Smart magnetic resonance (MR) contrast agents, by which MR contrast can be selectively enhanced under acidic tumor microenvironment, are anticipated to significantly improve the diagnostic accuracy. Here, we report pH-sensitive iron oxide nanoparticle assemblies (IONAs) that are cross-linked by small-molecular aldehyde derivative ligands. The dynamic formation and cleavage of hydrazone linkages in neutral and acidic environments, respectively, allow the reversible response of the nanoassemblies to pH variations. At neutral pH, IONAs are structurally robust due to the cross-linking by the strong hydrazone bonds. In acidic tumor microenvironment, the hydrazone bonds are cleaved so that the IONAs are quickly disassembled into a large number of...
Development of nanosized materials to enhance the image contrast between the normal and diseased tis...
Herein we report a novel gadolinium-encapsulating iron oxide nanoparticle-based activatable NMR/MRI ...
Thesis (Ph.D.)--University of Washington, 2020Advances in materials science that have allowed for th...
Smart magnetic resonance (MR) contrast agents, by which MR contrast can be selectively enhanced unde...
Extremely small iron oxide nanoparticles (ESIONPs), which have a switchable contrast signal and a fa...
Iron oxide nanoparticle (IONP)-based magnetic resonance imaging (MRI) contrast agents have been wide...
Iron oxide nanoparticle (IONP)-based magnetic resonance imaging (MRI) contrast agents have been wide...
Nanoparticle-based diagnosis-therapy integrative systems represent an emerging approach to cancer tr...
Iron oxide nanoparticle (IONP)-based magnetic resonance imaging (MRI) contrast agents have been wide...
Nanoparticle-based diagnosis therapy integrative systems represent an emerging approach to cancer tr...
Nanoparticle-based diagnosis–therapy integrative systems represent an emerging approach to cancer tr...
Uniform and extremely small-sized iron oxide nanoparticles (ESIONs) of < 4 nm were synthesized via t...
Magnetic resonance imaging (MRI), one of the most general imaging techniques in the clinic, is widel...
Herein we report a novel gadolinium-encapsulating iron oxide nanoparticle-based activatable NMR/MRI ...
Abstract Superparamagnetic iron oxide nanoparticles (SPIONs, ~11-nm cores) were PEGylated without an...
Development of nanosized materials to enhance the image contrast between the normal and diseased tis...
Herein we report a novel gadolinium-encapsulating iron oxide nanoparticle-based activatable NMR/MRI ...
Thesis (Ph.D.)--University of Washington, 2020Advances in materials science that have allowed for th...
Smart magnetic resonance (MR) contrast agents, by which MR contrast can be selectively enhanced unde...
Extremely small iron oxide nanoparticles (ESIONPs), which have a switchable contrast signal and a fa...
Iron oxide nanoparticle (IONP)-based magnetic resonance imaging (MRI) contrast agents have been wide...
Iron oxide nanoparticle (IONP)-based magnetic resonance imaging (MRI) contrast agents have been wide...
Nanoparticle-based diagnosis-therapy integrative systems represent an emerging approach to cancer tr...
Iron oxide nanoparticle (IONP)-based magnetic resonance imaging (MRI) contrast agents have been wide...
Nanoparticle-based diagnosis therapy integrative systems represent an emerging approach to cancer tr...
Nanoparticle-based diagnosis–therapy integrative systems represent an emerging approach to cancer tr...
Uniform and extremely small-sized iron oxide nanoparticles (ESIONs) of < 4 nm were synthesized via t...
Magnetic resonance imaging (MRI), one of the most general imaging techniques in the clinic, is widel...
Herein we report a novel gadolinium-encapsulating iron oxide nanoparticle-based activatable NMR/MRI ...
Abstract Superparamagnetic iron oxide nanoparticles (SPIONs, ~11-nm cores) were PEGylated without an...
Development of nanosized materials to enhance the image contrast between the normal and diseased tis...
Herein we report a novel gadolinium-encapsulating iron oxide nanoparticle-based activatable NMR/MRI ...
Thesis (Ph.D.)--University of Washington, 2020Advances in materials science that have allowed for th...