porous chitosan-alginate scaffolds: a new matrix for studying prostate cancer cell-lymphocyte interactions in vitro.Fabrication of magnetic nanoparticles with controllable drug loading and release through a simple assembly approach.Cell transcytosing poly-arginine coated magnetic nanovector for safe and effective siRNA delivery.Electrospinning of chitosan derivative nanofibers with structural stability in an aqueous environment.Doxorubicin loaded iron oxide nanoparticles overcome multidrug resistance in cancer in vitroChlorotoxin bound magnetic nanovector tailored for cancer cell targeting, imaging, and siRNA delivery.Chitosan-alginate scaffold culture system for hepatocellular carcinoma increases malignancy and drug resistance.Specific targeting of brain tumors with an optical/magnetic resonance imaging nanoprobe across the blood-brain barrier.PEI-PEG-Chitosan Copolymer Coated Iron Oxide Nanoparticles for Safe Gene Delivery: synthesis, complexation, and transfection.In vivo safety evaluation of polyarginine coated magnetic nanovectors.Core-Cross-Linked Nanoparticles Reduce Neuroinflammation and Improve Outcome in a Mouse Model of Traumatic Brain Injury.Evaluating differential nanoparticle accumulation and retention kinetics in a mouse model of traumatic brain injury via Ktrans mapping with MRI
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P50
description
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Forrest M. Kievit
@ast
Forrest M. Kievit
@en
Forrest M. Kievit
@es
Forrest M. Kievit
@nl
Forrest M. Kievit
@sl
type
label
Forrest M. Kievit
@ast
Forrest M. Kievit
@en
Forrest M. Kievit
@es
Forrest M. Kievit
@nl
Forrest M. Kievit
@sl
prefLabel
Forrest M. Kievit
@ast
Forrest M. Kievit
@en
Forrest M. Kievit
@es
Forrest M. Kievit
@nl
Forrest M. Kievit
@sl
P106
P1153
25631070800
P31
P496
0000-0002-9847-783X